WO2023065867A1 - 可穿戴设备和可穿戴系统 - Google Patents
可穿戴设备和可穿戴系统 Download PDFInfo
- Publication number
- WO2023065867A1 WO2023065867A1 PCT/CN2022/117438 CN2022117438W WO2023065867A1 WO 2023065867 A1 WO2023065867 A1 WO 2023065867A1 CN 2022117438 W CN2022117438 W CN 2022117438W WO 2023065867 A1 WO2023065867 A1 WO 2023065867A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- locking
- rotating shaft
- wrist rest
- shaft
- wearable device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
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- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B37/00—Cases
- G04B37/04—Mounting the clockwork in the case; Shock absorbing mountings
- G04B37/0427—Mountings relative to pocket and wrist watches allowing a rocking movement about a hinge or any other movement
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M13/00—Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
- F16M13/04—Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or holding steady relative to, a person, e.g. by chains, e.g. rifle butt or pistol grip supports, supports attached to the chest or head
-
- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B37/00—Cases
- G04B37/14—Suspending devices, supports or stands for time-pieces insofar as they form part of the case
- G04B37/1406—Means for fixing the clockwork pieces on other objects (possibly on walls)
- G04B37/1413—Separable means
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- G—PHYSICS
- G04—HOROLOGY
- G04G—ELECTRONIC TIME-PIECES
- G04G17/00—Structural details; Housings
- G04G17/02—Component assemblies
- G04G17/04—Mounting of electronic components
- G04G17/045—Mounting of the display
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
- G06F1/1613—Constructional details or arrangements for portable computers
- G06F1/163—Wearable computers, e.g. on a belt
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44C—PERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
- A44C5/00—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
- A44C5/14—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps characterised by the way of fastening to a wrist-watch or the like
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- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
- G03B—APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
- G03B17/00—Details of cameras or camera bodies; Accessories therefor
- G03B17/56—Accessories
- G03B17/561—Support related camera accessories
-
- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B37/00—Cases
- G04B37/14—Suspending devices, supports or stands for time-pieces insofar as they form part of the case
- G04B37/1486—Arrangements for fixing to a bracelet
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
Definitions
- the present application relates to the technical field of electronic devices, and in particular to a wearable device and a wearable system.
- the watch body and the strap of the wearable device are connected by a rotating shaft, and the watch body can rotate relative to the watch band within the horizontal plane where the watch body is located. In this way, the playability and scene applicability of the watch body are limited, and there are still relatively large restrictions on the watch answering calls, taking pictures and other scenes.
- Embodiments of the present application provide a wearable device and a wearable system.
- the wearable device can be rotated in multiple directions, has strong adaptability to multiple scenes, and can meet users' requirements for video calls, photos, and music.
- Embodiments of the present application provide a wearable device on the one hand, which may include: a device body; a wrist rest for carrying the device body; a shaft assembly, the shaft assembly includes a horizontal shaft and a vertical shaft, and the horizontal shaft The two ends are rotatably connected with the first end of the device body, so that the device body can turn around the horizontal shaft; at least one end of the vertical shaft is connected with the first end of the wrist rest and the horizontal shaft At least one of them is rotationally connected so that the main body of the device can rotate around the vertical shaft; a locking assembly, and when the locking assembly is in a locked state, the locking assembly connects the rotating shaft assembly with the The main body of the device is either locked with the wrist rest, or the locking assembly locks and connects the vertical shaft with the horizontal shaft, so that the first end of the main body of the device is locked with the wrist rest connected to the first end, and when the locking assembly is in the unlocked state, the rotating shaft assembly is disassembled from the device main body or from the wrist rest, or the horizontal rotating
- the wearable device provided by the embodiment of the present application is provided with a rotating shaft assembly, and the rotating shaft assembly includes a horizontal rotating shaft and a vertical rotating shaft, so that the main body of the device can rotate around both the horizontal rotating shaft and the vertical rotating shaft, so that the wearable device can be improved. playability and mechanics.
- the main body of the device and the wrist rest can be detachably connected, so that when in use, the main body of the device can be detached from the wrist rest, so that the main body of the device and the wrist rest can be completely separated, which can improve the multi-scenario adaptability .
- the horizontal rotating shaft includes: a rotating shaft bracket and two rotating components respectively located at two ends of the rotating shaft bracket; both ends of the rotating shaft bracket are provided with cavity structures for accommodating the rotating components ; One end of the rotating assembly is located in the cavity structure, and the other end is connected to the main body of the device.
- the horizontal rotating shaft is configured to include a rotating shaft bracket and a rotating assembly, and the rotating assembly is hidden in the rotating shaft bracket, thereby protecting the rotating shaft assembly and prolonging the service life of the wearable device.
- each of the rotating components includes a friction shaft and a friction plate; the friction plate is sleeved on the friction shaft and is rotatably connected with the friction shaft, and the friction plate and The rotating shaft support is fixedly connected; the first end of the friction shaft is connected to the rotating shaft support in rotation, and the second end of the friction shaft is connected to the main body of the device.
- the rotating assembly By arranging the rotating assembly as a structure including a friction shaft and a friction plate, the rotating assembly can be fixed on the rotating shaft support through the friction plate, and the rotating assembly can be rotated relative to the rotating shaft support through the friction shaft, so that the device of the wearable device
- the main body can be flipped around the horizontal rotating shaft; in addition, the structure of the friction shaft and the friction plate is simple, which is beneficial to reduce the cost.
- a rotator is provided at the second end of each of the friction shafts, one end of the rotator is connected to the friction shaft, and the other end of the rotator is connected to the main body of the device .
- the device body and the friction shaft can be fixedly connected through the rotor, and when the device body is turned over, the friction shaft can be driven to rotate together by the rotor , so that the main body of the device can be flipped vertically relative to the wrist rest.
- the rotor only one rotor needs to be replaced after the rotor fails, and the entire friction shaft does not need to be replaced, thereby reducing the maintenance cost.
- each of the rotating assemblies further includes: a limiter, the limiter is sleeved on the friction shaft, the limiter is in contact with the friction plate, and The limiter is located on the side of the friction plate close to the second end of the friction shaft; the limiter is used to limit the rotation angle of the friction shaft relative to the vertical flip of the friction plate.
- the friction plate can be packaged in the shaft bracket, so as to prevent the loosening of the friction plate; and the limiter can also control the rotation angle of the friction shaft, so as to prevent the main body of the equipment from rotating at will, which makes it difficult to adjust during installation. bit, thereby wasting installation time.
- the bottom end of the vertical shaft is rotatably connected to the first end of the wrist rest, and the bottom end of the horizontal shaft is sleeved on the top end of the vertical shaft; when the When the locking assembly is in the locked state, the horizontal shaft is locked and connected with the top end of the vertical shaft, so that the first end of the device main body is connected with the first end of the wrist rest; when the lock When the joint assembly is in the unlocked state, the horizontal rotating shaft is disassembled from the vertical rotating shaft, so that the first end of the device main body is separated from the first end of the wrist rest.
- the main body of the device By connecting the bottom end of the vertical shaft to the first end of the wrist rest, and sleeve the bottom end of the horizontal shaft on the top of the vertical shaft, since the horizontal shaft is fixedly connected to the main body of the device, the main body of the device can be rotated to The vertical shaft rotates relative to the wrist rest, so that the main body of the device can rotate around the vertical shaft.
- the setting rotating shaft and the horizontal rotating shaft can be separated or connected, so that the device main body is separated from the wrist rest or the device main body is fixedly connected with the wrist rest.
- the top end of the vertical shaft has a slide rail bracket
- the bottom end of the shaft bracket of the horizontal shaft has an assembly cavity into which the slide rail bracket can extend vertically;
- the locking assembly is used to lock and connect the slide rail bracket with the inner wall of the assembly cavity;
- the horizontal shaft rotates around
- the vertical rotating shaft is rotated to the second position, the locking assembly is in an unlocked state, so that the horizontal rotating shaft can be detached from the slide rail bracket.
- the slide rail support By arranging the slide rail support on the vertical shaft, and setting the assembly cavity at the bottom of the shaft support of the horizontal shaft, when the slide rail support is located in the assembly cavity, the horizontal shaft and the vertical shaft are fixedly connected, and when the slide rail support is removed from the assembly cavity When sliding out, the horizontal shaft and the vertical shaft are separated, so the horizontal shaft and the vertical shaft can be detachably connected by setting the slide rail bracket and the assembly cavity, so that the device main body and the wrist rest can be detachably connected.
- the bottom end of the vertical shaft is provided with a Z-axis support
- the Z-axis support is provided at the first end of the wrist rest
- the Z-axis support is connected to the vertical
- the rotating shaft is connected in rotation.
- a Z-axis bracket is provided at the first end of the wrist rest to provide a mounting position for the vertical rotation axis.
- the lock assembly includes at least one first lock assembly, at least part of the first lock assembly is located in the slide rail bracket; and the first lock assembly uses When the horizontal rotating shaft is at the first position, the sliding rail bracket is locked and connected with the inner wall of the assembly cavity, and when the horizontal rotating shaft rotates to the second position, the first The lock assembly is in an unlocked state.
- each of the first locking components includes: a telescopic buckle and a first inner groove matched with the telescopic buckle, the first inner groove is located on the inner wall of the assembly cavity Above; the telescopic buckle is telescopically connected to the slide rail bracket, one end of the telescopic buckle is located in the slide rail bracket, the other end of the telescopic buckle has a buckle part, and the buckle part The slide rail bracket can be extended; the slide rail bracket is locked and connected to the inner wall of the assembly cavity through the buckle part and the first inner groove.
- the rotating shaft bracket and the slide rail bracket can be locked and connected, and then the device main body and the wrist rest are locked and connected;
- the hinge bracket and the slide rail bracket are in an unlocked state, so that the device main body and the wrist rest are separated.
- the connection between the rotating shaft bracket and the slide rail bracket can be strengthened, so that the device will not be damaged when a large external force is received.
- the main body and the wrist rest are separated, thereby ensuring the stability of the connection between the device main body and the wrist rest.
- one end of the telescopic buckle is provided with a first driving part, and one end of the first driving part is located outside the slide rail bracket, and the first driving part is used for
- the telescopic buckle is driven to move horizontally, so as to drive the buckle part of the telescopic buckle to disengage from the first inner groove, so that the first lock The assembly is unlocked.
- the telescopic movement of the first driving part is converted into the telescopic movement of the telescopic buckle, so that the buckle part is disengaged from the first inner groove, so that the direct driving of the buckle part can be avoided, and the driving buckle can be reduced.
- the difficulty of buckle is the case in which the telescopic movement of the first driving part is converted into the telescopic movement of the telescopic buckle, so that the buckle part is disengaged from the first inner groove, so that the direct driving of the buckle part can be avoided, and the driving buckle can be reduced.
- the Z-axis bracket has a rotation hole for the rotation of the vertical shaft, the Z-axis bracket is provided with a sinking groove around the circumference of the rotation hole, and the first A driving part is located at the sinking groove, and the sinking groove is a flat groove, and a part of the groove wall of the flat groove is used to rotate toward the first position when the horizontal rotating shaft rotates to the second position.
- the driving part exerts force, so that the first driving part drives the telescopic buckle to move.
- the rotation of the vertical shaft can be facilitated by setting the rotating hole, and a sinking groove is provided in the circumferential direction of the rotating hole to provide a setting space for the first driving part, so that the first driving part is concealed on the Z-axis support; by placing the lower The sinker is set as a flat groove, so that when the vertical shaft is rotated, the first driving part can shrink inwardly under the extrusion of part of the groove wall of the flat groove, so that the buckle part of the telescopic buckle can be pulled out of the first inner groove.
- the device body can be separated from the wrist rest; in addition, by setting the sinking groove as a flat groove, the diameters of different positions of the sinking groove are different, so that the diameter is deformed At the same time, the inner wall of the flat groove can give the first driving part an inward thrust, and then the first driving part drives the telescopic buckle and the buckle part inward, so that the buckle part is separated from the first inner groove .
- each of the first locking components further includes: a rotating shaft jacking block, one end of the rotating shaft jacking block fits with the telescopic buckle, and the other end of the rotating shaft jacking block has a first Two driving parts, the second driving part is used to drive the top block of the rotating shaft to move upward when the horizontal rotating shaft rotates to the second position, so as to drive the telescopic buckle to move horizontally, so that the The buckle portion of the telescopic buckle is disengaged from the first inner slot.
- the Z-axis bracket has a rotation hole for the rotation of the vertical shaft, the Z-axis bracket is provided with a sinking groove around the circumference of the rotation hole, and the first The two driving parts are located at the sinking tank, and the sinking tank is a circular tank; and a part of the bottom of the circular tank has a tapered step, and the tapered step is used to rotate on the horizontal rotation axis.
- the second driving part is driven to move upward, so that the telescopic buckle moves horizontally.
- a conical step is provided in the sinking groove, so that when the horizontal rotating shaft rotates to the second position, the second driving part can move upward under the action of the conical step, thereby causing the telescopic buckle to move horizontally.
- one end of the telescopic buckle has a third inclined surface
- the top block of the rotating shaft has a fourth inclined surface matched with the third inclined surface, and the fourth inclined surface is used for When the rotating shaft top block moves upward, a force is applied to the third inclined surface, so that the telescopic buckle moves horizontally.
- the vertical movement of the top block of the rotating shaft is transformed into the horizontal movement of the telescopic buckle, so that the lock assembly is in an unlocked state.
- the manner of fitting the inclined plane will make the structure of the locking assembly simpler, thereby reducing the cost.
- each of the first locking components further includes: a first slide rail spring, the first slide rail spring is located in the slide rail bracket, and the first slide rail spring One end of the first slide rail spring is in contact with the inner wall of the slide rail bracket.
- the telescopic buckle can automatically rebound after being compressed, so as to facilitate the repeated plugging and unplugging of the main body of the device and the wrist rest, and prevent the telescopic buckle from being stuck in the slide rail bracket, ensuring the wearable device. Normal use.
- the number of the first locking components is two, and the two first locking components are arranged in the slide rail bracket close to the vertical shaft, and the The two first locking components are arranged symmetrically with respect to the center of the vertical rotating shaft.
- the locking strength can be improved, so as to ensure that the device main body and the wrist rest can be stably connected in the locked state and prevent accidental falling off.
- the two first locking components symmetrically relative to the center of the vertical shaft, it can be ensured that the locking force of the locking components on both sides of the vertical shaft is the same, so when the entire device body is plugged in, the device body and The vertical shafts are plugged in and out vertically, which reduces the wear on the locking components and prevents jamming when plugging in and out.
- the lock assembly further includes: at least one second lock assembly, and the second lock assembly is used to connect the slide rail bracket to the assembly cavity of the horizontal shaft. Elastic lock between them.
- connection between the device main body and the wrist rest can be further strengthened by providing the second locking component, which can further prevent the device main body from accidentally falling off from the wrist rest, and can improve the feel of plugging and unplugging.
- each of the second locking components includes an elastic top block and a second inner groove matched with the elastic top block, and the second inner groove is located on the inner wall of the assembly cavity , at least part of the elastic top block is located in the slide rail bracket and close to the end of the slide rail bracket; and the elastic top block and the assembly cavity are connected between the end of the slide rail bracket and the The second inner groove is engaged to perform elastic locking.
- each of the second locking components includes a second slide rail spring, the second slide rail spring is located in the slide rail bracket, and one end of the second slide rail spring Connected with the elastic top block, the other end of the second slide rail spring abuts against the inner wall of the slide rail bracket.
- the second locking assembly can be used repeatedly, and the structure of the elastic top block and the second slide rail spring is simple, which can reduce the cost of the entire wearable device.
- positioning protrusions are provided on two opposite sides of the slide rail bracket, and positioning grooves that cooperate with the positioning protrusions are provided on the inner wall of the assembly cavity.
- the shaft support of the horizontal shaft can only slide down along the direction of the positioning protrusions, thereby preventing installation failure caused by misalignment; and, when plugging and unplugging There will be no lagging phenomenon.
- the bottom end of the vertical shaft is rotationally connected with the first end of the wrist rest, and the bottom end of the horizontal shaft is slidingly connected with the top end of the vertical shaft;
- the lock The locking assembly is used to lock and connect the horizontal rotating shaft and the vertical rotating shaft in the horizontal direction, so as to prevent the horizontal rotating shaft from sliding on the vertical rotating shaft; and when the locking assembly is in an unlocked state, The horizontal shaft can slide out from the vertical shaft.
- the top end of the vertical shaft has a slide rail bracket
- the bottom end of the shaft bracket of the horizontal shaft has a slide rail groove for the slide rail bracket to slide horizontally into;
- the locking assembly By arranging the locking assembly, locking the slide rail frame and the horizontal shaft when the device body is in the first position, and unlocking the slide rail frame and the horizontal shaft when the device body is in the second position, so that the device body can only rotate
- the wrist rest can only be separated from the wrist rest at a specific position, so that the problem of accidental separation of the device body and the wrist rest at positions other than the second position can be avoided, thereby preventing damage caused by accidental falling off of the device body.
- the locking assembly includes a locking spring block and a slot matched with the locking spring block, the slot hole is set on the shaft support of the horizontal shaft, and the lock
- the tight elastic block is arranged on the slide rail frame, and one end of the locking elastic block is telescopically arranged on the top end surface of the slide rail frame; the horizontal rotating shaft and the slide rail frame are locked by the locking
- the spring block is locked and connected with the slot hole in the horizontal direction, and when the locking spring block moves out of the slot hole, the horizontal shaft and the slide rail frame are unlocked in the horizontal direction state.
- the locking spring block and the slot hole By setting the locking spring block and the slot hole matched with the locking spring block, when the locking spring block engages with the slot hole, it can prevent the shaft support from sliding relative to the slide rail frame along the horizontal shaft axis, so that the equipment The main body and the wrist rest are in a locked state. When the locking bullet is out of the slot, the hinge bracket and the slide rail frame are in an unlocked state. At this time, the main body of the device can be separated from the wrist rest.
- the locking assembly further includes: an unlocking structure, and the unlocking structure is used to drive the lock when the device body moves toward the second position around the horizontal rotation axis. The tight bullet moves out from the slotted hole.
- the unlocking structure can drive the locking spring to move out of the slot, so that there is no need to separately set up an unlocking structure that requires manual operation, thereby simplifying the structure of the entire locking assembly, thereby simplifying Structure of wearable devices.
- the unlocking structure includes: a rotating shaft pressing arm and a rotating shaft cam, both ends of the rotating shaft cam are respectively connected to the horizontal rotating shaft, and the middle part of the rotating shaft cam is located between the rotating shaft pressing arm above; one end of the rotating shaft pressing arm faces the rotating shaft cam, and the other end of the rotating shaft pressing arm is located in the slot; the rotating shaft pressing arm is used to move downwards driven by the rotating shaft cam to drive the The locking spring block is moved out from the slot.
- the unlocking structure further includes: a rotating shaft spring, the rotating shaft spring is arranged on the rotating shaft bracket of the horizontal rotating shaft, and one end of the rotating shaft spring is connected to the rotating shaft pressing arm.
- the pressing arm of the rotating shaft can automatically rebound after being compressed, so as not to affect the next use.
- the locking assembly further includes: a third slide rail spring, the third slide rail spring is located in the slide rail frame, and one end of the third slide rail spring is connected to the The above-mentioned locking spring block is connected.
- the locking elastic block can automatically rebound after being compressed, so as not to affect the next use.
- it also includes: a slide rail cover plate, the slide rail cover plate is covered on the locking spring block and connected with the slide rail frame, and the slide rail cover plate is opened A hole through which one end of the locking bullet can protrude.
- the locking elastic block is restricted in the slide rail frame, thereby preventing the locking elastic block from falling off, thereby affecting the normal use of the wearable device.
- limit protrusions are provided on both sides of the slide rail frame along the sliding direction of the slide rail frame.
- the limit slot of the horizontal rotating shaft and the slide rail frame are limited in the vertical direction through the cooperation of the limit protrusion and the limit slot.
- the rotating shaft assembly further includes: a Z-axis frame, the Z-axis is erected on the first end of the wrist rest, and the Z-axis frame is connected to the bottom end of the vertical rotating shaft Spin connected.
- the vertical shaft can be conveniently fixed on the wrist rest by setting the Z-axis bracket, and the purpose that the main body of the device can rotate around the vertical shaft can be achieved by connecting the Z-axis bracket to the vertical shaft in rotation.
- the locking assembly includes: a locking sinker and a locking protrusion, one of the locking sinker and the locking protrusion is arranged on the wrist rest , the other of the locking sinker and the locking protrusion is arranged at the bottom end of the vertical shaft; the vertical shaft and the wrist rest are connected to the lock through the locking sinker
- the locking protrusion cooperates to realize locking and connecting.
- the wearable device provided in the embodiment of the present application can separate the device main body from the wrist rest by providing a locking sink and a locking protrusion.
- the main body of the device can be pulled out from the wrist rest so that the main body of the device and the wrist rest can be completely separated, which can improve the multi-scenario adaptability.
- the detachable connection between the locking sinker and the locking protrusion is achieved through a push-pull manner, which is easy to operate and saves learning time for users.
- the bottom end of the vertical shaft is provided with a first base, and the bottom end of the vertical shaft is fixedly arranged in the first base; the first base is provided with the The locking sink or the locking protrusion.
- the locking sinker is located on the wrist rest, and the locking protrusion is located on an end of the first base close to the wrist rest; One side is provided with an opening of the locking sinker for the locking protrusion to slide horizontally into the locking sinker.
- the opening of the locking sinker is toward the second end of the wrist rest, so that the locking protrusion extends from the second end to the first end of the wrist rest along the Sliding horizontally into the locking sinker in the direction of.
- the opening of the locking sinkhole is arranged towards the second end of the wrist rest, so that the device main body can slide along the direction of the line connecting the first end and the second end of the wrist rest.
- the wrist rest has a third end and a fourth end opposite to each other, and the third end and the fourth end are located between the first end and the second end of the wrist rest
- the opening of the locking sinker is towards the third end, so that the locking protrusion slides horizontally into the locking sinker along the direction extending from the third end to the fourth end of the wrist rest or, the opening of the lock sinker is towards the fourth end, so that the lock protrusion slides horizontally into the lock along the direction extending from the fourth end to the third end of the wrist rest Sink.
- the main body of the device by setting the opening of the locking sinkhole toward the third end or the fourth end of the wrist rest, the main body of the device can be positioned along the line connecting the third end and the fourth end of the wrist rest.
- Direction slide by setting the opening of the locking sinkhole toward the third end or the fourth end of the wrist rest, the main body of the device can be positioned along the line connecting the third end and the fourth end of the wrist rest.
- the top end of the locking sinker has a rib, and when the locking protrusion is located in the locking sinker, the rib is on the axis of the vertical shaft. upwardly lock the locking projection into the locking sinker, so that one end of the vertical rotating shaft is connected with the first end of the wrist rest.
- the wearable device provided by the embodiment of the present application can limit the locking protrusion by setting a rib at the top of the locking sinker, so as to ensure the stability of the connection between the device body and the wrist rest, and prevent the device body from falling from the wrist rest. Accidentally fell off.
- the first base has a first opening through which one end of the vertical shaft can pass; the bottom end of the vertical shaft has a first boss, and the first A top inner wall of the opening has a first protruding edge that blocks each other with the first boss.
- the bottom end of the vertical shaft has a first boss, and then a first convex edge is provided on the inner wall of the first opening, so that the vertical shaft is fixedly connected to the first base.
- a first through hole for accommodating the vertical shaft part is provided in the rotating shaft bracket;
- the rotating shaft assembly further includes: a first moving cam, and the first moving cam sleeve
- the first movable cam is located in the first through hole and is fixedly connected with the first through hole;
- the first base has The first extension part protruding into the first through hole, the first movable cam abuts on the first extension part, the first opening extends to the top end surface of the first extension part, the The first protruding edge is located on the first extension part;
- the first moving cam face is set as a rough first concave-convex surface facing the first extension part, and the first extension part faces the first moving part
- One side of the cam is set as a second concave-convex surface that cooperates with the concave-convex portion of the first concave-convex surface, and an arc-shaped transition surface is provided between the convex portion and the concave portion of the first concave-convex
- the lock assembly further includes at least one stopper assembly, the stopper assembly is telescopically arranged on the wrist rest, and the at least one stopper assembly is located on the lock At least one side of the sinking groove; at least one side of the wrist rest is provided with a mounting groove for installing the stopper assembly, and each of the mounting grooves is provided with a The second opening connected with the locking sinker; the first end of the stopper component passes through the second opening and extends into the locking sinker, and the second end of the stopper component is fixed in the mounting slot.
- the stopper assembly includes a top cover plate, a baffle, a first elastic member and a stopper, wherein the baffle is fixed in the installation groove; the stopper The first end of the stopper passes through the second opening and extends into the locking sinker, the second end of the stopper is sleeved on the first elastic member; the first elastic member One end is sleeved on the second end of the stopper located in the installation groove, the other end of the first elastic member is against the baffle plate; the top cover plate is located at the top end of the installation groove , and fixed on the wrist rest.
- the first end of the stopper is a hemispherical protrusion
- the locking protrusion is provided with an engaging groove that cooperates with the hemispherical protrusion; the hemispherical When the hemispherical protrusion slides into the locking groove, the locking component is in the locked state; when the hemispherical protrusion slides out of the locking groove, the locking component is in the unlocked state .
- the stop member is provided with an outwardly protruding stop portion, and the stop portion is located in the installation groove and abuts against a side wall of the installation groove.
- the locking assembly further includes: at least one pressing block button, the pressing block button is telescopically arranged on the side of the wrist rest facing the horizontal rotating shaft;
- the pressing block button moves down and the bottom end of the pressing block button presses on the stopper assembly, so as to prevent the stopper assembly from moving away from the lock The sinker moves;
- the horizontal rotating shaft rotates to move away from the pressing block button, the pressing block button moves up and the top of the pressing block button is on the side facing the horizontal rotating shaft from the wrist rest stick out.
- the device body of the wearable device can be rotated to a specific position before it can be separated from the wrist rest, which can prevent the device body and wrist rest from falling off accidentally, and increase the connection stability between the wrist rest and the device body.
- the bottom end of the pressure block button has a wedge-shaped surface
- the stopper assembly has a wedge-shaped groove into which the bottom end of the pressure block button can extend, and there is a wedge-shaped groove in the wedge-shaped groove.
- an inclined surface cooperating with the wedge-shaped surface the wedge-shaped surface is used to cooperate with the inclined surface when the pressure block button moves down, so that the stopper assembly moves toward the locking sinker; the The inclined surface is used for cooperating with the wedge-shaped surface when the stop assembly moves away from the locking sinker, so that the pressing block button moves upward.
- the top of the pressure block button has a first guide surface and a second guide surface that are inclined; the first guide surface is used to guiding the horizontal rotating shaft to rotate onto the pressing block button; the second guide surface is used to guide the horizontal rotating shaft rotating onto the pressing block button when the horizontal rotating shaft rotates in a second direction; One of the first direction and the second direction is counterclockwise, and the other is clockwise.
- an inclined first guide surface and a second guide surface are provided on the top of the pressure block button, so that when the main body of the device is rotated, the shaft support can be rotated onto the pressure block button, Furthermore, the stopper assembly locks the locking projection into the locking sinker.
- the number of the pressing block buttons is two
- the number of the stopper assemblies is two
- the two stopper assemblies are respectively located on both sides of the locking sinker
- each of the pressing block buttons is correspondingly provided with one of the stopper components.
- the locking force can be strengthened, thereby prolonging the service life of the stop components and the pressing block buttons.
- the locking assembly further includes: a toggle button, the first end of the toggle button is located outside the first end of the wrist rest, and the second end of the toggle button Located in the first end of the wrist rest; and the second end of the toggle button has a lever, and the locking protrusion is provided with a hole; one end of the lever is on the toggle button When it is toggled, it extends into the locking sinker and is inserted into the card hole to prevent the locking protrusion from moving out of the locking sinker, and when the toggle button is reversely toggled Remove the card hole.
- the wearable device provided by the embodiment of the present application can conveniently lock the locking protrusion with the locking sink by setting the toggle button in the locking component, and by setting the locking hole on the locking protrusion, the toggle A lever is arranged on the second end of the button, so that when the lever is located in the hole, the locking protrusion is fixedly connected with the locking sinker, so that the main body of the device and the wrist rest are fixedly connected.
- the locking protrusion and the locking sink are separated to separate the device body from the wrist rest.
- This way of setting the toggle button to control the locking and separation between the device main body and the wrist rest is not only convenient for separation, but also firm in locking.
- the first end of the wrist rest has a sliding space where the second end of the toggle button can slide; and two opposite side walls in the sliding space are provided with The first magnet and the second magnet, the second end of the toggle button is located between the first magnet and the second magnet; when the toggle button is toggled to the second end of the toggle button When the end is attracted to the first magnet, one end of the clamping rod is inserted into the clamping hole; when the toggle button is toggled to the second end of the toggle button and the second When the magnets attract each other, one end of the locking rod exits the locking sinker.
- the strength of the toggle can be reduced, thereby improving the sensitivity of the toggle switch.
- the lock assembly further includes: a lock switch, the lock switch is arranged on the wrist rest; the lock switch is used to lock the first base on the In the locking sinker, and when the locking switch is pressed, the locking of the first base is released.
- the first end of the lock switch is fixed in the wrist rest, and the second end of the lock switch is suspended in the lock sinker and is used to lock the
- the first base is locked in the locking sink;
- the locking switch is provided with a trigger button, the trigger button is located between the first end and the second end of the locking switch, and the trigger button One end protrudes outward from the wrist rest; when the trigger button is pressed, the second end of the lock switch unlocks the first base.
- the first base is provided with a hook groove
- the second end of the lock switch has a hook matched with the hook groove; the lock switch passes through the hook groove Cooperate with the hook to lock the first base in the locking sinker.
- a relief space is provided at a position close to the hook groove on the first base, and the relief space communicates with the hook groove.
- the wearable device provided by the embodiment of the present application is provided with a lock switch, and the device body and the wrist rest can be separated only by pressing the switch, which is easy to operate.
- the temperature of the first base and the lock switch can be connected to prevent the main body of the device from slipping off from the wrist rest. Support separation.
- the lock assembly further includes: at least one push switch, the first end of the push switch is located on the outside of the wrist rest, and the second end of the press switch is located on the outside of the lock.
- the locking protrusion is telescopically arranged on the first base, and a step matching the locking protrusion is provided in the locking sinking groove, and the first base and the locking protrusion
- the locking sinkers are locked and connected at the step by the locking protrusion; when the push switch is pressed, the second end of the push switch drives the locking protrusion to move away
- the steps enable the first base and the locking sink to be in an unlocked state.
- the wearable device provided by the embodiment of the present application can directly separate the device body from the wrist rest by setting the push switch, and the device body can be disassembled without rotating the device body to a specific angle, which is more convenient and quick to disassemble.
- an end of the locking protrusion facing the push switch has a first inclined surface
- the push switch has a second inclined surface matched with the first inclined surface
- the first inclined surface and the second inclined surface By setting the first inclined surface and the second inclined surface, so that when the push switch is pressed, the first inclined surface and the second inclined surface can move relatively, and then the push switch is pressed inwardly toward the locking protrusion, Furthermore, the locking protrusion and the locking sinker are in an unlocked state, thereby separating the device main body from the wrist rest.
- a first pressing spring is provided in the first base, one end of the first pressing spring is fixed in the first base, and the other end of the first pressing spring is connected to the One end of the locking protrusion is connected.
- the locking protrusion By setting the first pressing spring, the locking protrusion can be stretched relative to the first base, so that the locking protrusion and the locking sinker can be in a locked state or an unlocked state.
- a second pressing spring is provided inside the wrist rest, and the second pressing spring is sleeved on the pressing switch, and the pressing switch is telescopically arranged on the at the first end of the wrist rest.
- the pressing switch By setting the second pressing spring, the pressing switch can be stretched relative to the wrist rest, so that after the locking protrusion and the locking sinker are locked, the pressing switch can automatically rebound to the initial position.
- there are two locking protrusions and the two locking protrusions are located on both sides of the first base, and there are two push switches, and the two locking protrusions are located on both sides of the first base.
- the two push switches are respectively located on both sides of the wrist rest, and each of the push switches corresponds to one of the locking protrusions.
- both positions of the device main body and the wrist rest can be locked, thereby increasing the connection stability between the device main body and the wrist rest.
- the two push switches are respectively set on both sides of the wrist rest, so that the engaging force between the wrist rest and the main body of the device can be distributed on both sides of the wrist rest, so that both sides of the wrist rest are in a balanced state to prevent one end of the main body of the device from slipping
- the connection between the main body of the device and the wrist rest is not stable.
- the locking assembly further includes: a toggle switch, the toggle switch includes an operating end and a locking end, the operating end is located outside the wrist rest, and the locking end Located in the locking sink; the engaging end is used to lock the first base in the locking sink; the operating end is used to drive the engaging end to snap into the locking sink when pushed. on or off the first base.
- the wearable device provided in the embodiment of the present application is equipped with a toggle switch, and the device body and the wrist rest can be disassembled or locked by turning the toggle switch back and forth.
- the operation is convenient, the structure is simple, and the connection is relatively stable when engaged. .
- the first base has a female buckle
- the engaging end of the toggle switch has a male buckle that cooperates with the female buckle
- the first base can be locked on the wrist rest by using the buckle of the male buckle and the female buckle, so that the main body of the device is fixedly connected with the wrist rest, and the structure of the male buckle and the female buckle is simple and effective. It is beneficial to simplify the structure of the toggle switch, thereby reducing the cost.
- the locking sinker is located on the first base, and the locking protrusion is located on the wrist rest; at least one side of the locking sinker is provided for The locking projection horizontally slides into the opening of the locking sinker.
- one of the locking protrusion and the locking sinker has a locking protrusion
- the other of the locking protrusion and the locking sinker has a As for the locking position, the locking protrusion and the locking sinker are locked and connected through the locking protrusion and the locking position.
- the wearable device provided by the embodiment of the present application can be configured by providing a locking protrusion on one of the locking protrusion and the locking sink, and setting a locking position on the other of the locking protrusion and the locking sink.
- the locking protrusion and the locking position realize the locked connection between the first base and the wrist rest.
- the locking protrusion and the locking position are directly arranged on the locking protrusion and the locking sinker, the locking connection between the wrist rest and the first base can be realized without setting other parts, the structure is simple, and the assembly and disassembly are convenient.
- the main body of the device can be slid in from either side for easier disassembly and assembly.
- one of the locking sinker and the locking protrusion is provided with a notch, and one of the locking sinker and the locking protrusion is provided with a gap. There is a stop that cooperates with the notch.
- the notch and the stopper can prevent the locking protrusion from sliding out from one side of the locking sinker, so as to prevent the main body of the device from falling off accidentally.
- the locking sinker is located on the wrist rest, and the locking protrusion is located on an end of the first base close to the wrist rest; and the locking sinker The top end has a notch for the locking protrusion to slide vertically into the locking sinker.
- the locking assembly further includes: a locking button, which is telescopically or slidably arranged on the wrist rest; and one end of the locking button is located on the The outer side of the first end of the wrist rest, the other end of the locking button is located in the locking sinker and is used for snapping and connecting with the locking protrusion.
- the wearable device provided by the embodiment of the present application is provided with a locking button, which can be pressed to unlock the locking protrusion and the locking sinker, thereby separating the wrist rest from the main body of the device, which is easy to operate.
- one end of the locking button located in the locking sinker has a first hook, and the first hook is used for extending the locking protrusion into the Engaging with the locking protrusion when locking in the sinking groove, and being used to move when the locking button is pressed or slid, so that the first hook is released from the locking protrusion combine.
- the locking button and the locking protrusion can be engaged, and then the locking protrusion can be locked in the locking sinker, so that the main body of the device can be fixed on the wrist rest, preventing the main body of the device from being released from the wrist rest. slip on and off.
- a first telescopic member is provided inside the locking sinker, one end of the first telescopic member is connected to the inner wall of the locking sinker, and the other end of the first telescopic member One end is connected with the locking button, so that the locking button can be telescopically arranged on the wrist rest.
- the locking button By setting the first retractable part, the locking button can be stretched relative to the wrist rest, so that after the wrist rest and the main body of the device are unlocked, the locking button can automatically rebound for repeated use.
- At least one second telescopic member is provided in the locking sinker, and an abutting member for abutting against the second telescopic member is provided on the first base;
- the second telescopic piece is used to be compressed by the abutment when the locking protrusion is engaged with the first hook, and to drive the abutment towards the The notch moves.
- the second telescopic part By setting the second telescopic part, it is convenient to give an upward elastic force to the device main body when separating the device main body and the wrist rest to facilitate disassembly; when connecting the device main body and the wrist rest, it also gives an upward elastic force to the device main body to facilitate installation feel.
- one end of the locking button located in the locking sinker groove further has a second hook
- the locking sinker has a locking platform that cooperates with the second hook
- the closure assembly further includes: a first magnetic part and a second magnetic part, one of the first magnetic part and the second magnetic part is arranged in the wrist rest, The other of the first magnetic part and the second magnetic part is arranged on the vertical rotating shaft or in a first base provided at the bottom end of the vertical rotating shaft.
- the wearable device provided by the embodiment of this application can realize the fixed connection between the device main body and the wrist rest through the attractive force between the first magnetic part and the second magnetic part by setting the first magnetic part and the second magnetic part, so as to prevent the device from The main body comes off the wrist rest.
- the structure of the first magnetic part and the second magnetic part is simple and convenient to arrange, which can simplify the structure of the wrist rest and the main body of the device, thereby saving costs.
- At least one elastic arm is provided on the first base, one end of the elastic arm is connected to the first base, and the other end of the elastic arm is a free end,
- the locking protrusion is arranged on the free end of the elastic force arm; the locking sinker is provided with a concave part engaged with the locking protrusion.
- the wearable device provided by the embodiment of the present application can increase the locking force between the locking protrusion and the locking sink by setting the elastic force arm, thereby preventing accidental fall-off between the main body of the device and the wrist rest, and improving the ease of disassembly and assembly. feel.
- the elastic arm and the first base form an integral structure.
- At least one elastic force arm is provided in the locking sinker, and one end of the elastic force arm is connected to the inner wall of the locking sinker, and the other end of the elastic force arm One end is a free end; and the free end of the elastic force arm has a protrusion; the locking protrusion is provided with a slot for engaging with the protrusion.
- the number of the elastic moment arms is two, and the two elastic moment arms are arranged opposite to each other.
- the locking force between the elastic arms and the locking protrusion can be increased, thereby improving the stability of the connection between the device main body and the wrist rest, so as to prevent the device main body from accidentally falling off from the wrist rest.
- the two elastic force arms are connected and form an integrated structure.
- the locking assembly further includes: an elastic clip, the engaging end of the elastic clip is located in the locking sinker, and the locking protrusion is provided with a The recess where the engaging end of the elastic clip is engaged.
- the wearable device provided by the embodiment of the present application can also increase the engagement force between the locking sinker and the locking protrusion by setting the elastic piece, thereby improving the connection stability between the device body and the wrist rest, so as to prevent the device body from falling from the wrist The holder accidentally fell off.
- the locking assembly includes: a chute, a sliding block and a shrapnel, the sliding block is connected to one end of the friction shaft of the rotating assembly, and the main body of the device corresponds to the sliding block
- the position of the chute is set; the shrapnel is arranged on one of the chute and the slider, and the shrapnel is used to hold the slide when the slider slides into the chute.
- the block is locked in the chute, so that the two ends of the horizontal shaft are locked and connected with the first end of the device main body; and when the slider is disengaged from the chute, the device The first end of the main body is detached from the two ends of the horizontal shaft.
- the elastic pieces are provided on two sides of the slider facing the chute, and the slider and the friction shaft form an integral structure.
- the slider is provided with a first groove capable of accommodating the elastic piece, and the two first grooves are oppositely arranged on both sides of the slider, and the elastic piece is arranged on In the first groove; wherein, the elastic piece includes a top elastic piece and a bottom elastic piece, the top elastic piece and the bottom elastic piece are arranged oppositely, and are fixed in the slider by a first connecting piece; the top elastic piece and the bottom elastic sheet are provided with arc-shaped protrusions, and the chute is provided with arc-shaped grooves; when the arc-shaped protrusions slide into the arc-shaped grooves, the locking components are locked state; when the arc-shaped protrusion slides out of the arc-shaped groove, the lock assembly is in an unlocked state.
- the rotating shaft assembly further includes: a second base, the second base is fixed on the first end of the wrist rest, and the second base has a support for the vertical rotating shaft and the bottom end of the vertical shaft has a second boss, and the top inner wall of the third opening has a second convex edge that blocks each other with the second boss , the second boss is in contact with the second convex edge, so that the bottom end of the vertical shaft is fixed in the second base.
- a second through hole for partially accommodating the vertical shaft is provided in the rotating shaft bracket;
- the rotating shaft assembly further includes: a second moving cam, the second moving cam Sleeved on the vertical shaft and located in the second through hole;
- the second movable cam is rotatably connected with the vertical shaft and fixedly connected with the second through hole;
- the second base There is a second extension part protruding into the second through hole, the second moving cam abuts on the second extension part, the third opening extends to the top end surface of the second extension part,
- the second convex edge is located on the second extension part; and the second moving cam faces the second extension part and is provided with a third uneven surface, and the second extension part faces the second moving part.
- One side of the cam is set as a fourth concave-convex surface that cooperates with the concave-convex part of the third concave-convex surface; arc-shaped transition surfaces are arranged between the convex and concave parts of the third concave-convex surface and the fourth concave-convex surface,
- the second moving cam is connected to the second base in rotation.
- a wear-resistant part is provided on the inner wall of the chute, and a groove for accommodating the slider is defined on the wear-resistant part.
- the locking assembly includes: a locking slot and a locking part, the locking slot is located on the wrist rest, and the locking part is located on the vertical shaft Bottom; the top of the locking slot is provided with an opening of the locking slot for the engaging part to slide in vertically; both sides of the locking slot are provided with stoppers, and two of the stoppers It is oppositely arranged and slidably connected with the wrist rest, so that the opening size of the locking slot can be adjusted; when the vertical shaft rotates in the first direction, the locking part is stuck on the locking card In the slot, the lock assembly is in the locked state; when the vertical shaft rotates in the second direction opposite to the first direction, the engaging part presses the stopper and makes the lock The opening of the locking slot becomes larger, so that the locking component is in an unlocked state.
- At least one of the engaging portion and the blocking block is provided with an engaging groove, and the other of the engaging groove and the blocking block is provided with an engaging protrusion raised; the engaging protrusion is mated with the engaging groove, and when the vertical shaft rotates in the first direction, the engaging protrusion is locked in the engaging groove, so that the The vertical shaft is fixedly connected to the first end of the wrist rest, and when the vertical shaft rotates along the second direction, the engaging projection slides out of the engaging slot, so that the vertical The rotating shaft is separated from the first end of the wrist rest.
- the cross section of the engaging part is oval, and the engaging protrusion or the engaging groove is arranged on the outer side wall of the engaging part and is located on the Any position other than the combined long axis.
- the engaging groove is disposed on the stopper, and the engaging protrusion is disposed on the engaging portion.
- the lock assembly further includes: a base baffle and a second elastic member; the wrist rest is provided with an accommodating cavity for installing the stopper and the second elastic member, so The stopper is arranged in the accommodating cavity;
- the second elastic member is arranged between the stopper and the side wall of the accommodating cavity, and the opening of the locking slot can be enlarged by pressing the second elastic member by the stopper;
- the base baffle cover is arranged on the top of the accommodating cavity, the base baffle is provided with an assembly hole, the top of the stopper is located in the assembly hole, and the side wall of the assembly hole and the A gap is provided between the stoppers, and the gap is used to provide space for the sliding of the stoppers.
- a third through hole that can partially accommodate the vertical shaft is provided in the rotating shaft bracket;
- the rotating shaft assembly further includes: a third moving cam, and the third moving cam sleeve
- the third movable cam is located in the third through hole and is fixedly connected with the third through hole;
- the vertical shaft has The first fixed cam protruding into the third through hole, the first fixed cam extends outward around the vertical rotating shaft, the third movable cam abuts against the first fixed cam;
- the first fixed cam The side of the three-moving cam facing the first fixed cam is set as a fifth uneven surface, and the side of the first fixed cam facing the third moving cam is set to cooperate with the concave-convex part of the fifth concave-convex surface
- the sixth concave-convex surface is provided in the rotating shaft bracket;
- the rotating shaft assembly further includes: a third moving cam, and the third moving cam sleeve
- the third movable cam is located in the third through hole and is fixedly connected with
- an arc-shaped transition surface and a right-angle transition surface are arranged at intervals between the convex part and the concave part of the fifth concave-convex surface; arc-shaped transition surface and right-angle transition surface; and the arc-shaped transition surface of the fifth concave-convex surface is connected with the arc-shaped transition surface of the sixth concave-convex surface, and the right-angle transition surface of the fifth concave-convex surface is connected with the first concave-convex surface.
- the right-angled transition surfaces of the six concave-convex surfaces are mated and connected so that when the main body of the device rotates around the vertical shaft in the first direction, the third moving cam can rotate around the vertical shaft, and the main body of the device rotates around the vertical shaft.
- the third moving cam engages with the first fixed cam and drives the vertical shaft of the first fixed cam to rotate in the second direction, so that the engaging protrusion slides out of the The engaging slot, the vertical shaft is separated from the first end of the wrist rest.
- the shaft assembly further includes: a third elastic member, a top gasket, and a bottom gasket, the bottom gasket is sleeved on the vertical shaft, and the top gasket covers It is arranged on the top of the vertical rotating shaft and connected to the horizontal rotating shaft in rotation, the third elastic member is sleeved on the vertical rotating shaft, and the two ends of the third elastic member are respectively connected to the top pad The plate is connected to the bottom gasket.
- the third elastic member is a spring.
- the bottom end of the vertical rotating shaft is fixedly connected with the wrist rest, and one end of the friction shaft of each rotating assembly is fixedly connected with the main body of the device; when the locking When the assembly is in the locked state, the top end of the vertical shaft is located in the shaft bracket, and the locking assembly locks and connects the shaft bracket with the vertical shaft so that the first end is connected with the first end of the wrist rest; when the lock assembly is in the unlocked state, the shaft bracket is disassembled from the vertical shaft so that the first end of the device main body is connected to the wrist The first end of the support is separated.
- a limit sleeve is sheathed on the vertical shaft, and the limit sleeve is rotatably connected with the vertical shaft; The limiting sleeve is locked and connected or unlocked.
- the locking assembly includes: a card slot, a locking button and a locking member, and the locking member is telescopically arranged on the rotating shaft support along the axial direction of the rotating shaft support
- the card slot is set on the limit sleeve; one end of the lock piece has a lock end that engages with the card slot, when the lock end of the lock piece is locked with the card
- the limit sleeve is locked and connected with the shaft bracket; the locking button is used to drive the locking part to move away from the card slot, so that the locking end of the locking part is disengaged The card slot.
- the locking button is telescopically arranged on the rotating shaft bracket, and when the locking button is pressed, one end of the locking button retracts toward the rotating shaft bracket And drive the lock piece to move away from the slot, and when the locking end of the lock piece breaks away from the slot, the limiting sleeve is disassembled from the rotating shaft bracket.
- the locking button is slidably arranged on the rotating shaft bracket, and when the locking button is slid, one end of the locking button moves axially along the horizontal rotating shaft And drive the locking part to move away from the slot.
- a protrusion is provided on the side of the limiting sleeve facing the locking button, the two sides of the protrusion are respectively provided with the card slots, each of the card slots One locking member is correspondingly provided; and the orthographic projection of the protrusion toward the limiting cylinder is in an arrow structure, and the arrow in the arrow structure points to the top of the vertical shaft.
- the locking assembly further includes: a key cover and a fourth elastic member, the key cover is fixed on the outer surface of the rotating shaft bracket, and the key cover is opened An opening that can expose the pressing surface of the locking button; one end of the fourth elastic member is connected with the shaft support, the other end of the fourth elastic member is connected with the locking member, and the locking The member is telescopically set through the fourth elastic member.
- At least one end of the locking button has a driving part, and the driving part is used to cooperate with the locking part.
- both ends of the locking button have driving parts respectively, each of the driving parts has a first slope, and each of the locking parts has a The second slope; the first slope is used to drive the second slope to move when the lock button is pressed, so that the lock member moves away from the locking groove; the second The inclined surface is used to drive the first inclined surface to move under the elastic force of the fourth elastic member after the external force on the locking button is removed, so as to reset the locking member.
- the locking assembly includes: a relief groove and a locking boss, one of the relief groove and the locking boss is arranged on the rotating shaft bracket, and the The other of the relief groove and the locking boss is arranged on the vertical shaft; and when the locking boss and the relief groove overlap in the axial direction of the vertical shaft, the The rotating shaft bracket and the vertical rotating shaft are in an unlocked state; when the locking boss and the relief groove are staggered in the axial direction of the vertical rotating shaft, the rotating shaft bracket is locked with the vertical rotating shaft state.
- the rotating shaft bracket and the vertical rotating shaft can be in a locked state, so as to prevent the device body from being separated from the wrist rest , thereby increasing the connection stability between the device main body and the wrist rest.
- the top of the rotating shaft bracket is provided with an escape opening through which the top end of the vertical rotating shaft can pass; the inner wall of the escape opening is provided with the escape groove; the locking protrusion The stage is arranged on the top of the vertical rotating shaft.
- the top end of the rotating shaft bracket has an annular track arranged around the escape opening, and the escape groove is located on the annular track and communicates with the escape opening; and the lock When the locking boss and the relief groove are staggered in the axial direction of the vertical rotating shaft, the locking boss is located on the circular track, so that the vertical rotating shaft is locked and connected with the rotating shaft bracket .
- a locking ring is sheathed on the top end of the vertical rotating shaft, and an outer edge of the locking ring protrudes outward to form the locking boss.
- the locking ring can provide an installation position for the locking boss, thereby simplifying the structure of the locking component and reducing the cost.
- a pressing ring is sleeved on the vertical rotating shaft, and the pressing ring is located between the top end of the limiting sleeve and the locking ring on the vertical rotating shaft.
- a limiting block is provided on the outer wall of the limiting sleeve, and a limiting cavity that cooperates with the limiting block is provided on the rotating shaft bracket.
- the rotating shaft assembly further includes: two abutting assemblies arranged in the rotating shaft support and symmetrical with respect to the vertical rotating shaft, one end of each abutting assembly is connected to the One end of the friction shaft is connected, and the other end of each abutting assembly is telescopically abutted against the outer wall of the limiting sleeve.
- the rotating shaft support can be prevented from rotating relative to the vertical rotating shaft.
- each of the abutment assemblies includes: an abutment block and a fifth elastic member, one end of the fifth elastic member is connected to the inside of one end of the friction shaft, and the fifth elastic member The other end of the elastic member is connected to the abutment block, and one end cover of the abutment block is arranged outside one end of the friction shaft, and the other end of the abutment block has an abutment head; the limit sleeve A second groove engaged with the abutment is provided on the outer wall of the abutment.
- it further includes a third base, the third base is arranged at the bottom end of the vertical shaft, and a third base extending toward the top end of the vertical shaft is provided on the third base. extension; the bottom end of the limit sleeve abuts against the third extension, and the bottom end of the limit sleeve is provided with an uneven seventh concave-convex surface, and the third extension faces An eighth concave-convex surface matched with the seventh concave-convex surface is provided on one side of the limiting sleeve.
- it further includes: a sixth elastic member, the sixth elastic member is sleeved on the vertical shaft, and one end of the sixth elastic member is against the limit sleeve On the inner bottom surface of the sixth elastic member, one end of the sixth elastic member is connected with the top end of the vertical shaft through a snap spring.
- a rotating shaft washer is provided between the top end of the limiting sleeve and the retaining ring.
- it also includes a locking component, the locking component is fixed on the second end of the device body, and the second end of the device body is connected to the wrist through the locking component.
- the second end of the bracket is detachably connected.
- the engaging assembly includes: a button, a bottom end of the button has a first engaging portion, and a first engaging portion engaged with the first engaging portion is provided on the wrist rest.
- a buckle position; the button is telescopically arranged on the side of the second end of the device body, and the device body and the wrist rest are detachably connected by engaging the first buckle part with the first buckle position and when the button is pressed, the first clamping part is disengaged from the first buckle, so that the second end of the device main body is detached from the second end of the wrist rest.
- the key includes: a key cap, a key frame, and a seventh elastic member, the key is mounted on the second end of the device main body, and the two ends of the key frame are connected to the The second end of the main body of the device is fixedly connected;
- One end of the seventh elastic member is connected to the side of the key cap facing the main body of the device, and the other end of the seventh elastic member is connected to the key frame; the bottom end of the key cap has the first Card joint.
- a guide protrusion is provided on the side of the button facing the main body of the device, and the guide protrusion has a through hole through which one end of the seventh elastic member can extend; the There is a guide groove on the key frame for the movement of the guide protrusion; one end of the seventh elastic member is connected to the bottom of the guide groove, and the other end of the seventh elastic member extends into the guide protrusion
- the through hole is connected with the key cap.
- the side of the key cap facing away from the main body of the device has a plurality of protrusions and recesses arranged at intervals; and one of the protrusions located at the bottom end of the key cap
- the first engaging portion is formed, the first engaging portion has a first guiding inclined surface, and the wrist rest has a second guiding inclined surface matched with the first guiding inclined surface.
- the engaging assembly includes: a cover plate and a key plate, the key plate has an outwardly protruding pressing portion on a side facing away from the main body of the device; the cover plate has The opening through which the pressing part can pass, the cover plate is connected to the main body of the device; the key board is telescopically arranged on the side of the second end of the main body of the device; and the bottoms of the two ends of the key board
- the ends are respectively provided with a second clamping part, and the wrist rest is provided with a second buckle that engages with the second clamping part; the main body of the device and the wrist rest communicate with the wrist rest through the second clamping part
- the above-mentioned second buckle snaps to realize detachable connection.
- the engaging assembly further includes an eighth elastic member, one end of the eighth elastic member is connected to the device main body, and the other end of the eighth elastic member is connected to the keypad connected, the keypad is telescopically arranged on the main body of the device through the eighth elastic member.
- it further includes: a watch strap, and the watch strap is rotatably connected with the wrist rest.
- Another aspect of the embodiments of the present application provides a wearable system, including a terminal device and the wearable device according to the first aspect, where the terminal device is connected to the wearable device through communication.
- the second end of the main body of the device When wearing, the second end of the main body of the device is engaged with the second end of the wrist rest through the engaging component, which is convenient for wearing; when opening, pressing the engaging component can lift the main body of the device so that the second end of the main body The end is separated from the second end of the wrist rest, and the main body of the device can be flipped around the horizontal axis or rotated around the vertical axis under the action of the axis assembly, which can improve the playability and mechanical sense of the wearable device; While engaging the components, the main body of the device can also be disassembled from the wrist rest, so that the main body of the device and the wrist rest can be completely separated, which can improve the multi-scenario adaptability.
- FIG. 2 is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 3 is a structural schematic diagram of another angle of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 4 is a schematic cross-sectional structure diagram of a device body and a wrist rest provided by an embodiment of the present application;
- Fig. 6 is a schematic structural diagram of a limiter of a wearable device provided by an embodiment of the present application.
- Fig. 7A is a schematic structural diagram of a friction shaft of a wearable device provided by an embodiment of the present application.
- Fig. 7B is a schematic structural diagram of a friction sheet of a wearable device provided by an embodiment of the present application.
- Fig. 8 is a schematic structural diagram of a shaft bracket of a wearable device provided by an embodiment of the present application.
- Fig. 9 is a schematic cross-sectional structure diagram of a rotating shaft bracket of a wearable device provided by an embodiment of the present application.
- Fig. 11 is a schematic structural diagram of a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 12 is a schematic structural diagram of a first base of a wearable device provided by an embodiment of the present application.
- Fig. 13 is a structural schematic diagram of another angle of the first base of the wearable device provided by an embodiment of the present application.
- Fig. 14 is a partial structural schematic diagram of a shaft assembly of a wearable device provided by an embodiment of the present application.
- Figure 15 is an exploded view of Figure 14;
- Fig. 16 is a structural schematic diagram of another angle of the wrist rest of the wearable device provided by an embodiment of the present application.
- Fig. 17 is a partially enlarged schematic diagram of the wrist rest of the wearable device provided by an embodiment of the present application where the stopper assembly is provided;
- Fig. 18 is a structural schematic diagram of the baffle, the first elastic member and the stopper of the stopper assembly of the wearable device provided by an embodiment of the present application;
- Fig. 19 is a partially enlarged view of a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 20 is another structural schematic diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 21 is a schematic partial cross-sectional view of the engaging component of the wearable device provided by an embodiment of the present application.
- Fig. 22A is another partial cross-sectional schematic diagram of the engaging component of the wearable device provided by an embodiment of the present application.
- Fig. 22B is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22C is another schematic cross-sectional structure diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22D is a schematic structural diagram of a press block button of a wearable device provided by an embodiment of the present application.
- Fig. 22E is an exploded schematic diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22F is a schematic cross-sectional structural diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22G is an exploded structural schematic diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22H is a schematic cross-sectional structural view of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22I is a schematic cross-sectional structure diagram of a wrist rest and a device main body of a wearable device provided by an embodiment of the present application;
- Fig. 22J is a schematic structural diagram of a first base of a wearable device provided by an embodiment of the present application.
- FIG. 22K is a schematic cross-sectional structural view of the structure of the wrist rest and the shaft assembly of the wearable device provided by an embodiment of the present application;
- Fig. 22L is a cross-sectional schematic diagram of another angle of the partial structure of the wrist rest and the shaft assembly of the wearable device provided by an embodiment of the present application;
- Fig. 22M is a schematic structural diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22N is a schematic cross-sectional structure diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22O is a schematic cross-sectional structural view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22P is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22Q is a schematic structural diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Figure 22R is a schematic diagram of the exploded structure of Figure 22Q;
- Fig. 22S is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22T is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22U is a schematic cross-sectional structure diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22V is an exploded structural schematic diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22W is a schematic cross-sectional structural view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22X is a structural schematic diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 22Y is a schematic diagram of the exploded structure of Fig. 22X;
- Fig. 22Z is a schematic diagram of an exploded structure of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22a is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 22b is a partial structural schematic diagram of a cross-sectional view at another angle of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 22c is a partial structural schematic diagram of a cross-sectional view at another angle of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 23 is a schematic structural diagram of a wearable device provided by an embodiment of the present application.
- Fig. 24 is an exploded view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 25 is a schematic cross-sectional structure diagram of the device body and the wrist rest of the friction shaft of the wearable device provided by an embodiment of the present application;
- Fig. 26 is a schematic structural diagram of a rotating assembly of a wearable device provided by an embodiment of the present application.
- Fig. 27 is a schematic structural diagram of a friction shaft of a wearable device provided by an embodiment of the present application.
- Fig. 28 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 29 is an enlarged view of part B of Fig. 28;
- Fig. 30 is another schematic cross-sectional view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 31 is a schematic structural diagram of a second base of a wearable device provided by an embodiment of the present application.
- Fig. 32 is a structural schematic diagram of another angle of the second base of the wearable device provided by an embodiment of the present application.
- Fig. 33 is a partial structural schematic diagram of a shaft assembly of a wearable device provided by an embodiment of the present application.
- Fig. 34 is an exploded view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 35 is an exploded view of a vertical shaft and a stopper of a wearable device provided by an embodiment of the present application;
- Fig. 36 is a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 37 is an exploded view of the device body and the wrist rest of the wearable device provided by an embodiment of the present application;
- Fig. 38 is a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 39 is a schematic structural diagram of a limit sleeve and a vertical shaft of a wearable device provided by an embodiment of the present application;
- Fig. 40 is an exploded view of the setting and locking button of the wearable device provided by an embodiment of the present application.
- Fig. 41A is a cross-sectional view of a shaft assembly of a wearable device provided by an embodiment of the present application.
- Fig. 41B is a partial structural schematic diagram of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 41C is a partial structural schematic diagram of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 41D is a schematic cross-sectional structural diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application;
- Fig. 42 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 43 is an exploded view of the device body, wrist rest and shaft assembly of the wearable device provided by an embodiment of the present application;
- Fig. 44 is a schematic diagram of an exploded structure of a horizontal rotating shaft of a wearable device provided by an embodiment of the present application.
- Fig. 45 is a schematic diagram of an exploded structure of a vertical shaft of a wearable device provided by an embodiment of the present application.
- Fig. 46 is a schematic cross-sectional structural diagram of a partial structure of the device body and the wrist rest when the device body of the wearable device is in the first position according to an embodiment of the present application;
- Fig. 47 is a schematic cross-sectional structure diagram of the wrist rest when the device body of the wearable device is in the first position according to an embodiment of the present application;
- Fig. 48 is a schematic cross-sectional structure diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application when the device body is in the second position;
- Fig. 49 is a schematic cross-sectional structural view of the wrist rest when the main body of the wearable device is in the second position according to an embodiment of the present application;
- Fig. 50 is a schematic structural diagram of a retractable buckle of a wearable device provided by an embodiment of the present application.
- Fig. 51 is a schematic structural diagram of a wearable device provided by an embodiment of the present application when the device body and the wrist rest are in a separated state;
- Fig. 52 is a schematic diagram of an exploded structure of a slide rail bracket and a Z-axis bracket of a wearable device provided by an embodiment of the present application;
- Fig. 53 is a schematic diagram of the exploded structure of the first locking component, the second locking component and the Z-axis bracket of the wearable device provided by an embodiment of the present application at the first position;
- Fig. 54 is a schematic cross-sectional structure diagram of a slide rail support and a Z-axis support of a wearable device provided in an embodiment of the present application at a first position;
- Fig. 55 is a schematic cross-sectional structural view of a partial structure of the device body and the wrist rest of the wearable device provided by an embodiment of the present application at the first position;
- Fig. 56 is a schematic diagram of the exploded structure of the first locking component, the second locking component and the Z-axis bracket of the wearable device provided by an embodiment of the present application at the second position;
- Fig. 57 is a schematic cross-sectional structure diagram of a slide rail bracket and a Z-axis bracket of a wearable device provided in an embodiment of the present application at a second position;
- Fig. 58 is a schematic cross-sectional structural view of the device body and the wrist rest of the wearable device provided in an embodiment of the present application at the second position;
- Fig. 59 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 60 is a schematic diagram of an exploded structure of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 61 is a schematic structural diagram of a wearable device when the device body and the wrist rest are separated according to an embodiment of the present application;
- Fig. 62 is a schematic cross-sectional structure diagram of a wearable device provided by an embodiment of the present application when the locking component is in an unlocked state;
- Fig. 63 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application;
- Fig. 64 is a schematic diagram of an exploded structure of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- 100-wearable device 10-device body; 11-first end of device body; 12-second end of device body;
- 30-rotating shaft assembly 31-horizontal rotating shaft; 31a-rotating shaft bracket; 31a1-limiting cavity; 31a2-circular track;
- 31a3-assembly cavity 31a4-positioning groove; 31a5-slide rail groove; 31a51-oblique stop; 31a6-third inner groove;
- 311-cavity structure 3111-first stepped hole
- 325-slide rail bracket 3251-slide rail cover; 3252-slide rail cavity; 3253-slide rail wall; 3254-positioning protrusion;
- 326-Z-axis bracket 3261-turning hole; 3262-sinking groove; 3263-fixed piece; 3264-block edge; 3265-tapered step;
- 34-rotating assembly 341-friction shaft; 341a-the first end of the friction shaft; 341b-the second end of the friction shaft; 3411-the shaft body;
- 60a12-the first driving part 60a15-the third inclined surface; 60a2-the first inner groove; 60a3-the first slide rail spring;
- 60b-the second locking component 60b1-elastic top block; 60b11-the first inclined guide surface; 60b2-the second inner groove;
- 60c-locking spring block 60c1-slot hole; 60c2-the third slide rail spring; 60c3-inclined sliding surface;
- 61-locking protrusion 611-engagement groove; 612-slot; 613-recess; 614-carding hole; 615-first inclined surface;
- 69e-toggle switch 69e1-operation end; 69e2-clip end; 69e3-male buckle; 69e4-block;
- 69f-lock switch 69f1-trigger button; 69f2-first end of lock switch; 69f3-second end of lock switch;
- 69g-push switch 69g1-the first end of the push switch; 69g2-the second end of the push switch; 69g3-the second inclined surface;
- 69h-locking button 69h1-first hook; 69h2-first telescopic piece; 69h3-second telescopic piece; 69h4-second hook;
- 80-abutment assembly 80-abutment assembly; 81-abutment block; 82-fifth elastic piece; 90-sixth elastic piece.
- the watch body and bracelet body of smart watches and smart bracelets are fixed on the strap, and then worn on the user through the strap, but the watch body and the bracelet body are fixedly connected to the strap, so it is difficult to Adapt to functions such as video calling and taking pictures.
- a rotating shaft is set between the body of the smart watch and the smart bracelet, the main body of the bracelet and the strap, wherein the body of the watch and the main body of the bracelet can be positioned on the plane where the body of the watch and the main body of the bracelet are located relative to the strap.
- Rotation is still very limited for functions that require multiple angle adjustments, such as video calling and taking pictures.
- an embodiment of the present application provides a wearable device.
- a shaft assembly is provided between the device body and the wrist rest.
- the shaft assembly includes a horizontal shaft and a vertical shaft.
- the device body can rotate around the horizontal shaft or around the Rotate on the vertical axis.
- the device body can be detached from the wrist rest, so that it can adapt to application scenarios that require multi-angle adjustments such as video calls and photos.
- the wearable device in this embodiment is a smart watch.
- FIG. 1 is a schematic structural diagram of a wearable device provided by an embodiment of the present application.
- a wearable device 100 which may include a device body 10, a wrist rest 20, a hinge assembly 30, a snap-fit assembly 40, a lock assembly 60, and a strap 50, wherein the hinge assembly 30 is arranged at the first end 11 of the device body, and the engaging assembly 40 is arranged at the second end 12 of the device body.
- the device body 10 is fixed on the wrist rest 20 through the rotating shaft assembly 30, the engaging assembly 40 and the locking assembly 60.
- the support 20 is used to carry the main body 10 of the device, and the watch strap 50 is rotatably connected to both ends of the wrist support 20 for easy wearing.
- Fig. 2 is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 3 is a structural schematic diagram of another angle of a device body and a wrist rest of a wearable device provided by an embodiment of the present application. 2 and 3 specifically, the first end 11 of the main body of the device is fixedly connected to the shaft assembly 30 through fasteners, the shaft assembly 30 is connected to the first end 21 of the wrist rest, and the engaging assembly 40 is connected to the device through fasteners. The second end 12 of the main body is fixedly connected, and the second end 12 of the device main body is engaged with the second end 22 of the wrist rest through the engaging component 40 .
- Fig. 4 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the rotating shaft assembly 30 can include a horizontal rotating shaft 31 and a vertical rotating shaft 32, and the two ends of the horizontal rotating shaft 31 are connected to the first end 11 of the device body in rotation, so that the device body 10 can turn around the horizontal rotating shaft 31;
- One end of the straight shaft 32 is fixedly connected to the wrist rest 20 , and the vertical shaft 32 is rotatably connected to the horizontal shaft 31 so that the device main body 10 can rotate around the vertical shaft 32 .
- the rotating shaft assembly 30 also includes a rotating shaft housing 33, and the rotating shaft housing 33 is arranged on the outside of the horizontal rotating shaft 31, wherein, one end of the rotating shaft housing 33 facing the wrist rest 20 is provided with an opening, so that the vertical rotating shaft 32 can be connected to the first end of the wrist rest. 21 is fixedly connected, and the rotating shaft housing 33 can be used to protect the horizontal rotating shaft 31.
- the horizontal rotating shaft 31 comprises a rotating shaft bracket 31a and two rotating assemblies 34 arranged at both ends of the rotating shaft bracket 31a.
- the axial direction of the rotating shaft bracket 31a is perpendicular to the axial direction of the vertical rotating shaft 32.
- the cavity structure of the component 34 one end of the rotating component 34 is located in the cavity structure, and the other end is connected with the device main body 10 .
- the main body of the device can be flipped around the horizontal rotation axis and rotated around the vertical rotation axis, which can increase the multi-scenario adaptability of the wearable device.
- the limiting member 343 is in contact with the friction plate 342 , and the limiting member 343 is located on a side of the friction plate 342 close to the second end 341 b of the friction shaft, and the second end 341 b of the friction shaft is fixedly connected to the device main body 10 .
- Fig. 6 is a schematic structural diagram of a limiter of a wearable device provided by an embodiment of the present application. Referring to Fig. 5 and Fig.
- the side of the limiting member 343 close to the connecting portion 3413 of the friction shaft 341 is provided with a first limiting protrusion 3431
- the side of the limiting member 343 close to the friction plate 342 is provided with a second limiting protrusion 3432
- two second limiting protrusions 3432 are oppositely arranged on both sides of the limiting member 343
- a third limiting protrusion 3433 extending outward is provided on the outer wall of the limiting member 343, wherein the second limiting Both the protrusion 3432 and the third limiting protrusion 3433 are engaged with the rotating shaft bracket 31a (see FIG. 4 and FIG.
- Fig. 7A is a schematic structural diagram of a friction shaft of a wearable device provided by an embodiment of the present application.
- the friction shaft 341 includes a shaft body 3411, a fourth limiting protrusion 3412 and a connecting portion 3413, wherein the shaft body 3411 is located at the first end 341a of the friction shaft, and the connecting portion 3413 is located at the second end of the friction shaft.
- the fourth limiting protrusion 3412 extends from the end surface of the connecting portion 3413 toward the first end of the friction shaft 341 toward the direction close to the first end 341a of the friction shaft.
- the connecting part 3413 of the friction shaft 341 is a plate-shaped structure, and the connecting part 3413 is arranged on the outer edge of the shaft body 3411.
- the plate-shaped structure is provided with a mounting hole fixedly connected with the device main body 10, and a fastener can be used in the mounting hole. Pass through so as to fixedly connect the friction shaft 341 with the device main body 10 .
- the first end of the fourth limiting protrusion 3412 is in contact with the first end of the first limiting protrusion 3431 of the limiting member 343, and the second end of the fourth limiting protrusion 3412 is close to the first end around the shaft 3411.
- the direction of the second end of the limiting protrusion 3431 extends, and there is a gap between the second end of the fourth limiting protrusion 3412 and the second end of the first limiting protrusion 3431, so that the friction shaft 341 can be opposite to the limiting protrusion.
- the positioning member 343 rotates towards the direction close to the second end of the first limiting protrusion 3431 until the second end of the fourth limiting protrusion 3412 is in contact with the second end of the first limiting protrusion 3431 .
- Fig. 7B is a schematic structural diagram of a friction sheet of a wearable device provided by an embodiment of the present application.
- the outer edge of the friction plate 342 is provided with a fifth limiting protrusion 3421, and the fifth limiting protrusion 3421 is engaged in the rotating shaft bracket 31a during assembly, so that the friction plate 342 is fixedly connected with the rotating shaft bracket 31a.
- the inner surface of the friction plate 342 is provided with an oil storage tank 3422 , and the inner surface of the friction plate 342 is in contact with the friction shaft 341 during assembly, and the friction plate 342 and the friction shaft 341 can rotate relative to each other.
- lubricating oil can be arranged in the oil storage tank 3422, which can reduce the friction between the friction shaft 342 and the friction plate 342, thereby reducing the wear of the friction shaft 342 and the friction plate 342 , thereby prolonging the service life of the friction shaft 342 and the friction plate 342 .
- the friction shaft 341 is fixedly connected to the device main body 10, the friction shaft 341 is in rotation connection with the limiting member 343 and the friction plate 342, that is to say, between the device main body 10, the limiting member 343 and the friction plate 342
- the friction plate 342 and the limiter 343 are fixedly connected to the rotating shaft bracket 31a, so the equipment main body 10 and the rotating shaft bracket 31a are connected in rotation, so the equipment main body 10 can turn around the rotating shaft bracket 31a, and the horizontal rotating shaft 31
- the rotating shaft support 31a and the rotating assembly 34 are included, so the device main body 10 is turned around the rotating shaft support 31a, which is equivalent to the turning of the device main body 10 around the rotating shaft support 31a.
- the rotation angle of the friction shaft 341 relative to the limit member 343 can be determined by the size of the first limit protrusion 3431 and the fourth limit protrusion 3412, and by adjusting the first limit protrusion 3431 and the fourth limit
- the size of the protrusion 3412 can adjust the range of the turning angle between the device main body 10 and the rotating shaft bracket 31a.
- the friction shaft 341 and the device main body 10 may be fixedly connected by fasteners, or may be connected by clamping, riveting and other fixed methods.
- the specific connection method does not limit the protection scope of the technical solution of the present application, as long as the friction shaft 341 and the device main body 10 can be fixedly connected, it belongs to the protection scope of the technical solution of the present application.
- FIG. 8 is a schematic structural diagram of a hinge bracket of a wearable device provided by an embodiment of the present application.
- FIG. 9 is a schematic cross-sectional structure diagram of a hinge bracket of a wearable device provided by an embodiment of the present application.
- the shaft support 31a is provided with a cavity structure 311 for accommodating the rotating assembly 34, wherein the first end 341a of the friction shaft is located in the cavity structure 311 of the shaft support 31a, and the friction plate 342 and the stopper The pieces 343 are all located in the cavity structure 311 , and the friction plate 342 is engaged and fixed in the rotating shaft bracket 31a, and the limiting member 343 is also engaged and fixed in the rotating shaft bracket 31a.
- a first through hole 312 is defined in the rotating shaft bracket 31a, wherein the axis of the first through hole 312 is perpendicular to the axis of the rotating shaft bracket 31a, and the first through hole 312 can be used to accommodate a part of the vertical rotating shaft 32 .
- the cavity structure 311 of the rotating shaft support 31a for accommodating the rotating assembly 34 includes three stepped holes, of which the inner one is the first stepped hole 3111, the middle one is the second stepped hole 3112, and the outer one is the second stepped hole. Three stepped holes 3113.
- the inner diameter of the first stepped hole 3111 is larger than the second stepped hole 3112
- the inner diameter of the second stepped hole 3112 is larger than the third stepped hole 3113
- the inner wall of the second stepped hole 3112 is provided with a
- the friction shaft 341 is fitted with the first stopper groove 3112a fitted with the fifth stopper protrusion 3421
- the inner wall of the third stepped hole 3113 is provided with a second stopper groove 3112a matched with the second stopper protrusion 3432 of the stopper 343.
- the groove 3113a is also provided with a third limiting groove 3113b on the side wall of the third stepped hole 3113 to cooperate with the third limiting protrusion 3433 of the limiting member 343 .
- the first end 341a of the friction shaft is located in the first stepped hole 3111 and is rotationally connected with the first stepped hole 3111; the two friction plates 342 are located in the second stepped hole 3112, and the friction plates 342
- the fifth limiting protrusion 3421 is engaged in the first limiting groove 3112a; the limiting member 343 is located in the third stepped hole 3113, and the second limiting protrusion 3432 of the limiting member 343 is engaged in the second limiting groove 3112a;
- the positioning groove 3113a, the third limiting protrusion 3433 is engaged in the third limiting groove.
- Fig. 10 is an exploded view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the wearable device 100 may further include a locking component 60 , and when the locking component 60 is in the locked state, the locking component 60 connects the rotating shaft component 30 to the wrist rest 20 lock (refer to the above shown in FIG. 3 ), so that the first end 11 of the device body is connected to the first end 21 of the wrist rest, and when the lock assembly 60 is in the unlocked state, the shaft assembly 30 is disassembled from the wrist rest 20 (refer to FIG. 10 and the following FIG. 34 ), so that the first end 11 of the device body is separated from the first end 21 of the wrist rest.
- the locked state is the state where the device body 10 is fixed on the wrist rest 20
- the unlocked state is the state where the device body 10 is separated from the wrist rest 20 .
- the locking assembly 60 when the locking assembly 60 is in the locked state, the locking assembly 60 can lock the rotating shaft assembly 30 with the device main body 10 (refer to FIG. 23 below), so that the first The end 11 is connected with the first end 21 of the wrist rest.
- the rotating shaft assembly 30 is disassembled from the device body 10 (see the following figure 24), so that the first end 11 of the device body Separated from the first end 21 of the wrist rest.
- the locking assembly 60 when the locking assembly 60 is in the locked state, the locking assembly 60 locks and connects the vertical shaft 32 to the horizontal shaft 31, so that the first end 11 of the device body is connected to the first end of the wrist rest. end 21 is connected, and when the lock assembly 60 is in the unlocked state, the horizontal shaft 31 is disassembled from the vertical shaft 32 (shown in FIG. end 21 apart.
- Fig. 11 is a schematic structural diagram of a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking assembly 60 includes: a locking sinker 62 and a locking protrusion 61, both of which are U-shaped structures, and the locking sinker 62 is located at On the wrist rest 20, the locking protrusion 61 is located at the bottom of the vertical shaft 32, and one side of the locking sinker 62 is provided for the locking protrusion 61 to slide horizontally into the locking sinker opening 621; the locking sinker 62 There is a rib 622 at the top of the top, and when the locking protrusion 61 is located in the locking sinker groove 62, the rib 622 locks the locking protrusion 61 in the locking sinker groove 62 in the axial direction of the vertical shaft 32, One end of the vertical shaft 32 is connected to the first end 21 of the wrist rest.
- the orientation of the locking sinker opening 621 does not limit the scope of protection of the technical solution of the present application, and the locking sinker opening 621 may face the first end 21 of the wrist rest, the second end 22 of the wrist rest, The third end 24 of the wrist rest or the fourth end 25 of the wrist rest, of course, in some embodiments, the locking sinker opening 621 can also face the top of the wrist rest 20, etc., which is not specifically limited in this embodiment of the present application .
- the locking sinker 62 is arranged on the wrist rest 20, and the locking protrusion 61 is arranged at the bottom end of the vertical shaft 32.
- the locking sinker 62 can also be arranged Set at the bottom of the vertical shaft 32, and then the locking protrusion 61 is arranged on the wrist rest 20, that is to say, as long as one of the locking sinker 62 and the locking protrusion 61 is arranged on the vertical shaft 32 bottom, wherein the other is set on the wrist rest 20 to get final product.
- the device main body 10 and the wrist rest 20 can be detachably connected, so that the device main body 10 can be detached from the wrist rest 20 in some scenarios. It can be used alone, and the disassembled device main body 10 can adjust the angle arbitrarily according to the needs when making video calls and taking pictures, which greatly increases the multi-scene adaptability of the wearable device 100 .
- Fig. 12 is a schematic structural diagram of a first base of a wearable device provided by an embodiment of the present application.
- Fig. 13 is a structural schematic diagram of another angle of the first base of the wearable device provided by an embodiment of the present application. 12 and 13, the bottom end of the vertical shaft 32 is provided with a first base 70, and the bottom end of the vertical shaft 32 is fixed in the first base 70; the locking protrusion 61 is located near the first base 70 On one end of the wrist rest 20; on the first base 70, there is a first opening 71 that can pass through one end of the vertical shaft 32; the bottom end of the vertical shaft 32 has a first boss 321 (see Figure 15) , the top inner wall of the first opening 71 has a first convex edge 73 that blocks the first boss 321 from each other.
- locking grooves 611 may be provided on both sides of the locking protrusion 61 to ensure the stability of the connection between the locking protrusion 61 and the locking sinker groove 62 .
- the first opening 71 includes an upper opening 711 and a lower opening 712 , wherein the lower opening 712 is located close to the wrist rest 20 , and the inner wall of the upper opening 711 is the inner wall of the convex edge.
- the shape of the lower opening 712 is identical to that of the first boss 321, and the first boss 321 is stuck on the first ledge 73 so that the vertical shaft 32 will not be pulled out from the upper hole 711, which can prevent The device main body 10 is detached from the first base 70 to avoid damage to the wearable device 100 .
- Fig. 14 is a partial structural schematic diagram of a shaft assembly of a wearable device provided by an embodiment of the present application.
- FIG. 15 is an exploded view of FIG. 14 .
- the first through hole 312 (referring to Fig. 9 ) that can be partially accommodated by the vertical shaft 32 is provided in the shaft bracket 31a; the shaft assembly 30 may also include: a first moving cam 35, The first moving cam 35 is sleeved on the vertical rotating shaft 32 and is rotatably connected with the vertical rotating shaft 32, and the first moving cam 35 can slide up and down relative to the vertical rotating shaft 32, and the first moving cam 35 is located in the first through hole 312 and is fixedly connected with the first through hole 312 (see Fig.
- the first moving cam 35 is fixedly connected with the rotating shaft support 31a; as shown in Fig. 12 and Fig. 13, the first base 70 has a first The first extension 72 of the through hole 312, the first moving cam 35 abuts on the first extension 72, the first opening 71 extends to the top end surface of the first extension 72, and the first convex edge 73 is located at the first extension.
- the first moving cam 35 facing the first extension part 72 is set as a rough first concave-convex surface
- the first extending part 72 is arranged as a concave-convex part with the first concave-convex surface on one side facing the first moving cam 35.
- the mating second concave-convex surface 721 , an arc-shaped transition surface 721 a is provided between the convex and concave portions of the first concave-convex surface and the second concave-convex surface 721 , so that the first movable cam 35 is connected to the first base 70 in rotation.
- turning the device main body 10 can drive the friction shaft 341 to rotate axially around the friction shaft 341 relative to the rotating shaft support 31a, and turning the device main body 10 can drive the horizontal rotating shaft 31 to rotate around the vertical rotating shaft 32 axial rotation.
- the first moving cam 35 is fixedly connected to the rotating shaft support 31a, which is equivalent to being fixedly connected to the horizontal rotating shaft 31, and the two ends of the horizontal rotating shaft 31 are fixedly connected to the device main body 10, so the rotating device main body 10 can drive the rotating shaft support 31a around the vertical rotating shaft 32 rotation, so the rotating device main body 10 will drive the first moving cam 35 to rotate around the vertical shaft 32, and the arc-shaped transition surface 721a is provided between the convex part and the concave part of the first concave-convex surface and the second concave-convex surface 721,
- the device body 10 when the device body 10 is not stressed, the device body 10 will not rotate arbitrarily; on the other hand, when the device body 10 is subjected to a rotational force, the gap between the first movable cam 35 and the first extension 72 can be adjusted.
- the transition is smooth, so as to realize the relative rotation between the first movable cam 35 and the first extension 72 .
- the first movable cam can also be It acts as a reminder when it is rotated to a certain angle, for example, when it is rotated to zero degrees or 180°, the twisting force will become smaller.
- the rotating shaft assembly 30 may further include: a third elastic member 37 , a top gasket 36 , and a bottom gasket 38 , the bottom gasket 38 is sleeved on the vertical rotating shaft 32 and abuts against the first moving cam 35 , the top gasket 36 is sleeved on the top of the vertical shaft 32 and is connected to the shaft bracket 31a in rotation, the third elastic member 37 is sleeved on the vertical shaft 32, and the two ends of the third elastic member 37 are connected to the top gasket respectively. 36 links to each other with bottom gasket 38.
- the third elastic member 37 can be a spring, and the initial state of the spring is a compressed state during installation, so as to ensure that the first fixed cam 322 is in contact with the first extension portion 72 of the first base 70, To ensure that the main body 10 of the device will not rotate arbitrarily without being subjected to rotational torque.
- the device body 10 When the device body 10 is rotated, the device body 10 is subjected to a rotational torque, so that the first fixed cam 322 is subjected to a rotational torque, so that the first movable cam 35 will move along the arc-shaped transition surface 721a, and move along the vertical shaft 32 toward Slide away from the direction of the wrist rest 20, at this time the first moving cam 35 will squeeze the third elastic member 37, so that the third elastic member 37 is compressed, when the first moving cam 35 hovers, the third elastic member 37 returns to its original state State, at this time the first moving cam 35 abuts against the first extension portion 72 of the first base 70 .
- the vertical shaft 32 can also be rotationally connected to the first end 21 of the wrist rest, and the vertical shaft 32 can be fixedly connected to the horizontal shaft 31, so that the main body 10 of the device can also be rotated around the vertical shaft 32. . That is to say, at least one end of the vertical shaft 32 is rotatably connected to at least one of the first end 21 of the wrist rest and the horizontal shaft 31 , so as to ensure that the device main body 10 can rotate around the vertical shaft 32 .
- the rotating shaft support 31a is a part of the horizontal rotating shaft 31, and the vertical rotating shaft 32 is arranged inside the rotating shaft support 31a, the vertical rotating shaft 32 is fixedly connected with the rotating shaft support 31a, which is equivalent to the connection between the vertical rotating shaft 32 and the horizontal rotating shaft 31a.
- the rotating shaft 31 is fixedly connected; at least one end of the vertical rotating shaft 32 is connected with at least one horizontal rotation in the first end 21 of the wrist rest and the rotating shaft bracket 31a, which is equivalent to at least one end of the vertical rotating shaft 32 and the first end 21 and the first end 21 of the wrist rest.
- At least one of the horizontal rotating shafts 31 is connected for horizontal rotation.
- the lock assembly 60 may further include a stopper assembly 63, which is arranged on the wrist rest 20, and the two stopper assemblies 63 are respectively located on both sides of the lock sinker 62 (as shown in the above figure 11), of course, in some embodiments, the number of stopper components 63 may also be one or three, etc., and the number of stopper components 63 is not limited.
- FIG. 16 is a structural schematic diagram of another angle of the wrist rest of the wearable device provided by an embodiment of the present application.
- FIG. 17 is a partially enlarged schematic diagram of a wrist rest of a wearable device provided by an embodiment of the present application where a stopper component is provided.
- the two sides of the wrist rest 20 are respectively provided with installation grooves 23 for installing the stopper assembly 63, and each installation groove 23 is provided with a locking sinker on the side wall close to the locking sinker groove 62.
- the slot 62 communicates with the second opening 231 ; the first end of the stop component 63 passes through the second opening 231 and extends into the locking sinker 62 , and the second end of the stop component 63 is fixed in the installation slot 23 .
- the stopper assembly 63 includes a top cover plate 631, a baffle 632, a first elastic member 633 and a stopper 634, wherein the baffle 632 is fixed in the installation groove 23; the first stopper 634 end passes through the second opening 231 and extends into the locking sinker 62, the second end of the stopper 634 is sleeved on the first elastic member 633; one end of the first elastic member 633 is sleeved on the stopper 634 The second end is located in the installation groove 23 , and the other end of the first elastic member 633 is against the baffle 632 ; the top cover 631 is located at the top of the installation groove 23 and is fixed on the wrist rest 20 .
- Fig. 18 is a schematic structural diagram of a stopper, a first elastic member and a stopper of a stopper assembly of a wearable device according to an embodiment of the present application.
- the first end of the stopper 634 is a hemispherical protrusion
- the locking protrusion 61 is provided with an engaging groove 611 that cooperates with the hemispherical protrusion; the hemispherical protrusion
- the locking assembly 60 When sliding into the engaging groove 611, the locking assembly 60 is in a locked state; when the hemispherical protrusion slides out of the engaging groove 611, the locking assembly 60 is in an unlocking state.
- the stopper 634 is provided with an outwardly protruding stopper, and the stopper is located in the installation groove 23 and abuts against the sidewall of the installation groove 23 .
- the engaging groove 611 may be a hemispherical groove.
- the shape of the first end of the stopper 634 includes but not limited to a hemispherical protrusion
- the shape of the engagement groove 611 includes but not limited to a hemispherical groove, as long as they can cooperate with each other and play a certain role.
- the structure of the fixing effect belongs to the protection scope of the technical solution of the present application.
- the stop assembly 63 when the lock projection 61 enters the lock sink groove 62, the lock projection 61 can be fixed in the lock sink groove 62, and the stop assembly 63 can further Strengthen the connection between the locking protrusion 61 and the locking sinker 62, so as to ensure that the device body 10 will not break the device body 10 due to the separation of the device body 10 from the wrist rest 20 due to its own gravity, and by setting a stop
- the component 63 can also reduce shaking during assembly and improve the feel of pushing and pulling for disassembly.
- Fig. 19 is a partially enlarged view of a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the snap-fit component 40 may include: a button 41, the bottom end of which has a first The snapping part 411
- the wrist rest 20 is provided with a first buckle 221 that engages with the first snapping part 411 , wherein the first snapping part 411 extends away from the device main body 10 , and the first buckle 221 faces Extending in the direction close to the device main body 10;
- the button 41 is telescopically arranged on the side of the second end 12 of the device main body, and the device main body 10 and the wrist rest 20 are detachable by engaging the first clamping part 411 with the first buckle 221 connected; and when the button 41 is pressed, the first engaging portion 411 is dis
- the button 41 includes: a button cap 412, a button frame 413 and a seventh elastic member 414.
- the two ends 12 are fixedly connected; one end of the seventh elastic member 414 is connected with the side of the key cap 412 facing the device main body 10, and the other end of the seventh elastic member 414 is connected with the key 41; the bottom end of the key cap 412 has a first clamping joint Section 411.
- the two ends of the key frame 413 and the second end 12 of the device body can be fixedly connected by fasteners, or by other methods, such as riveting, bonding, welding and so on.
- the fixing method between the two ends of the key frame 413 and the device main body 10 is not enough to limit the protection scope of the technical solution of the present application, as long as the two ends of the key frame 413 and the device main body 10 can be fixedly connected.
- a guide protrusion 415 is provided on the side of the button 41 facing the device main body 10, and the guide protrusion 415 has a through hole that can be inserted by one end of the seventh elastic member 414; the key frame 413 has a guide groove 416 that can be moved by the guide protrusion 415; one end of the seventh elastic member 414 is connected to the bottom of the guide groove 416, and the other end of the seventh elastic member 414 stretches into the through hole of the guide protrusion 415 to connect with the guide groove 415.
- the key caps 412 are connected; the side of the key cap 412 facing away from the device main body 10 has a plurality of uneven protrusions and depressions; A locking portion 411 has a first guiding slope 4111 , and the wrist rest 20 has a second guiding slope 2211 matching with the first guiding slope 4111 .
- the key cap 412 when the key cap 412 is squeezed, the key cap 412 will compress the seventh elastic member 414, so that the direction on the key cap 412 is close to the device main body 10, so that the first engaging part 411 and the first The buckle 221 is disengaged, so that the second end 12 of the device main body is detached from the second end 22 of the wrist rest.
- the seventh elastic member 414 is in a compressed state, which can ensure that the first engaging portion 411 of the button cap 412 engages with the first buckle 221, thereby making the device main body 10 and the wrist rest 20 fixedly connected.
- FIG. 20 is another structural schematic diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application. As shown in FIG. 20 , the second end 12 of the device body is provided with an engaging component 40 , and the engaging component 40 detachably connects the second end 12 of the device body and the second end 22 of the wrist rest.
- the engaging assembly 40 includes: a cover plate 42 and a key plate 43, the key plate 43 has an outwardly protruding pressing portion 431 on the side facing away from the device main body 10, and the cover plate 42 has an opening through which the pressing portion 431 can pass.
- the cover plate 42 is fixedly connected with the device main body 10, and the key board 43 is telescopically arranged on the side of the second end 12 of the device main body.
- Fig. 21 is a schematic partial cross-sectional view of the engaging component of the wearable device provided by an embodiment of the present application.
- the bottom ends of both ends of the keypad 43 are respectively provided with second clamping parts 432 , and the second clamping parts 432 extend away from the main body 10 of the device.
- Part 432 is engaged with the second buckle, and the second buckle extends toward the second buckle 432; the device main body 10 and the wrist rest 20 are detachably connected through the buckle and the second buckle.
- Fig. 22A is another partial cross-sectional view of the engaging component of the wearable device provided by an embodiment of the present application.
- the engaging assembly 40 may further include an eighth elastic member 44, one end of the eighth elastic member 44 is connected with the device main body 10, and the other end of the eighth elastic member 44 is connected with the key board 43, and the key board 43 passes through The eighth elastic member 44 is telescopically disposed on the device main body 10 .
- cover plate 42 and the device main body 10 may be fixedly connected by fasteners, or by other methods, such as riveting, bonding, welding and the like.
- the fixing method between the two ends of the key frame 413 and the device main body 10 is not enough to limit the protection scope of the technical solution of the present application, as long as the two ends of the key frame 413 and the device main body 10 can be fixedly connected.
- the wearable device provided by the embodiment of the present application can realize the rotation of the main body of the device around the horizontal rotating shaft and the vertical rotating shaft by setting the rotating shaft assembly, and can separate the main body of the device from the wrist rest by setting the locking sinker and the locking protrusion.
- the second end of the main body of the device When wearing, the second end of the main body of the device is engaged with the second end of the wrist rest through the engaging component, which is convenient for wearing; when opening, pressing the engaging component can lift the main body of the device so that the second end of the main body The end is separated from the second end of the wrist rest, and the main body of the device can be flipped around the horizontal axis or rotated around the vertical axis under the action of the axis assembly, which can improve the playability and mechanical sense of the wearable device; While engaging the components, the main body of the device can also be pulled out from the locking groove on the wrist rest, so that the main body of the device and the wrist rest can be completely separated, which can improve the multi-scene adaptability. In addition, the detachable connection between the locking sinker and the locking protrusion is achieved through a push-pull manner, which is easy to operate and saves learning time for users.
- the structure of the locking component 60 includes but is not limited to the structures described in the above embodiments. In some embodiments, the locking component 60 can also have other structures. 62 and the locking protrusion 51 are detachably connected by means of push-pull.
- Fig. 22B is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application
- Fig. 22C is another schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking assembly 60 may further include: a pressing block button 635, wherein the pressing block button 635 is located between the stopper assembly 63 and the rotating shaft assembly 30, when the horizontal rotating shaft 31 of the rotating shaft assembly 30 is located In the x direction, the bottom end of the rotating shaft bracket 31 a can press the pressing block button 635 to the inside of the stopper component 63 , so that the stopper component 63 locks the locking projection 61 into the locking sinker groove 62 .
- a pressing block button 635 wherein the pressing block button 635 is located between the stopper assembly 63 and the rotating shaft assembly 30, when the horizontal rotating shaft 31 of the rotating shaft assembly 30 is located In the x direction, the bottom end of the rotating shaft bracket 31 a can press the pressing block button 635 to the inside of the stopper component 63 , so that the stopper component 63 locks the locking projection 61 into the locking sinker groove 62 .
- buttons 635 there are two pressing buttons 635 and two stop assemblies 63.
- the two stop assemblies 63 are respectively located on both sides of the locking sinker 62.
- Each pressing button 635 Correspondingly, a stop assembly 63 is provided.
- one, three or more pressing buttons 635 may also be provided, and the number of pressing buttons 635 is not limited.
- the locking force can be strengthened, thereby prolonging the service life of the stop components 63 and the pressure block buttons 635 .
- the stopper assembly 63 may include a top cover plate 631, a first elastic member 633 and a stopper 634, wherein part of the structures of the first elastic member 633 and the stopper 634 are arranged in the installation groove 23, the first end of the stopper 634 passes through the second opening 231 and extends into the locking sinker 62, the second end of the stopper 634 is fixedly connected with one end of the first elastic member 633, and the first elastic The other end of the piece 633 is fixed on the side wall of the top cover plate 631 ; the top cover plate 631 is located at the top of the mounting groove 23 and is fixed on the wrist rest 20 .
- FIG. 22B and Figure 22D there is a wedge-shaped surface 6351 at the bottom end of the pressing block button 635, and a wedge-shaped groove 6341 for the bottom end of the pressing block button 635 is provided on the stop member 634 of the stopper assembly 63.
- the groove 6341 has an inclined surface 6342 that cooperates with the wedge-shaped surface 6351; the wedge-shaped surface 6351 is used to cooperate with the inclined surface 6342 when the pressure block button 635 moves down, so that the stopper assembly 63 moves toward the locking sinker 62; the inclined surface 6342 It is used to cooperate with the wedge-shaped surface 6351 when the stopper component 63 moves away from the locking sinker 62 , so that the pressing block button 635 moves upward.
- the first elastic member 633 includes but is not limited to a spring, and the first elastic member 633 may be a tension spring.
- the pressure block button 635 moves down, the wedge-shaped surface 6351 cooperates with the inclined surface 6342, and the stopper 634 Moving toward the locking sinker 62, the first elastic member 633 is stretched; when the pressure on the top of the pressure block button 635 is released, the stopper 634 moves away from the locking sinker 62 under the action of the first elastic member 633 Moving, the wedge-shaped surface 6351 cooperates with the inclined surface 6342, so that the pressing block button 635 moves upward.
- two pressing block buttons 635 are respectively arranged on the tops of the two stopper assemblies 63, and the pressing block buttons 635 are telescopically arranged on the side of the wrist rest facing the horizontal shaft 31; when the horizontal shaft 31 is rotated to press
- the briquetting button 635 moves down and the bottom end of the briquetting button 635 presses on the stopper assembly 63 to stop the stopper assembly 63 from moving away from the locking sinker 62, so that the locking protrusion 61 is locked in the locking sinker 62 to prevent the device main body 10 from slipping off from the wrist rest;
- the horizontal rotating shaft 31 is rotated to move away from the pressing block button 635, the pressure on the side of the pressing block button 635 close to the device main body 10 is released , the stopper 634 moves away from the locking sinker 62 under the action of the first elastic member 633, and the wedge-shaped surface 6351 cooperates with the inclined surface 6342, so that the pressing
- a through hole for the pressing block button 635 to pass is provided on the top cover plate 631 of the stop assembly 63, and one end of the pressing block button 635 extends through the through hole. The other end is located outside the top cover plate 631 , and the pressing block button 635 can be stretched up and down relative to the top cover plate 631 .
- the cooperation of the inclined surface 6342 and the wedge-shaped surface 6351 can transform the telescopic movement in the vertical direction into the telescopic movement in the horizontal direction. That is, when the briquetting button 635 is pressed down, the telescopic movement in the vertical direction can be transformed into the telescopic movement in the horizontal direction of the stopper 634, and when the pressure on the briquetting button 635 is released, the telescopic movement in the horizontal direction of the stopper 634 The motion can be translated into an up and down telescoping motion of the pressure block button 635 .
- the stopper 634 when the pressure block button 635 is pressed to move downward, the stopper 634 will move toward the locking sinker 62, so that the first end of the stopper 634 is in contact with the locking protrusion. 61, the engagement groove 611 is engaged and connected (as shown in FIG. 22C ), and then the wrist rest and the device main body 10 are fixedly connected; after the pressure block button 635 is released, the stopper 634 is under the action of the first elastic member 633 Move away from the locking sinker groove 62, so that the first end of the stopper 634 moves out of the locking groove 611 of the locking protrusion 61, and then unlock the wrist rest and the device main body 10, so that the wrist rest It can be separated from the device main body 10.
- both ends of the device body 10 are fixedly connected to the wrist rest 20
- the device body 10 is flipped around the horizontal axis 31 (that is, the x-axis in FIG. 22B )
- the device body 10 is turned around the vertical axis (that is, the 22B) when the z-axis in 22B does not rotate more than 90° or -90°
- the rotating shaft support 31a is pressed on the pressing block button 635, and at this time, the first end of the stopper 634 and the engaging recess of the locking protrusion 61
- the groove 611 is engaged and connected, and the wrist rest is fixedly connected to the device body 10; when the device body 10 rotates 90° or -90° around the vertical axis (ie, the z-axis in FIG.
- FIG. 22D is a schematic structural diagram of a pressing button of a wearable device according to an embodiment of the present application. As shown in FIG.
- the top of the pressing block button 635 may also have an inclined first guide surface 6352 and a second guide surface 6353;
- the first direction guide the horizontal shaft 31 to rotate on the pressing block button 635;
- the second guide surface 6353 is used to guide the horizontal rotating shaft 31 to rotate on the pressing block button 635 when the horizontal rotating shaft 31 rotates in the second direction;
- the first direction One of the and second directions is a counterclockwise direction, and the other is a clockwise direction.
- an inclined first guide surface 6352 and a second guide surface 6353 are provided on the top of the pressure block button 635, so that when the device main body 10 is rotated, the shaft support 31a can be rotated to the pressure.
- the stopper assembly 63 locks the locking protrusion 61 into the locking sinker groove 62 .
- the wearable device provided in the embodiment of the present application can only be separated from the wrist rest 20 after the device main body 10 of the wearable device is rotated to a specific position by setting the pressing block button 635, which can prevent the device main body 10 from accidentally falling off the wrist rest 20, The connection stability between the wrist rest and the device main body 10 is increased.
- the embodiment in which the stopper assembly 63 is set in the locking sinker 62 is introduced. It should be understood that, in some other embodiments, the stopper assembly may not be provided. 63, and the locking protrusion 61 is designed into other structures. As shown in FIG. 22E , a locking sinker 62 is provided on the first end 21 of the wrist rest, and one side of the locking sinker 62 is provided for the locking protrusion 61 to slide horizontally into the opening 621 of the locking sinker.
- Both sides of the first base 70 are respectively provided with an elastic force arm 74, one end of the elastic force arm 74 is connected with the first base 70, the other end of the elastic force arm 74 is a free end, and the locking protrusion 61 is located on the elastic force arm.
- the locking sinker 62 is provided with a recessed portion 623 that engages with the locking protrusion 61 .
- FIG. 22F is a schematic cross-sectional view of a partial structure of the wrist rest and hinge assembly 30 of a wearable device provided by an embodiment of the present application.
- the elastic arm 74 and the first base 70 are in an integrated structure, and the locking protrusions 61 of the two elastic arms 74 are located in the concave portion 623 of the locking sinker 62, so that the main body of the device 10 are fixedly connected with the wrist rest.
- the two elastic arms 74 can make the locking protrusion 61 snap into the recess 623 by virtue of their own elasticity, thereby making the locking protrusion 61 and the locking
- the sinking groove 62 is locked and connected, because the elastic force arm 74 has elasticity, so the elastic force arm 74 on the first base 70 and the side wall of the locking sinking groove 62 are in contact with each other, so the first base 70 will not be locked in the sinking groove.
- Rocking occurs in the groove 62, which can increase the stability between the device main body 10 and the wrist rest, and the elastic arm 74 has a simple structure, which can simplify the structure of the locking assembly 60, thereby reducing the cost.
- only one elastic force arm 74 may be provided on one side of the first base 70, or multiple elastic force arms 74 may be provided on one side of the first base 70, so for the elastic force
- the arrangement position and number of the arms 74 are not limited in this embodiment.
- the shape of the elastic arm 74 is not limited to being set on the first base 70 shown in FIG. 22E and FIG. 22F .
- the elastic arm 74 can also be set as a separate structure.
- two elastic force arms 74 are arranged in the locking sinker 62 , and the two elastic force arms 74 are arranged opposite to each other and form an integrated structure.
- One end of the elastic force arm 74 links to each other with the inner wall of the locking sinker 62, and the other end of the elastic force arm 74 is a free end; and the free end of the elastic force arm 74 has a convex shell 741;
- the slot 612 engaged with the protrusion 741 is not limited to being set on the first base 70 shown in FIG. 22E and FIG. 22F .
- the elastic arm 74 can also be set as a separate structure.
- two elastic force arms 74 are arranged in the locking sinker 62 , and the two elastic force arms 74 are arranged opposite to each other and form an integrated structure.
- the locking sinker 62 is arranged on the first end 21 of the wrist rest, and the locking protrusion 61 is arranged on the first base 70, and the first base 70 can be pulled out from the wrist rest 20 along the x direction. Specifically, it can be pulled out from the third end 24 of the wrist rest or the fourth end 25 of the wrist rest.
- the direction of the elastic force arm 74 can also be set so that the first base 70 can The structure of pulling out from the wrist rest 20 along the y direction or the z direction is not specifically limited in this embodiment.
- the elastic arm 74 is fixed in the locking sinker 62, and the two elastic arms 74 are connected to form an integrated structure.
- the two elastic arms 74 can also be a split structure, as long as the two elastic arms 74 are fixedly arranged in the locking sinker 62 .
- the elastic arm 74 can also be arranged on the first base 70 , therefore, the arrangement position of the elastic arm 74 is not specifically limited in this embodiment.
- the number of elastic arms 74 does not limit the protection scope of this application, as long as the technical solutions provided with elastic arms 74 all belong to the protection scope of the technical solutions in the embodiments of this application.
- the locking assembly 60 When the engaging end 69e2 of the elastic clip 636 is located in the recess 613 on the locking protrusion 61, the locking assembly 60 is in the locked state, and at this time the device main body 10 and the wrist rest 20 are fixedly connected; when the device main body needs to be 10 is separated from the wrist rest, the device main body 10 can be pulled out from the wrist rest 20 along the y direction.
- a pit 613 is respectively provided on both sides of the first base 70 along the x direction, and two elastic clips 636 are respectively provided at the first end of the wrist rest along the x direction. 21, and the locking sinker opening 621 is arranged on the side facing the second end 22 of the wrist rest, so that the device main body 10 can be pulled out from the wrist rest 20 along the y direction.
- the two elastic clips 636 can also be respectively arranged on both sides of the first end 21 of the wrist rest along the y direction, and the corresponding recess 613 on the first base 70 can be arranged along the y direction.
- the directions are set on both sides of the first base 70 respectively, and the locking sinker opening 621 is set on the side facing the third end 24 of the wrist rest or the fourth end 25 of the wrist rest, so that the device main body 10 can be aligned along the x direction. Pull it out from the wrist rest 20.
- the elastic clip 636 can be a leaf spring structure as shown in FIG. 22I.
- the elastic clip 636 can also be of other structures, which are not specifically limited in this application. .
- the wearable device provided by the embodiment of the present application can also increase the engagement force between the locking sinker 62 and the locking protrusion 61 by setting the elastic piece, thereby improving the connection stability between the device main body 10 and the wrist rest 20 to prevent The main body 10 of the device accidentally falls off from the wrist rest 20 , and the structure of the elastic clip 636 is simple, the fixing is firm, and the cost can be reduced.
- the structure not described can be the same as the structure in the first embodiment. Therefore, other structures of the wearable device 100 can refer to the description in the first embodiment. No more details will be given in this embodiment.
- FIG. 22K is a schematic cross-sectional structure diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application
- FIG. 22L is a wrist rest of a wearable device provided by an embodiment of the present application
- the locking assembly 60 may further include: a first magnetic piece 69b and a second magnetic piece 69c, one of the first magnetic piece 69b and the second magnetic piece 69c is arranged in the wrist rest 20 The other one of the first magnetic member 69b and the second magnetic member 69c is disposed on the vertical shaft 32 or in the first base 70 disposed at the bottom end of the vertical shaft 32 .
- a first magnetic piece 69b is provided at the bottom of the first base 70
- a second magnetic piece 69c is provided at the bottom of the locking sinker 62 on the wrist rest 20
- the second magnetic piece 69c is fixed on On the wrist rest 20
- the locking projection 61 is positioned at the end of the first base 70 close to the wrist rest 20
- the first base 70 has a first opening 71 that can pass through one end of the vertical rotating shaft 32, and a first The accommodating groove of the magnetic piece 69b, the first magnetic piece 69b is fixed in the accommodating groove.
- the first magnetic member 69b is a larger cuboid structure, and in some other embodiments, the first magnetic member 69b can be a plurality of small cuboids, cylinders and other structures arranged side by side. , Therefore, the shape, structure and quantity of the first magnetic member 69b are not specifically limited. Similarly, the shape, structure and quantity of the second magnetic member 69c are not specifically limited, and the specific shape, structure and quantity can be specifically set according to specific situations.
- the locking sinker opening 621 is set toward the second end 22 of the wrist rest, of course, the locking sinker opening 621 can also be toward the third end 24 of the wrist rest, or the wrist rest.
- the fourth end 25 and the first end 21 of the wrist rest are provided, and the direction of the locking sinker opening 621 is not specifically limited in this embodiment.
- the wearable device provided by the embodiment of the present application can realize the connection between the device main body 10 and the wrist rest 20 through the attractive force between the first magnetic part 69b and the second magnetic part 69c by setting the first magnetic part 69b and the second magnetic part 69c.
- the connection is fixed to prevent the device main body 10 from falling off from the wrist rest 20 .
- the structure of the first magnetic part 69b and the second magnetic part 69c is simple and easy to install, which can simplify the structure of the wrist rest 20 and the device main body 10, thereby saving costs.
- the structure not described can be the same as the structure in the first embodiment. Therefore, other structures of the wearable device 100 can refer to the description in the first embodiment. No more details will be given in this embodiment.
- FIG. 22M is a schematic structural diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- FIG. 22N is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking assembly 60 may further include: a toggle button 69d, the first end of the toggle button 69d is located outside the first end 21 of the wrist rest, and the second end of the toggle button 69d end is located within the first end 21 of the wrist rest. And the first end of the toggle button 69d has a corrugated plate structure.
- the shape of the first end of the toggle button 69d can be a corrugated plate-like structure, or other structures, such as a cylindrical structure, or a paddle-shaped structure, etc. This is not specifically limited.
- the second end of the toggle button 69d has a clamping rod 69d1, and the lock projection 61 is provided with a clamping hole 614; one end of the clamping rod 69d1 extends into the lock when the toggle button 69d is toggled.
- the sinking groove 62 is inserted in the locking hole 614 to block the locking projection 61 from moving out of the locking sinking groove 62, and move out of the locking hole 614 when the toggle button 69d is reversed, so that the locking projection 61 It can be removed from the locking sinker 62 to separate the device main body 10 and the wrist rest 20 .
- the first end 21 of the wrist rest has a sliding space 211 for the second end of the toggle button 69d to slide; and the two opposite side walls in the sliding space 211 are provided with a first magnet 212 and The second magnet 213, the second end of the toggle button 69d is positioned between the first magnet 212 and the second magnet 213; the second end of the toggle button 69d is toggled to the second end of the toggle button 69d and the first magnet 212 is attracted , one end of the clamping rod 69d1 is inserted in the clamping hole 614; when the toggle button 69d is toggled until the second end of the toggle button 69d is attracted to the second magnet 213, one end of the clamping rod 69d1 withdraws from the locking sink Slot 62.
- the toggle button 69d is made of a material that can attract each other with a magnet, specifically iron, or other alloy materials, and the specific material of the toggle button 69d is not specifically limited in this embodiment.
- the strength of the toggle can be reduced, thereby improving the sensitivity of the toggle button 69d, and increasing the sensitivity of the toggle button 69d. locking force.
- a stopper assembly 63 is provided on the side of the wrist rest 20 opposite to the toggle button 69d, and the structure of the stopper assembly 63 can be the same as that of the stopper assembly 63 in Embodiment 1. , only the position is different, so for the introduction of the stopper assembly 63, please refer to the related content in the first embodiment.
- the stopper assembly 63 may not be provided, so the number of stopper assemblies 63 is not specifically limited in this embodiment.
- the toggle button 69d is arranged outside the first end 21 of the wrist rest, of course, in some other embodiments, the toggle button 69d can also be arranged at the first end 21 of the wrist rest.
- FIG. 22O is a schematic cross-sectional structural view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the lock assembly 60 may further include: a toggle switch 69e, the toggle switch 69e may include an operating end 69e1 and a locking end 69e2, the operating end 69e1 is located outside the wrist rest 20, and the locking end 69e2 is located on the locking end inside the sinking groove 62; the engaging end 69e2 is used to lock the first base 70 in the locking sinking groove 62; the operating end 69e1 is used to drive the engaging end 69e2 to snap into the first base 70 or from the first base when being pushed; 70 to move away.
- a toggle switch 69e the toggle switch 69e may include an operating end 69e1 and a locking end 69e2, the operating end 69e1 is located outside the wrist rest 20, and the locking end 69e2 is located on the locking end inside the sinking groove 62; the engaging end
- the first base 70 has a female buckle 75
- the engaging end 69e2 of the toggle switch 69e has a male buckle 69e3 that cooperates with the female buckle 75.
- the first base 70 can be locked on the wrist rest 20 by using the buckle of the male buckle 69e3 and the female buckle 75, so that the device main body 10 is fixedly connected with the wrist rest 20, and the male buckle
- the structure of 69e3 and the female buckle 75 is simple, which is beneficial to simplify the structure of the toggle switch 69e, thereby reducing the cost.
- a catch 69e4 can also be set on the toggle switch 69e, and a stop groove 26 can be set on the wrist rest 20 near the operating end 69e1 of the toggle switch 69e.
- the blocking piece 69e4 is also buckled with the retaining groove 26, which can make the locking protrusion 61 and the locking sinker groove 62 more stable when locked and connected.
- the length of catch piece 69e4 can be greater than male buckle 69e3, so when male buckle 69e3 and female buckle 75 are separated, because a part of catch piece 69e4 is still located in retaining groove 26, can prevent toggle switch 69e from falling off on wrist rest 20 like this.
- the shape of the toggle switch 69e can be the shape shown in FIG. 22O, and of course it can also be other shapes, and the shape of the toggle switch 69e is not specifically limited in this embodiment.
- the toggle switch 69e is arranged on the outside of the fourth end 25 of the wrist rest, and the locking sinker opening 621 is arranged on the third end 24 of the wrist rest, so that the locking projection 61 and the locking With the sinker 62 unlocked, the device body 10 can slide out from the third end 24 of the wrist rest.
- the toggle switch 69e can be arranged on the outside of the third end 24 of the wrist rest, and the locking sinker opening 621 is arranged on the fourth end 25 of the wrist rest, so that the locking protrusion 61 and When the locking sinker 62 is unlocked, the device body 10 can slide out from the fourth end 25 of the wrist rest.
- the shape of the toggle switch 69e is not specifically limited in this embodiment, as long as the locking protrusion 61 and the locking sinker 62 can be locked, and the locking protrusion 61 and the locking sinker can be locked. Slot 62 can be unlocked.
- the wearable device provided by the embodiment of the present application can realize the disassembly or locking of the device main body 10 and the wrist rest 20 by setting the toggle switch 69e back and forth.
- the wearable device is easy to operate and has a simple structure.
- the time connection is relatively stable. By setting the operation end 69e1 of the toggle switch 69e outside the wrist rest 20, the operation can be facilitated like this.
- FIG. 22P is a schematic structural diagram of a device body and a wrist rest of a wearable device according to an embodiment of the present application.
- FIG. 22Q is a schematic structural diagram of a partial structure of a wrist rest and hinge assembly 30 of a wearable device provided by an embodiment of the present application.
- the lock assembly 60 may further include: a lock switch 69f, the lock switch 69f is arranged on the wrist rest 20, and the lock switch 69f is provided with a trigger button 69f1 , one end of the trigger button 69f1 protrudes outward from the wrist rest 20, and is exposed on the surface of the first end 21 of the wrist rest; the locking switch 69f can be used to lock the first base 70 in the locking sinker 62 , and the lock on the first base 70 is released when the lock switch 69f is pressed.
- FIG. 22R is a schematic diagram of the exploded structure of Fig. 22Q.
- FIG. 22S is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application. 22R and 22S, the first end 69f2 of the lock switch is fixed in the wrist rest 20, and the second end 69f3 of the lock switch is suspended in the lock sinker 62 and is used to lock the first base 70 in the In the lock sinker 62; the lock switch 69f is provided with a trigger button 69f1, the trigger button 69f1 is located between the first end 69f2 of the lock switch and the second end 69f3 of the lock switch, and one end of the trigger button 69f1 is connected from the wrist
- the holder 20 protrudes from the inside to the outside; when the trigger button 69f1 is pressed, the second end 69f3 of the lock switch unlocks the first base 70 .
- the trigger button 69f1 is located on the side of the wrist rest 20 facing the horizontal axis of rotation 31, and the trigger button 69f1 is located on one side of the horizontal axis of rotation 31; , the trigger button 69f1 moves down and drives the second end 69f3 of the locking switch to disengage from the first base 70 so that the first base 70 can slide out from the wrist rest 20 . That is to say, by turning the device main body 10 around the horizontal rotating shaft 31, the end surface of the first end of the device main body 10 is pressed against the trigger button 69f1, and then the second end 69f3 of the locking switch is released from the first base 70. lock, and then the device main body 10 can be slid out from the locking sinker opening 621 .
- the top of the locking sinker 62 is provided with a blocking case 624, and the first base 70 will be stuck at the blocking case 624 after sliding into the locking sinker 62, so as to prevent the first base 70 from opening 621 of the locking sinker.
- the opposite side slides out, and the top of the lock switch 69f is covered with a top plate 27, which can protect the lock switch 69f.
- the locking sinker opening 621 is set toward the third end 24 of the wrist rest, of course, in some other embodiments, the locking sinker opening 621 can also be set toward the fourth end 25 of the wrist rest, The direction of the locking sinker opening 621 is not limited in this embodiment of the application.
- the first base 70 is provided with a hook groove 76, and the second end 69f3 of the lock switch has a hook 69f4 matched with the hook groove 76; the lock switch 69f connects with the hook 69f4 through the hook groove 76
- the cooperation locks the first base 70 in the locking sinker 62 .
- a relief space 761 is provided on the first base 70 near the hook groove 76 , and the relief space 761 communicates with the hook groove 76 .
- the locking switch 69f is a rod-shaped structure, and a trigger button 69f1 is provided on the side of the rod-shaped structure close to the horizontal rotating shaft 31.
- the trigger button 69f1 can not only trigger the locking protrusion 61 and the locking sinker 62, it can also prevent the locking switch 69f from sliding back and forth along the x direction relative to the wrist rest 20.
- the position and direction of the trigger button 69f1 are not specifically limited in this embodiment, as long as it is set on the wrist rest 20.
- the trigger method of the trigger button 69f1 includes but is not limited to the device main body 10
- the trigger button 69f1 can also be triggered by manual pressing, which is not specifically limited in this embodiment.
- other structures can be the same as those in Embodiment 1, so other structures of the wearable device can be Refer to the description in Embodiment 1, and details are not repeated here.
- the wearable device provided by the embodiment of the present application can separate the device main body 10 from the wrist rest 20 by simply pressing the lock switch 69f by setting the lock switch 69f, which is easy to operate.
- the connection between the first base 70 and the lock switch 69f can be stabilized, preventing the device main body 10 from slipping off the wrist rest 20, and by setting the clearance space 761, the hook 69f4 can be easily moved down to disengage from the hook.
- the slot 76 further separates the device main body 10 from the wrist rest 20 .
- FIG. 22T is a schematic structural diagram of a device body and a wrist rest of a wearable device according to an embodiment of the present application.
- FIG. 22U is a schematic cross-sectional structural view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking assembly 60 may also include: a push switch 69g, wherein two push switches 69g are respectively arranged on the outside of the wrist rest 20, of course, in some embodiments, one push switch 69g may also be set, and press
- the number of switches 69g is not limited.
- the first end 69g1 of the push switch is located outside the wrist rest 20, and the second end 69g2 of the push switch is located at the locking sinker 62; two locking protrusions 61 are telescopically arranged on the first base
- the locking sinker 62 is provided with a step 28 that cooperates with the locking protrusion 61, and the two steps 28 are respectively arranged on both sides of the locking sinker 62, and one locking protrusion 61 corresponds to one Step 28
- one push switch 69g corresponds to one locking protrusion 61 , when the end of the locking protrusion 61 close to the step 28 engages with the step 28 , the locking protrusion 61 is locked and connected with the locking sinker groove 62 .
- the step 28 can be welded, riveted, bonded or integrally formed on the wrist rest 20 , and the connection method between the step 28 and the wrist rest 20 is not specifically limited in this embodiment.
- both positions of the device body 10 and the wrist rest 20 can be locked, thereby increasing the connection stability between the device body 10 and the wrist rest 20 .
- the two push switches 69g are respectively arranged on both sides of the wrist rest 20, so that the engagement force between the wrist rest 20 and the device main body 10 can be distributed on both sides of the wrist rest 20, so that both sides of the wrist rest 20 are in a balanced state, so that Prevent one end of the device main body 10 from slipping off, resulting in an unstable connection between the device main body 10 and the wrist rest 20 .
- the first base 70 and the locking sinker 62 are locked and connected at the step 28 through the locking protrusion 61; when the push switch 69g is pressed, the second end 69g2 of the push switch drives the locking protrusion
- the lifter 61 moves away from the direction of the push switch 69g, so that the engagement relationship between the locking protrusion 61 and the step 28 is released, that is, the locking protrusion 61 is moved away from the step 28, so that the first base 70 and the lock
- the sinking grooves 62 are in an unlocked state.
- the locking projection 61 has a first inclined surface 615 on the end facing the push switch 69g
- the push switch 69g has a second inclined surface 69g3 that matches the first inclined surface 615; so that when the push switch is pressed 69g, the second inclined surface 69g3 can drive the first inclined surface 615 to move away from the push switch 69g, and then press the switch 69g to push the locking protrusion 61 inward, when the locking protrusion 61 and the step 28
- the locking protrusion 61 and the locking sinker groove 62 are in an unlocked state, thereby separating the device main body 10 from the wrist rest 20 .
- the contact surface of the locking protrusion 61 and the push switch 69g is set as a plane, and the inclined surface can increase
- the contact area between the push switch 69g and the locking protrusion 61 is large, so that the connection stability between the push switch 69g and the locking protrusion 61 can be improved, and the detachment of the push switch 69g and the locking protrusion 61 can be effectively prevented; in addition , in the case of the same contact area, setting it as an inclined surface can reduce the volume of the second end 69g2 of the push switch and the locking protrusion 61, thereby saving the accommodation space of the pressing switch 69g and the locking protrusion 61, which is beneficial to wearing the device miniaturization development.
- the first base 70 is provided with a first pressing spring 616, one end of the first pressing spring 616 is fixed in the first base 70, and the other end of the first pressing spring 616 is connected to the locking projection 61. One end is connected, and the first pressing spring 616 is compressed and limited in the first base 70, so that when the locking protrusion 61 and the locking sinker 62 are locked at the step 28, the locking protrusion 61 is prevented from approaching.
- the direction of the first base 70 moves, thus causing the problem that the engagement between the locking protrusion 61 and the locking sinker 62 is not firm.
- the locking protrusion 61 can be stretched relative to the first base 70, so that the locking protrusion 61 and the locking sinker 62 can be in a locked state or an unlocked state. .
- the wrist rest 20 is provided with a second pressing spring 69g4, the second pressing spring 69g4 is sleeved on the pressing switch 69g, and the pressing switch 69g is telescopically set on the wrist rest through the second pressing spring 69g4. 21 of the first end.
- the first end 69g1 of the push switch is provided with a push head, and a limiting ring is arranged between the second end 69g2 of the push switch and the push head.
- the pressing head can be a cuboid structure, the side of the pressing head near the first base 70 is opposite to the blocking wall, and the pressing head can be The outer side of the wrist rest 20 is limited by the blocking wall.
- the inner side of the retaining wall on the wrist rest 20 is provided with a cavity for accommodating the second pressing spring 69g4, one end of the second pressing spring 69g4 abuts against one side of the cavity, and the other end of the second pressing spring 69g4 is in contact with the limit position.
- One side of the circle abuts, and the other side of the limit circle abuts against the other side of the cavity, so that the push switch 69g can be telescopically arranged at the first end 21 of the wrist rest by the second push spring 69g4.
- the pressing switch 69g can be stretched relative to the wrist rest 20, so that after the locking projection 61 and the locking sinker 62 are locked, the pressing switch 69g can automatically rebound to the initial position.
- the push switch 69g is arranged along the x direction, of course, in some other embodiments, the push switch 69g can also be arranged along the y direction, and the setting direction of the push switch 69g is in this Examples are not limited.
- the wearable device provided by the embodiment of the present application can directly separate the device main body 10 from the wrist rest 20 by pressing the push switches 69g on both sides by setting the push switch 69g, and disassemble without rotating the device main body 10 to a specific angle. More convenient and faster.
- Fig. 22V is an exploded structural diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application.
- the locking sinker 62 is located on the first base 70, and the locking protrusion 61 is located on the wrist rest 20; at least one side of the locking sinker 62 is provided with the locking protrusion 61 horizontally (along x direction) into the locking sinker opening 621.
- FIG. 22W is a schematic cross-sectional structural view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking projection 61 is provided with a locking position 617
- the locking sinker 62 is provided with a locking protrusion 625 matching the locking position 617.
- the locking protrusion 625 is engaged in the locking position 617 , and then the locking protrusion 61 and the locking sinker groove 62 are locked and connected.
- the location and quantity of the locking protrusion 625 and the locking position 617 are not specifically limited in this embodiment of the application, as long as there is a locking protrusion 625 on one of the locking protrusion 61 and the locking sinker groove 62
- the other one of the locking protrusion 61 and the locking sinker 62 has a locking position 617, and the locking protrusion 61 and the locking sinker 62 can be locked and connected by engaging the locking protrusion 625 with the locking position 617.
- the locking sinker opening 621 can also be provided only on one side of the locking sinker 62 , as shown in FIG. 22X and FIG. 22Y , it is opposite to the locking sinker opening 621 on the first base 70
- a notch 77 is set on one side of the wrist rest 20, and a block 618 matching the notch 77 is arranged on the locking protrusion 61 on the wrist rest 20.
- the wearable device provided by the embodiment of the present application can prevent the locking projection 61 from sliding out from one side of the locking sinker 62 by providing the notch 77 and the stopper 618 , so as to prevent the device main body 10 from accidentally falling off.
- the locking protrusion 625 is provided on one of the locking protrusion 61 and the locking sinker 62 , and the other one of the locking protrusion 61 and the locking sinker 62 is provided.
- the locking position 617 can realize the locked connection between the first base 70 and the wrist rest 20 through the locking protrusion 625 and the locking position 617 .
- the locking protrusion 625 and the locking position 617 are directly arranged on the locking protrusion 61 and the locking sinker groove 62, the locking connection between the wrist rest 20 and the first base 70 can be realized without setting other components, and the structure is simple. And easy to disassemble.
- Fig. 22Z is a schematic diagram of an exploded structure of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 22a is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking sinker 62 is located on the wrist rest 20, and the locking protrusion 61 is located on the end of the first base 70 close to the wrist rest 20; and the top of the locking sinker 62 has a locking
- the locking protrusion 61 slides vertically (along the z direction) into the notch of the locking sinker groove 62 .
- the locking assembly 60 can also include: a locking button 69h, which is telescopically set or slidably set on the wrist rest 20 (in this embodiment, it is telescopically set); and one end of the locking button 69h is located on the wrist rest The other end of the locking button 69 h is located outside the first end 21 of the locking sinker 62 and is used to engage with the locking protrusion 61 .
- Fig. 22b is a partial structural schematic diagram of a cross-sectional view at another angle of the device body and the wrist rest of the wearable device provided by an embodiment of the present application.
- the locking button 69h has a first hook 69h1 on one end located in the locking sinker groove 62, and the first hook 69h1 is used to communicate with the locking protrusion 61 when it extends into the locking sinker groove 62.
- the locking protrusion 61 is engaged, and is used to move when the locking button 69h is pressed or slid, so that the first hook 69h1 is disengaged from the locking protrusion 61 .
- a first telescopic member 69h2 may also be provided in the locking sinker 62, and one end of the first telescopic member 69h2 is connected with the inner wall of the locking sinker 62, and the first The other end of the telescopic part 69h2 is connected with the locking button 69h, so that the locking button 69h can be telescopically arranged on the wrist rest 20 .
- the locking button 69h is stretchable relative to the wrist rest 20 by setting the first telescopic member 69h2, so that after the wrist rest 20 and the device main body 10 are unlocked, the locking button 69h can automatically rebound for repeated use.
- the first telescopic member 69h2 may be a spring, and of course it may also be other elastic structures, which are not specifically limited in this embodiment of the present application.
- the locking button 69h can be engaged with the locking protrusion 61, and then the locking protrusion 61 can be locked in the locking sinker groove 62, so that the device main body 10 can be fixed on the wrist rest 20 , to prevent the device main body 10 from slipping off the wrist rest 20 .
- first hooks 69h1 are arranged on the locking button 69h, and the two first hooks 69h1 are respectively arranged on both sides of the first telescopic member 69h2, and each first hook 69h1
- Two sub hooks arranged at intervals along the y direction are arranged on the top.
- the number of the first hooks 69h1 includes but is not limited to two, and may also be one or three, so this is not specifically limited in this embodiment.
- the number of sub hooks includes but is not limited to two, and may be one or three, etc., so it is not specifically limited in this embodiment.
- Fig. 22c is a partial structural schematic diagram of a cross-sectional view at another angle of the device body and the wrist rest of the wearable device provided by an embodiment of the present application.
- at least one second telescopic piece 69h3 is provided in the locking sinker 62, and an abutment piece for abutting against the second telescopic piece 69h3 is provided on the first base 70; the second telescopic piece 69h3 is used to be compressed by the abutting piece when the locking protrusion 61 engages with the first hook 69h1 , and to drive the abutting piece to move toward the notch when the locking protrusion 61 is disengaged.
- the abutting piece can be the bottom end of the first base 70, and of course it can also be a part arranged at the bottom end of the first base 70, and its specific shape can be specifically set according to specific conditions, and is not specifically limited here. .
- the second telescopic part 69h3 By setting the second telescopic part 69h3, it is convenient to give an upward elastic force to the device main body 10 when the device main body 10 and the wrist rest 20 are separated, so as to facilitate disassembly; An upward elastic force improves the installation feel.
- one end of the locking button 69h located in the locking sinker groove 62 also has a second hook 69h4, and the locking sinker groove 62 has a second hook 69h4 that cooperates with the second hook 69h4.
- the card deck 626 By setting the second hook 69h4 and setting the card platform 626 in the locking sinker 62, the locking button 69h is fixedly arranged on the wrist rest 20, and one end is always located in the locking sinker 62, which can prevent the lock The closing button 69h falls off from the locking sinker 62.
- the locking protrusion 61 and the locking sinker 62 can be unlocked by pressing the locking button 69h, thereby separating the wrist rest 20 from the device main body 10, Easy to operate.
- Fig. 23 is a schematic structural diagram of a wearable device provided by an embodiment of the present application.
- the wearable device 100 in this embodiment may include: a device body 10 , a wrist rest 20 , a shaft assembly 30 , a locking assembly 40 (see FIG.
- the rotating shaft assembly 30 is arranged at the first end 11 of the device main body
- the engaging assembly 40 is arranged at the second end 12 of the device main body
- the device main body 10 is fixed on the wrist through the rotating shaft assembly 30 , the engaging assembly 40 and the locking assembly 60
- the wrist rest 20 is used to carry the device main body 10
- the watch strap 50 is rotatably connected to both ends of the wrist rest 20 for easy wearing.
- the position of the elastic piece 66 includes but is not limited to being disposed on the slider 65 .
- the shrapnel 66 can also be arranged in the slide groove 64 .
- Fig. 25 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the rotating shaft assembly 30 may include a horizontal rotating shaft 31 and a vertical rotating shaft 32, the locking assembly 60 is arranged at both ends of the horizontal rotating shaft 31, and the slider 65 of the locking assembly 60 is arranged on the horizontal rotating shaft 31, and the sliding Groove 64 is arranged on the device main body 10, and elastic piece 66 is positioned on slide block 65, and the two ends of horizontal rotating shaft 31 are vertically turned over and connected with the first end 11 of device main body, so that device main body 10 can turn around horizontal rotating shaft 31;
- One end of 32 is fixedly connected with the wrist rest 20, and the vertical rotating shaft 32 is horizontally connected with the horizontal rotating shaft 31, so that the device main body 10 can rotate around the vertical rotating shaft 32.
- the horizontal rotating shaft 31 comprises a rotating shaft bracket 31a and two rotating assemblies 34 arranged at both ends of the rotating shaft bracket 31a.
- the axial direction of the rotating shaft bracket 31a and the axial direction of the vertical rotating shaft 32 are arranged perpendicular to each other.
- the cavity structure of the component 34 one end of the rotating component 34 is located in the cavity structure, and the other end is connected with the device main body 10 .
- Fig. 26 is a schematic structural diagram of a rotating assembly of a wearable device provided by an embodiment of the present application.
- each rotating assembly 34 may include a friction shaft 341 , a friction plate 342 , a limiting member 343 and an elastic plate 66 .
- the limiter 343 and the two friction plates 342 are both sleeved on the friction shaft 341, and the limiter 343 and the two friction plates 342 are both rotatably connected with the friction shaft 341, and the limiter 343 and the two friction plates 342 are all connected to the friction shaft 341.
- the rotating shaft bracket 31a is fixedly connected so that the friction shaft can rotate relative to the rotating shaft bracket 31a, and the elastic piece 66 is arranged at the second end 341b of the friction shaft.
- the limiting member 343 is in contact with the friction plate 342 , and the limiting member 343 is located on the side of the friction plate 342 close to the second end 341 b of the friction shaft, and the second end 341 b of the friction shaft is detachably connected to the device main body 10 .
- Fig. 27 is a schematic structural diagram of a friction shaft of a wearable device provided by an embodiment of the present application.
- the friction shaft 341 includes a shaft body 3411 , a fourth limiting protrusion 3412 and a slider 65 , the shaft body 3411 is located at the first end 341 a of the friction shaft, and the slider 65 is located at the second end 341 b of the friction shaft.
- the fourth limiting protrusion 3412 extends from the end surface of the slider 65 towards the first end of the friction shaft 341 toward the direction close to the first end 341a of the friction shaft.
- the slider 65 and the friction shaft 341 are in an integrated structure.
- the two sides of the slider 65 facing the chute 64 are provided with shrapnel 66.
- the slider 65 is arranged on the outer edge of the shaft body 3411, and can pass through the chute with the main body 10 of the device. 64 and elastic piece 66 realize detachable connection.
- a first groove 651 capable of accommodating the elastic piece 66 is disposed on the slider 65 , and a hole-like structure is formed on a bottom wall of the first groove 651 .
- the first groove 651 is provided with an elastic piece 66 and a first connecting piece 652, and the first connecting piece 652 can pass through a through hole provided on the elastic piece 66 for the first connecting piece 652 to pass through.
- the connecting piece 652 passes through the through hole on the elastic piece 66 , and then fixes the elastic piece 66 in the first groove 651 .
- FIG. 28 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- FIG. 29 is an enlarged view of part B of FIG. 28 .
- two first grooves 651 are oppositely arranged on both sides of the slider 65 , a blocking wall is provided between the two first grooves 651 , and the first connecting member 652 passes through the blocking wall. Such that two ends of the first connecting member 652 are located in the two first grooves 651 respectively.
- the elastic piece 66 includes a top elastic piece 661 and a bottom elastic piece 662, the top elastic piece 661 and the bottom elastic piece 662 are arranged oppositely, and are riveted in the slider 65 through the first connecting piece 652; the top elastic piece 661 and the bottom elastic piece 662 are both provided with arc-shaped protrusions,
- the chute 64 is provided with an arc-shaped groove; when the arc-shaped protrusion slides into the arc-shaped groove, the locking assembly 60 is in a locked state; when the arc-shaped protrusion slides out of the arc-shaped groove, the locking assembly 60 is unlocked.
- connection method between the elastic piece and the first groove includes but is not limited to the above-mentioned riveting, and the elastic piece can also be fixed in the first groove by welding, bonding, fastener connection, etc., as long as the elastic piece can be
- the technical solutions fixed in the first groove all belong to the protection scope of the technical solutions of the present application.
- Fig. 30 is another schematic cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the inner wall of the chute 64 is provided with a wear-resistant part 64 a, and a groove for accommodating the slider 65 is provided on the wear-resistant part 64 a.
- the wear part 64a comprises a top wall, a bottom wall, a rear groove wall and a connecting wall, wherein the top wall and the bottom wall are arranged at opposite ends of the connecting wall along the axial direction of the vertical shaft 32, and the rear groove wall is arranged on the chute 64
- One end close to the second end of the device main body 10 is connected to the top wall, the bottom wall and the connection part 3413, and openings for installing fasteners can be provided on the connection wall, so that the chute 64 is fixedly connected to the device main body 10 through the fasteners .
- the arc-shaped grooves are relatively arranged on the top wall and the bottom wall. Both the top elastic piece 661 and the bottom elastic piece 662 are provided with arc-shaped protrusions. When the arc-shaped protrusions slide into the arc-shaped grooves, the locking assembly 60 is locked. State; when the arc-shaped protrusion slides out of the arc-shaped groove, the lock assembly 60 is in an unlocked state.
- the chute 64 is provided on the wear-resistant part 64a.
- the chute 64 can also be directly set on the device main body 10, which saves cost compared to setting it on the wear-resistant part 64a.
- the way of connecting the chute 64 to the device main body 10 includes but is not limited to fastener connection.
- the chute 64 and the device main body 10 can also be fixedly connected by bonding, riveting, etc. It is possible to fixedly connect the chute 64 and the equipment main body 10, all of which belong to the protection scope of the technical solution of the present application.
- the wearable device may further include: a second base 70a, wherein the second base 70a is arranged at the bottom end of the vertical shaft 32, and the bottom end of the vertical shaft 32 is fixed in the second base 70a .
- the first end 21 of the wrist rest is provided with a mounting portion for mounting the second base 70a
- the second base 70a is fixed on the mounting portion
- the bottom of the second base 70a and the mounting portion are both provided with through holes , so that the second base 70a can be fixed on the mounting part by fasteners.
- connection between the second base 70a and the wrist rest 20 includes but is not limited to fastener connection. Bonding and other means to achieve fixed connection, as long as the second base 70a and the wrist rest 20 can be fixedly connected, all belong to the protection scope of the technical solution of the present application.
- Fig. 31 is a schematic structural diagram of a second base of a wearable device according to an embodiment of the present application.
- Fig. 32 is a structural schematic diagram of another angle of the second base of the wearable device provided by an embodiment of the present application.
- the second base 70a has a third opening 71a through which one end of the vertical shaft 32 can pass; and the bottom end of the vertical shaft 32 has a second boss 321a, and the third opening
- the top inner wall of the hole 71a has a second convex edge 73a that blocks the second boss 321a, and the second boss 321a is in contact with the second convex edge 73a, so that the bottom end of the vertical shaft 32 is fixed on the second Inside the base 70a.
- the shape of the third opening 71a is the same as that of the first opening 71 in the first embodiment, so for the shape of the third opening 71a, please refer to the description in the first embodiment, and the description will not be repeated here. .
- Fig. 33 is a partial structural schematic diagram of a shaft assembly of a wearable device provided by an embodiment of the present application.
- the second moving cam 35a is rotatably connected to the vertical shaft 32, and is fixedly connected to the second through hole 312a, that is, the second moving cam 35a is fixedly connected to the rotating shaft support 31a, which is equivalent to the second moving cam 35a.
- the cam 35a is fixedly connected to the horizontal shaft 31; the second base 70a has a second extension 72a extending into the second through hole 312a, the second moving cam 35a is against the second extension 72a, and the third opening 71a extends to On the top end surface of the second extension 72a, the second convex edge 73a is located on the second extension 72a;
- the side facing the second moving cam 35a is set as a fourth concave-convex surface 722a that matches the concave-convex portion of the third concave-convex surface; arc-shaped transition surfaces are provided between the convex and concave parts of the third concave-convex surface and the fourth concave-convex surface 722a 721a, so that the second movable cam 35a is rotationally connected with the second base 70a.
- turning the device main body 10 can drive the friction shaft 341 to rotate axially around the friction shaft 341 relative to the rotating shaft support 31a, and turning the device main body 10 can drive the horizontal rotating shaft 31 to rotate around the vertical rotating shaft 32 axial rotation.
- the second movable cam 35a is fixedly connected to the rotating shaft support 31a, which is equivalent to being fixedly connected to the horizontal rotating shaft 31, and the two ends of the horizontal rotating shaft 31 are fixedly connected to the device main body 10, so the rotating device main body 10 can drive the rotating shaft support 31a around the vertical rotating shaft 32 rotates, and the rotating shaft bracket 31a is fixedly connected with the second moving cam 35a, so the rotating device main body 10 will drive the second moving cam 35a to rotate around the vertical rotating shaft 32.
- the structures of other parts in the shaft assembly 30 such as: the third elastic member 37, the top gasket 36 and the bottom gasket 38 are the same as those in Embodiment 1. Therefore, regarding the third elastic member 37, the top gasket For the relevant content of the sheet 36 and the bottom gasket 38, refer to the description in Embodiment 1, and no repeated description is given here.
- the structure of the engaging assembly 40 located at the second end of the device main body 10 in this embodiment is also the same as that in Embodiment 1. Therefore, for the introduction of engaging assembly 40, please refer to the description in Embodiment 1, and will not be repeated here. Repeat instructions.
- the locking assembly 60 by designing the locking assembly 60 to include a slide groove 64, a slider 65 and a spring 66, the device main body 10 and the wrist rest 20 can be separated conveniently and quickly, so that the device main body 10 can be rotated at any angle. adjustment, so that the multi-scene adaptability of the wearable device 100 can be improved.
- the detachable connection between the chute 64 and the sliding block 65 is achieved by plugging and unplugging, which not only has a simple structure, but also is easy to operate, which can save costs and learning time for users.
- Fig. 34 is an exploded view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 35 is an exploded view of a vertical shaft and a stopper of a wearable device provided by an embodiment of the present application. As shown in FIG. 34 and FIG.
- the locking assembly 60 includes: a locking slot 67 and an engaging portion 68 , the locking slot 67 is located at the first end 21 of the wrist rest, and the engaging portion 68 is located at the vertical shaft 32 Bottom; the top of the locking slot 67 is provided with a locking slot opening 671 for the vertical sliding of the engaging portion 68; both sides of the locking slot 67 are provided with stoppers 672, and two stoppers 672 are arranged oppositely and
- the wrist rest 20 is slidably connected so that the size of the lock slot opening 671 can be adjusted; when the vertical shaft 32 rotates in the first direction, the engaging portion 68 is stuck in the lock slot 67, and the lock assembly 60 is in the lock position.
- Engaged state when the vertical shaft 32 rotates in the second direction opposite to the first direction, the engaging portion 68 presses the stopper 672 and makes the locking slot opening 671 larger, so that the locking assembly 60 is in the unlocked state .
- first direction may be clockwise, and the second direction may be counterclockwise.
- the engaging portion 68 is located at the bottom end of the vertical shaft 32, and an engaging protrusion 681 is provided on the engaging portion 68, and the cross section of the engaging portion 68 is elliptical, and the engaging portion 68 is engaged
- the protrusion 681 is arranged on the outer wall of the engaging portion 68, and the engaging protrusion 681 is located at any position other than the long axis of the ellipse, so that when the vertical rotating shaft 32 is rotated, it can be ensured that the position where the long axis of the ellipse is located
- the position is the position where the outer diameter of the engaging part 68 is the largest, so as to ensure that when the vertical shaft 32 is rotated to the position where the long axis of the ellipse is located, the locking slot opening 671 is in the largest state, so as to ensure that the engaging part 68 It can be pulled out from the locking slot 67 , so that the device main body 10 and the wrist rest 20 are separated
- the block 672 is provided with an engaging groove 6721, and the side of the engaging protrusion 681 in contact with the engaging groove 6721 can be engaged in the engaging groove 6721, so that when the vertical shaft 32 rotates in the first direction, the engaging protrusion 681 The protrusion 681 is stuck in the engaging groove 6721 , and the vertical shaft 32 cannot rotate at this time, wherein, the first direction is the direction in which the engaging protrusion 681 approaches the engaging groove 6721 .
- the side of the engagement protrusion 681 that is not in contact with the engagement groove 6721 is smoothly connected with the outer wall of the vertical shaft 32, so as to ensure that when the vertical shaft 32 rotates in the second direction, the engagement portion 68 squeezes the stopper 672 and makes the locking
- the slot opening 671 becomes larger so that the locking assembly 60 is in an unlocked state, wherein the second direction is a direction in which the locking protrusion 681 is away from the locking slot 6721 .
- the engaging portion 68 By setting the engaging portion 68 as an ellipse, without adding other structures, the effect that the size of the vertical shaft 32 can be adjusted in different directions to rotate and lock the opening 671 of the locking slot can be realized, and the installation of the vertical shaft 32 can be simplified. structure.
- Fig. 36 is a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the locking card slot 67 is arranged on the first end 21 of the wrist rest, and the top of the locking card slot 67 is provided with a locking card slot opening 671 for the locking part 68 to slide in vertically;
- the locking card slot 67 Stoppers 672 are provided on both sides of the two sides, and engagement grooves 6721 that cooperate with the engagement protrusions 681 are provided on the stoppers 672 .
- the top of the lock slot opening 671 is provided with an inclined surface 6711, wherein the diameter of the end of the inclined surface 6711 close to the device main body 10 is larger than the diameter of the end of the inclined surface 6711 close to the wrist rest 20, so that the vertical shaft 32 can slide into the locking card along the inclined surface 6711 Slot 67.
- the positions of the engaging protrusion 681 and the engaging groove 6721 can be interchanged, that is, the engaging protrusion 681 can be arranged on the block 672 , while the engaging groove 6721 can be arranged on the engaging portion 68 superior.
- the blocking block 672 and the engaging portion 68 is provided with an engaging protrusion 681 and the other is provided with an engaging groove 6721, both belong to the protection scope of the technical solution of the present application.
- the locking assembly 60 also includes: a base baffle 674 and a second elastic member 673; the wrist rest 20 is provided with a receiving cavity for installing a stopper 672 and the second elastic member 673, and the stopper 672 is arranged in the accommodation In the chamber; a second elastic member 673 is arranged between the stopper 672 and the side wall of the receiving chamber, and the second elastic member 673 can be squeezed by the stopper 672 to enlarge the locking slot opening 671; the base baffle plate 674 is covered on At the top of the housing cavity, the base baffle plate 674 is provided with an assembly hole, the top of the stopper 672 is located in the assembly hole, and a gap is provided between the side wall of the assembly hole and the stopper 672, and the gap is used for the sliding of the stopper 672. Provide space.
- a third through hole for partially accommodating the vertical shaft 32 is provided in the rotating shaft bracket 31a;
- the rotating shaft assembly 30 also includes: a third moving cam 35b, which is sleeved on the vertical On the straight shaft 32 and connected to the vertical shaft 32 in rotation, the third moving cam 35b is located in the third through hole and fixedly connected with the third through hole, which is equivalent to the fixed connection between the third moving cam 35b and the shaft support 31a, i.e.
- the moving cam 35b is fixedly connected with the horizontal rotating shaft 31, and the two ends of the horizontal rotating shaft 31 are fixedly connected with the equipment main body 10, so the third moving cam 35b is fixedly connected with the equipment main body, wherein, the two ends of the third moving cam 35b can be set Outwardly extending blocks, the third through hole is provided with a retaining wall that cooperates with the blocks, so that the third moving cam 35b is fixedly connected with the third through hole, and the vertical shaft 32 has a hole extending into the third through hole.
- the first fixed cam 322, the first fixed cam 322 extends outward around the vertical shaft 32, and the third movable cam 35b abuts on the first fixed cam 322; the side of the third movable cam 35b facing the first fixed cam 322 is set as concave-convex On the uneven fifth concave-convex surface, the side of the first fixed cam 322 facing the third movable cam 35b is set as a sixth concave-convex surface 3221 matched with the concave-convex part of the fifth concave-convex surface.
- an arc-shaped transition surface 721a and a right-angle transition surface are provided at intervals between the convex and concave parts of the fifth concave-convex surface; arc-shaped transition surfaces 721a are arranged at intervals between the convex and concave parts of the sixth concave-convex surface 3221 and the right-angle transition surface; and the arc-shaped transition surface 721a of the fifth concave-convex surface is connected with the arc-shaped transition surface 721a of the sixth concave-convex surface 3221, and the right-angle transition surface of the fifth concave-convex surface is matched with the right-angle transition surface of the sixth concave-convex surface 3221 connected so that when the device main body 10 rotates in the first direction around the vertical shaft 32, the third moving cam 35b can rotate around the vertical shaft 32; when the device main body 10 rotates in the second direction around the vertical shaft 32, the third moving cam The cam 35b engages on the first direction around the vertical shaft 32;
- the structures of other components in the shaft assembly 30 such as: the third elastic member 37 (not shown in the figure, refer to the first embodiment), the top gasket 36 and the bottom gasket 38 are the same as those in the first embodiment. The same, therefore, regarding the third elastic member 37 , the top gasket 36 and the bottom gasket 38 , reference can be made to the description in Embodiment 1, which will not be repeated here.
- the structure of the engaging assembly 40 located at the second end of the device main body 10 in this embodiment is also the same as that in Embodiment 1. Therefore, the description of the engaging assembly 40 can refer to the description in Embodiment 1, and will not be repeated here. .
- Fig. 37 is an exploded view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 38 is a cross-sectional view of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the bottom end of the vertical shaft 32 is fixedly connected with the wrist rest 20
- the two ends of the horizontal shaft 31 are respectively fixedly connected with the device main body 10 through fasteners.
- the locking assembly 60 is in the locked state, the top of the vertical shaft 32 is located in the horizontal shaft 31, and the locking assembly 60 locks the horizontal shaft 31 with the vertical shaft 32, so that the first end 11 of the device body is connected to the vertical shaft 32.
- the first end 21 of the wrist rest is connected; when the locking assembly 60 is in the unlocked state, the horizontal shaft 31 is disassembled from the vertical shaft 32, so that the first end 11 of the device body is separated from the first end 21 of the wrist rest.
- the horizontal rotating shaft 31 includes a rotating shaft support 31a and rotating assemblies 34 arranged at both ends of the rotating shaft support 31a, and the axial direction of the rotating shaft support 31a is perpendicular to the axial direction of the vertical rotating shaft 32. It is provided that both ends of the rotating shaft bracket 31 a are provided with a cavity structure for accommodating the rotating assembly 34 ; one end of the rotating assembly 34 is located in the cavity structure, and the other end is connected to the device main body 10 .
- Each rotating assembly includes a friction shaft 341 , a friction plate 342 and a limiting member 343 .
- the lock assembly 60 includes: a slot 69, a lock button 69a and a lock piece 69a3, and the lock piece 69a3 is telescopically arranged on the shaft along the axial direction of the shaft bracket 31a.
- the card slot 69 is arranged on the limit sleeve 39; one end of the locking member 69a3 has a locking end that engages with the card slot 69, when the locking end of the locking member 69a3 is engaged with the card slot 69 , the limiting sleeve 39 is locked and connected with the rotating shaft bracket 31a, which is equivalent to locking and connecting the limiting sleeve 39 and the horizontal rotating shaft 31; the locking button 69a is telescopically arranged on the rotating shaft bracket 31a, and the locking button 69a is pressed , one end of the locking button 69a drives the locking part 69a3 to move away from the slot 69, and when the locking end of the locking part 69a3 breaks away from the slot 69, the limiting sleeve 39 is disassembled from the shaft bracket 31a, which is equivalent to limiting The bit sleeve 39 is disassembled from the horizontal rotating shaft 31.
- Fig. 39 is a schematic structural diagram of a limit sleeve and a vertical shaft of a wearable device according to an embodiment of the present application.
- a protrusion 392 is provided on the side of the limit sleeve 39 facing the locking button 69a, and the two sides of the protrusion 392 are respectively provided with a locking groove 69, and each locking groove 69 is correspondingly provided with a locking piece 69a3; and the orthographic projection of the protrusion 392 towards the limit cylinder is in an arrow structure, and the arrow in the arrow structure points to the top of the vertical shaft 32 .
- the shaft assembly 30 may further include a third base 70b, the third base 70b is arranged at the bottom end of the vertical shaft 32, and the third base 70b is provided with a third extension 70b1 extending toward the top of the vertical shaft 32; a limit sleeve The bottom end of 39 abuts on the third extension part 70b1, and the bottom end of the limit sleeve 39 is provided with an uneven seventh concave-convex surface 391, and the third extension part 70b1 is provided with a surface facing the limit sleeve 39.
- the eighth concave-convex surface 70b2 matched with the seventh concave-convex surface 391 .
- Arc-shaped transition surfaces 721a are provided between the convex and concave parts of the seventh concave-convex surface 391 and the eighth concave-convex surface 70b2, so that the limiting sleeve 39 is connected to the third base 70b in rotation.
- the locking end of the locking member 69a3 is engaged with the card slot 69
- the limit sleeve 39 is locked and connected with the rotating shaft bracket 31a
- the rotating device main body 10 can make the rotating shaft bracket 31a rotate around the vertical rotating shaft 32, which is equivalent to a horizontal
- the rotating shaft 31 rotates around a vertical rotating shaft 32 .
- Fig. 40 is an exploded view of the setting and locking button of the wearable device provided by an embodiment of the present application.
- Fig. 41A is a cross-sectional view of a shaft assembly of a wearable device provided by an embodiment of the present application.
- the lock button 69a may include: a button cover 69a1 and a fourth elastic member 69a2, the button cover 69a1 is fixed on the outer surface of the shaft bracket 31a, and the button cover 69a1 is provided with a lockable The opening that is exposed on the pressing surface of the closing key 69a; one end of the fourth elastic member 69a2 is connected with the shaft bracket 31a, and the other end of the fourth elastic member 69a2 is connected with the locking member 69a3, and the locking member 69a3 is stretchable through the fourth elastic member 69a2 set up.
- each driving part 69a4 has a first inclined surface 69a5, and each locking part 69a3 has a second inclined surface 69a6 that cooperates with the first inclined surface 69a5; the first inclined surface 69a5 is used
- the second inclined surface 69a6 is driven to move, so that the locking member 69a3 moves away from the card slot 69; the second inclined surface 69a6 is used for closing the fourth elastic member 69a2 after the external force on the locking button 69a is removed.
- the first inclined surface 69a5 is driven to move, so that the locking member 69a3 is reset.
- the fourth elastic member 69a2 is in a compressed state when installed, so as to ensure that the locking member 69a3 is located in the slot 69 and the locking button 69a is in a locked state without external force.
- the rotating shaft assembly 30 may further include: two abutting assemblies 80 arranged in the rotating shaft bracket 31a and symmetrical to the vertical rotating shaft 32, one end of each abutting assembly 80 is connected to the first end 341a of the friction shaft The other end of each abutment assembly 80 is telescopically abutted against the outer wall of the limiting sleeve 39 .
- each abutting assembly 80 includes: an abutting block 81 and a fifth elastic member 82, one end of the fifth elastic member 82 is connected to the inside of the first end 341a of the friction shaft, and the other end of the fifth elastic member 82 is connected to The abutting block 81 is connected, and one end cover of the abutting block 81 is arranged outside the first end 341a of the friction shaft, and the other end of the abutting block 81 has an abutting joint; The combined second groove 393.
- the rotating shaft assembly 30 may further include: a sixth elastic member 90 sleeved on the vertical rotating shaft 32 , and one end of the sixth elastic member 90 abuts against the inner bottom surface of the limiting sleeve 39 Above, one end of the sixth elastic member 90 is connected to the top end of the vertical shaft 32 through a snap spring. A shaft washer is provided between the top of the limiting sleeve 39 and the snap ring.
- the structure of the engaging assembly 40 located at the second end of the device main body 10 in this embodiment is also the same as that in Embodiment 1. Therefore, the description of the engaging assembly 40 can refer to the description in Embodiment 1, and will not be repeated here. .
- first elastic member 633, the second elastic member 673, the third elastic member 37, the fourth elastic member 69a2, the fifth elastic member 82 and the sixth elastic member 90 in the above four embodiments of the present application include But not limited to the spring structure.
- Fig. 41B is a partial structural schematic diagram of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application.
- the locking assembly 60 includes: a retreat groove 69i and a locking boss 61a, and the top of the rotating shaft bracket 31a has an escape opening (not shown in the figure) through which the top of the vertical rotating shaft 32 can pass;
- a retreat groove 69i is provided on the inner wall of the escape port;
- the locking boss 61a is arranged on the top of the vertical shaft 32; 31a and the vertical shaft 32 are in an unlocked state; when the locking boss 61a and the retreat groove 69i are staggered in the axial direction of the vertical shaft 32, the shaft bracket 31a and the vertical shaft 32 are in a locked state.
- the setting positions of the relief groove 69i and the locking boss 61a do not limit the protection scope of the technical solution of the present application, as long as one of the relief groove 69i and the locking boss 61a is set on the shaft support 31a On the other hand, the other of the relief groove 69i and the locking boss 61a is set on the vertical shaft 32, which belongs to the protection scope of the technical solution of the present application.
- FIG. 41C is a partial structural schematic diagram of the wrist rest and hinge assembly 30 of the wearable device provided by an embodiment of the present application.
- the top of the rotating shaft bracket 31a has an annular track 31a2 arranged around the escape opening, and the escape groove 69i is located on the annular track 31a2 and communicates with the escape opening; and the locking boss 61a and the escape groove
- the locking boss 61a is located on the annular track 31a2, so that the vertical shaft 32 is locked and connected with the shaft bracket 31a.
- a lock ring 324 is sheathed on the top end of the vertical shaft 32 , and the outer edge of the lock ring 324 protrudes outward to form a locking boss 61 a.
- a pressing ring 323 is sleeved on the vertical rotating shaft 32 , and the pressing ring 323 is located between the top of the limiting sleeve 39 and the locking ring 324 on the vertical rotating shaft 32 .
- FIG. 41D is a schematic cross-sectional structure diagram of a partial structure of a wrist rest and a shaft assembly of a wearable device provided by an embodiment of the present application.
- a limiting block 394 is provided on the outer wall of the limiting sleeve 39
- a limiting cavity 31 a 1 that cooperates with the limiting block 394 is provided on the rotating shaft support 31 a.
- the rotating shaft bracket 31a and the vertical rotating shaft 32 can be in a locked state to prevent the device from The main body 10 and the wrist rest 20 are separated, thereby increasing the connection stability between the device main body 10 and the wrist rest 20 .
- the vertical shaft when the device body and the wrist rest of the wearable device are separated, the vertical shaft remains on the wrist rest, while the horizontal shaft is separated from the wrist rest together with the device body, and in this In an embodiment, the top end of the vertical shaft is a free end, and the top end of the vertical shaft is rotatably connected to the limiting sleeve. It can be understood that, in some other embodiments, the vertical shaft can also be designed into other structures to realize the technical solution of separating the horizontal shaft from the vertical shaft when the device main body and the wrist rest are separated, for example Specifically, as described in Example 15 below.
- Fig. 42 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 43 is an exploded view of a device body, a wrist rest and a hinge assembly of a wearable device according to an embodiment of the present application.
- a wearable device 100 includes a device body 10 , a wrist rest 20 and a shaft assembly 30 .
- the shaft assembly 30 includes a shaft housing 33, a horizontal shaft 31 and a vertical shaft 32.
- the bottom end of the vertical shaft 32 is rotationally connected with the first end 21 of the wrist rest, and the bottom end of the horizontal shaft 31 is sleeved on the top of the vertical shaft 32.
- the horizontal shaft 31 is fixedly connected to the device main body 10
- the lock assembly 60 is arranged on the vertical shaft 32, and the lock assembly 60 is used to lock and connect the shaft bracket 31a of the horizontal shaft 31 and the vertical shaft 32 vertically and then The device main body 10 and the wrist rest 20 are locked and connected.
- the friction shaft 341 and the rotator 3414 may also be fixedly connected in other ways, and the specific way of the fixed connection between the rotator 3414 and the friction shaft 341 is not limited in this embodiment.
- the friction plate 342 is fixedly arranged on the rotating shaft support 31 a, and the friction plate 342 is rotatably connected with the friction shaft 341 . In this way, when the device main body 10 is lifted, the friction shaft 341 will rotate relative to the rotating shaft support 31 a, so that the device main body 10 can be turned over relative to the horizontal rotating shaft 31 .
- the two ends of the rotating shaft bracket 31a are respectively provided with a cavity structure 311 for accommodating the rotating assembly 34 , wherein, at the first end 341a of the friction shaft is provided a
- the raised rib and the friction shaft 341 pass through the hollow structure 311 of the rotating shaft bracket 31a so that the rib can be clamped on the rotating shaft bracket 31a.
- the shaft body 3411 of the friction shaft 341 and the friction plate 342 are located in the cavity structure 311 of the rotating shaft support 31a.
- the cavity structure 311 of the rotating shaft bracket 31a is provided with a fourth inner groove 31a7 that is engaged with the friction plate 342, and the fifth limit protrusion 3421 on the friction plate 342 is mated with the fourth inner groove 31a7 so that the friction plate 342 can be fixed in the shaft bracket 31a.
- the second end 341b of the friction shaft passes through the rotating head 3414, and the end of the rotating head 3414 close to the rotating shaft support 31a is rotatably connected with the rotating shaft support 31a, and the end of the rotating head 3414 close to the rotating shaft support 31a seals the friction plate 342 on the rotating shaft support 31a, thereby preventing the friction plate 342 from falling off from the rotating shaft bracket 31a.
- the wear between the friction shaft 341 and the rotating shaft support 31 a can be avoided by setting the friction plate 342 , so that the service life of the rotating shaft support 31 a can be improved and the maintenance cost can be reduced.
- the number of rotating assemblies 34 is two, which are respectively arranged on both sides of the rotating shaft bracket 31a, so that both ends of the rotating shaft assembly 30 are connected with the device main body 10, thereby improving the rotation of the rotating shaft assembly. 30 and the connection stability of the device main body 10.
- the number of the friction plates 342 is not specifically limited, and may be three, four or more, and may be specifically set according to specific needs.
- FIG. 45 is a schematic diagram of an exploded structure of a vertical shaft of a wearable device provided by an embodiment of the present application.
- the top of the vertical shaft 32 is provided with a slide rail bracket 325, and the bottom end of the shaft bracket 31a of the horizontal shaft 31 has an assembly cavity 31a3 for the slide rail bracket 325 to extend vertically into.
- the bottom end of 32 is provided with a Z-axis support 326, and the Z-axis support 326 is arranged on the first end 21 of the wrist rest, and the Z-axis support 326 is rotatably connected with the vertical shaft 32.
- the slide rail bracket 325 may include a slide rail cover 3251, a slide rail cavity 3252, and a slide rail wall 3253 surrounding the slide rail cavity 3252.
- the slide rail cover 3251 is covered on the top of the slide rail wall 3253, so that The top of the slide rail cavity 3252 is sealed to prevent dust falling or parts from being lost in the slide rail cavity 3252.
- the connection method between the slide rail cover 3251 and the slide rail wall 3253 is not limited, and may be riveting, welding, bonding, etc.; in addition, the slide rail cover 3251 may be a rectangular plate as shown in FIG. 45 Of course, it can also be a plate-shaped structure of other shapes, which can be determined according to the shape of the slide rail bracket 325, so the specific structure of the slide rail cover 3251 is not specifically limited in this embodiment of the application.
- the locking assembly 60 is disposed in the slide rail cavity 3252 .
- the locking assembly 60 includes two first locking assemblies (not shown in the figure) and two second locking assemblies 60b, and the two first locking assemblies and the two second locking assemblies 60b are connected with the slide rail bracket 325 is telescopically connected, and a part of the structure of the first locking component and a part of the structure of the second locking component 60b are located in the slide rail bracket 325 .
- the two first locking assemblies are disposed close to the vertical shaft 32 in the slide rail bracket 325, and the two first locking assemblies are arranged symmetrically relative to the center of the vertical shaft 32; the two second locking assemblies 60b are arranged along the The axial direction of the horizontal rotating shaft 31 is arranged, and the two second locking components 60 b are arranged at two ends of the slide rail bracket 325 .
- the first locking component is used to lock and connect the slide rail bracket 325 with the inner wall of the assembly cavity 31a3 when the horizontal rotating shaft 31 is in the first position, and when the horizontal rotating shaft 31 rotates to the second position, the first locking component is in the Unlocked state: the second locking component 60b is used to elastically lock the sliding rail bracket 325 and the assembly cavity 31a3 of the horizontal shaft 31 .
- elastic locking refers to locking or unlocking through elastic parts.
- it is a loose buckle, which can be automatically locked when installed, and can also be unlocked by external force or other means.
- first locking assembly can move telescopically in the y direction relative to the slide rail bracket 325
- second locking assembly 60b can telescopically move in the x direction relative to the slide rail bracket 325, and the first locking assembly and
- the partial structure of the first locking component is engaged with the rotating shaft support 31a
- the partial structure of the second locking component 60b is also engaged with the rotating shaft support 31a.
- first locking component After unlocking, since the second locking component 60b is telescopically connected to the slide rail bracket 325, and the mating surface of the second locking component 60b and the rotating shaft bracket 31a is an inclined surface (as shown in Fig. 42 and Fig. 45 ), external force
- the second locking component 60b can be unlocked directly.
- Fig. 46 is a schematic cross-sectional structural diagram of a partial structure of the device body and the wrist rest when the device body of the wearable device is in the first position according to an embodiment of the present application.
- each first locking assembly includes a telescopic buckle 60a1 , a first inner slot 60a2 and a first rail spring 60a3 , and the telescopic buckle 60a1 fits with the first inner slot 60a2 .
- the first inner groove 60a2 is located on the inner wall of the assembly cavity 31a3, the telescopic buckle 60a1 is telescopically connected with the slide rail bracket 325, and one end of the telescopic buckle 60a1 is located in the slide rail cavity 3252 of the slide rail bracket 325, and the telescopic buckle
- the other end of 60a1 has a buckle part 60a11, and the buckle part 60a11 can extend out of the slide rail bracket 325; between the slide rail bracket 325 and the inner wall of the assembly cavity 31a3, the buckle part 60a11 of the telescopic buckle 60a1 and the first inner groove 60a2
- the first slide rail spring 60a3 is located in the slide rail cavity 3252 of the slide rail bracket 325, and one end of the first slide rail spring 60a3 is connected with one end of the telescopic buckle 60a1, and the first slide rail spring 60a3 The other end abuts against the inner wall of the slide rail bracket 325 (see FIG.
- the telescopic buckle 60a1 when the telescopic buckle 60a1 is squeezed in the direction close to the slide rail cavity 3252, the telescopic buckle 60a1 can move backward relative to the slide rail wall 3253, thereby driving the buckle part 60a11 of the telescopic buckle 60a1 to move backward, When the buckle 60a11 moves out of the first inner groove 60a2, the first locking component is in an unlocked state.
- the telescopic buckle 60a1 is telescopically connected to the shaft bracket 31a; one end of the telescopic buckle 60a1 is provided with a first driving part 60a12, and one end of the first driving part 60a12 is located outside the slide rail bracket 325; the first driving part 60a12 is used to drive the telescopic buckle 60a1 to move horizontally when the horizontal shaft 31 rotates to the second position, so as to drive the buckle part 60a11 of the telescopic buckle 60a1 to disengage from the first inner groove 60a2, so that the first locking component is unlocked state.
- the driving process of the telescopic buckle 60a1 requires the cooperation of the first driving part 60a12 and the Z-axis bracket 326 .
- the structure located in the Z-axis support 326 can be sleeved with friction plates 342 and fixed plates 3263 (the number of friction plates 342 is not limited), wherein the friction plates 342 and the Z-axis support 326 are fixedly connected, and the vertical shaft 32 and the friction plates 342 Rotationally connected, so that the vertical rotating shaft 32 and the Z-axis bracket 326 are rotatably connected.
- the vertical rotating shaft 32 is fixedly connected with the fixed piece 3263, and the fixed piece 3263 is movably connected with the Z-axis support 326, and the bottom end of the Z-axis support 326 is provided with a blocking edge 3264 of the fixed piece 3263, wherein the outer diameter of the fixed piece 3263 is larger than the stopper.
- the vertical shaft 32 is fixed on the first end 21 of the wrist rest through the Z-axis bracket 326, and can rotate relative to the Z-axis bracket 326.
- the Z-axis support 326 is provided with a sinking groove 3262 around the circumference of the rotation hole 3261, the first driving part 60a12 is located at the sinking groove 3262, and the sinking groove 3262 is a flat groove, and part of the groove wall of the flat groove is used for the horizontal rotation axis 31 applies force to the first driving part 60a12 when rotating to the second position, so that the first driving part 60a12 drives the telescopic buckle 60a1 to move.
- the structures of the vertical rotating shaft 32 and the Z-axis bracket 326 include but are not limited to the structures in this embodiment, as long as they can realize their functions.
- Fig. 47 is a schematic cross-sectional structure diagram of the wrist rest when the main body of the wearable device is in the first position according to an embodiment of the present application.
- Fig. 48 is a schematic cross-sectional structure diagram of the device body and the wrist rest of the wearable device provided by an embodiment of the present application when the device body is in the second position.
- Fig. 49 is a schematic cross-sectional structure diagram of a wrist rest provided by an embodiment of the present application when the device main body of the wearable device is in the second position.
- the first driving part 60a12 in the first position, is located at the position where the diameter of the sinking groove 3262 of the Z-axis support 326 is the largest, and at this time the clamping parts of the two telescopic buckles 60a1 are located in the first inner In the slot 60a2, the first locking component is in a locked state.
- the first driving part 60a12 is located at the position where the diameter of the sinking groove 3262 of the Z-axis bracket 326 is the smallest, and at this time the two telescopic buckles 60a1 are locked
- the connecting portion moves out of the first inner slot 60a2, and the first locking component is in an unlocked state.
- the distance that the first driving part 60a12 moves into the slide rail bracket 325 from the position of the largest diameter of the sinking groove 3262 to the position of the smallest diameter of the sinking groove 3262 is just enough to move the locking part of the telescopic buckle 60a1 out.
- the first inner groove 60a2 is sufficient.
- the shape and size of the sinking groove 3262, and the specific size of the first driving part 60a12 and the buckling part 60a11 are not specifically limited here, as long as they meet the specific conditions of their functions.
- FIG. 50 is a schematic structural diagram of a retractable buckle of a wearable device provided by an embodiment of the present application.
- the retractable buckle 60a1 is an integrated structure
- the buckle part 60a11 of the telescopic buckle 60a1 is a plane 60a14 on the side close to the wrist rest, and a slope 60a13 on the side close to the device main body 10 .
- the plane 60a14 can be engaged in the first inner groove 60a2 to ensure greater locking force, Prevent accidental separation of the wrist rest 20 and the device main body 10 in the locked state.
- the buckle portion 60a11 is set as an inclined surface 60a13 on the side close to the device main body 10, so that when the device main body 10 and the wrist rest 20 are connected, the shaft support 31a can be slid relative to the inclined surface 60a13.
- the rail bracket 325 is telescopically connected, so when the shaft bracket 31a is pressed down, the buckle part 60a11 will receive an inward thrust and then the buckle part 60a11 will move to the inside of the slide rail bracket 325, so that the slide rail bracket 325 enters the shaft bracket In the assembly cavity 31a3 of 31a, when the bottom end of the buckle part 60a11 reaches the bottom end of the first inner groove 60a2, that is to say, when there is no side wall pressing the buckle part 60a11 on the shaft bracket 31a, the buckle part 60a11 automatically Rebound into the first inner groove 60 a 2 , and then make the rotating shaft support 31 a and the slide rail support 325 locked and connected, that is, the device main body 10 and the wrist rest 20 are locked and connected.
- the first position is that the locking component 60 is in the locked state, that is, the position when the device main body 10 cannot be disassembled from the wrist rest 20;
- the second position is that the locking component 60 is in the unlocked state.
- the position of the state that is, the position where the device main body 10 and the wrist rest 20 can be separated.
- the first position is the initial position when the device main body 10 does not rotate (the position shown in Figure 42), or any position where the device body 10 is only flipped by a certain angle around the horizontal axis of rotation 31;
- the second position is the device The position where the main body 10 rotates 90° around the vertical axis 32 (the position shown in FIG.
- each second locking component 60b includes an elastic top block 60b1 and a second inner groove 60b2 matched with the elastic top block 60b1, and the second inner groove 60b2 is located on the inner wall of the assembly cavity 31a3 At least part of the elastic top block 60b1 is located in the slide rail bracket 325 and close to the end of the slide rail bracket 325; together for elastic locking.
- Each second locking assembly 60b includes a second slide rail spring 60b3, the second slide rail spring 60b3 is located in the slide rail bracket 325, and one end of the second slide rail spring 60b3 is connected with the elastic top block 60b1, the second slide rail The other end of the spring 60b3 abuts against the inner wall of the slide rail bracket 325 , wherein the inner wall of the slide rail bracket 325 is a part of the structure where the slide rail wall 3253 is located in the slide rail cavity 3252 .
- the top and the bottom of the end of the elastic top block 60b1 close to the second inner groove 60b2 are provided with a first inclined guide surface 60b11, and the second inner groove 60b2 is provided with a second inclined guide surface 60b11.
- the inclined guide surface, the second inclined guide surface is the inner wall of the second inner groove 60b2, so that when the device main body 10 is installed on the wrist rest, the device main body 10 can be directly pressed down, so that the inside of the assembly cavity 31a3 An inward thrust is generated on the first inclined guide surface 60b11, and then the slide rail bracket 325 slides into the assembly cavity 31a3 of the rotating shaft bracket 31a.
- the elastic top block 60b1 rebounds automatically , and then lock and connect the device main body 10 and the wrist rest 20; when detaching the device main body 10 from the wrist rest 20, the device main body 10 can be pulled up directly, so that the second inclined guide surface at the bottom will meet the first inclined guide surface at the bottom.
- the inclined guide surface 60b11 generates an inward thrust, and then the elastic top piece 60b1 moves toward the inside of the slide rail bracket 325 , and then separates the device main body 10 from the wrist rest 20 .
- positioning protrusions 3254 are provided on two opposite sides of the slide rail bracket 325 , and positioning grooves 31a4 that cooperate with the positioning protrusions 3254 are provided on the inner wall of the assembly cavity 31a3 .
- the structure of the positioning protrusion 3254 and the positioning groove 31a4 includes but is not limited to the structure shown in the drawings of the embodiment of the present application, and in some embodiments, it can also be other structures, as long as it can ensure that the slide rail bracket 325 can be parallel It only needs to slide in or out of the rotating shaft bracket 31a, so the structures of the positioning protrusion 3254 and the positioning groove 31a4 are not specifically limited in this embodiment.
- a third inner groove 31a6 is also provided on the side wall of the bottom end of the rotating shaft support 31a.
- the number of the third inner grooves 31a6 can be four, and two second inner grooves 31a6 are respectively arranged on the front and rear sides of the rotating shaft support 31a.
- Three inner slots 31a6, the third inner slots 31a6 on different sides are oppositely arranged, and a fixed block 331 matching with the third inner slot 31a6 is arranged on the inner wall of the shaft housing 33, and the shaft housing 33 and the rotating shaft bracket 31a are supported by the third inner slot 31a.
- the cooperation between the inner groove 31a6 and the fixing block 331 realizes the fixed connection.
- the shaft housing 33 can protect the rotating shaft bracket 31a to a certain extent.
- the quantity and the installation positions of the third inner groove 31a6 and the fixing block 331 are not limited, as long as they can play a certain fixing effect.
- first lock component and the second lock component 60b include but are not limited to the structure shown in the drawings of this embodiment, for example, the first lock component and the second lock
- the setting positions of the components 60b can be interchanged, or the structures of the first locking component and the second locking component 60b can be changed, as long as the functions can be realized.
- the lock assembly 60 in the embodiment of the present application is in the unlocked state only when the device main body 10 rotates 90° around the vertical shaft 32 .
- the structure of the first locking component includes the telescopic buckle 60a1, the first inner groove 60a2 and the first slide rail spring 60a3, wherein the first driving part 60a12 is arranged on the telescopic buckle 60a1 That is to say, the driving part and the locking part 60a11 are arranged on the same part, so that when the first driving part 60a12 is driven, the locking part 60a11 can be driven to move together, so as to realize the locking part 60a11 and the rotating shaft bracket 31a Scalable connections.
- each first locking component can include a telescopic buckle 60a1, a rotating shaft The top block 60a4, the first inner groove 60a2 and the first slide rail spring 60a3, wherein, one end of the rotating shaft top block 60a4 is matched with the telescopic buckle 60a1, and the other end of the rotating shaft top block 60a4 has a second driving part 60a41, and the second driving part 60a41 is used to drive the top block 60a4 of the rotating shaft to move upward when the horizontal rotating shaft 31 rotates to the second position, so as to drive the telescopic buckle 60a1 to move horizontally, so that the buckle part 60a11 of the telescopic buckle 60a1 is disengaged from the first inner groove 60a2.
- the end of the telescopic buckle 60a1 that cooperates with the top block 60a4 of the rotating shaft has a third inclined surface 60a15
- the top block 60a4 of the rotating shaft has a fourth inclined surface 60a42 that cooperates with the third inclined surface 60a15
- the fourth inclined surface 60a42 It is used to exert force on the third inclined surface 60a15 when the rotating shaft top block 60a4 moves upwards, so as to make the telescopic buckle 60a1 move horizontally.
- Fig. 54 is a schematic structural view of the device main body 10 in the first state.
- the third inclined surface 60a15 on the telescopic buckle 60a1 and the fourth inclined surface 60a42 on the rotating shaft top block 60a4 are attached to each other. and the bottom end of the third inclined surface 60a15 is also located on the fourth inclined surface 60a42, and the buckle part 60a11 of the telescopic buckle 60a1 of the first locking assembly is located in the first inner groove 60a2 (as shown in FIG. 55 ).
- Both the first lock component and the second lock component 60b in the time lock component 60 are in the locked state; when the device main body 10 is rotated from the first position to the second position (see FIG.
- the vertical movement of the rotating shaft top block 60a4 is transformed into the horizontal movement of the telescopic buckle 60a1, and then the lock assembly 60 is unlocked. state.
- the way of the oblique fit will make the structure of the locking assembly 60 simpler, thereby reducing the cost.
- the telescopic buckle 60a1 can also be arranged in other structures, and the movement in the horizontal direction relative to the slide rail bracket 325 can be achieved through other matching methods, so that the first locking component can be placed on the main body 10 of the device. When it is rotated to the second position, it is in an unlocked state, which will not be described in detail in this embodiment.
- the second locking component 60b can be unlocked when the device main body 10 bears the opposite pulling force.
- the structure of the engaging assembly 40 located at the second end 12 of the main body of the device in this embodiment may be the same as that in Embodiment 1. Therefore, for the introduction of engaging assembly 40, please refer to the description in Embodiment 1. This will not be repeated.
- the structure of the horizontal shaft and the vertical shaft includes but is not limited to the structure shown in this embodiment, and can also be the structure shown in Embodiment 1, which can be specifically designed according to the actual situation, and is not specifically limited here.
- the wearable device 100 in the embodiment of the present application can improve the locking force between the device main body 10 and the wrist rest by setting the first locking component and the second locking component 60b.
- the first locking component A structure that can only be unlocked when the device main body 10 is rotated to 90° can prevent the device main body 10 from falling off from the wrist rest at any angle when the user is using the wearable device, thereby reducing damage to the device main body 10 due to accidental falling off
- the feel of the lock can be improved.
- Embodiment 15 introduces two technical solutions that the locking assembly 60 can only be unlocked after rotating the main body 10 of the device 90° around the vertical shaft 32. Of course, in some embodiments, it can also be rotated around the vertical shaft 32. After unlocking at other angles, in this embodiment, the angle of rotation around the vertical shaft 32 is not limited. In addition, in some embodiments, the lock assembly 60 can also be designed as a structure that can be unlocked when it rotates around the horizontal shaft 31 to a specific angle. For details, refer to the introduction in Embodiment 16.
- Fig. 59 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- Fig. 60 is a schematic exploded structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the wearable device 100 includes a device body 10 , a wrist rest 20 and a shaft assembly 30 .
- the shaft assembly 30 includes a shaft housing 33, a horizontal shaft 31 and a vertical shaft 32.
- the bottom end of the vertical shaft 32 is rotationally connected with the first end 21 of the wrist rest, and the bottom end of the horizontal shaft 31 is slidingly connected with the top end of the vertical shaft 32.
- the horizontal shaft 31 is fixedly connected to the main body 10 of the device, the locking assembly 60 is arranged in the vertical shaft 32, and the locking assembly 60 is used to lock and connect the horizontal shaft 31 and the vertical shaft 32 in the horizontal direction, so as to block the horizontal
- the rotating shaft 31 slides on the vertical rotating shaft 32 ; and when the locking assembly 60 is in an unlocked state, the horizontal rotating shaft 31 can slide out from the vertical rotating shaft 32 .
- the top of the vertical shaft 32 has a slide rail frame 327
- the bottom end of the shaft bracket 31a of the horizontal shaft 31 has a slide rail slot 31a5 for the slide rail frame 327 to slide in horizontally;
- the locking assembly 60 is used to lock and connect the slide rail frame 327 with the horizontal shaft 31; when the equipment main body 10 rotates around the horizontal
- the rotating shaft 31 rotates to the second position (the position shown in FIG. 61 )
- the locking assembly 60 is in an unlocked state, so that the horizontal rotating shaft 31 can slide out horizontally from the slide rail frame 327 .
- the locking assembly 60 includes a locking spring block 60c and a slot 60c1 matched with the locking spring block 60c.
- 60c is arranged on the slide rail frame 327, and one end of the locking spring block 60c is telescopically arranged on the top end surface of the slide rail frame 327; the horizontal rotating shaft 31 and the slide rail frame 327 engage with the slot hole 60c1 through the locking spring block 60c Locking connection is performed in the horizontal direction, and when the locking bullet 60c moves out of the slot hole 60c1, the horizontal rotating shaft 31 and the slide rail frame 327 are in an unlocked state in the horizontal direction.
- inclined sliding surfaces 60c3 are provided on both sides of the top horizontal direction (along the x direction) of the locking spring block 60c, and on the two end surfaces of the top wall of the slide rail groove 31a5 along the x direction Both can be provided with an oblique stop 31a51 cooperating with the inclined sliding surface 60c3.
- the inclination of the oblique stop 31a51 and the inclined slide surface 60c3 can be the same, so that when the slide rail frame 327 slides into the slide rail groove 31a5 from any end of the rotating shaft support 31a along the x direction, the oblique stop 31a51 can drive the inclined slide
- the surface 60c3 moves downward, and then the locking elastic block 60c is pressed into the slide rail frame 327, so that the slide rail frame 327 can slide into the slide rail groove 31a5.
- the slide rail frame 327 can slide into the slide rail groove 31a5, and the cooperation of the slope is relatively simple, which can simplify the slide rail frame 327 and the slide rail. Structure of groove 31a5.
- the horizontal shaft 31 In the horizontal direction with the slide rail frame 327, the horizontal shaft 31 can be slid out from one side of the slide rail frame 327 by an external force, that is, the horizontal shaft 31 and the slide rail frame 327 are in an unlocked state in the horizontal direction.
- the inclined sliding surface 60c3 leaves the slot hole 60c1 completely, the horizontal shaft 31 and the slide rail frame 327 are also in the unlocked state in the horizontal direction, but in this way there will be no constraint between the device main body 10 and the wrist rest 20, so The device body 10 is easy to slip off from the wrist rest 20, so in this embodiment, at least part of the inclined sliding surface 60c3 is located in the slot 60c1, which can prevent the device body 10 from accidentally slipping off the wrist rest 20.
- the horizontal shaft 31 and the slide rail frame 327 are in an unlocked state without external force, but there is still a certain locking force, which needs to be provided by an external force.
- the horizontal rotating shaft 31 is separated from the slide rail frame 327, which can prevent the horizontal rotating shaft 31 from accidentally falling off from the slide rail frame 327, causing damage to the main body of the device.
- an inclined sliding surface 60c3 is provided on the top of the locking spring block 60c, which can also reduce the force required for disassembly and installation, thereby facilitating installation and disassembly.
- the locking assembly 60 may further include: an unlocking structure 60d, used for driving the locking spring 60c to move out of the slot 60c1 when the device main body 10 moves around the horizontal rotation axis 31 toward the second position.
- the unlocking structure 60d may include: a rotating shaft pressing arm 60d1, a rotating shaft cam 60d2, and a rotating shaft spring 60d3. Above the rotating shaft pressing arm 60d1; one end of the rotating shaft pressing arm 60d1 faces the rotating shaft cam 60d2, and the other end of the rotating shaft pressing arm 60d1 is located in the slot 60c1; the rotating shaft pressing arm 60d1 is used to move downward under the drive of the rotating shaft cam 60d2 to drive The locking spring 60c moves out from the slot 60c1; the rotating shaft spring 60d3 is arranged on the rotating shaft bracket 31a of the horizontal rotating shaft 31, and one end of the rotating shaft spring 60d3 is connected with the rotating shaft pressing arm 60d1, and the rotating shaft spring 60d3 is used to move the rotating shaft cam 60d2 when the rotating shaft cam 60d2 is moved away. drive.
- the fixing method of the rotating shaft cam 60d2 and the friction shaft 341 includes but not limited to riveting, clamping or welding, etc. Therefore, in the embodiment of the present application, the fixing method of the rotating shaft cam 60d2 and the friction shaft 341 bracket is not specifically limited. . In addition, there is no specific limitation on the size of the rotating shaft cam 60d2, as long as the locking elastic block 60c can be moved out from the slot hole 60c1.
- the locking assembly 60 may further include: a third slide rail spring 60c2, the third slide rail spring 60c2 is located in the slide rail frame 327, and one end of the third slide rail spring 60c2 is connected to the locking spring block 60c.
- the slide rail frame 327 is also provided with a slide rail cover plate 3271, wherein the slide rail cover plate 3271 is covered on the locking spring block 60c and is connected with the slide rail frame 327, and the slide rail cover plate 3271 is provided with a locking spring A hole protruding from one end of block 60c.
- the sliding rail frame 327 is provided with limiting protrusions 3272 on both sides of the sliding direction of the sliding rail frame 327, the sliding rail groove 31a5 has a limiting groove 31a8 matching with the limiting protrusions 3272, and the horizontal shaft 31
- the rotating shaft bracket 31a and the slide rail frame 327 are vertically limited by the cooperation of the position-limiting protrusion 3272 and the position-limiting groove 31a8.
- the rotating shaft assembly 30 also includes: a Z-axis frame 328, the Z-axis frame 328 is arranged on the first end 21 of the wrist rest, and the Z-axis frame 328 is rotatably connected with the bottom end of the vertical rotating shaft 32, so that the device main body 10 can rotate around Rotate on a vertical shaft 32.
- a rotating hole 3281 for the vertical rotating shaft 32 to rotate on the Z shaft frame 328 and the bottom end of the vertical rotating shaft 32 extends into the Z shaft frame 328 through the rotating hole 3281, and the vertical rotating shaft 32 is positioned at the Z axis.
- the structure in the frame 328 can be sleeved with a friction plate 342 and a fixed plate 3263 (the number of the friction plate 342 is not limited), wherein the friction plate 342 is fixedly connected to the Z-axis frame 328, and the vertical shaft 32 is rotationally connected to the friction plate 342. To make the vertical rotating shaft 32 and the Z-axis frame 328 rotatably connected.
- the vertical rotating shaft 32 is fixedly connected with the fixed piece 3263, the fixed piece 3263 is movably connected with the Z-axis frame 328, and the bottom end of the Z-axis frame 328 is provided with a blocking fixed piece 3263 and a blocking platform 3282, wherein the outer diameter of the fixed piece 3263 is larger than that of the blocked
- the inner diameter of the platform 3282 is such that the vertical shaft 32 is fixed on the first end 21 of the wrist rest through the Z-axis frame 328 and can rotate relative to the Z-axis frame 328 .
- Fig. 61 is a schematic structural diagram of a wearable device when the device body and the wrist rest are separated according to an embodiment of the present application.
- Fig. 62 is a schematic cross-sectional structure diagram of a wearable device provided by an embodiment of the present application when the locking component is in an unlocked state.
- the locking assembly 60 is in the unlocked state, and at this moment, the horizontal shaft 31 can be slid out from the vertical shaft 32, that is, the device main body 10 is released from the wrist rest. One side slides out.
- the first position is the position when the device body 10 and the wrist rest 20 are in the initial state shown in FIG. 61 locations.
- the cam will move downward against the rotating shaft pressing arm 60d1, because the end of the rotating shaft pressing arm 60d1 away from the rotating shaft cam 60d2 is located in the slot hole 60c1 on the rotating shaft bracket 31a, and locked
- the top of the elastic block 60c is also located in the slot 60c1, so when the rotating shaft pressing arm 60d1 moves downward and contacts the locking elastic block 60c, it will drive the locking elastic block 60c to move downward, and when the locking elastic block 60c
- the horizontal shaft 31 and the slide rail frame 327 are in an unlocked state in the horizontal direction, and now the horizontal shaft 31 can slide out from one side of the slide rail frame 327.
- the structure of the locking assembly 60 described above includes but is not limited to the structure in the drawings.
- the locking assembly 60 can also have other structures, as long as the device main body
- the technical solution that the bracket is locked in the horizontal direction and rotated to a certain angle to unlock the locking assembly 60 belongs to the protection scope of the technical solution of the present application.
- the structure of the engaging assembly 40 located at the second end 12 of the main body of the device in this embodiment is also the same as that in Embodiment 1. Therefore, for the introduction of engaging assembly 40, please refer to the description in Embodiment 1. Here The description will not be repeated.
- this technical solution of rotating the device body 10 to a specific position to unlock it can reduce the force during disassembly, thereby adapting to more customers, and can prevent the device body 10 from accidentally falling off from the wrist rest.
- the device main body 10 can slide out from the third end 24 or the fourth end 25 of the wrist rest 20, of course, in other embodiments, the device main body 10 can also slide out from the first end 21 or the fourth end 25 of the wrist rest.
- the second end 22 slides out, for an example, refer to Embodiment 17 below.
- Fig. 63 is a schematic cross-sectional structure diagram of a device body and a wrist rest of a wearable device provided by an embodiment of the present application.
- the wearable device 100 includes a device body 10 , a wrist rest 20 and a shaft assembly 30 .
- the shaft assembly 30 includes a shaft housing 33 and a horizontal shaft 31 .
- the horizontal rotating shaft 31 includes a rotating shaft bracket 31a and a rotating assembly 34 arranged in the rotating shaft bracket 31a, wherein two rotating assemblies 34 are respectively arranged at two ends of the rotating shaft bracket 31a, and each rotating assembly 34 includes a friction shaft 341 and a friction plate 342 And the rotating head 3414 arranged at the second end 341b of the friction shaft, and the end of the rotating head 3414 close to the rotating shaft support 31a is rotatably connected with the rotating shaft support 31a, and the end of the rotating head 3414 close to the rotating shaft support 31a blocks the friction plate 342 on the rotating shaft support 31a, thereby preventing the friction plate 342 from falling off from the rotating shaft bracket 31a.
- the outer side of rotating shaft bracket 31a is provided with fixing protrusion
- the inner side of shaft housing 33 is provided with the groove 332 that cooperates with fixing protrusion, when shaft housing 33 is installed on the rotating shaft bracket 31a like this, through fixing protrusion and groove
- the cooperation of 332 can prevent the shaft housing 33 from falling off from the rotating shaft support 31a.
- the locking assembly 60 includes a locking spring block 60c and a slot 60c1 matched with the locking spring block 60c.
- the slot hole 60c1 is set on the shaft bracket 31a, and the locking spring block 60c is arranged on the second wrist rest.
- One end 21, and one end of the locking elastic block 60c is telescopically arranged on the top end surface of the first end 21 of the wrist rest; the horizontal shaft 31 and the wrist rest 20 are engaged in the horizontal direction through the locking elastic block 60c and the slot hole 60c1
- the locking spring block 60c is moved out of the slot 60c1, the horizontal rotating shaft 31 and the slide rail frame 327 are in an unlocked state in the horizontal direction.
- the locking assembly 60 may further include: an unlocking structure 60d, which is used to drive the locking spring 60c to move out of the slot 60c1 when the device main body 10 moves toward the second position around the horizontal rotating shaft 31 .
- the unlocking structure 60d may include: a rotating shaft pressing arm 60d1, a rotating shaft cam 60d2, and a rotating shaft spring 60d3.
- the rotating shaft pressing arm 60d1 Above the rotating shaft pressing arm 60d1; one end of the rotating shaft pressing arm 60d1 faces the rotating shaft cam 60d2, and the other end of the rotating shaft pressing arm 60d1 is located in the slot 60c1; the rotating shaft pressing arm 60d1 is used to move downward under the drive of the rotating shaft cam 60d2 to drive The locking elastic block 60c is moved out from the slot hole 60c1; the rotating shaft spring 60d3 is sleeved on the rotating shaft pressing arm 60d1, and one end of the rotating shaft spring 60d3 is connected with the rotating shaft pressing arm 60d1, and the other end of the rotating shaft spring 60d3 is against the rotating shaft bracket 31a, and the rotating shaft spring 60d3 is used to drive the rotating shaft pressing arm 60d1 to move upward when the rotating shaft cam 60d2 moves away.
- the end of the shaft bracket 31a close to the wrist rest 20 is provided with a bracket base 31a10, and the bracket base 31a10 is provided with a cavity for accommodating the shaft pressing arm 60d1 and the shaft spring 60d3. , and the bottom end of the cavity communicates with the top end of the slot 60c1, so that the bottom end of the rotating shaft pressing arm 60d1 can be in contact with the locking spring block 60c.
- the inner diameter of the slot hole 60c1 is larger than the outer diameter of the bottom end of the rotating shaft pressing arm 60d1.
- the locking assembly 60 may also include a locking protrusion 61 and a locking sink 62, wherein the locking protrusion 61 is arranged at the bottom end of the bracket base 31a10, and the locking sink 62 is arranged at the bottom of the wrist rest.
- the first end 21, the rotating shaft support 31a and the wrist rest 20 are locked and connected vertically when the locking protrusion 61 is engaged in the locking sinker groove 62, and when the locking protrusion 61 is moved out of the locking sinker groove 62 , the hinge bracket 31a and the wrist rest 20 are in an unlocked state vertically.
- the locking assembly 60 may further include a third magnetic piece 60e1 and a fourth magnetic piece 60e2 , wherein the third magnetic piece 60e1 is arranged in the locking sinker 62 on the wrist rest 20
- the bottom of the bottom, the fourth magnetic part 60e2 is arranged in the bracket base 31a10 of the rotating shaft bracket 31a, wherein the bracket base 31a10 is provided with an installation slot for accommodating the fourth magnetic part 60e2, and the opening of the installation slot faces the wrist rest 20. one end.
- the fourth magnetic part 60e2 is disposed in the installation slot, and a baffle 31a11 is provided at the opening end of the installation slot, and the baffle 31a11 is fixedly connected to the rotating shaft support 31a to prevent the fourth magnetic part 60e2 from falling off from the rotating shaft support 31a.
- the third magnetic part 60e1 and the fourth magnetic part 60e2 attract each other, which can increase the gap between the rotating shaft bracket 31a and the wrist rest 20. locking force.
- the device main body 10 is turned 90° around the horizontal axis to reach the second position, the locking assembly 60 is in an unlocked state. At this time, the device main body 10 can be slid out from one side of the wrist rest 20. In this embodiment, it is from the direction toward Slide out towards the second end 22 of the wrist rest. Of course, in some embodiments, it can also be slid out from the direction away from the second end 22 of the wrist rest.
- the rotating shaft bracket 31a and the wrist rest 20 bracket can be locked and connected in the lateral direction, and by setting the locking protrusion 61 and the locking sinker 62 can realize the vertical locking connection between the rotating shaft bracket 31a and the wrist rest 20 bracket, and the locking force can be increased by setting the third magnetic piece 60e1 and the fourth magnetic piece 60e2, thereby preventing the device main body 10 from moving Problems such as shaking and looseness occur in the wrist rest 20 .
- the structure of the locking assembly 60 described above includes but is not limited to the structure in the drawings.
- the locking assembly 60 can also have other structures, as long as the device main body
- the technical solution that the bracket is locked in the horizontal direction and rotated to a certain angle to unlock the locking assembly 60 belongs to the protection scope of the technical solution of the present application.
- the structure of the engaging assembly 40 located at the second end 12 of the main body of the device in this embodiment is also the same as that in Embodiment 1. Therefore, for the introduction of engaging assembly 40, please refer to the description in Embodiment 1. Here The description will not be repeated.
- An embodiment of the present application may also provide a wearable system, including a terminal device and a wearable device, where the terminal device and the wearable device are connected in communication.
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Abstract
本申请实施例提供一种可穿戴设备和可穿戴系统,可穿戴设备包括:设备主体、腕托、转轴组件和锁合组件,转轴组件包括水平转轴和竖直转轴,水平转轴的两端与设备主体的第一端转动连接,竖直转轴的至少一端与腕托的第一端和水平转轴中的至少一个转动连接,设备主体可绕水平转轴和竖直转轴旋转;当锁合组件处于锁合状态时,锁合组件将转轴组件与设备主体或与腕托进行锁合,或锁合组件将竖直转轴与水平转轴锁合连接,以使设备主体的第一端与腕托的第一端相连,当锁合组件处于解锁状态时,转轴组件与设备主体或与腕托拆开,或水平转轴与竖直转轴拆开,以使设备主体的第一端与腕托的第一端分开。本申请的可穿戴设备和可穿戴系统,可适应多场景应用。
Description
本申请要求于2021年10月22日提交中国专利局、申请号为202111236261.X、申请名称为“可穿戴设备和可穿戴系统”的中国专利申请的优先权,以及要求于2022年05月17日提交中国专利局、申请号为202210536907.4、申请名称为“可穿戴设备和可穿戴系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请涉及电子设备技术领域,尤其涉及一种可穿戴设备和可穿戴系统。
随着科学技术的发展,可穿戴设备由于其便携性和智能性而越来越受到用户的欢迎,于此同时,用户对可穿戴设备的功能、外观、体验感等方面的需求也越来越多。
现有技术中,可穿戴设备的表体与表带之间通过转轴连接,表体可相对于表带在表体所在水平面内旋转。这样表体的可玩性及场景适用能力有限,对于手表接听电话、拍照等场景仍存在较大限制。
发明内容
本申请实施例提供一种可穿戴设备和可穿戴系统,可穿戴设备可以实现在多个方向的旋转,多场景适应能力强,能够满足用户视频通话、拍照、音乐等使用需求。
本申请实施例一方面提供一种可穿戴设备,可以包括:设备主体;腕托,用于承载所述设备主体;转轴组件,所述转轴组件包括水平转轴和竖直转轴,所述水平转轴的两端与所述设备主体的第一端转动连接,以使所述设备主体可绕所述水平转轴翻转;所述竖直转轴的至少一端与所述腕托的第一端和所述水平转轴中的至少一个转动连接,以使所述设备主体可绕所述竖直转轴旋转;锁合组件,且当所述锁合组件处于锁合状态时,所述锁合组件将所述转轴组件与所述设备主体或者与所述腕托进行锁合,或者所述锁合组件将所述竖直转轴与所述水平转轴锁合连接,以使所述设备主体的第一端与所述腕托的第一端相连,以及当所述锁合组件处于解锁状态时,所述转轴组件与所述设备主体或者与所述腕托拆开,或者所述水平转轴与所述竖直转轴拆开,以使所述设备主体的第一端与所述腕托的第一端分开。
本申请实施例提供的可穿戴设备通过设置转轴组件,并且转轴组件包括水平转轴和竖直转轴,可以实现设备主体既能围绕水平转轴旋转,又能绕竖直转轴旋转,这样可以提升可穿戴设备的可玩性和机械感。通过设置锁合组件,可以将设备主体和腕托进行可拆卸连接,这样在使用时,可以将设备主体从腕托上拆卸下来,以使设备主体和腕托完全分离,可以提升多场景适应能力。
在一种可能的实现方式中,所述水平转轴包括:转轴支架以及分别位于所述转轴支架两端的两个转动组件;所述转轴支架的两端均设有容纳所述转动组件的空腔结构;所述转 动组件的一端位于所述空腔结构内,另一端与所述设备主体相连。
本申请实施例提供的可穿戴设备通过将水平转轴设置成包括转轴支架和转动组件的结构,转动组件隐形设置在转轴支架内,从而对转轴组件进行保护,进而延长可穿戴设备的使用寿命。
在一种可能的实现方式中,每个所述转动组件均包括摩擦轴和摩擦片;所述摩擦片套设在所述摩擦轴上且与所述摩擦轴转动连接,并且所述摩擦片与所述转轴支架固定连接;所述摩擦轴的第一端与所述转轴支架转动相连,所述摩擦轴的第二端与所述设备主体相连。
通过将转动组件设置成包括摩擦轴和摩擦片的结构,从而可以使转动组件通过摩擦片固定在转轴支架上,并且通过摩擦轴可以使转动组件相对于转轴支架转动,以使可穿戴设备的设备主体可以绕着水平转轴翻转;另外,摩擦轴和摩擦片的结构简单,有利于降低成本。
在一种可能的实现方式中,每个所述摩擦轴的第二端设有转头,所述转头的一端与所述摩擦轴相连,所述转头的另一端与所述设备主体相连。
本申请实施例中的可穿戴设备,通过在摩擦轴的第二端设置转头,可以通过转头将设备主体和摩擦轴固定连接,并且翻转设备主体时可以通过该转头带动摩擦轴一起旋转,从而使设备主体可以相对于腕托垂直翻转。另外,通过设置转头,在转头发生故障后只需要更换一个转头即可,无需将整个摩擦轴进行更换,从而可以降低维护成本。
在一种可能的实现方式中,每个所述转动组件还包括:限位件,所述限位件套设在所述摩擦轴上,所述限位件和所述摩擦片接触连接,且所述限位件位于所述摩擦片靠近所述摩擦轴的第二端的一侧;所述限位件用于对所述摩擦轴相对于所述摩擦片的垂直翻转的转动角度进行限位。
通过设置限位件可以将摩擦片封装在转轴支架内,从而可以防止摩擦片的松动;并且限位件还可以对摩擦轴的旋转角度进行控制,从而防止设备主体随意旋转导致安装时不容易对位,从而浪费安装时间。
在一种可能的实现方式中,所述竖直转轴的底端与所述腕托的第一端转动相连,所述水平转轴底端套设在所述竖直转轴的顶端上;当所述锁合组件处于锁合状态时,所述水平转轴与所述竖直转轴的顶端锁合相连,以使所述设备主体的第一端与所述腕托的第一端相连;当所述锁合组件处于解锁状态时,所述水平转轴与所述竖直转轴拆开,以使所述设备主体的第一端与所述腕托的第一端分开。
通过将竖直转轴的底端与腕托的第一端转动相连,并将水平转轴的底端套设在竖直转轴的顶端,由于水平转轴与设备主体固定连接,所以通过旋转设备主体可以使竖直转轴相对于腕托旋转,从而达到设备主体可以绕着竖直转轴旋转的目的。通过设置锁合组件可以使设置转轴和水平转轴实现分开或者连接两种状态,以便将设备主体从腕托上分离下了或者将设备主体与腕托固定连接。
在一种可能的实现方式中,所述竖直转轴的顶端具有滑轨支架,所述水平转轴的转轴支架底端具有可供所述滑轨支架竖向上伸入的装配腔;当所述滑轨支架位于所述装配腔,且所述水平转轴处于第一位置时,所述锁合组件用于将所述滑轨支架与所述装配腔的内壁锁合相连;当所述水平转轴绕着所述竖直转轴旋转至第二位置时,所述锁合组件处于解锁状态,以使所述水平转轴可与所述滑轨支架拆开。
通过在竖直转轴上设置滑轨支架,并在水平转轴的转轴支架底端设置装配腔,当滑轨支架位于装配腔内时,水平转轴和竖直转轴固定连接,当滑轨支架从装配腔内滑出时,水平转轴和竖直转轴分离,所以通过设置滑轨支架和装配腔可以使水平转轴和竖直转轴可拆卸连接,从而使设备主体和腕托可拆卸连接。
在一种可能的实现方式中,所述竖直转轴的底端设有Z轴支架,所述Z轴支架设在所述腕托的第一端,且所述Z轴支架与所述竖直转轴转动相连。
通过在腕托的第一端设置Z轴支架,从而为竖直转轴提供安装位置。通过将Z轴支架和竖直转轴转动连接,从而使设备主体可以相对于腕托绕着竖直转轴旋转。
在一种可能的实现方式中,所述锁合组件包括至少一个第一锁合组件,所述第一锁合组件的至少部分位于所述滑轨支架内;且所述第一锁合组件用于在所述水平转轴处于所述第一位置时,将所述滑轨支架与所述装配腔的内壁锁合相连,以及在所述水平转轴旋转至所述第二位置时,所述第一锁合组件处于解锁状态。
通过设置第一锁合组件,以使滑轨支架和转轴支架可拆卸连接。另外,该第一锁合组件只有在水平转轴旋转至第二位置时,才能处于解锁状态,这时才能使设备主体和腕托分离。从而可以避免设备主体和腕托在除第二位置之外的其它位置产生意外分离的问题,进而防止设备主体意外脱落造成的损坏。
在一种可能的实现方式中,每个所述第一锁合组件包括:伸缩卡扣以及与所述伸缩卡扣配合的第一内槽,所述第一内槽位于所述装配腔的内壁上;所述伸缩卡扣与所述滑轨支架可伸缩连接,所述伸缩卡扣的一端位于所述滑轨支架内,所述伸缩卡扣的另一端具有卡扣部,所述卡扣部可伸出所述滑轨支架;所述滑轨支架与所述装配腔的内壁之间通过所述卡扣部与所述第一内槽卡合进行锁合相连。
通过设置伸缩卡扣和第一内槽,以使当伸缩卡扣的卡扣部位于第一内槽内时转轴支架和滑轨支架可以锁合连接,进而使设备主体和腕托锁合连接;当伸缩卡扣的卡扣部脱离第一内槽时转轴支架和滑轨支架处于解锁状态,以使设备主体和腕托分离。另外,通过卡扣部和第一内槽的配合,在锁合组件处于锁合状态时,可以加固转轴支架和滑轨支架之间的连接,这样在收到较大的外力也不会使设备主体和腕托分离,从而保证设备主体和腕托之间的连接稳定性。
在一种可能的实现方式中,所述伸缩卡扣的一端设有第一驱动部,所述第一驱动部的一端位于所述滑轨支架外,所述第一驱动部用于在所述水平转轴向所述第二位置旋转时,驱动所述伸缩卡扣水平移动,以带动所述伸缩卡扣的所述卡扣部与所述第一内槽脱离,以使所述第一锁合组件处于解锁状态。
通过设置第一驱动部,以使第一驱动部的伸缩运动转换为伸缩卡扣的伸缩运动,从而使卡扣部从第一内槽脱离,这样可以避免直接驱动卡扣部,可以降低驱动卡扣部的难度。
在一种可能的实现方式中,所述Z轴支架上具有可供所述竖直转轴转动的转动孔,所述Z轴支架上绕着所述转动孔的周向设有下沉槽,所述第一驱动部位于所述下沉槽处,且所述下沉槽为扁形槽,所述扁形槽的部分槽壁用于在所述水平转轴向所述第二位置旋转时向所述第一驱动部施力,以使所述第一驱动部带动所述伸缩卡扣移动。
通过设置通过设置转动孔可以方便竖直转轴旋转,在转动孔的周向设置下沉槽进而给第一驱动部提供设置空间,以使第一驱动部隐设在Z轴支架上;通过将下沉槽设置为扁形 槽,从而在旋转竖直转轴时,第一驱动部可以在扁形槽的部分槽壁的挤压下向内收缩,进而使伸缩卡扣的卡扣部从第一内槽中脱离,以使第一锁合组件处于解锁状态,进而可以使设备主体从腕托上分离;另外通过将下沉槽设置为扁形槽,从而使下沉槽不同位置的直径不同,这样在直径变形的时候,扁形槽的内壁就可以给第一驱动部一个向内的推力,进而使第一驱动部带动这伸缩卡扣以及卡扣部向内收,以便卡扣部与第一内槽中脱离。
在一种可能的实现方式中,每个所述第一锁合组件还包括:转轴顶块,所述转轴顶块的一端与所述伸缩卡扣配合,所述转轴顶块的另一端具有第二驱动部,所述第二驱动部用于在所述水平转轴向所述第二位置旋转时,驱动所述转轴顶块向上移动,以带动所述伸缩卡扣水平移动,以使所述伸缩卡扣的所述卡扣部与所述第一内槽脱离。
在一种可能的实现方式中,所述Z轴支架上具有可供所述竖直转轴转动的转动孔,所述Z轴支架上绕着所述转动孔的周向设有下沉槽,所述第二驱动部位于所述下沉槽处,所述下沉槽为圆形槽;且所述圆形槽的部分槽底具有锥形台阶,所述锥形台阶用于在所述水平转轴向所述第二位置旋转时,驱动所述第二驱动部向上移动,以使所述伸缩卡扣水平移动。
通过在下沉槽内设置锥形台阶,以使在水平转轴向第二位置旋转时,第二驱动部可以在锥形台阶的作用下向上移动,进而使伸缩卡扣水平移动。
在一种可能的实现方式中,所述伸缩卡扣的一端具有第三倾斜面,所述转轴顶块上具有与所述第三倾斜面配合的第四倾斜面,所述第四倾斜面用于在所述转轴顶块向上移动时对所述第三倾斜面施力,以使所述伸缩卡扣水平移动。
通过第三倾斜面和第二斜面的配合以使转轴顶块在竖直方向上的移动,转化成伸缩卡扣在水平方向上的移动,进而使锁合组件处于解锁状态。另外斜面配合的方式会使锁合组件的结构更加简单,从而可以降低成本。
在一种可能的实现方式中,每个所述第一锁合组件还包括:第一滑轨弹簧,所述第一滑轨弹簧位于所述滑轨支架内,且所述第一滑轨弹簧的一端与所述伸缩卡扣的一端相连,所述第一滑轨弹簧的另一端与所述滑轨支架的内壁抵接。
通过设置第一滑轨弹簧以使伸缩卡扣在被压缩后可以自动回弹,从而方便设备主体和腕托的反复插拔,可以防止伸缩卡扣卡在滑轨支架内,保证该穿戴设备的正常使用。
在一种可能的实现方式中,所述第一锁合组件的数量为两个,且所述两个第一锁合组件在所述滑轨支架内靠近所述竖直转轴设置,且所述两个第一锁合组件分别相对所述竖直转轴中心对称设置。
通过设置两个第一锁合组件以方便可以提高锁合力度,保证设备主体和腕托在锁合状态下可以稳定连接,防止意外脱落。通过将两个第一锁合组件分别相对竖直转轴中心对称设置,可以保证锁合组件在竖直转轴两侧的锁合力度是相同的,所以整个设备主体在进行插拔时,设备主体和竖直转轴之间是垂直插拔,这样减少对锁合组件的磨损,并且可以防止插拔时出现卡顿。
在一种可能的实现方式中,所述锁合组件还包括:至少一个第二锁合组件,所述第二锁合组件用于将所述滑轨支架与所述水平转轴的所述装配腔之间进行弹性锁合。
通过设置第二锁合组件可以进一步加固设备主体和腕托之间的连接,进一步防止设备主体从腕托上意外脱落,并且可以提升插拔手感。
在一种可能的实现方式中,每个所述第二锁合组件包括弹性顶块以及与所述弹性顶块配合的第二内槽,所述第二内槽位于所述装配腔的内壁上,所述弹性顶块的至少部分位于所述滑轨支架内且靠近所述滑轨支架的端部;且所述滑轨支架的端部与所述装配腔之间通过所述弹性顶块与所述第二内槽卡合进行弹性锁合。
在一种可能的实现方式中,每个所述第二锁合组件包括第二滑轨弹簧,所述第二滑轨弹簧位于所述滑轨支架内,且所述第二滑轨弹簧的一端与所述弹性顶块相连,所述第二滑轨弹簧的另一端与所述滑轨支架的内壁抵接。
通过设置弹性顶块和第二滑轨弹簧,以使第二锁合组件可以重复使用,并且弹性顶块和第二滑轨弹簧的结构简单,可以降低整个可穿戴设备的成本。
在一种可能的实现方式中,所述滑轨支架相对的两个侧面上设有定位凸起,所述装配腔的内壁上设有与所述定位凸起配合的定位槽。
通过设置定位凸起可以在将设备主体和腕托连接时,使水平转轴的转轴支架只能沿着定位凸起的方向向下滑动,从而可以防止安装不对位导致安装失败;并且,在插拔时不会产生卡顿的现象。
在一种可能的实现方式中,所述竖直转轴的底端与所述腕托的第一端转动相连,所述水平转轴的底端与所述竖直转轴的顶端滑动相连;所述锁合组件用于在水平方向上对所述水平转轴与所述竖直转轴锁合相连,以阻挡所述水平转轴在所述竖直转轴上滑动;以及在所述锁合组件处于解锁状态时,所述水平转轴可从所述竖直转轴上向外滑出。
在一种可能的实现方式中,所述竖直转轴的顶端具有滑轨架,所述水平转轴的转轴支架底端具有可供所述滑轨架水平滑入的滑轨槽;在所述滑轨架位于所述滑轨槽内,且所述设备主体处于第一位置时,所述锁合组件用于将所述滑轨架与所述水平转轴锁合相连;在所述设备主体绕着所述水平转轴旋转至第二位置时,所述锁合组件处于解锁状态,以使所述水平转轴从所述滑轨架上水平滑出。
通过设置锁合组件,并且在设备主体处于处于第一位置时将滑轨架和水平转轴锁合,在设备主体处于第二位置时将滑轨架和水平转轴解锁,以使设备主体只有在旋转至特定位置时才能与腕托分离,这样可以避免设备主体和腕托在除第二位置之外的其它位置产生意外分离的问题,进而防止设备主体意外脱落造成的损坏。
在一种可能的实现方式中,所述锁合组件包括锁紧弹块以及与所述锁紧弹块配合的槽孔,所述槽孔开设在所述水平转轴的转轴支架上,所述锁紧弹块设在所述滑轨架上,且所述锁紧弹块的一端在所述滑轨架的顶端端面上可伸缩设置;所述水平转轴与所述滑轨架通过所述锁紧弹块与所述槽孔卡合在水平方向上进行锁合相连,以及在所述锁紧弹块从所述槽孔移出时,所述水平转轴与所述滑轨架在水平方向上处于解锁状态。
通过设置锁紧弹块以及与锁紧弹块配合的槽孔,当锁紧弹块与槽孔卡合时可以防止转轴支架相对于与滑轨架沿着水平转轴的轴向滑动,从而使设备主体和腕托处于锁合状态,当锁紧弹块脱离槽孔时,转轴支架和滑轨架之间处于解锁状态,此时可以将设备主体从腕托上分离下来。
在一种可能的实现方式中,所述锁合组件还包括:解锁结构,所述解锁结构用于在所述设备主体绕着所述水平转轴朝向所述第二位置移动时,驱动所述锁紧弹块从所述槽孔移出。
通过设置解锁结构,并通过旋转设备主体可以使解锁结构驱动锁紧弹块从槽孔中移出,这样就不需要单独设置需要手动操作的解锁结构,从而可以简化整个锁合组件的结构,进而简化可穿戴设备的结构。
在一种可能的实现方式中,所述解锁结构包括:转轴压臂和转轴凸轮,所述转轴凸轮的两端分别与所述水平转轴相连,所述转轴凸轮的中部位于所述转轴压臂之上;所述转轴压臂的一端朝向所述转轴凸轮,所述转轴压臂的另一端位于槽孔中;所述转轴压臂用于在所述转轴凸轮的驱动下向下移动,以驱动所述锁紧弹块从所述槽孔移出。
在一种可能的实现方式中,所述解锁结构还包括:转轴弹簧,所述转轴弹簧设在所述水平转轴的转轴支架上,且所述转轴弹簧的一端与所述转轴压臂相连。
通过设置转轴弹簧,可以使转轴压臂被压缩后可以自动回弹,从而不影响下次使用。
在一种可能的实现方式中,所述锁合组件还包括:第三滑轨弹簧,所述第三滑轨弹簧位于所述滑轨架内,且所述第三滑轨弹簧的一端与所述锁紧弹块相连。
通过设置第三滑轨弹簧,以使锁紧弹块在被压缩后可以自动回弹,从而不影响下次使用。
在一种可能的实现方式中,还包括:滑轨盖板,所述滑轨盖板盖设在所述锁紧弹块上且与所述滑轨架相连,所述滑轨盖板上开设可供所述锁紧弹块的一端伸出的孔。
通过设置滑轨盖板从而将锁紧弹块限制在滑轨架内,从而防止锁紧弹块脱落,进而影响可穿戴设备的正常使用。
在一种可能的实现方式中,所述滑轨架上沿所述滑轨架的滑动方向的两侧设有限位凸起部,所述滑轨槽内具有与所述限位凸起部配合的限位槽,所述水平转轴的转轴支架与所述滑轨架通过所述限位凸起部与所述限位槽配合在竖向上进行限位。
通过设置限位凸起部和限位槽,可以防止设备主体和腕托在沿竖直转轴的轴向上意外分离。
在一种可能的实现方式中,所述转轴组件还包括:Z轴架,所述Z轴架设在所述腕托的第一端,且所述Z轴架与所述竖直转轴的底端旋转相连。
通过设置Z轴架从而可以方便的将竖直转轴固定在腕托上,通过将Z轴架与竖直转轴旋转连接,以实现设备主体可以绕着竖直转轴旋转的目的。
在一种可能的实现方式中,所述锁合组件包括:锁合沉槽和锁合凸起,所述锁合沉槽和所述锁合凸起中的其中一个设置在所述腕托上,所述锁合沉槽和所述锁合凸起中的另一个设置在所述竖直转轴的底端;所述竖直转轴和所述腕托通过所述锁合沉槽与所述锁合凸起配合实现锁合相连。
本申请实施例提供的可穿戴设备通过设置锁合沉槽和锁合凸起可以将设备主体与腕托分离。使用时,可以将设备主体从腕托上拉出,以使设备主体和腕托完全分离,这样可以提升多场景适应能力。另外,锁合沉槽和锁合凸起之间通过推拉方式实现可拆卸连接,操作简单,可以节约使用者的学习时间。
在一种可能的实现方式中,所述竖直转轴的底端设有第一底座,所述竖直转轴的底端固定设置在所述第一底座内;所述第一底座上设有所述锁合沉槽或所述锁合凸起。
本申请实施例提供的可穿戴设备通过在竖直转轴的底端设置第一底座,可以方便将竖直转轴和腕托连接,并且第一底座可以为锁合凸起或者锁合沉槽提供设置空间。
在一种可能的实现方式中,所述锁合沉槽位于所述腕托上,所述锁合凸起位于所述第一底座靠近所述腕托的一端上;所述锁合沉槽的一侧开设可供所述锁合凸起水平滑入所述锁合沉槽的锁合沉槽开口。
在一种可能的实现方式中,所述锁合沉槽开口朝向所述腕托的第二端,以使所述锁合凸起沿着从所述腕托的第二端至第一端延伸的方向水平滑入所述锁合沉槽。
本申请实施例提供的可穿戴设备通过将锁合沉槽开口设置的朝向腕托的第二端,以使设备主体可以沿着腕托的第一端和第二端的连线所在方向滑动。
在一种可能的实现方式中,所述腕托上具有相对的第三端和第四端,且所述第三端和第四端位于所述腕托的第一端和第二端之间;所述锁合沉槽开口朝向所述第三端,以使所述锁合凸起沿着从所述腕托的第三端至第四端延伸的方向水平滑入所述锁合沉槽;或者,所述锁合沉槽开口朝向所述第四端,以使所述锁合凸起沿着从所述腕托的第四端至第三端延伸的方向水平滑入所述锁合沉槽。
本申请实施例提供的可穿戴设备通过将锁合沉槽开口设置的朝向腕托的第三端或者第四端,以使设备主体可以沿着腕托的第三端和第四端的连线所在方向滑动。
在一种可能的实现方式中,所述锁合沉槽的顶端具有挡边,在所述锁合凸起位于所述锁合沉槽内时,所述挡边在所述竖直转轴的轴向上将所述锁合凸起锁合在所述锁合沉槽中,以使所述竖直转轴的一端与所述腕托的第一端相连。
本申请实施例提供的可穿戴设备通过在锁合沉槽的顶端设置挡边,可以对锁合凸起起到限制作用,从而保证设备主体和腕托的连接稳定性,防止设备主体从腕托上意外脱落。
在一种可能的实现方式中,所述第一底座上具有可供所述竖直转轴的一端穿过的第一开孔;所述竖直转轴的底端具有第一凸台,所述第一开孔的顶端内壁上具有与所述第一凸台相互阻挡的第一凸沿。
本申请实施例提供的可穿戴设备通过竖直转轴的底端具有第一凸台,然后在第一开孔的内壁上设置第一凸沿,以使竖直转轴和第一底座固定连接。
在一种可能的实现方式中,所述转轴支架内设有可供所述竖直转轴部分容纳的第一通孔;所述转轴组件还包括:第一动凸轮,所述第一动凸轮套设在所述竖直转轴上且与所述竖直转轴转动连接,所述第一动凸轮位于所述第一通孔中且与所述第一通孔固定连接;所述第一底座上具有伸入所述第一通孔的第一延伸部,所述第一动凸轮抵在所述第一延伸部上,所述第一开孔延伸到所述第一延伸部的顶端端面,所述第一凸沿位于所述第一延伸部上;所述第一动凸轮面向所述第一延伸部的一面设置为凹凸不平的第一凹凸面,所述第一延伸部面向所述第一动凸轮的一面设置为与所述第一凹凸面的凹凸部位配合的第二凹凸面,所述第一凹凸面和所述第二凹凸面的凸部和凹部之间均设置有弧形过渡面,以使所述第一动凸轮与所述第一底座转动相连。
在一种可能的实现方式中,所述锁合组件还包括至少一个止挡组件,所述止挡组件可伸缩地设置在所述腕托上,且所述至少一个止挡组件位于所述锁合沉槽的至少一侧;所述腕托的至少一侧设置有安装所述止挡组件的安装槽,每个所述安装槽靠近所述锁合沉槽的侧壁上均设有与所述锁合沉槽连通的第二开孔;所述止挡组件的第一端穿过所述第二开孔并延伸至所述锁合沉槽内,所述止挡组件的第二端固定在所述安装槽内。
在一种可能的实现方式中,所述止挡组件包括顶盖板、挡板、第一弹性件和止挡件, 其中,所述挡板固定在所述安装槽内;所述止挡件的第一端穿过所述第二开孔并延伸至所述锁合沉槽内,所述止挡件的第二端套设在所述第一弹性件上;所述第一弹性件的一端套设在所述止挡件位于所述安装槽内的第二端上,所述第一弹性件的另一端抵在所述挡板上;所述顶盖板位于所述安装槽的顶端,并固定在所述腕托上。
在一种可能的实现方式中,所述止挡件的第一端为半球形凸起,所述锁合凸起上设置有与所述半球形凸起配合的卡合凹槽;所述半球形凸起滑入所述卡合凹槽内时,所述锁合组件处于锁合状态;所述半球形凸起滑出所述卡合凹槽之外时,所述锁合组件处于解锁状态。
在一种可能的实现方式中,所述止挡件上设置有向外凸起的止挡部,所述止挡部位于所述安装槽内,且与所述安装槽的侧壁抵接。
在一种可能的实现方式中,所述锁合组件还包括:至少一个压块按钮,所述压块按钮可伸缩地设置在所述腕托朝向所述水平转轴的一面上;在所述水平转轴旋转至压在所述压块按钮上时,所述压块按钮下移且所述压块按钮的底端压在所述止挡组件上,以阻挡所述止挡组件远离所述锁合沉槽移动;在所述水平转轴旋转至从所述压块按钮上移开时,所述压块按钮上移且所述压块按钮的顶端从所述腕托朝向所述水平转轴的一面上向外伸出。
通过设置压块按钮使该穿戴设备的设备主体旋转至特定位置后才能与腕托分离,这样可以防止设备主体和腕托分意外脱落,增加腕托和设备主体之间的连接稳定性。
在一种可能的实现方式中,所述压块按钮的底端具有楔形面,所述止挡组件上具有可供所述压块按钮的底端伸入的楔形槽,所述楔形槽内具有与所述楔形面配合的倾斜面;所述楔形面用于在所述压块按钮下移时与所述倾斜面配合,以使所述止挡组件朝向所述锁合沉槽移动;所述倾斜面用于在所述止挡组件远离所述锁合沉槽移动时与所述楔形面配合,以使所述压块按钮上移。
在一种可能的实现方式中,所述压块按钮的顶端具有呈倾斜状的第一引导面和第二引导面;所述第一引导面用于在所述水平转轴沿第一方向旋转时引导所述水平转轴旋转至所述压块按钮上;所述第二引导面用于在所述水平转轴沿第二方向旋转时引导所述水平转轴旋转至所述压块按钮上;所述第一方向和所述第二方向中的其中一个方向为逆时针方向,另一个为顺时针方向。
本申请实施例提供的可穿戴设备通过在压块按钮的顶端设置呈倾斜状的第一引导面和第二引导面,以便在旋转设备主体时,可以使转轴支架旋转至压块按钮之上,进而使止挡组件将锁合凸起锁合在锁合沉槽内。
在一种可能的实现方式中,所述压块按钮的数量为两个,所述止挡组件的数量为两个,两个所述止挡组件分别位于所述锁合沉槽中的两侧,每个所述压块按钮对应设置一个所述止挡组件。
通过设置两个压块按钮和两个止挡组件,这样就可以加强锁合力,从而可以延长止挡组件、以及压块按钮的使用寿命。
在一种可能的实现方式中,所述锁合组件还包括:拨动按钮,所述拨动按钮的第一端位于所述腕托的第一端外侧,所述拨动按钮的第二端位于所述腕托的第一端内;且所述拨动按钮的第二端上具有卡杆,所述锁合凸起上设有卡孔;所述卡杆的一端在所述拨动按钮被拨动时伸入所述锁合沉槽并插设在所述卡孔内,以阻挡所述锁合凸起移出所述锁合沉槽, 以及在所述拨动按钮被反向拨动时移出所述卡孔。
本申请实施例提供的可穿戴设备通过在锁合组件中设置拨动按钮,可以方便的将锁合凸起与锁合沉槽锁合,通过在锁合凸起上设置卡孔,在拨动按钮的第二端上设置卡杆,以使当卡杆位于卡孔内时,锁合凸起和锁合沉槽固定连接,以使设备主体和腕托之间固定连接,当卡杆与卡孔分离时,锁合凸起和锁合沉槽分开,以使设备主体和腕托分离。这种通过设置拨动按钮的方式来控制设备主体和腕托之间的锁合和分离,不但分离方便,而且锁合牢固。
在一种可能的实现方式中,所述腕托的第一端内具有可供所述拨动按钮的第二端滑动的滑动空间;且所述滑动空间中两个相对的侧壁上设有第一磁铁和第二磁铁,所述拨动按钮的第二端位于所述第一磁铁和所述第二磁铁之间;在所述拨动按钮被拨动至所述拨动按钮的第二端与所述第一磁铁相吸时,所述卡杆的一端插设在所述卡孔内;在所述拨动按钮被拨动至所述拨动按钮的第二端与所述第二磁铁相吸时,所述卡杆的一端退出所述锁合沉槽。
通过滑动空间中两个相对的侧壁上设有第一磁铁和第二磁铁,可以减小拨动的力度,从而提高拨动开关的灵敏性。
在一种可能的实现方式中,所述锁合组件还包括:锁合开关,所述锁合开关设置在所述腕托上;所述锁合开关用于将所述第一底座锁定在所述锁合沉槽内,以及所述锁合开关被按压时对所述第一底座的锁定解除。
在一种可能的实现方式中,所述锁合开关的第一端固定在所述腕托内,所述锁合开关的第二端悬空在所述锁合沉槽内且用于将所述第一底座锁定在所述锁合沉槽内;所述锁合开关上设有触发按钮,所述触发按钮位于所述锁合开关的第一端和第二端之间,且所述触发按钮的一端从所述腕托内向外凸出;所述触发按钮被按压时,所述锁合开关的第二端解除对所述第一底座的锁定。
在一种可能的实现方式中,所述触发按钮位于所述腕托朝向所述水平转轴的一面上,且所述触发按钮位于所述水平转轴的一侧;在所述设备主体绕着所述水平转轴翻转至压住所述触发按钮时,所述触发按钮下移并带动所述锁合开关的第二端脱离所述第一底座。
在一种可能的实现方式中,所述第一底座上设有钩槽,所述锁合开关的第二端上具有与所述钩槽配合的挂钩;所述锁合开关通过所述钩槽与所述挂钩配合将所述第一底座锁定在所述锁合沉槽内。
在一种可能的实现方式中,所述第一底座上靠近所述钩槽的位置设有退让空间,所述退让空间与所述钩槽相通。
本申请实施例提供的可穿戴设备通过设置锁合开关,只需通过按压开关就可以实现将设备主体和腕托分离,操作方便。另外,通过设置钩槽和挂钩可以使第一底座和锁合开关连接温度,防止设备主体从腕托上滑落,通过设置退让空间,可以方便挂钩下移以脱离钩槽,进而使设备主体和腕托分离。
在一种可能的实现方式中,所述锁合组件还包括:至少一个按压开关,所述按压开关的第一端位于所述腕托的外侧,所述按压开关的第二端位于所述锁合沉槽处;所述锁合凸起可伸缩地设在所述第一底座上,所述锁合沉槽内设有与所述锁合凸起配合的台阶,所述第一底座与所述锁合沉槽之间通过所述锁合凸起卡在所述台阶处进行锁合相连;所述按压 开关被按压时,所述按压开关的第二端驱动所述锁合凸起移开所述台阶,以使所述第一底座与所述锁合沉槽之间处于解锁状态。
本申请实施例提供的可穿戴设备,通过设置按压开关可以直接通过按压开关将设备主体和腕托分离,无需将设备主体旋转至特定角度就看拆卸,拆卸起来更加方便快捷。
在一种可能的实现方式中,所述锁合凸起朝向所述按压开关的一端上具有第一倾斜面,所述按压开关上具有与所述第一倾斜面配合的第二倾斜面。
通过设置第一倾斜面和第二倾斜面,以便在按压该按压开关时,第一倾斜面和第二倾斜面之间可以相对移动,进而使按压开关向将锁合凸起向内挤压,进而使锁合凸起和锁合沉槽之间处于解锁状态,进而使设备主体与腕托分离。
在一种可能的实现方式中,所述第一底座内设有第一按压弹簧,所述第一按压弹簧的一端固定在所述第一底座内,所述第一按压弹簧的另一端与所述锁合凸起的一端相连。
通过设置第一按压弹簧,以使锁合凸起相对于第一底座可伸缩,以使锁合凸起和锁合沉槽可以处于锁合状态,也可以处于解锁状态。
在一种可能的实现方式中,所述腕托内设有第二按压弹簧,所述第二按压弹簧套设在所述按压开关上,所述按压开关通过第二按压弹簧可伸缩地设在所述腕托的第一端处。
通过设置第二按压弹簧,以使按压开关相对于腕托可伸缩,以使将锁合凸起和锁合沉槽锁合后,按压开关可以自动回弹到初始位置。
在一种可能的实现方式中,所述锁合凸起的数量为两个,两个所述锁合凸起位于所述第一底座的两侧,所述按压开关的数量为两个,两个所述按压开关分别位于所述腕托的两侧,每个所述按压开关对应一个所述锁合凸起。
通过设置两个锁合凸起以及两个按压开关,这样可以将设备主体和腕托的两个位置均锁合,进而增加设备主体和腕托之间的连接稳固性。两个按压开关分别设置在腕托的两侧,可以使腕托和设备主体之间的卡合力分布在腕托的两侧,以使腕托两侧处于平衡状态,以防止设备主体的一端滑落导致设备主体和腕托连接不稳固。
在一种可能的实现方式中,所述锁合组件还包括:拨动开关,所述拨动开关包括操作端和卡合端,所述操作端位于所述腕托外,所述卡合端位于所述锁合沉槽内;所述卡合端用于将所述第一底座锁定在所述锁合沉槽内;所述操作端用于被推动时带动所述卡合端卡入所述第一底座上或者从所述第一底座上移开。
本申请实施例提供的可穿戴设备通过设置拨动开关,可以通过来回拨动该拨开关来实现设备主体和腕托的拆开或者锁合,操作方便,并且结构简单,卡合时连接比较稳固。通过将拨动开关的操作端设置在腕托外,这样可以方便操作。
在一种可能的实现方式中,所述第一底座上具有母扣,所述拨动开关的所述卡合端上具有与所述母扣配合的公扣。
通过设置公扣和母扣,可以利用公扣和母扣的扣合使第一底座锁合在腕托上,从而使设备主体与腕托固定连接,并且公扣和母扣的结构简单,有利于简化拨动开关的结构,进而降低成本。
在一种可能的实现方式中,所述锁合沉槽位于所述第一底座上,所述锁合凸起位于所述腕托上;所述锁合沉槽的至少一侧开设可供所述锁合凸起水平滑入所述锁合沉槽的开口。
在一种可能的实现方式中,所述锁合凸起和所述锁合沉槽中的其中一个上具有卡凸, 所述锁合凸起和所述锁合沉槽中的另一个上具有卡位,所述锁合凸起和所述锁合沉槽通过所述卡凸与所述卡位卡合进行锁合相连。
本申请实施例提供的可穿戴设备通过在锁合凸起和锁合沉槽中的其中一个上设置卡凸,在锁合凸起和锁合沉槽中的另一个上设置卡位,可以通过卡凸和卡位来实现第一底座和腕托的锁合连接。另外,由于卡凸和卡位直接设置在锁合凸起和锁合沉槽上,所以无需设置其它部件就可以实现腕托和第一底座的锁合连接,结构简单,且拆装方便。
在一种可能的实现方式中,所述锁合沉槽上相对的两侧均有所述开口。
通过在两侧均设置开口,可以将设备主体从任意一侧滑入,以使拆装更加方便。
在一种可能的实现方式中,所述锁合沉槽和所述锁合凸起中的其中一个上设有缺口,所述锁合沉槽和所述锁合凸起中的其中一个上设有与所述缺口配合的挡台。
通过设置缺口和挡台可以防止锁合凸起从锁合沉槽的一侧滑出,以防止设备主体意外脱落。
在一种可能的实现方式中,所述锁合沉槽位于所述腕托上,所述锁合凸起位于所述第一底座靠近所述腕托的一端上;且所述锁合沉槽的顶端具有可供所述锁合凸起竖直滑入所述锁合沉槽的槽口。
在一种可能的实现方式中,所述锁合组件还包括:锁合按钮,所述锁合按钮在所述腕托上可伸缩设置或可滑动设置;且所述锁合按钮的一端位于所述腕托的第一端外侧,所述锁合按钮的另一端位于所述锁合沉槽内并用于与所述锁合凸起卡合相连。
本申请实施例提供的可穿戴设备通过设置锁合按钮,可以通过按压该锁合按钮以使锁合凸起和锁合沉槽解锁,进而使腕托和设备主体分离,操作方便。
在一种可能的实现方式中,所述锁合按钮位于所述锁合沉槽内的一端上具有第一卡勾,所述第一卡勾用于在所述锁合凸起伸入所述锁合沉槽内时与所述锁合凸起卡合,以及用于在所述锁合按钮被按压或被滑动时移动,以使所述第一卡勾与所述锁合凸起解除卡合。
通过设置第一卡勾可以使锁合按钮和锁合凸起卡合,进而将锁合凸起锁合在锁合沉槽内,以使设备主体固定在腕托上,防止设备主体从腕托上滑落。
在一种可能的实现方式中,所述锁合沉槽内设有第一伸缩件,所述第一伸缩件的一端与所述锁合沉槽的内壁相连,所述第一伸缩件的另一端与所述锁合按钮相连,以使所述锁合按钮在所述腕托上可伸缩设置。
通过设置第一伸缩件,以使锁合按钮相对于腕托可伸缩,这样在腕托和设备主体解锁后,锁合按钮可以自动回弹,以便反复使用。
在一种可能的实现方式中,所述锁合沉槽内设有至少一个第二伸缩件,所述第一底座上设有用于与所述第二伸缩件抵接的抵接件;所述第二伸缩件用于在所述锁合凸起与所述第一卡勾卡合时被所述抵接件压缩,以及在所述锁合凸起解除卡合时驱动所述抵接件朝向所述槽口移动。
通过设置第二伸缩件,可以方便在将设备主体和腕托分离时,给设备主体一个向上的弹力,方便拆卸;将设备主体和腕托连接时,也给设备主体一个向上的弹力,提升安装手感。
在一种可能的实现方式中,所述锁合按钮位于所述锁合沉槽内的一端还具有第二卡勾,所述锁合沉槽内具有与所述第二卡勾配合的卡台。
通过设置第二卡勾,并在锁合沉槽内设置卡台,以使锁合按钮固定设置在腕托上,并且一端始终位于锁合沉槽内,这样可以防止锁合按钮从锁合沉槽中脱落。
在一种可能的实现方式中,所述锁合组件还包括:第一磁性件和第二磁性件,所述第一磁性件和所述第二磁性件中的其中一个设置在腕托内,所述第一磁性件和所述第二磁性件中的另一个设在所述竖直转轴上或者设在所述竖直转轴底端设置的第一底座内。
本申请实施例提供的可穿戴设备通过设置第一磁性件和第二磁性件,可以通过第一磁性件和第二磁性件之间的吸引力实现设备主体和腕托的固定连接,以防止设备主体从腕托上脱落。另外,第一磁性件和第二磁性件的结构简单且设置方便,可以简化腕托以及设备主体的结构,进而节约成本。
在一种可能的实现方式中,所述第一底座上设有至少一个弹性力臂,所述弹性力臂的一端与所述第一底座相连,所述弹性力臂的另一端为自由端,所述锁合凸起设在所述弹性力臂的自由端上;所述锁合沉槽内设有与所述锁合凸起卡合的凹陷部。
本申请实施例提供的可穿戴设备通过设置弹性力臂,可以增加锁合凸起和锁合沉槽之间的锁合力,进而防止设备主体和腕托之间意外脱落,并且可以提升拆装的手感。
在一种可能的实现方式中,所述弹性力臂与所述第一底座呈一体式结构。
在一种可能的实现方式中,所述锁合沉槽内设有至少一个弹性力臂,且所述弹性力臂的一端与所述锁合沉槽的内壁相连,所述弹性力臂的另一端为自由端;且所述弹性力臂的自由端上具有凸包;所述锁合凸起上设有用于与所述凸包卡合的槽位。
在一种可能的实现方式中,所述弹性力臂的数量为两个,且两个所述弹性力臂相对设置。
通过设置两个弹性力臂可以增大弹性力臂和锁合凸起之间的锁合力,从而提高设备主体和腕托之间的连接稳固性,以防止设备主体从腕托上意外脱落。
在一种可能的实现方式中,当所述弹性力臂设在所述锁合沉槽内时,所述两个弹性力臂相连且呈一体式结构。
在一种可能的实现方式中,所述锁合组件还包括:弹片卡位,所述弹片卡位的卡合端位于所述锁合沉槽内,所述锁合凸起上设有用于与所述弹片卡位的卡合端卡合的凹坑。
本申请实施例提供的可穿戴设备通过设置弹片也可以增加锁合沉槽和锁合凸起之间的卡合力,从而提高设备主体和腕托之间的连接稳固性,以防止设备主体从腕托上意外脱落。
在一种可能的实现方式中,所述锁合组件包括:滑槽、滑块和弹片,所述滑块与所述转动组件的摩擦轴的一端相连,所述设备主体与所述滑块对应的位置设置所述滑槽;所述弹片设在所述滑槽和所述滑块中的其中一个上,所述弹片用于在所述滑块滑入所述滑槽中时将所述滑块锁合在所述滑槽中,以使所述水平转轴的两端与所述设备主体的第一端锁合相连;且所述滑块与所述滑槽脱离锁合时,所述设备主体的第一端与所述水平转轴的两端拆开。
在一种可能的实现方式中,所述滑块面向所述滑槽的两个侧面上设有所述弹片,所述滑块与所述摩擦轴呈一体式结构。
在一种可能的实现方式中,所述滑块上设置可容纳所述弹片的第一凹槽,两个所述第一凹槽相对设置在所述滑块的两侧,所述弹片设置在所述第一凹槽内;其中,所述弹片包 括顶弹片和底弹片,所述顶弹片和所述底弹片相对设置,且通过第一连接件固定在所述滑块内;所述顶弹片和所述底弹片均设置有弧形凸起,所述滑槽上设置有弧形凹槽;所述弧形凸起滑入所述弧形凹槽内时,所述锁合组件处于锁合状态;所述弧形凸起滑出所述弧形凹槽之外时,所述锁合组件处于解锁状态。
在一种可能的实现方式中,转轴组件还包括:第二底座,所述第二底座固定设在所述腕托的第一端上,所述第二底座上具有可供所述竖直转轴的一端穿过的第三开孔;且所述竖直转轴的底端具有第二凸台,所述第三开孔的顶端内壁上具有与所述第二凸台相互阻挡的第二凸沿,所述第二凸台与所述第二凸沿接触连接,以使所述竖直转轴的底端固定在所述第二底座内。
在一种可能的实现方式中,所述转轴支架内设有可供所述竖直转轴的部分容纳的第二通孔;所述转轴组件还包括:第二动凸轮,所述第二动凸轮套设在所述竖直转轴上且位于所述第二通孔中;所述第二动凸轮与所述竖直转轴转动连接,且与所述第二通孔固定连接;所述第二底座上具有伸入所述第二通孔的第二延伸部,所述第二动凸轮抵在所述第二延伸部上,所述第三开孔延伸到所述第二延伸部的顶端端面,所述第二凸沿位于所述第二延伸部上;且所述第二动凸轮面向第二延伸部一面设置为凹凸不平的第三凹凸面,所述第二延伸部面向所述第二动凸轮的一面设置为与所述第三凹凸面的凹凸部位配合的第四凹凸面;所述第三凹凸面和所述第四凹凸面的凸部和凹部之间均设置有弧形过渡面,以使所述第二动凸轮与所述第二底座转动相连。
在一种可能的实现方式中,所述滑槽的内壁上设有耐磨件,所述耐磨件上开设可容纳所述滑块的凹槽。
在一种可能的实现方式中,所述锁合组件包括:锁合卡槽和卡合部,所述锁合卡槽位于所述腕托上,所述卡合部位于所述竖直转轴的底端;所述锁合卡槽顶端开设可供所述卡合部垂直滑入的所述锁合卡槽开口;所述锁合卡槽的两侧设有挡块,两个所述挡块相对设置且与所述腕托滑动连接,以使所述锁合卡槽的开口大小可调节;在所述竖直转轴沿第一方向转动时,所述卡合部卡在所述锁合卡槽内,所述锁合组件处于锁合状态;在所述竖直转轴沿与所述第一方向相反的第二方向转动时,所述卡合部挤压所述挡块并使所述锁合卡槽开口变大,以使所述锁合组件处于解锁状态。
在一种可能的实现方式中,所述卡合部和所述挡块中的至少一个上设置有卡合槽,所述卡合槽和所述挡块中的另一个上设置有卡合凸起;所述卡合凸起与所述卡合槽配合连接,且所述竖直转轴沿所述第一方向旋转时,所述卡合凸起卡在所述卡合槽内,以使所述竖直转轴与所述腕托的第一端固定连接,所述竖直转轴沿所述第二方向旋转时,所述卡合凸起滑出所述卡合槽,以使所述竖直转轴与所述腕托的第一端分开。
在一种可能的实现方式中,所述卡合部的横截面为椭圆形,所述卡合凸起或所述卡合槽设置在所述卡合部的外侧壁上,且位于所述卡合部长轴以外的任意位置。
在一种可能的实现方式中,所述卡合槽设置在所述挡块上,所述卡合凸起设置在所述卡合部上。
在一种可能的实现方式中,所述锁合卡槽开口的顶端设有斜面,所述斜面靠近所述设备主体一端的直径大于所述斜面靠近所述腕托一端的直径,以使所述竖直转轴可沿所述斜面滑入所述锁合卡槽。
在一种可能的实现方式中,所述锁合组件还包括:底座挡板和第二弹性件;所述腕托上设置有安装所述挡块以及所述第二弹性件的容纳腔,所述挡块设置在所述容纳腔内;
所述挡块与所述容纳腔的侧壁之间设置有所述第二弹性件,所述挡块挤压所述第二弹性件可使所述锁合卡槽开口变大;
所述底座挡板盖设在所述容纳腔的顶端,所述底座挡板上开设有装配孔,所述挡块的顶端位于所述装配孔内,且所述装配孔的侧壁和所述挡块之间设有间隙,所述间隙用于为所述挡块的滑动提供空间。
在一种可能的实现方式中,所述转轴支架内设有可供所述竖直转轴部分容纳的第三通孔;所述转轴组件还包括:第三动凸轮,所述第三动凸轮套设在所述竖直转轴上且与所述竖直转轴转动连接,所述第三动凸轮位于所述第三通孔中且与所述第三通孔固定连接;所述竖直转轴上具有伸入所述第三通孔的第一定凸轮,所述第一定凸轮围绕所述竖直转轴向外延伸,所述第三动凸轮抵在所述第一定凸轮上;所述第三动凸轮面向所述第一定凸轮的一面设置为凹凸不平的第五凹凸面,所述第一定凸轮面向所述第三动凸轮的一面设置为与所述第五凹凸面的凹凸部位配合的第六凹凸面。
在一种可能的实现方式中,所述第五凹凸面的凸部和凹部之间间隔设置有弧形过渡面和直角过渡面;所述第六凹凸面的凸部和凹部之间间隔设置有弧形过渡面和直角过渡面;且所述第五凹凸面的弧形过渡面与所述第六凹凸面的弧形过渡面配合连接,所述第五凹凸面的直角过渡面与所述第六凹凸面的直角过渡面配合连接,以使所述设备主体围绕竖直转轴沿第一方向旋转时,所述第三动凸轮可绕所述竖直转轴旋转,所述设备主体围绕竖直转轴沿第二方向旋转时,所述第三动凸轮卡合在第一定凸轮上并带动所述第一定凸轮竖直转轴沿第二方向旋转,以使所述卡合凸起滑出所述卡合槽,所述竖直转轴与所述腕托的第一端分开。
在一种可能的实现方式中,所述转轴组件还包括:第三弹性件、顶垫片、底垫片,所述底垫片套设在所述竖直转轴上,所述顶垫片套设在所述竖直转轴的顶端且与所述水平转轴转动相连,所述第三弹性件套设在所述竖直转轴上,且所述第三弹性件的两端分别与所述顶垫片和底垫片相连。
在一种可能的实现方式中,所述第三弹性件为弹簧。
在一种可能的实现方式中,所述竖直转轴的底端与所述腕托固定相连,每个所述转动组件的摩擦轴的一端均与所述设备主体固定相连;当所述锁合组件处于锁合状态时,所述竖直转轴的顶端位于所述转轴支架内,所述锁合组件将所述转轴支架与所述竖直转轴锁合相连,以使所述设备主体的第一端与所述腕托的第一端相连;当所述锁合组件处于解锁状态时,所述转轴支架与所述竖直转轴拆开,以使所述设备主体的第一端与所述腕托的第一端分开。
在一种可能的实现方式中,所述竖直转轴上套设有限位套筒,所述限位套筒与所述竖直转轴转动相连;所述锁合组件用于将所述转轴支架与所述限位套筒锁合相连或解锁配合。
在一种可能的实现方式中,所述锁合组件包括:卡槽,锁合按键和锁合件,所述锁合件沿着所述转轴支架的轴向可伸缩地设置在所述转轴支架内,所述卡槽设在所述限位套筒上;所述锁合件的一端具有与所述卡槽卡合的锁合端,当所述锁合件的锁合端与所述卡槽卡合时,所述限位套筒与所述转轴支架锁合相连;所述锁合按键用于驱动所述锁合件远离 所述卡槽移动,以使锁合件的锁合端脱离所述卡槽。
在一种可能的实现方式中,所述锁合按键可伸缩地设在所述转轴支架上,且所述锁合按键被按压时,所述锁合按键的一端朝向所述转轴支架内缩入并驱动所述锁合件远离所述卡槽移动,且当所述锁合件的锁合端脱离所述卡槽时,所述限位套筒与所述转轴支架拆开。
在一种可能的实现方式中,所述锁合按键在所述转轴支架上滑动设置,且所述锁合按键被滑动时,所述锁合按键的一端沿着所述水平转轴的轴向移动并带动所述锁合件远离所述卡槽移动。
在一种可能的实现方式中,所述限位套筒面向所述锁合按键的一面上设有凸起,所述凸起的两侧分别设有所述卡槽,每个所述卡槽对应设有一个所述锁合件;且所述凸起朝向所述限位筒体的正投影呈箭头结构,且所述箭头结构中的箭头指向所述竖直转轴的顶端。
在一种可能的实现方式中,所述锁合组件还包括:按键盖板和第四弹性件,所述按键盖板固定在所述转轴支架的外表面上,且所述按键盖板上开设可供所述锁合按键的按压面裸露的开口;所述第四弹性件的一端与所述转轴支架相连,所述第四弹性件的另一端与所述锁合件相连,所述锁合件通过第四弹性件可伸缩设置。
在一种可能的实现方式中,所述锁合按键的至少一端具有驱动部,所述驱动部用于与所述锁合件配合。
在一种可能的实现方式中,所述锁合按键的两端分别具有驱动部,每个所述驱动部上具有第一斜面,每个所述锁合件上具有与所述第一斜面配合的第二斜面;所述第一斜面用于在所述锁合按键被按压时驱动所述第二斜面移动,以使所述锁合件向远离所述卡槽的方向移动;所述第二斜面用于在所述锁合按键上的外力去除后在所述第四弹性件的弹力作用下驱动所述第一斜面移动,以使所述锁合件复位。
在一种可能的实现方式中,所述锁合组件包括:退让凹槽和锁合凸台,所述退让凹槽和所述锁合凸台中的其中一个设在所述转轴支架上,所述退让凹槽和所述锁合凸台中的另一个设在所述竖直转轴上;且所述锁合凸台与所述退让凹槽在所述竖直转轴的轴向上重叠时,所述转轴支架与所述竖直转轴处于解锁状态;所述锁合凸台与所述退让凹槽在所述竖直转轴的轴向上错开时,所述转轴支架与所述竖直转轴处于锁合状态。
本申请实施例提供的可穿戴设备,通过设置锁合凸台,在锁合凸台和退让凸起错开时,可以使转轴支架和竖直转轴处于锁合状态,以防止设备主体和腕托分离,进而增加设备主体和腕托之间的连接稳定性。
在一种可能的实现方式中,所述转轴支架的顶端开设可供所述竖直转轴的顶端穿过的避让口;所述避让口的内壁上开设所述退让凹槽;所述锁合凸台设在所述竖直转轴的顶端。
在一种可能的实现方式中,所述转轴支架的顶端具有绕着所述避让口设置的环形轨道,所述退让凹槽位于所述环形轨道上且与所述避让口相通;且所述锁合凸台与所述退让凹槽在所述竖直转轴的轴向上错开时,所述锁合凸台位于所述环形轨道上,以使所述竖直转轴与所述转轴支架锁合相连。
在一种可能的实现方式中,所述竖直转轴的顶端套设有锁环,所述锁环,所述锁环的外边缘向外凸起形成所述锁合凸台。
通过设置锁环可以为锁合凸台提供安装位置,进而简化锁合组件的结构,进而降低成本。
在一种可能的实现方式中,所述竖直转轴上套接有压环,所述压环在所述竖直转轴上位于所述限位套筒的顶端与所述锁环之间。
在一种可能的实现方式中,所述限位套筒的外侧壁上设有限位块,所述转轴支架上设有与所述限位块配合的限位腔。
通过设置限位块以及限位腔,可以在设备主体和腕托连接时,防止转轴支架与限位套筒支架发生相对转动。
在一种可能的实现方式中,所述转轴组件还包括:设在所述转轴支架内且相对所述竖直转轴对称的两个抵接组件,每个所述抵接组件的一端与所述摩擦轴的一端相连,每个所述抵接组件的另一端可伸缩地抵接在所述限位套筒的外壁上。
通过设置抵接组件可以防止转轴支架相对于竖直转轴相互转动。
在一种可能的实现方式中,每个所述抵接组件包括:抵接块和第五弹性件,所述第五弹性件的一端与所述摩擦轴的一端的内部相连,所述第五弹性件的另一端与所述抵接块相连,且所述抵接块的一端罩设在所述摩擦轴的一端外,所述抵接块的另一端具有抵接头;所述限位套筒的外壁上设有与所述抵接头卡合的第二凹槽。
在一种可能的实现方式中,还包括第三底座,所述第三底座设置在所述竖直转轴的底端,所述第三底座上设有朝向所述竖直转轴顶端延伸的第三延伸部;所述限位套筒的底端抵接在所述第三延伸部上,且所述限位套筒的底端设有凹凸不平的第七凹凸面,所述第三延伸部面向所述限位套筒的一面上设有与所述第七凹凸面配合的第八凹凸面。
在一种可能的实现方式中,还包括:第六弹性件,所述第六弹性件套设在所述竖直转轴上,且所述第六弹性件的一端抵在所述限位套筒的内底面上,所述第六弹性件的一端通过卡簧与所述竖直转轴的顶端相连。
在一种可能的实现方式中,所述限位套筒的顶端与所述卡簧之间设有转轴垫片。
在一种可能的实现方式中,所述转动组件的摩擦轴上还设置有连接部,所述连接部与所述设备主体通过紧固件固定连接。
在一种可能的实现方式中,还包括卡合组件,所述卡合组件固设在所述设备主体的第二端,所述设备主体的第二端通过所述卡合组件与所述腕托的第二端可拆卸连接。
本申请实施例中通过设置卡合组件,佩戴时,设备主体的第二端通过卡合组件与腕托的第二端卡合连接,这样可以方便佩戴;打开时,按压卡合组件可将设备主体抬起,以使设备主体的第二端和腕托的第二端分离,在转轴组件的作用下设备主体可以绕水平转轴翻转,也可以绕竖直转轴旋转,这样可以提升可穿戴设备的可玩性和机械感。
在一种可能的实现方式中,所述卡合组件包括:按键,所述按键的底端具有第一卡接部,所述腕托上设有与所述第一卡接部卡合的第一扣位;所述按键在所述设备主体的第二端的侧面上可伸缩设置,所述设备主体与腕托通过所述第一卡接部与所述第一扣位卡合实现可拆卸相连;且所述按键被按压时,所述第一卡接部与所述第一扣位脱离卡合,以使所述设备主体的第二端与所述腕托的第二端拆开。
在一种可能的实现方式中,所述按键包括:按键帽、按键架和第七弹性件,所述按键架设在所述设备主体的第二端上,且所述按键架的两端与所述设备主体的第二端固定相连;
所述第七弹性件的一端与所述按键帽面向所述设备主体的一面相连,所述第七弹性件的另一端与所述按键架相连;所述按键帽的底端具有所述第一卡接部。
在一种可能的实现方式中,所述按键面向所述设备主体的一面上设有导向凸起,所述导向凸起具有可供所述第七弹性件的一端伸入的通孔;所述按键架上具有可供所述导向凸起移动的导向槽;所述第七弹性件的一端与所述导向槽的槽底相连,所述第七弹性件的另一端伸入所述导向凸起的通孔内与所述按键帽相连。
在一种可能的实现方式中,所述按键帽背向所述设备主体的一面上具有多个间隔设置的凸起部和凹陷部;且位于所述按键帽底端的其中一个所述凸起部形成所述第一卡接部,所述第一卡接部上具有第一导向斜面,所述腕托上具有与所述第一导向斜面配合的第二导向斜面。
在一种可能的实现方式中,所述卡合组件包括:盖板和按键板,所述按键板背向所述设备主体的一面上具有向外凸起的按压部;所述盖板上具有可供所述按压部穿过的开口,所述盖板与所述设备主体相连;所述按键板在所述设备主体的第二端的侧面上可伸缩设置;且所述按键板的两端底端分别设有第二卡接部,所述腕托上设有与所述第二卡接部卡合的第二扣位;所述设备主体与腕托通过所述第二卡接部与所述第二扣位卡合实现可拆卸相连。
在一种可能的实现方式中,所述卡合组件还包括第八弹性件,所述第八弹性件的一端与所述设备主体相连,所述第八弹性件的另一端与所述按键板相连,所述按键板通过所述第八弹性件可伸缩地设置在所述设备主体上。
在一种可能的实现方式中,还包括:表带,所述表带与所述腕托转动相连。
本申请实施例另一方面提供一种可穿戴系统,包括终端设备和第一方面的可穿戴设备,所述终端设备和所述可穿戴设备通信连接。
本申请提供的一种可穿戴设备以及可穿戴系统,可穿戴设备通过设置转轴组件,可以实现设备主体绕水平转轴和竖直转轴旋转,通过设置锁合组件可以将设备主体与腕托分离。佩戴时,设备主体的第二端通过卡合组件与腕托的第二端卡合连接,这样可以方便佩戴;打开时,按压卡合组件可将设备主体抬起,以使设备主体的第二端和腕托的第二端分离,在转轴组件的作用下设备主体可以绕水平转轴翻转,也可以绕竖直转轴旋转,这样可以提升可穿戴设备的可玩性和机械感;另外,在打开卡合组件的同时还可以将设备主体从腕托上拆卸下了下来,以使设备主体和腕托完全分离,这样可以提升多场景适应能力。
图1为本申请一实施例提供的可穿戴设备的结构示意图;
图2为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图;
图3为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的结构示意图;
图4为本申请一实施例提供的设备主体和腕托的剖面结构示意图;
图5为本申请一实施例提供的可穿戴设备的转动组件的结构示意图;
图6为本申请一实施例提供的可穿戴设备的限位件的结构示意图;
图7A为本申请一实施例提供的可穿戴设备的摩擦轴的结构示意图;
图7B为本申请一实施例提供的可穿戴设备的摩擦片的结构示意图;
图8为本申请一实施例提供的可穿戴设备的转轴支架的结构示意图;
图9为本申请一实施例提供的可穿戴设备的转轴支架的剖面结构示意图;
图10为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图;
图11为本申请一实施例提供的可穿戴设备的腕托的结构示意图;
图12为本申请一实施例提供的可穿戴设备的第一底座的结构示意图;
图13为本申请一实施例提供的可穿戴设备的第一底座另一角度的结构示意图;
图14为本申请一实施例提供的可穿戴设备的转轴组件的部分结构示意图;
图15为图14的爆炸图;
图16为本申请一实施例提供的可穿戴设备的腕托的另一角度的结构示意图;
图17为本申请一实施例提供的可穿戴设备的腕托设置止挡组件处的局部放大示意图;
图18为本申请一实施例提供的可穿戴设备的止挡组件的挡板、第一弹性件和止挡件结构示意图;
图19为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图的局部放大图;
图20为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一结构示意图;
图21为本申请一实施例提供的可穿戴设备的卡合组件处的局部剖面示意图;
图22A为本申请一实施例提供的可穿戴设备的卡合组件处的另一局部剖面示意图;
图22B为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;
图22C为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一剖面结构示意图;
图22D为本申请一实施例提供的可穿戴设备的压块按钮的结构示意图;
图22E为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的爆炸结构示意图;
图22F为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的一剖面结构示意图;
图22G为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的爆炸结构示意图;
图22H为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的一剖面结构示意图;
图22I为本申请一实施例提供的可穿戴设备的腕托和设备主体的一剖面结构示意图;
图22J为本申请一实施例提供的可穿戴设备的第一底座的结构示意图;
图22K为本申请一实施例提供的可穿戴设备的腕托和转轴组件的结构的一剖面结构示意图;
图22L为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的另一角度的剖面结构示意图;
图22M为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图;
图22N为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图;
图22O为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图;
图22P为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图;
图22Q为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的结构示意图;
图22R为图22Q的爆炸结构示意图;
图22S为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图;
图22T为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图;
图22U为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图;
图22V为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的爆炸结构示意图;
图22W为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图;
图22X为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的结构示意图;
图22Y为图22X的爆炸结构示意图;
图22Z为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸结构示意图;
图22a为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图;
图22b为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的剖视图的部分结构示意图;
图22c为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的剖视图的部分结构示意图;
图23为本申请一实施例提供的可穿戴设备的结构示意图;
图24为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图;
图25为本申请一实施例提供的可穿戴设备的摩擦轴的设备主体和腕托的剖面结构示意图;
图26为本申请一实施例提供的可穿戴设备的转动组件的结构示意图;
图27为本申请一实施例提供的可穿戴设备的摩擦轴的结构示意图;
图28为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;
图29为图28的B部放大图;
图30为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一剖面示意图;
图31为本申请一实施例提供的可穿戴设备的第二底座的结构示意图;
图32为本申请一实施例提供的可穿戴设备的第二底座另一角度的结构示意图;
图33为本申请一实施例提供的可穿戴设备的转轴组件的部分结构示意图;
图34为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图;
图35为本申请一实施例提供的可穿戴设备的竖直转轴和挡块的爆炸图;
图36为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图;
图37为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图;
图38为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图;
图39为本申请一实施例提供的可穿戴设备的限位套筒和竖直转轴的结构示意图;
图40为本申请一实施例提供的可穿戴设备的设置锁合按键处的爆炸图;
图41A为本申请一实施例提供的可穿戴设备的转轴组件处的剖面图;
图41B为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构示意图;
图41C为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构示意图;
图41D为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的一剖面结构示意图;
图42为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;
图43为本申请一实施例提供的可穿戴设备的设备主体和腕托以及转轴组件的爆炸图;
图44为本申请一实施例提供的可穿戴设备的水平转轴的爆炸结构示意图;
图45为本申请一实施例提供的可穿戴设备的竖直转轴的爆炸结构示意图;
图46为本申请一实施例提供的可穿戴设备的设备主体位于第一位置时设备主体和腕托的部分结构的剖面结构示意图;
图47为本申请一实施例提供的可穿戴设备的设备主体位于第一位置时腕托的剖面结构示意图;
图48为本申请一实施例提供的可穿戴设备的设备主体位于第二位置时设备主体和腕托的的剖面结构示意图;
图49为本申请一实施例提供的可穿戴设备的设备主体位于第二位置时腕托的剖面结构示意图;
图50为本申请一实施例提供的可穿戴设备的伸缩卡扣的结构示意图;
图51为本申请一实施例提供的可穿戴设备的设备主体和腕托处于分离状态时的结构示意图;
图52为本申请一实施例提供的可穿戴设备的滑轨支架和Z轴支架的爆炸结构示意图;
图53为本申请一实施例提供的可穿戴设备的第一锁合组件、第二锁合组件和Z轴支架在第一位置的爆炸结构示意图;
图54为本申请一实施例提供的可穿戴设备的滑轨支架和Z轴支架在第一位置的剖面结构示意图;
图55为本申请一实施例提供的可穿戴设备的设备主体和腕托在第一位置的部分结构的剖面结构示意图;
图56为本申请一实施例提供的可穿戴设备的第一锁合组件、第二锁合组件和Z轴支架在第二位置的爆炸结构示意图;
图57为本申请一实施例提供的可穿戴设备的滑轨支架和Z轴支架在第二位置的剖面结构示意图;
图58为本申请一实施例提供的可穿戴设备的设备主体和腕托在第二位置的剖面结构示意图;
图59为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;
图60为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸结构示意图;
图61为本申请一实施例提供的可穿戴设备的设备主体和腕托的分离时的结构示意图;
图62为本申请一实施例提供的可穿戴设备的锁合组件处于解锁状态时的剖面结构示意图;
图63为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;
图64为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸结构示意图。
附图标记说明:
100-可穿戴设备;10-设备主体;11-设备主体的第一端;12-设备主体的第二端;
20-腕托;21-腕托的第一端;211-滑动空间;212-第一磁铁;213-第二磁铁;
22-腕托的第二端;221-第一扣位;222-第二扣位;
2211-第二导向斜面;23-安装槽;231-第二开孔;24-腕托的第三端;25-腕托的第四端;
26-挡槽;27-顶板;28-台阶;
30-转轴组件;31-水平转轴;31a-转轴支架;31a1-限位腔;31a2-环形轨道;
31a3-装配腔;31a4-定位槽;31a5-滑轨槽;31a51-斜挡;31a6-第三内槽;
31a7-第四内槽;31a8-限位槽;31a9-固定凸起;31a10-支架底座;
311-空腔结构;3111-第一阶梯孔;
3112-第二阶梯孔;3112a-第一限位凹槽;3113-第三阶梯孔;3113a-第二限位凹槽;
3113b-第三限位凹槽;312-第一通孔;312a-第二通孔;
32-竖直转轴;321-第一凸台;321a-第二凸台;322-第一定凸轮;3221-第六凹凸面;
323-压环;324-锁环;
325-滑轨支架;3251-滑轨盖;3252-滑轨腔;3253-滑轨壁;3254-定位凸起;
326-Z轴支架;3261-转动孔;3262-下沉槽;3263-固定片;3264-挡沿;3265-锥形台阶;
327-滑轨架;3271-滑轨盖板;3272-限位凸起部;
328-Z轴架;3281-转孔;3282-阻挡台;
33-轴外壳;331-固定块;332-凹槽;
34-转动组件;341-摩擦轴;341a-摩擦轴的第一端;341b-摩擦轴的第二端;3411-轴体;
3412-第四限位凸起;3413-连接部;3414-转头;342-摩擦片;3421-第五限位凸起;
3422-储油槽;
343-限位件;3431-第一限位凸起;3432-第二限位凸起;3433-第三限位凸起;
35-第一动凸轮;35a-第二动凸轮;35b-第三动凸轮;36-顶垫片;37-第三弹性件;
38-底垫片;39-限位套筒;391-第七凹凸面;392-凸起;393-第二凹槽;394-限位块;
40-卡合组件;41-按键;411-第一卡接部;4111-第一导向斜面;412-按键帽;
413-按键架;414-第七弹性件;415-导向凸起;416-导向槽;
42-盖板;43-按键板;431-按压部;432-第二卡接部;44-第八弹性件;
50-表带;60-锁合组件;60a1-伸缩卡扣;60a11-卡扣部;
60a12-第一驱动部;60a15-第三倾斜面;60a2-第一内槽;60a3-第一滑轨弹簧;
60a4-转轴顶块;60a41-第二驱动部;60a42-第四倾斜面;
60b-第二锁合组件;60b1-弹性顶块;60b11-第一倾斜导向面;60b2-第二内槽;
60b3-第二滑轨弹簧;
60c-锁紧弹块;60c1-槽孔;60c2-第三滑轨弹簧;60c3-倾斜的滑面;
60d-解锁结构;60d1-转轴压臂;60d2-转轴凸轮;60d3-转轴弹簧;
60e1-第三磁性件;60e2-第四磁性件;
61-锁合凸起;611-卡合凹槽;612-槽位;613-凹坑;614-卡孔;615-第一倾斜面;
616-第一按压弹簧;617-卡位;618-挡台;
61a-锁合凸台;
62-锁合沉槽;
621-锁合沉槽开口;622-挡边;623-凹陷部;624-挡壳;625-卡凸;626-卡台;
63-止挡组件;631-顶盖板;632、31a11-挡板;
633-第一弹性件;634-止挡件;6341-楔形槽;6342-倾斜面;635-压块按钮;
6351-楔形面;6352-第一引导面;6353-第二引导面;636-弹片卡位;64-滑槽;
64a-耐磨件;65-滑块;651-第一凹槽;
652-第一连接件;66-弹片;661-顶弹片;662-底弹片;
67-锁合卡槽;671-锁合卡槽开口;6711-斜面;672-挡块;6721-卡合槽;68-卡合部;
681-卡合凸起;673-第二弹性件;674-底座挡板;
69-卡槽;69a-锁合按键;69a1-按键盖板;69a2-第四弹性件;69a3-锁合件;
69a6-第二斜面;69a4-驱动部;69a5-第一斜面;
69b-第一磁性件;69c-第二磁性件;
69d-拨动按钮;69d1-卡杆;69d2-档杆;
69e-拨动开关;69e1-操作端;69e2-卡合端;69e3-公扣;69e4-挡片;
69f-锁合开关;69f1-触发按钮;69f2-锁合开关的第一端;69f3-锁合开关的第二端;
69f4-挂钩;
69g-按压开关;69g1-按压开关的第一端;69g2-按压开关的第二端;69g3-第二倾斜面;
69g4-第二按压弹簧;
69h-锁合按钮;69h1-第一卡勾;69h2-第一伸缩件;69h3-第二伸缩件;69h4-第二卡勾;
69i-退让凹槽;
70-第一底座;71-第一开孔;711-上开孔;712-下开孔;72-第一延伸部;
721-第二凹凸面;721a-弧形过渡面;73-第一凸沿;70a-第二底座;71a-第三开孔;
72a-第二延伸部;73a-第二凸沿;722a-第四凹凸面;
70b-第三底座;70b1-第三延伸部;70b2-第八凹凸面;
74-弹性力臂;741-凸包;
75-母扣;
76-钩槽;761-退让空间;
77-缺口;
80-抵接组件;81-抵接块;82-第五弹性件;90-第六弹性件。
可穿戴设备具有视频通话、拍照、听音乐等多种功能,另外,可穿戴设备通过集成传感器,可以获取佩戴者的体征数据,以记录和监测用户的健康。
在一种相关技术中,智能手表和智能手环的表体和手环主体固定在表带上,然后通过表带佩戴到用户身上,然而表体和手环主体与表带固定连接,因此难以适应视频通话和拍照等功能。
在另一种相关技术中,智能手表和智能手环的表体和手环主体与表带之间设置转轴,其中表体和手环主体可相对于表带在表体和手环主体所在平面旋转,然而,对于视频通话和拍照等需要调节多个角度的功能仍有很大限制。
从上述相关技术可以看出,现有技术中的可穿戴设备的可玩性及场景适用能力有限,对于手表接听电话、拍照等场景仍存在较大限制。
基于上述问题,本申请实施例提供一种可穿戴设备,其设备主体与腕托之间设置转轴组件,转轴组件包括水平转轴和竖直转轴,设备主体可以绕着水平转轴旋转,也可以绕着竖直转轴旋转。另外,通过在设备主体与腕托之间设置锁合组件,可以将设备主体从腕托上拆卸下来,从而可以适应视频通话以及拍照等需要多角度调节的应用场景。
以下,参考附图和具体的实施例,来介绍本申请实施例提供的可穿戴设备的主要结构。本实施例中的可穿戴设备为智能手表。
实施例一
图1为本申请一实施例提供的可穿戴设备的结构示意图。参考图1所示,本申请实施例提供一种可穿戴设备100,可以包括设备主体10、腕托20、转轴组件30、卡合组件40、锁合组件60和表带50,其中,转轴组件30设置在设备主体的第一端11,卡合组件40设置在设备主体的第二端12,设备主体10通过转轴组件30、卡合组件40以及锁合组件60固定在腕托20上,腕托20用于承载设备主体10,表带50转动连接在腕托20的两端,以方便佩戴。
图2为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图。图3为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的结构示意图。参考图2和图3具体的,设备主体的第一端11与转轴组件30通过紧固件固定连接,转轴组件30与腕托的第一端21连接,卡合组件40通过紧固件与设备主体的第二端12固定连接,设备主体的第二端12通过卡合组件40与腕托的第二端22卡合连接。
图4为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。如图4所示,转轴组件30可以包括水平转轴31和竖直转轴32,水平转轴31的两端与设备主体的第一端11转动相连,以使设备主体10可绕水平转轴31翻转;竖直转轴32的一端与腕托20固定连接,并且竖直转轴32与水平转轴31转动连接,以使设备主体10可绕竖直转轴32旋转。转轴组件30还包括转轴外壳33,转轴外壳33围设在水平转轴31的外侧,其中,转轴外壳33面相腕托20的一端设有开口,以使竖直转轴32能够与腕托的第一端21固定连接,转轴外壳33可以用于保护水平转轴31。水平转轴31包括转轴支架31a和设置在转轴支架31a两端的两个转动组件34,转轴支架31a的轴向与竖直转轴32的轴向相互垂直设置,转轴支架31a的两端均设有容纳转动组件34的空腔结构;转动组件34的一端位于空腔结构内,另一端与设备主体10相连。
本申请实施例通过设置水平转轴和竖直转轴,以使设备主体既能围绕水平转轴翻转,又能绕竖直转轴旋转,这样可以增加可穿戴设备的多场景适应能力。
图5为本申请一实施例提供的可穿戴设备的转动组件的结构示意图。参见图4和图5所示,每个转动组件34可以包括摩擦轴341、摩擦片342和限位件343。限位件343以及两个摩擦片342均套设在摩擦轴341上,且限位件343以及两个摩擦片342均与摩擦轴341转动连接,限位件343以及两个摩擦片342均与转轴支架31a固定连接,以使摩擦轴相对于转轴支架31a可以转动。限位件343和摩擦片342接触连接,且限位件343位于摩擦片342靠近摩擦轴的第二端341b的一侧,摩擦轴的第二端341b与设备主体10固定连接。
需要说明的是,水平转轴31的两端即为两个摩擦轴的第二端341b。图6为本申请一实施例提供的可穿戴设备的限位件的结构示意图。参见图5和图6所示,限位件343靠近摩擦轴341连接部3413的一面设置有第一限位凸起3431,限位件343靠近摩擦片342的一面设置第二限位凸起3432,两个第二限位凸起3432相对设置在限位件343的两侧,在限位件343的外侧壁上设置有向外延伸的第三限位凸起3433,其中,第二限位凸起3432和第三限位凸起3433均与转轴支架31a卡合连接(参见图4和图8所示),以使限位件343与转轴支架31a固定 连接;第一限位凸起3431与摩擦轴341卡合连接,以使摩擦轴341旋转至与第一限位凸起3431接触的位置,可以卡合在第一限位凸起3431处进而停止旋转。
图7A为本申请一实施例提供的可穿戴设备的摩擦轴的结构示意图。如图7A所示,摩擦轴341包括轴体3411、第四限位凸起3412和连接部3413,其中,轴体3411位于摩擦轴的第一端341a,连接部3413位于摩擦轴的第二端341b,第四限位凸起3412从连接部3413朝向摩擦轴341第一端的端面上向靠近摩擦轴的第一端341a的方向延伸。摩擦轴341的连接部3413为板状结构,连接部3413设置在轴体3411外边缘上,该板状结构上设置有与设备主体10固定连接的安装孔,该安装孔内可共紧固件穿过,以便将摩擦轴341与设备主体10固定连接。第四限位凸起3412的第一端与限位件343的第一限位凸起3431的第一端接触连接,第四限位凸起3412的第二端围绕轴体3411向靠近第一限位凸起3431的第二端的方向延伸,并且第四限位凸起3412的第二端与第一限位凸起3431的第二端之间存在间隙,以使摩擦轴341可以相对于限位件343朝向靠近第一限位凸起3431的第二端的方向转动,直至第四限位凸起3412的第二端与第一限位凸起3431的第二端接触连接。
图7B为本申请一实施例提供的可穿戴设备的摩擦片的结构示意图。如图7B所示,摩擦片342的外侧边缘设置有第五限位凸起3421,装配时第五限位凸起3421卡合在转轴支架31a内,以使摩擦片342与转轴支架31a固定连接。摩擦片342的内表面上设置有储油槽3422,装配时摩擦片342的内表面与摩擦轴341接触连接,并且摩擦片342与摩擦轴341之间可以相对转动。通过在摩擦片342的内表面设置储油槽3422,储油槽3422内可以设置润滑油,这样可以减少摩擦轴342和摩擦片342之间的摩擦力,从而可以减少摩擦轴342和摩擦片342的磨损,进而延长摩擦轴342和摩擦片342的使用寿命。
需要说明的是,由于摩擦轴341与设备主体10固定连接,摩擦轴341又与限位件343和摩擦片342转动连接,也就是说,设备主体10和限位件343以及摩擦片342之间为转动连接,而摩擦片342和限位件343又与转轴支架31a固定连接,所以设备主体10和转轴支架31a之间为转动连接,因此设备主体10可以绕转轴支架31a翻转,而水平转轴31包括转轴支架31a和转动组件34,所以设备主体10绕转轴支架31a翻转,相当于设备主体10绕转轴支架31a翻转。另外,摩擦轴341相对于限位件343旋转的角度可以通过第一限位凸起3431和第四限位凸起3412的大小来决定,通过调节第一限位凸起3431和第四限位凸起3412的大小,可以调节设备主体10与转轴支架31a之间翻转角度的范围。
需要说明的是,摩擦轴341与设备主体10可以通过紧固件固定连接,也可以通过卡接、铆接等固定方式连接。具体连接方式不构成对本申请技术方案保护范围的限制,只要是能够摩擦轴341和设备主体10固定连接既属于本申请技术方案的保护范围。
图8为本申请一实施例提供的可穿戴设备的转轴支架的结构示意图。图9为本申请一实施例提供的可穿戴设备的转轴支架的剖面结构示意图。参见图8和图9所示,转轴支架31a上设置有容纳转动组件34的空腔结构311,其中摩擦轴的第一端341a位于转轴支架31a的空腔结构311内,摩擦片342和限位件343均位于空腔结构311内,并且摩擦片342卡合固定在转轴支架31a内,限位件343也卡合固定在转轴支架31a内。在转轴支架31a内设第一通孔312,其中,第一通孔312的轴线与转轴支架31a的轴线互相垂直,第一通孔312可以用于容纳部分竖直转轴32。
在本实施例中,转轴支架31a容纳转动组件34的空腔结构311包括三个阶梯孔,其中位 于内侧的为第一阶梯孔3111,位于中间的为第二阶梯孔3112,位于外侧的为第三阶梯孔3113,本实施例中,第一阶梯孔3111的内径大于第二阶梯孔3112,第二阶梯孔3112的内径大于第三阶梯孔3113,并且第二阶梯孔3112的内壁上设有与摩擦轴341第五限位凸起3421配合的第一限位凹槽3112a,在第三阶梯孔3113的内壁上设有与限位件343的第二限位凸起3432配合的第二限位凹槽3113a,在第三阶梯孔3113的侧壁上还设置有与限位件343的第三限位凸起3433配合的第三限位凹槽3113b。
装配时(参见图4),摩擦轴的第一端341a位于第一阶梯孔3111内且与第一阶梯孔3111转动连接;两个摩擦片342位于第二阶梯孔3112内,且摩擦片342的第五限位凸起3421卡合在第一限位凹槽3112a内;限位件343位于第三阶梯孔3113内,且限位件343的第二限位凸起3432卡合在第二限位凹槽3113a,第三限位凸起3433卡合在第三限位槽内。
图10为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图。如图10所示,在申请本实施例中,可穿戴设备100还可以包括锁合组件60,且当锁合组件60处于锁合状态时,锁合组件60将转轴组件30与腕托20进行锁合(参考上述图3所示),以使设备主体的第一端11与腕托的第一端21相连,以及当锁合组件60处于解锁状态时,转轴组件30与腕托20拆开(参考图10以及下述图34所示),以使设备主体的第一端11与腕托的第一端21分开。
作为解释说明,锁合状态就是设备主体10固定在腕托20上的状态,解锁状态就是设备主体10与腕托20分离的状态。
在一些实施例中,当锁合组件60处于锁合状态时,锁合组件60可以将转轴组件30与设备主体10进行锁合(参考下述图23所示),以使设备主体的第一端11与腕托的第一端21相连,当锁合组件60处于解锁状态时,转轴组件30与设备主体10拆开(参见下述图24所示),以使设备主体的第一端11与腕托的第一端21分开。
在另外一些实施例中,当锁合组件60处于锁合状态时,锁合组件60将竖直转轴32与水平转轴31锁合连接,以使设备主体的第一端11与腕托的第一端21相连,以及当锁合组件60处于解锁状态时,水平转轴31与竖直转轴32(参考下述图37所示)拆开,以使设备主体的第一端11与腕托的第一端21分开。
图11为本申请一实施例提供的可穿戴设备的腕托的结构示意图。参见图10和图11所示,锁合组件60包括:锁合沉槽62和锁合凸起61,锁合沉槽62和锁合凸起61均为U型结构,锁合沉槽62位于腕托20上,锁合凸起61位于竖直转轴32的底端,锁合沉槽62的一侧开设可供锁合凸起61水平滑入锁合沉槽开口621;锁合沉槽62的顶端具有挡边622,在锁合凸起61位于锁合沉槽62内时,挡边622在竖直转轴32的轴向上将锁合凸起61锁合在锁合沉槽62中,以使竖直转轴32的一端与腕托的第一端21相连。
需要说明的是,锁合沉槽开口621的朝向不构成对本申请技术方案保护范围的限制,该锁合沉槽开口621可以朝向腕托的第一端21,、腕托的第二端22、腕托的第三端24或者腕托的第四端25,当然在一些实施例中,锁合沉槽开口621还可以朝向腕托20的顶端等,对此在本申请实施例中不作具体限定。
在本实施例中,锁合沉槽62设置在腕托20上,锁合凸起61设置在了竖直转轴32的底端,当然在另外一些实施例中,也可以将锁合沉槽62设置在竖直转轴32的底端,然后将锁合凸起61设置在腕托20上,也就是说,只要是锁合沉槽62和锁合凸起61中的其中一个设置在竖 直转轴32的底端,其中另一个设置在腕托20上即可。
本申请实施例,通过设置锁合沉槽62和锁合凸起61,可以将设备主体10和腕托20进行可拆卸连接,这样在一些场景中就可以将设备主体10从腕托20上拆卸下来单独使用,而拆卸下来的设备主体10在进行视频通话和拍照时,则可以根据需求任意调整角度,大大增加了可穿戴设备100的多场景适应能力。
图12为本申请一实施例提供的可穿戴设备的第一底座的结构示意图。图13为本申请一实施例提供的可穿戴设备的第一底座另一角度的结构示意图。参见图12和图13所示,竖直转轴32的底端设有第一底座70,竖直转轴32的底端固设在第一底座70内;锁合凸起61位于第一底座70靠近腕托20的一端上;第一底座70上具有可供竖直转轴32的一端穿过的第一开孔71;竖直转轴32的底端具有第一凸台321(参见图15所示),第一开孔71的顶端内壁上具有与第一凸台321相互阻挡的第一凸沿73。另外,在锁合凸起61的两侧还可以设置卡合凹槽611,以保证锁合凸起61与锁合沉槽62的连接稳定性。
本实施例中,如图13所示,第一开孔71包括上开孔711和下开孔712,其中下开孔712靠近腕托20设置,上开孔711的内壁为凸沿的内壁。下开孔712的形状与第一凸台321的形状相同,第一凸台321卡在第一凸沿73上,以使竖直转轴32不会从上开孔711被拔出,这样可以防止设备主体10脱离第一底座70,避免可穿戴设备100损坏。
图14为本申请一实施例提供的可穿戴设备的转轴组件的部分结构示意图。图15为图14的爆炸图。如图14和图15所示,转轴支架31a内设有可供竖直转轴32部分容纳的第一通孔312(参加图9所示);转轴组件30还可以包括:第一动凸轮35,第一动凸轮35套设在竖直转轴32上且与竖直转轴32转动连接,并且,第一动凸轮35可以相对于竖直转轴32上下滑动,第一动凸轮35位于第一通孔312中且与第一通孔312固定连接(参见图4所示),即第一动凸轮35与转轴支架31a固定连接;如图12和图13所示,第一底座70上具有伸入第一通孔312的第一延伸部72,第一动凸轮35抵在第一延伸部72上,第一开孔71延伸到第一延伸部72的顶端端面,且第一凸沿73位于第一延伸部72上;第一动凸轮35面向第一延伸部72的一面设置为凹凸不平的第一凹凸面,第一延伸部72面向第一动凸轮35的一面设置为与第一凹凸面的凹凸部位配合的第二凹凸面721,第一凹凸面和第二凹凸面721的凸部和凹部之间均设置有弧形过渡面721a,以使第一动凸轮35与第一底座70转动相连。
需要说明的是,在使用过程中,通过翻转设备主体10可以带动摩擦轴341相对于转轴支架31a绕着摩擦轴341的轴向转动,通过转动设备主体10可以带动水平转轴31绕着竖直转轴32的轴向转动。由于第一动凸轮35与转轴支架31a固定连接,相当于与水平转轴31固定连接,而水平转轴31的两端与设备主体10固定连接,所以旋转设备主体10可以带动转轴支架31a围绕竖直转轴32转动,所以旋转设备主体10会带动第一动凸轮35围绕竖直转轴32转动,通过在第一凹凸面和第二凹凸面721的凸部和凹部之间均设置有弧形过渡面721a,一方面可以在设备主体10不受力的情况下,设备主体10不会随意转动,另一方面,在设备主体10受到旋转力时,可以使第一动凸轮35和第一延伸部72之间的过渡平滑,以实现第一动凸轮35和第一延伸部72之间的相对转动。另外,通过在第一动凸轮上设置第一凹凸面,并且在第一凹凸面和第二凹凸面721的凸部和凹部之间均设置有弧形过渡面721a,还可以在第一动凸轮旋转至特定角度时起到提示作用,例如,在旋转到零度或180°时,扭转力会变小。
在本实施例中,转轴组件30还可以包括:第三弹性件37、顶垫片36、底垫片38,底垫 片38套设在竖直转轴32上且与第一动凸轮35抵接,顶垫片36套设在竖直转轴32的顶端且与转轴支架31a转动相连,第三弹性件37套设在竖直转轴32上,且第三弹性件37的两端分别与顶垫片36和底垫片38相连。
本申请实施例中,第三弹性件37可以为弹簧,并且安装时弹簧的初始状态为压缩状态,这样可以保证第一定凸轮322与第一底座70的第一延伸部72处于抵接状态,以保证在设备主体10在没有受到旋转扭力的情况下不会随意旋转。当旋转设备主体10时,设备主体10在受到旋转扭力,从而使第一定凸轮322受到旋转扭力,这样第一动凸轮35会沿着弧形过渡面721a移动,并沿着竖直转轴32朝向远离腕托20的方向滑动,这时第一动凸轮35会挤压第三弹性件37,使第三弹性件37被压缩,当第一动凸轮35悬停时,第三弹性件37恢复初始状态,此时第一动凸轮35和第一底座70的第一延伸部72相抵接。
需要说明的是,在本实施例中,竖直转轴32的一端与转轴支架31a转动连接,相当于竖直转轴32的一端与水平转轴31转动连接,并且竖直转轴32的底端与腕托的第一端21固定连接,从而实现设备主体10可以围绕竖直转轴32旋转。
在一些实施例中,也可以将竖直转轴32与腕托的第一端21转动连接,并且竖直转轴32与水平转轴31固定连接,这样也能实现设备主体10可以围绕竖直转轴32旋转。也就是说,竖直转轴32的至少一端与腕托的第一端21和水平转轴31中的至少一个水平转动连接,这样才能保证设备主体10可绕竖直转轴32旋转。
另外,需要说明的是,由于转轴支架31a为水平转轴31的一部分,且竖直转轴32设置在转轴支架31a内部,因此竖直转轴32与转轴支架31a固定连接,相当于竖直转轴32与水平转轴31固定连接;竖直转轴32的至少一端与腕托的第一端21和转轴支架31a中的至少一个水平转动连接,相当于竖直转轴32的至少一端与腕托的第一端21和水平转轴31中的至少一个水平转动连接。
在本实施例中,锁合组件60还可以包括止挡组件63,止挡组件63设置在腕托20上,且两个止挡组件63分别位于锁合沉槽62的两侧(如上述图11所示),当然在一些实施例中,止挡组件63的数量也可以为一个或者三个等,对于止挡组件63的数量是不限制的。
图16为本申请一实施例提供的可穿戴设备的腕托的另一角度的结构示意图。图17为本申请一实施例提供的可穿戴设备的腕托设置止挡组件处的局部放大示意图。如图16和图17所示,腕托20的两侧分别设置有安装止挡组件63的安装槽23,每个安装槽23靠近锁合沉槽62的侧壁上均设有与锁合沉槽62连通的第二开孔231;止挡组件63的第一端穿过第二开孔231并延伸至锁合沉槽62内,止挡组件63的第二端固定在安装槽23内。
如图17所示,止挡组件63包括顶盖板631、挡板632、第一弹性件633和止挡件634,其中,挡板632固定在安装槽23内;止挡件634的第一端穿过第二开孔231并延伸至锁合沉槽62内,止挡件634的第二端套设在第一弹性件633上;第一弹性件633的一端套设在止挡件634位于安装槽23内的第二端上,第一弹性件633的另一端抵在挡板632上;顶盖板631位于安装槽23的顶端,并固定在腕托20上。
图18为本申请一实施例提供的可穿戴设备的止挡组件的挡板、第一弹性件和止挡件的结构示意图。如图18所示,本实施例中,止挡件634的第一端为半球形凸起,锁合凸起61上设置有与半球形凸起配合的卡合凹槽611;半球形凸起滑入卡合凹槽611内时,锁合组件60处于锁合状态;半球形凸起滑出卡合凹槽611之外时,锁合组件60处于解锁状态。止挡 件634上设置有向外凸起的止挡部,止挡部位于安装槽23内,且与安装槽23的侧壁抵接。其中,卡合凹槽611可以为半球形凹槽。
需要说明的是,止挡件634第一端的形状包括但不限于半球形凸起,卡合凹槽611的形状包括但不限于半球形凹槽,只要是能够相互配合,并起到一定的固定作用的结构均属于本申请技术方案的保护范围。
本实施例中,通过设置止挡组件63,可以在锁合凸起61进入到锁合沉槽62内时,将锁合凸起61固定在锁合沉槽62内,止挡组件63可以进一步加固锁合凸起61和锁合沉槽62之间的连接,从而保证设备主体10不会因为设备主体10自身重力与腕托20分离而导致摔坏设备主体10的问题,并且通过设置止挡组件63还可以减少组装过程中的晃动,提升推拉拆卸的手感。
图19为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图的局部放大图。参见图19所示,在设备主体的第二端12和腕托的第二端22通过卡合组件40卡合相连,其中卡合组件40可以包括:按键41,按键41的底端具有第一卡接部411,腕托20上设有与第一卡接部411卡合的第一扣位221,其中,第一卡接部411朝向远离设备主体10的方向延伸,第一扣位221朝向靠近设备主体10的方向延伸;按键41在设备主体的第二端12的侧面上可伸缩设置,设备主体10与腕托20通过第一卡接部411与第一扣位221卡合实现可拆卸相连;且按键41被按压时,第一卡接部411与第一扣位221脱离卡合,以使设备主体的第二端12与腕托的第二端22拆开。
如图19所示,按键41包括:按键帽412、按键架413和第七弹性件414,按键架413设在设备主体的第二端12上,且按键架413的两端与设备主体的第二端12固定相连;第七弹性件414的一端与按键帽412面向设备主体10的一面相连,第七弹性件414的另一端与按键41件相连;按键帽412的底端具有第一卡接部411。
需要说明的是,按键架413的两端与设备主体的第二端12可以通过紧固件固定相连,也可以通过其它方式固定连接,例如:铆接、粘接、焊接等。按键架413的两端与设备主体10之间的固定方式不够成对本申请技术方案保护范围的限制,只要是能够将按键架413的两端与设备主体10固定连接即可。
在本实施例中,如图19所示,按键41面向设备主体10的一面上设有导向凸起415,导向凸起415具有可供第七弹性件414的一端伸入的通孔;按键架413上具有可供导向凸起415移动的导向槽416;第七弹性件414的一端与导向槽416的槽底相连,第七弹性件414的另一端伸入导向凸起415的通孔内与按键帽412相连;按键帽412背向设备主体10的一面上具有多个凹凸不平的凸起部和凹陷部;且位于按键帽412底端的其中一个凸起部形成第一卡接部411,第一卡接部411上具有第一导向斜面4111,腕托20上具有与第一导向斜面4111配合的第二导向斜面2211。
在实际应用过程中,挤压按键帽412时,按键帽412会压缩第七弹性件414,以使按键帽412上的靠近设备主体10的方向移动,进而使第一卡接部411和第一扣位221脱离卡合,以使设备主体的第二端12与腕托的第二端22拆开。需要说明的是,安装时,第七弹性件414处于压缩状态,这样可以保证按键帽412的第一卡接部411与第一扣位221卡合,进而使设备主体10与腕托20固定连接。
需要说明的是,卡合组件40的结构包括但不限于上述实施例中的结构,在一些实施例 中,卡合组件40还可以为其它结构。例如:图20为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一结构示意图。如图20所示,在设备主体的第二端12上设置有卡合组件40,卡合组件40将设备主体的第二端12和腕托的第二端22可拆卸连接。卡合组件40包括:盖板42和按键板43,按键板43背向设备主体10的一面上具有向外凸起的按压部431,盖板42上具有可供按压部431穿过的开口,盖板42与设备主体10固定相连,按键板43在设备主体的第二端12的侧面上可伸缩设置。
图21为本申请一实施例提供的可穿戴设备的卡合组件处的局部剖面示意图。参见图21所示,按键板43的两端底端分别设有第二卡接部432,第二卡接部432向远离设备主体10的方向延伸,腕托20上设有与第二卡接部432卡合的第二扣位,第二扣位朝向第二卡接部432延伸;设备主体10与腕托20通过卡接部与第二扣位卡合实现可拆卸相连。
图22A为本申请一实施例提供的可穿戴设备的卡合组件处的另一局部剖面图。如图22A所示,卡合组件40还可以包括第八弹性件44,第八弹性件44的一端与设备主体10相连,第八弹性件44的另一端与按键板43相连,按键板43通过第八弹性件44可伸缩地设置在设备主体10上。
需要说明的是,盖板42与设备主体10可以通过紧固件固定相连,也可以通过其它方式固定连接,例如:铆接、粘接、焊接等。按键架413的两端与设备主体10之间的固定方式不够成对本申请技术方案保护范围的限制,只要是能够将按键架413的两端与设备主体10固定连接即可。
本申请实施例提供的可穿戴设备通过设置转轴组件,可以实现设备主体绕水平转轴和竖直转轴旋转,通过设置锁合沉槽和锁合凸起可以将设备主体与腕托分离。佩戴时,设备主体的第二端通过卡合组件与腕托的第二端卡合连接,这样可以方便佩戴;打开时,按压卡合组件可将设备主体抬起,以使设备主体的第二端和腕托的第二端分离,在转轴组件的作用下设备主体可以绕水平转轴翻转,也可以绕竖直转轴旋转,这样可以提升可穿戴设备的可玩性和机械感;另外,在打开卡合组件的同时还可以将设备主体从腕托上的锁合沉槽中拉出,以使设备主体和腕托完全分离,这样可以提升多场景适应能力。另外,锁合沉槽和锁合凸起之间通过推拉方式实现可拆卸连接,操作简单,可以节约使用者的学习时间。
需要说明的是,锁合组件60的结构包括但不限于上述实施例中介绍的结构,在一些实施例中,锁合组件60还可以为其它结构,下面具体介绍几种均为锁合沉槽62和锁合凸起51之间通过推拉方式实现可拆卸连接的实施例。
实施例二
图22B为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图;图22C为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一剖面结构示意图。
如图22B和图22C所示,锁合组件60还可以包括:压块按钮635,其中,该压块按钮635位于止挡组件63和转轴组件30之间,当转轴组件30的水平转轴31位于x方向时,转轴支架31a的底端可以将压块按钮635挤压至止挡组件63的内部,以使止挡组件63将锁合凸起61锁合在锁合沉槽62内。
在本实施例中,压块按钮635的数量为两个,止挡组件63的数量为两个,两个止挡组件63分别位于锁合沉槽62中的两侧,每个压块按钮635对应设置一个止挡组件63。当 然,在一些实施例中,也可以设置一个、三个或者多个压块按钮635,压块按钮635的数量是不限定的。
需要说明的是,通过设置两个压块按钮635和两个止挡组件63,这样就可以加强锁合力,从而可以延长止挡组件63、以及压块按钮635的使用寿命。
在一种可能的实现方式中,止挡组件63可以包括顶盖板631、第一弹性件633和止挡件634,其中,第一弹性件633和止挡件634的部分结构设置在安装槽23内,止挡件634的第一端穿过第二开孔231并延伸至锁合沉槽62内,止挡件634的第二端与第一弹性件633的一端固定连接,第一弹性件633的另一端固定在顶盖板631的侧壁上;顶盖板631位于安装槽23的顶端,并固定在腕托20上。如图22B和图22D所示,在压块按钮635的底端具有楔形面6351,止挡组件63的止挡件634上具有可供压块按钮635的底端伸入的楔形槽6341,楔形槽6341内具有与楔形面6351配合的倾斜面6342;楔形面6351用于在压块按钮635下移时与倾斜面6342配合,以使止挡组件63朝向锁合沉槽62移动;倾斜面6342用于在止挡组件63远离锁合沉槽62移动时与楔形面6351配合,以使压块按钮635上移。
示例性地,第一弹性件633包括但不限于弹簧,并且该第一弹性件633在可以为拉簧,在压块按钮635下移时,楔形面6351与倾斜面6342配合,止挡件634朝向锁合沉槽62移动,第一弹性件633被拉伸;在压块按钮635顶端的压力解除时,止挡件634在第一弹性件633的作用下向远离锁合沉槽62的方向移动,楔形面6351与倾斜面6342配合,使压块按钮635上移。如图22B所示,两个压块按钮635分别设置在两个止挡组件63的顶端,压块按钮635可伸缩地设置在腕托朝向水平转轴31的一面上;在水平转轴31旋转至压在压块按钮635上时,压块按钮635下移且压块按钮635的底端压在止挡组件63上,以阻挡止挡组件63远离锁合沉槽62移动,从而使锁合凸起61锁合在锁合沉槽62中,防止设备主体10从腕托上滑落;在水平转轴31旋转至从压块按钮635上移开时,压块按钮635靠近设备主体10的一面的压力解除,止挡件634在第一弹性件633的作用下向远离锁合沉槽62的方向移动,楔形面6351与倾斜面6342配合,使压块按钮635上移且压块按钮635的顶端从腕托朝向水平转轴31的一面上向外伸出,其中,止挡组件63在第一弹性件633的作用下向远离锁合沉槽62的方向移动,可以使锁合凸起61和锁合沉槽62处于解锁状态,以便将设备主体10从腕托上拆卸下来。
在本申请实施例中,由于设置了压块按钮635,因此在止挡组件63的顶盖板631上设置有供压块按钮635通过的通孔,压块按钮635的一端通过该通孔伸入到安装槽23内,另一端位于顶盖板631的外侧,并且该压块按钮635相对于该顶盖板631可上下伸缩。
需要说明的是,倾斜面6342和楔形面6351的配合可以将竖直方向的伸缩运动,转变为水平方向的伸缩运动。即,压块按钮635下压时可以将竖直方向上的伸缩运动,转变为止挡件634水平方向的伸缩运动,在压块按钮635上的压力解除时,止挡件634在水平方向的伸缩运动可以转换为压块按钮635的上下伸缩运动。
在本申请实施例中,按压压块按钮635使其向下移动时,止挡件634会向靠近锁合沉槽62的方向移动,以使止挡件634的第一端与锁合凸起61的卡合凹槽611卡合连接(如图22C所示),进而将腕托和设备主体10固定连接;松开压块按钮635后,止挡件634在第一弹性件633的作用下向远离锁合沉槽62的方向移动,以使止挡件634的第一端从锁 合凸起61的卡合凹槽611内移出,进而将腕托和设备主体10解锁,以使腕托可以和设备主体10分离,由于楔形面6351与倾斜面6342配合,在止挡件634向远离锁合沉槽62的方向移动时,该压块按钮635会向上移动且压块按钮635的顶端从腕托朝向水平转轴31的一面上向外伸出。
在实际应用过程中,设备主体10的两端均与腕托20固定连接时、设备主体10绕水平转轴31(即图22B中x轴)翻转时以及设备主体10绕着竖直转轴(即图22B中的z轴)旋转不超过90°或-90°时,转轴支架31a均压在该压块按钮635上,此时止挡件634的第一端与锁合凸起61的卡合凹槽611卡合连接,腕托和设备主体10固定连接;当设备主体10绕着竖直转轴(即图22B中的z轴)旋转90°或-90°时转轴支架31a从压块按钮635上移开,此时压块按钮635上移,止挡件634的第一端从锁合凸起61的卡合凹槽611内移出,设备主体10和腕托之间解锁,此时可以将设备主体10和腕托分离。图22D为本申请一实施例提供的可穿戴设备的压块按钮的结构示意图。如图22D所示,为了方便设备主体10的旋转,压块按钮635的顶端还可以具有呈倾斜状的第一引导面6352和第二引导面6353;第一引导面6352用于在水平转轴31沿第一方向旋转时引导水平转轴31旋转至压块按钮635上;第二引导面6353用于在水平转轴31沿第二方向旋转时引导水平转轴31旋转至压块按钮635上;第一方向和第二方向中的其中一个方向为逆时针方向,另一个为顺时针方向。
本申请实施例提供的可穿戴设备通过在压块按钮635的顶端设置呈倾斜状的第一引导面6352和第二引导面6353,以便在旋转设备主体10时,可以使转轴支架31a旋转至压块按钮635之上,进而使止挡组件63将锁合凸起61锁合在锁合沉槽62内。
本申请实施例提供的可穿戴设备,通过设置压块按钮635使该穿戴设备的设备主体10旋转至特定位置后才能与腕托20分离,这样可以防止设备主体10从腕托20上意外脱落,增加腕托和设备主体10之间的连接稳定性。
需要说明的是,结合图4和图22B所示,本申请实施例相对于实施例一中的结构,只有止挡组件63的结构相应于压块按钮635有所改变,其它结构可以均与实施例一中的结构相同,因此在本实施例中对于可穿戴设备的其它结构不做重复说明。
实施例三
需要说明的是,实施例一和实施例二中介绍了在锁合沉槽62中设置止挡组件63的实施例,可以理解的是,在另外一些实施例中,也可以不设置止挡组件63,而将锁合凸起61设计成其它结构。如图22E所示,在腕托的第一端21上设置有一个锁合沉槽62,锁合沉槽62的一侧开设可供锁合凸起61水平滑入锁合沉槽开口621。第一底座70的两侧分别设置有一个弹性力臂74,弹性力臂74的一端与第一底座70相连,弹性力臂74的另一端为自由端,锁合凸起61设在弹性力臂74的自由端上;锁合沉槽62内设有与锁合凸起61卡合的凹陷部623。
图22F为本申请一实施例提供的可穿戴设备的腕托和转轴组件30的部分结构的一剖面结构示意图。如图22F所示,弹性力臂74与第一底座70呈一体式结构,并且两个弹性力臂74的锁合凸起61均位于锁合沉槽62的凹陷部623内,以使设备主体10和腕托固定连接。当第一底座70水平滑入锁合沉槽开口621内时,两个弹性力臂74依靠自身的弹性 可以使锁合凸起61卡入凹陷部623,进而使锁合凸起61和锁合沉槽62锁合连接,由于弹性力臂74具有弹性,所以第一底座70上的弹性力臂74和锁合沉槽62侧壁之间相互接触,所以第一底座70不会在锁合沉槽62中产生晃动,这样可以增加设备主体10和腕托之间的稳固性,并且,弹性力臂74的结构简单,可以简化锁合组件60的结构,进而降低成本。
需要说明的是,在一些实施例中,也可以只在第一底座70的一侧设置一个弹性力臂74,或者在第一底座70的一侧设置多个弹性力臂74,因此对于弹性力臂74的设置位置和数量在本实施例中是不限定的。
需要说明的是,弹性力臂74的形状不局限于图22E和图22F中所示的设置在第一底座70上,在一些实施例中,还可以将弹性力臂74设置成一个单独的结构。如图22G和图22H所示,锁合沉槽62内设有两个弹性力臂74,且两个弹性力臂74相对设置且呈一体式结构。弹性力臂74的一端与锁合沉槽62的内壁相连,弹性力臂74的另一端为自由端;且弹性力臂74的自由端上具有凸包741;锁合凸起61上设有用于与凸包741卡合的槽位612。
如图22G所示,锁合沉槽62设置在腕托的第一端21,锁合凸起61设置在第一底座70上,并且第一底座70可以沿着x方向从腕托20上拔出,具体的可以从腕托的第三端24或者腕托的第四端25拔出,当然,在一些实施例中,也可以将弹性力臂74的方向设置成能够使第一底座70可以沿着y方向或者z方向从腕托20上拔出的结构,在本实施例中对此不作具体限定。
在本实施例中,如图22H所示,弹性力臂74固定在锁合沉槽62内,两个弹性力臂74相连且呈一体式结构,当然在一些实施例中,两个弹性力臂74也可以为分体式结构,只要是两个弹性力臂74均固定设置在锁合沉槽62内即可。另外,在一些实施例中,还可以将弹性力臂74设置在第一底座70上,因此,对于弹性力臂74的设置位置在本实施例中不作具体限定。当然,弹性力臂74的数量也不构成对本申请保护范围的限制,只要是设置有弹性力臂74的技术方案均属于本申请实施例中技术方案的保护范围。
另外,需要说明的是,在本实施例中,除了该第一底座70、腕托的第一端21、锁合组件60的部分结构与实施例一中不同以外,其它结构均可以与实施例一中的结构相同,因此,关于该可穿戴设备100的其它结构可以参见实施例一中的描述,在本实施例中不再赘述。
实施例四
实施例三中介绍了锁合组件60中包括弹性力臂74的技术方案。在另外一些实施例中,锁合组件60还可以为其它结构,如图22I所示,锁合组件60还可以包括:弹片卡位636,弹片卡位636的卡合端69e2位于锁合沉槽62内,如图22J所示,锁合凸起61位于第一底座70靠近腕托20的一端上,锁合凸起61上设有用于与弹片卡位636的卡合端69e2卡合的凹坑613。当弹片卡位636的卡合端69e2位于锁合凸起61上的凹坑613内时,锁合组件60处于锁合状态,此时设备主体10和腕托20固定连接;当需要将设备主体10与腕托分离时,可以将设备主体10沿着y方向从腕托20上拔出。
在本实施例中,如图22J所示,第一底座70的沿x方向的两侧分别设置有一个凹坑613,两个弹片卡位636沿着x方向分别设置在腕托的第一端21的两侧,并且锁合沉槽开 口621设置在朝向腕托的第二端22的一面,这样可以使设备主体10沿着y方向从腕托20上拔出。当然,在一些实施例中,也可以将两个弹片卡位636沿着y方向分别设置在腕托的第一端21的两侧,相应的第一底座70上的凹坑613可以沿着y方向分别设置在第一底座70的两侧,并且锁合沉槽开口621设置在朝向腕托的第三端24或者腕托的第四端25的一面,这样可以使设备主体10沿着x方向从腕托20上拔出。
在本实施例中,对于弹片卡位636的设置位置以及数量不作具体限定,具体的结构、位置以及数量可以根据具体情况具体设定。
在本实施例中,弹片卡位636可以为图22I中所示的片弹簧结构,当然,在另外一些实施例中,弹片卡位636也可以为其它结构,对此本申请实施了不作具体限定。
本申请实施例提供的可穿戴设备通过设置弹片也可以增加锁合沉槽62和锁合凸起61之间的卡合力,从而提高设备主体10和腕托20之间的连接稳固性,以防止设备主体10从腕托20上意外脱落,并且弹片卡位636的结构简单,固定牢固,且可以降低成本。
另外,需要说明的是,在本实施例中,没有描述到的结构均可以与实施例一中的结构相同,因此,关于该可穿戴设备100的其它结构可以参见实施例一中的描述,在本实施例中不再赘述。
实施例五
在本实施例中,图22K为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的一剖面结构示意图;图22L为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的另一角度的剖面结构示意图。如图22K和图22L所示,锁合组件60还可以包括:第一磁性件69b和第二磁性件69c,第一磁性件69b和第二磁性件69c中的其中一个设置在腕托20内,第一磁性件69b和第二磁性件69c中的另一个设在竖直转轴32上或者设在竖直转轴32底端设置的第一底座70内。
在本实施例中,在第一底座70的底端设置有第一磁性件69b,在腕托20上的锁合沉槽62的底部设置有第二磁性件69c,第二磁性件69c固定在腕托20上;锁合凸起61位于第一底座70靠近腕托20的一端上,第一底座70上具有可供竖直转轴32的一端穿过的第一开孔71,以及设置第一磁性件69b的容纳槽,第一磁性件69b固定在容纳槽内。在锁合凸起61位于锁合沉槽62内时,第一磁性件69b和第二磁性件69c相互吸引,以使第一底座70固定在腕托20上。
需要说明的是,在本实施例中,第一磁性件69b为一块较大的长方体结构,在另外一些实施例中,第一磁性件69b可以为多个并列设置的小长方体、圆柱体等结构,因此,对于第一磁性件69b的形状、结构以及数量均不作具体限定。同理,对于第二磁性件69c的形状、结构以及数量也不作具体限定,具体的形状结构和数量可以根据具体情况具体设定。
需要说明的是,在本实施例中,锁合沉槽开口621朝向腕托的第二端22设置,当然,该锁合沉槽开口621也可以朝向腕托的第三端24、腕托的第四端25以及腕托的第一端21设置,具体该锁合沉槽开口621的方向在本实施例中不作具体限定。
本申请实施例提供的可穿戴设备通过设置第一磁性件69b和第二磁性件69c,可以通过第一磁性件69b和第二磁性件69c之间的吸引力实现设备主体10和腕托20的固定连接,以防止设备主体10从腕托20上脱落。另外,第一磁性件69b和第二磁性件69c的结构简 单且设置方便,可以简化腕托20以及设备主体10的结构,进而节约成本。
另外,需要说明的是,在本实施例中,没有描述到的结构均可以与实施例一中的结构相同,因此,关于该可穿戴设备100的其它结构可以参见实施例一中的描述,在本实施例中不再赘述。
实施例六
图22M为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图。图22N为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。
如图22M所示,在本实施例中,锁合组件60还可以包括:拨动按钮69d,拨动按钮69d的第一端位于腕托的第一端21外侧,拨动按钮69d的第二端位于腕托的第一端21内。并且拨动按钮69d的第一端成波纹状的板状结构。
需要说明的是,拨动按钮69d的第一端的形状可以为波纹状的板状结构,也可以为其它结构,例如:可以为圆柱形结构,或者拨片状结构等,本申请实施例对此不作具体限定。
如图22N所示,拨动按钮69d的第二端上具有卡杆69d1,锁合凸起61上设有卡孔614;卡杆69d1的一端在拨动按钮69d被拨动时伸入锁合沉槽62并插设在卡孔614内,以阻挡锁合凸起61移出锁合沉槽62,以及在拨动按钮69d被反向拨动时移出卡孔614,以使锁合凸起61可以从锁合沉槽62中移出,进而使设备主体10和腕托20分离。
另外,拨动按钮69d的第二端为杆状结构,卡杆69d1与该杆状结构相互垂直,并且,在杆状结构上还可以设置档杆69d2,其中,档杆69d2可以位于卡杆69d1和拨动按钮69d的第一端之间,并且卡杆69d1可以分别位于杆状结构的两侧,也可以位置杆状结构的一侧,通过设置卡杆69d1可以防止拨动按钮69d相对于腕托沿着y方向晃动,从而保证拨动按钮69d的稳定性。
在本实施例中,腕托的第一端21内具有可供拨动按钮69d的第二端滑动的滑动空间211;且滑动空间211中两个相对的侧壁上设有第一磁铁212和第二磁铁213,拨动按钮69d的第二端位于第一磁铁212和第二磁铁213之间;在拨动按钮69d被拨动至拨动按钮69d的第二端与第一磁铁212相吸时,卡杆69d1的一端插设在卡孔614内;在拨动按钮69d被拨动至拨动按钮69d的第二端与第二磁铁213相吸时,卡杆69d1的一端退出锁合沉槽62。
需要说明的是,拨动按钮69d的为能够与磁铁相互吸引的材料,具体可以为铁,当然也可以为其它合金材料,对于拨动按钮69d的具体材料在本实施例中不作具体限定。
通过滑动空间211中两个相对的侧壁上设有第一磁铁212和第二磁铁213,可以减小拨动的力度,从而提高拨动按钮69d的灵敏性,并且可以增加拨动按钮69d的锁合力。
继续参见图22N所示,在腕托20上与拨动按钮69d相对的一侧设置有一个止挡组件63,该止挡组件63的结构可以和实施例一中的止挡组件63的结构相同,只是位置不同,因此对于止挡组件63的介绍可以参见实施例一中的相关内容。
在本实施例中,通过设置该止挡组件63,可以增加腕托20和设备主体10之间的锁合力,从而可以防止设备主体10从腕托20上意外滑落。当然,在一些实施例中,也可以不设置该止挡组件63,因此对于止挡组件63的数量在本实施例中不作具体限定。
需要说明的是,在本实施例中,除了锁合组件60以及腕托的第一端21的结构与实施 例一中不同以外,其它结构均可与实施例一中的结构相同,因此对于该实施例中的其它结构均可参见实施例一中的描述。
应当理解的是,在本实施例中,拨动按钮69d设置在腕托的第一端21的外侧,当然,在另外一些实施例中,还可以将该拨动按钮69d设置在腕托的第三端24外侧或者腕托的第四端25的外侧。因此,对于拨动按钮69d的设置位置在本实施例中不作具体限定。
本申请实施例提供的可穿戴设备通过在锁合组件60中设置拨动按钮69d,可以方便的将锁合凸起61与锁合沉槽62锁合,通过在锁合凸起61上设置卡孔614,在拨动按钮69d的第二端上设置卡杆69d1,以使当卡杆69d1位于卡孔614内时,锁合凸起61和锁合沉槽62固定连接,以使设备主体10和腕托20之间固定连接,当卡杆69d1与卡孔614分离时,锁合凸起61和锁合沉槽62分开,以使设备主体10和腕托20分离。这种通过设置拨动按钮69d的方式来控制设备主体10和腕托20之间的锁合和分离,不但分离方便,而且锁合牢固。
实施例七
图22O为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。如图22O所示,锁合组件60还可以包括:拨动开关69e,拨动开关69e可以包括操作端69e1和卡合端69e2,操作端69e1位于腕托20外,卡合端69e2位于锁合沉槽62内;卡合端69e2用于将第一底座70锁定在锁合沉槽62内;操作端69e1用于被推动时带动卡合端69e2卡入第一底座70上或者从第一底座70上移开。其中,第一底座70上具有母扣75,拨动开关69e的卡合端69e2上具有与母扣75配合的公扣69e3,当公扣69e3和母扣75扣合时,锁合凸起61和锁合沉槽62处于锁合状态。
通过设置公扣69e3和母扣75,可以利用公扣69e3和母扣75的扣合使第一底座70锁合在腕托20上,从而使设备主体10与腕托20固定连接,并且公扣69e3和母扣75的结构简单,有利于简化拨动开关69e的结构,进而降低成本。
另外,为了防止在拨动开关69e从腕托20上滑落,还可以在拨动开关69e上设置挡片69e4,在腕托20上靠近拨动开关69e操作端69e1的一侧设置挡槽26,其中,公扣69e3和母扣75扣合时,挡片69e4和挡槽26也扣合,这样可以使锁合凸起61和锁合沉槽62锁合连接时更加稳固。挡片69e4的长度可以大于公扣69e3,因此在公扣69e3和母扣75分开时,由于挡片69e4的一部分仍然位于挡槽26内,这样可以防止拨动开关69e从腕托20上脱落。
需要说明的是,拨动开关69e的形状可以为图22O中所示的形状,当然也可以为其它形状,对于拨动开关69e的形状在本实施例中不作具体限定。
在本实施例中,拨动开关69e设置在了腕托的第四端25的外侧,锁合沉槽开口621设置在了腕托的第三端24,这样在锁合凸起61和锁合沉槽62解锁时,设备主体10可以从腕托的第三端24滑出。当然,在一些实施例中,可以将拨动开关69e设置在腕托的第三端24的外侧,锁合沉槽开口621设置在腕托的第四端25,这样在锁合凸起61和锁合沉槽62解锁时,设备主体10可以从腕托的第四端25滑出。
另外,对于拨动开关69e的形状,在本实施例中不作具体限定,只要是能够将锁合凸起61和锁合沉槽62进行锁合,并可以将锁合凸起61和锁合沉槽62进行解锁即可。
需要说明的是,在本实施例中,除了锁合组件60以及腕托20第一端的结构与实施例一中不同以外,其它结构均可与实施例一中的结构相同,因此对于该实施例中的其它结构均可参见实施例一中的描述。
本申请实施例提供的可穿戴设备通过设置拨动开关69e,可以通过来回拨动该拨动开关69e来实现设备主体10和腕托20的拆开或者锁合,操作方便,并且结构简单,卡合时连接比较稳固。通过将拨动开关69e的操作端69e1设置在腕托20外,这样可以方便操作。
实施例八
图22P为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图。图22Q为本申请一实施例提供的可穿戴设备的腕托和转轴组件30的部分结构的结构示意图。
如图22P和图22Q所示,在本实施例中,锁合组件60还可以包括:锁合开关69f,锁合开关69f设置在腕托20上,并且锁合开关69f上设有触发按钮69f1,触发按钮69f1的一端从腕托20内向外凸出,并且外露于腕托的第一端21的表面之上;锁合开关69f可以用于将第一底座70锁定在锁合沉槽62内,以及锁合开关69f被按压时对第一底座70的锁定解除。
图22R为图22Q的爆炸结构示意图。图22S为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。结合图22R和图22S所示,锁合开关的第一端69f2固定在腕托20内,锁合开关的第二端69f3悬空在锁合沉槽62内且用于将第一底座70锁定在锁合沉槽62内;锁合开关69f上设有触发按钮69f1,触发按钮69f1位于锁合开关的第一端69f2和锁合开关的第二端69f3之间,且触发按钮69f1的一端从腕托20内向外凸出;触发按钮69f1被按压时,锁合开关的第二端69f3解除对第一底座70的锁定。
在本实施例中,触发按钮69f1位于腕托20朝向水平转轴31的一面上,且触发按钮69f1位于水平转轴31的一侧;在设备主体10绕着水平转轴31翻转至压住触发按钮69f1时,触发按钮69f1下移并带动锁合开关的第二端69f3脱离第一底座70,以使第一底座70可以从腕托20上滑出。也就是说,通过绕着水平转轴31翻转设备主体10,以使设备主体10的第一端的端面挤压在触发按钮69f1上,进而使锁合开关的第二端69f3解除对第一底座70的锁定,然后可以将设备主体10从锁合沉槽开口621处滑出。并且,在锁合沉槽62的顶端设置有挡壳624,第一底座70滑入锁合沉槽62后会在挡壳624处卡住,以防第一底座70从锁合沉槽开口621相对的一侧滑出,在锁合开关69f的顶端覆盖有顶板27,该顶板27可以保护该锁合开关69f。
在本实施例中,锁合沉槽开口621朝向腕托的第三端24设置,当然,在另外一些实施例中,也可以将锁合沉槽开口621朝向腕托的第四端25设置,对于锁合沉槽开口621的方向在本申请实施例中是不限制的。
如图22R和图22S所示,第一底座70上设有钩槽76,锁合开关的第二端69f3上具有与钩槽76配合的挂钩69f4;锁合开关69f通过钩槽76与挂钩69f4配合将第一底座70锁定在锁合沉槽62内。第一底座70上靠近钩槽76的位置设有退让空间761,退让空间761与钩槽76相通。
在本实施例中,锁合开关69f为杆状结构,并且在该杆状结构靠近水平转轴31的一面设置有触发按钮69f1,该触发按钮69f1不但可以触发锁合凸起61和锁合沉槽62之间解锁, 还可以防止该锁合开关69f相对于腕托20沿着x方向来回滑动。
需要说明的是,对于触发按钮69f1设置的位置以及方向在本实施例中不作具体限定,只要是设置在腕托20上即可,另外,对于触发按钮69f1的触发方式包括但不限于设备主体10的按压,也可以通过人工按压的方式触发该触发按钮69f1,具体在本实施例中不作具体限定。另外,在本实施例中除了第一底座70以及腕托20的结构与实施例一中不同之外,其它结构均可以和实施例一中的结构相同,因此对于该可穿戴设备的其它结构可以参见实施例一中的描述,在此不再赘述。
本申请实施例提供的可穿戴设备通过设置锁合开关69f,只需通过按压锁合开关69f就可以实现将设备主体10和腕托20分离,操作方便。另外,通过设置钩槽76和挂钩69f4可以使第一底座70和锁合开关69f连接稳定,防止设备主体10从腕托20上滑落,通过设置退让空间761,可以方便挂钩69f4下移以脱离钩槽76,进而使设备主体10和腕托20分离。
实施例九
图22T为本申请一实施例提供的可穿戴设备的设备主体和腕托的结构示意图。图22U为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。
如图22T所示,锁合组件60还可以包括:按压开关69g,其中,两个按压开关69g分别设置在腕托20的外侧,当然在一些实施例中,也可以设置一个按压开关69g,按压开关69g的数量是不限制的。
如图22U所示,按压开关的第一端69g1位于腕托20的外侧,按压开关的第二端69g2位于锁合沉槽62处;两个锁合凸起61可伸缩地设在第一底座70的两侧上,锁合沉槽62内设有与锁合凸起61配合的台阶28,两个台阶28分别设置在锁合沉槽62的两侧,并且一个锁合凸起61对应一个台阶28,且一个按压开关69g对应一个锁合凸起61,当锁合凸起61靠近台阶28一端与台阶28卡合时,锁合凸起61与锁合沉槽62锁合连接。
在本实施例中,该台阶28可以通过焊接、铆接、粘接或一体成型于腕托20上,对于台阶28与腕托20的连接方式在本实施例中,不作具体限定。
通过设置两个锁合凸起61以及两个按压开关69g,这样可以将设备主体10和腕托20的两个位置均锁合,进而增加设备主体10和腕托20之间的连接稳固性。两个按压开关69g分别设置在腕托20的两侧,可以使腕托20和设备主体10之间的卡合力分布在腕托20的两侧,以使腕托20两侧处于平衡状态,以防止设备主体10的一端滑落导致设备主体10和腕托20连接不稳固。
在应用时,第一底座70与锁合沉槽62之间通过锁合凸起61卡在台阶28处进行锁合相连;按压开关69g被按压时,按压开关的第二端69g2驱动锁合凸起61向远离按压开关69g的方向移动,以使锁合凸起61与台阶28之间的卡合关系解除,即锁合凸起61从台阶28处移开,以使第一底座70与锁合沉槽62之间处于解锁状态。
在本实施例中,锁合凸起61朝向按压开关69g的一端上具有第一倾斜面615,按压开关69g上具有与第一倾斜面615配合的第二倾斜面69g3;以便在按压该按压开关69g时,第二倾斜面69g3可以驱动第一倾斜面615向远离按压开关69g的方向移动,进而使按压开关69g将锁合凸起61向内挤压,当锁合凸起61与台阶28之间的卡合关系解除时,锁 合凸起61和锁合沉槽62之间处于解锁状态,进而使设备主体10与腕托20分离。
通过将锁合凸起61和按压开关69g的接触面设置第一倾斜面615和第二倾斜面69g3,相对于锁合凸起61和按压开关69g的接触面设置成平面,设置成斜面可以增大按压开关69g和锁合凸起61之间的接触面积,从而可以提高按压开关69g和锁合凸起61之间的连接稳定性,可以有效防止按压开关69g和锁合凸起61脱离;另外,接触面积相同的情况下,设置成斜面可以减小按压开关的第二端69g2和锁合凸起61的体积,从而可以节约按压开关69g和锁合凸起61的容纳空间,有利于穿戴设备的小型化发展。
继续参见图22U所示,第一底座70内设有第一按压弹簧616,第一按压弹簧616的一端固定在第一底座70内,第一按压弹簧616的另一端与锁合凸起61的一端相连,并且该第一按压弹簧616被压缩限制在第一底座70内,以使锁合凸起61和锁合沉槽62在台阶28处锁合时,防止锁合凸起61的向靠近第一底座70的方向移动,从而导致锁合凸起61和锁合沉槽62之间卡合不牢固的问题。另外,通过设置第一按压弹簧616,以使锁合凸起61相对于第一底座70可伸缩,以使锁合凸起61和锁合沉槽62可以处于锁合状态,也可以处于解锁状态。
在一种可能的实现方式中,腕托20内设有第二按压弹簧69g4,第二按压弹簧69g4套设在按压开关69g上,按压开关69g通过第二按压弹簧69g4可伸缩地设在腕托的第一端21处。
在本实施例中,该按压开关的第一端69g1设置有按压头,在按压开关的第二端69g2和按压头之间设置有限位圈。在腕托的第一端21的两侧分别设置有与按压开关69g相对的挡壁,按压头可以为长方体结构,该按压头靠近第一底座70的一面与挡壁相对设置,并且按压头可以被该挡壁限制在腕托20的外侧。在腕托20上的挡壁的内侧设置有容纳第二按压弹簧69g4的腔体,第二按压弹簧69g4的一端与该腔体的一侧抵接,第二按压弹簧69g4的另一端与限位圈的一面抵接,限位圈的另一面与该腔体的另一面抵接,这样就可以将按压开关69g通过第二按压弹簧69g4可伸缩地设在腕托的第一端21处。通过设置第二按压弹簧69g4,以使按压开关69g相对于腕托20可伸缩,以使将锁合凸起61和锁合沉槽62锁合后,按压开关69g可以自动回弹到初始位置。
需要说明的是,在本实施例中,该按压开关69g沿着x方向设置,当然在另外一些实施例中,该按压开关69g也可以沿着y方向设置,对于按压开关69g的设置方向在本实施例中是不限制的。
本申请实施例提供的可穿戴设备,通过设置按压开关69g可以直接通过按压两侧的按压开关69g将设备主体10和腕托20分离,无需将设备主体10旋转至特定角度就看拆卸,拆卸起来更加方便快捷。
需要说明的是,在本实施例中,除了锁合组件60以及第一底座70和腕托的第一端21的部分结构与实施例一中不同之外,其它结构均可以和实施例一中的结构相同,因此对于该可穿戴设备的其它结构可以参见实施例一中的描述,在此不再赘述。
实施例十
图22V为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的爆炸结构示意图。如图22V所示,锁合沉槽62位于第一底座70上,锁合凸起61位于腕托20上; 锁合沉槽62的至少一侧开设可供锁合凸起61水平(沿x方向)滑入锁合沉槽开口621。
图22W为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。如图22W所示,锁合凸起61上设置卡位617,锁合沉槽62上设置有与该卡位617配合的卡凸625,当锁合沉槽62水平滑入锁合凸起61后,卡凸625卡合在卡位617内,进而使锁合凸起61和锁合沉槽62锁合相连。
需要说明的是,对于卡凸625和卡位617的设置位置以及数量在本申请实施例中不作具体限定,只要是锁合凸起61和锁合沉槽62中的其中一个上具有卡凸625,锁合凸起61和锁合沉槽62中的另一个上具有卡位617,锁合凸起61和锁合沉槽62通过卡凸625与卡位617卡合进行锁合相连即可。
在本实施例中,锁合沉槽62上相对的两侧均有锁合沉槽开口621。这样可以使腕托20上的锁合凸起61从第一底座70的两侧水平滑入锁合沉槽62,进而使锁合沉槽62和锁合凸起61锁合相连。当然在一些实施例中,也可以只在锁合沉槽62的一侧设置锁合沉槽开口621,如图22X和图22Y所示,在第一底座70上与锁合沉槽开口621相对的一侧设置缺口77,在腕托20上的锁合凸起61上设置有与缺口77配合的挡台618,当锁合凸起61从锁合沉槽开口621水平滑入上时,锁合凸起61和锁合沉槽62锁合连接,并且挡台618与缺口77配合连接。
本申请实施例提供的可穿戴设备,通过设置缺口77和挡台618可以防止锁合凸起61从锁合沉槽62的一侧滑出,以防止设备主体10意外脱落。
需要说明的是,在本实施例中,对于缺口77和挡台618的设置位置不作具体设定。锁合沉槽62和锁合凸起61中的其中一个上设有缺口77,锁合沉槽62和锁合凸起61中的其中一个上设有与缺口77配合的挡台618即可。
本申请实施例提供的可穿戴设备通过在锁合凸起61和锁合沉槽62中的其中一个上设置卡凸625,在锁合凸起61和锁合沉槽62中的另一个上设置卡位617,可以通过卡凸625和卡位617来实现第一底座70和腕托20的锁合连接。另外,由于卡凸625和卡位617直接设置在锁合凸起61和锁合沉槽62上,所以无需设置其它部件就可以实现腕托20和第一底座70的锁合连接,结构简单,且拆装方便。
需要说明的是,在本实施例中,除了锁合组件60以及第一底座70和腕托的第一端21的部分结构与实施例一中不同之外,其它结构均可以和实施例一中的结构相同,因此对于该可穿戴设备的其它结构可以参见实施例一中的描述,在此不再赘述。
实施例十一
图22Z为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸结构示意图。图22a为本申请一实施例提供的可穿戴设备的设备主体和腕托的一剖面结构示意图。
如图22Z和图22a所示,锁合沉槽62位于腕托20上,锁合凸起61位于第一底座70靠近腕托20的一端上;且锁合沉槽62的顶端具有可供锁合凸起61竖直(沿着z方向)滑入锁合沉槽62的槽口。
锁合组件60还可以包括:锁合按钮69h,锁合按钮69h在腕托20上可伸缩设置或可滑动设置(本实施例中为可伸缩设置);且锁合按钮69h的一端位于腕托的第一端21外侧,锁合按钮69h的另一端位于锁合沉槽62内并用于与锁合凸起61卡合相连。
图22b为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的剖视图的部分结构示意图。如图22b所示,锁合按钮69h位于锁合沉槽62内的一端上具有第一卡勾69h1,第一卡勾69h1用于在锁合凸起61伸入锁合沉槽62内时与锁合凸起61卡合,以及用于在锁合按钮69h被按压或被滑动时移动,以使第一卡勾69h1与锁合凸起61解除卡合。
在本实施例中,结合图22Z和图22b所示,锁合沉槽62内还可以设有第一伸缩件69h2,第一伸缩件69h2的一端与锁合沉槽62的内壁相连,第一伸缩件69h2的另一端与锁合按钮69h相连,以使锁合按钮69h在腕托20上可伸缩设置。通过设置第一伸缩件69h2,以使锁合按钮69h相对于腕托20可伸缩,这样在腕托20和设备主体10解锁后,锁合按钮69h可以自动回弹,以便反复使用。在本实施例中,第一伸缩件69h2可以为弹簧,当然也可以为其它具有弹性的结构,具体在本申请实施例中不作具体限定。
通过设置第一卡勾69h1可以使锁合按钮69h和锁合凸起61卡合,进而将锁合凸起61锁合在锁合沉槽62内,以使设备主体10固定在腕托20上,防止设备主体10从腕托20上滑落。
在本实施例中,锁合按钮69h上设置有两个第一卡勾69h1,并且两个第一卡勾69h1分别设置在第一伸缩件69h2的两侧,并且,每个第一卡勾69h1上设置有沿着y方向间隔设置的两个子卡勾。需要说明的是,第一卡勾69h1的数量包括但不限于两个,也可以为一个或者三个等,因此在本实施例中对此不作具体限定。另外,子卡勾的数量包括但不限于两个,也可以为一个或者三个等,因此在本实施例中对此不作具体限定。
图22c为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一角度的剖视图的部分结构示意图。结合图22Z和图22c所示,锁合沉槽62内设有至少一个第二伸缩件69h3,第一底座70上设有用于与第二伸缩件69h3抵接的抵接件;第二伸缩件69h3用于在锁合凸起61与第一卡勾69h1卡合时被抵接件压缩,以及在锁合凸起61解除卡合时驱动抵接件朝向槽口移动。
需要说明的是,该抵接件可以为第一底座70的底端,当然也可以为设置在第一底座70底端的一个部件,其具体形状可以根据具体情况具体设定,在此不作具体限定。
通过设置第二伸缩件69h3,可以方便在将设备主体10和腕托20分离时,给设备主体10一个向上的弹力,方便拆卸;将设备主体10和腕托20连接时,也给设备主体10一个向上的弹力,提升安装手感。
在一种可能的实现方式中,如图22Z所示,锁合按钮69h位于锁合沉槽62内的一端还具有第二卡勾69h4,锁合沉槽62内具有与第二卡勾69h4配合的卡台626。通过设置第二卡勾69h4,并在锁合沉槽62内设置卡台626,以使锁合按钮69h固定设置在腕托20上,并且一端始终位于锁合沉槽62内,这样可以防止锁合按钮69h从锁合沉槽62中脱落。
本申请实施例提供的可穿戴设备通过设置锁合按钮69h,可以通过按压该锁合按钮69h以使锁合凸起61和锁合沉槽62解锁,进而使腕托20和设备主体10分离,操作方便。
需要说明的是,在本实施例中,除了锁合组件60以及第一底座70和腕托的第一端21的部分结构与实施例一中不同之外,其它结构均可以和实施例一中的结构相同,因此对于该可穿戴设备的其它结构可以参见实施例一中的描述,在此不再赘述。
实施例十二
图23为本申请一实施例提供的可穿戴设备的结构示意图。如图23所示,本实施例中的可穿戴设备100可以包括:设备主体10、腕托20、转轴组件30、卡合组件40(参见图28所示)、锁合组件60和表带50,其中,转轴组件30设置在设备主体的第一端11,卡合组件40设置在设备主体的第二端12,设备主体10通过转轴组件30、卡合组件40以及锁合组件60固定在腕托20上,腕托20用于承载设备主体10,表带50转动连接在腕托20的两端,以方便佩戴。
图24为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图。如图24所示,锁合组件60可以包括:滑槽64、滑块65和弹片66,其中,滑块65与摩擦轴的第二端341b相连,设备主体10与滑块65对应的位置设置滑槽64。弹片66设在滑块65上,弹片66可以用于在滑块65滑入滑槽64中时将滑块65锁合在滑槽64中,以使水平转轴31的两端与设备主体的第一端11锁合相连。当拉动设备主体10时,滑块65可以从滑槽64中脱离,以使设备主体的第一端11与水平转轴31的两端拆开。
需要说明的是,弹片66的位置包括但不限于设置在滑块65上。在一些实施例中,还可以将弹片66设置在滑槽64内。
图25为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。如图25所示,转轴组件30可以包括水平转轴31和竖直转轴32,锁合组件60设置在水平转轴31的两端,并且锁合组件60的滑块65设置在水平转轴31上,滑槽64设置在设备主体10上,弹片66位于滑块65上,水平转轴31的两端与设备主体的第一端11垂直翻转相连,以使设备主体10可绕水平转轴31翻转;竖直转轴32的一端与腕托20固定连接,并且竖直转轴32与水平转轴31水平转动连接,以使设备主体10可绕竖直转轴32旋转。
水平转轴31包括转轴支架31a和设置在转轴支架31a两端的两个转动组件34,转轴支架31a的轴向与竖直转轴32的轴向相互垂直设置,转轴支架31a的两端均设有容纳转动组件34的空腔结构;转动组件34的一端位于空腔结构内,另一端与设备主体10相连。
图26为本申请一实施例提供的可穿戴设备的转动组件的结构示意图。如图26所示,在本实施例中,每个转动组件34可以包括摩擦轴341、摩擦片342、限位件343和弹片66。限位件343以及两个摩擦片342均套设在摩擦轴341上,且限位件343以及两个摩擦片342均与摩擦轴341转动连接,限位件343以及两个摩擦片342均与转轴支架31a固定连接,以使摩擦轴相对于转轴支架31a可以转动,弹片66设置在摩擦轴的第二端341b。限位件343和摩擦片342接触连接,且限位件343位于摩擦片342靠近摩擦轴的第二端341b的一侧,摩擦轴的第二端341b与设备主体10可拆卸连接。
需要说明的是,本实施例中转轴组件30的结构和实施例一中转轴组件30的结构相比,除了转动组件34中的摩擦轴341的结构不同之外,其它结构均可以相同,因此对于转轴组件30中除摩擦轴341之外的结构可以参考实施例一中的介绍,在本实施例中不再重复说明。下面介绍本实施例中摩擦轴341的具体结构。
图27为本申请一实施例提供的可穿戴设备的摩擦轴的结构示意图。如图27所示,摩擦轴341包括轴体3411、第四限位凸起3412和滑块65,轴体3411位于摩擦轴的第一端341a,滑块65位于摩擦轴的第二端341b,第四限位凸起3412从滑块65朝向摩擦轴341第一端的端面上向靠近摩擦轴的第一端341a的方向延伸。滑块65与摩擦轴341呈一体式结构,滑块65面向 滑槽64的两个侧面上设有弹片66,滑块65设置在轴体3411外边缘上,且与设备主体10可以通过滑槽64和弹片66实现可拆卸连接。滑块65上设置可容纳弹片66的第一凹槽651,第一凹槽651的底壁上设有孔状结构。参见图26所示,第一凹槽651内设有弹片66和第一连接件652,第一连接件652可以穿过弹片66上设有供第一连接件652穿过的通孔,第一连接件652穿过弹片66上的通孔,进而将弹片66固定在第一凹槽651内。
图28为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。图29为图28的B部放大图。如图28和图29所示,两个第一凹槽651相对设置在滑块65的两侧,两个第一凹槽651之间设置有挡壁,第一连接件652穿过挡壁,以使第一连接件652的两端分别位于两个第一凹槽651中。弹片66包括顶弹片661和底弹片662,顶弹片661和底弹片662相对设置,且通过第一连接件652铆接在滑块65内;顶弹片661和底弹片662均设置有弧形凸起,滑槽64上设置有弧形凹槽;弧形凸起滑入弧形凹槽内时,锁合组件60处于锁合状态;弧形凸起滑出弧形凹槽之外时,锁合组件60处于解锁状态。
需要说明的是,弹片与第一凹槽的连接方式包括但不限于上述的铆接,弹片也可以通过焊接、粘接、紧固件连接等方式固定在第一凹槽内,只要是能够将弹片固定在第一凹槽内的技术方案均属于本申请技术方案的保护范围。
图30为本申请一实施例提供的可穿戴设备的设备主体和腕托的另一剖面示意图。如图30所示,滑槽64的内壁上设有耐磨件64a,耐磨件64a上开设可容纳滑块65的凹槽。耐磨件64a包括顶壁、底壁、后槽壁和连接壁,其中,顶壁和底壁沿竖直转轴32的轴向相对设置在连接壁的两端,后槽壁设置在滑槽64靠近设备主体10第二端的一端并与顶壁、底壁以及连接部3413均相连,连接壁上可以开设安装紧固件的开孔,以使滑槽64通过紧固件与设备主体10固定连接。弧形凹槽相对设置在顶壁和底壁上,顶弹片661和底弹片662均设置有弧形凸起,当弧形凸起滑入弧形凹槽内时,锁合组件60处于锁合状态;当弧形凸起滑出弧形凹槽之外时,锁合组件60处于解锁状态。
需要说明的是,本实施例中,滑槽64开设在耐磨件64a上,通过将滑槽64设置在耐磨件64a上,可以减少设备主体10的磨损,进而延长可穿戴设备100的使用寿命。在一些实施例中,也可以将滑槽64直接开设在设备主体10上,这样相对于设置在耐磨件64a上要节约成本。
需要说明的是,滑槽64与设备主体10的连接方式包括但不限于紧固件连接,在一些示例中,也可以通过粘接、铆接等方式将滑槽64与设备主体10固定连接,只要是能够将滑槽64和设备主体10固定连接,均属于本申请技术方案的保护范围。
在本实施例中,可穿戴的设备还可以包括:第二底座70a,其中,第二底座70a设置在竖直转轴32的底端,并且竖直转轴32的底端固定在第二底座70a内。如图24所示,腕托的第一端21设置有安装第二底座70a的安装部,第二底座70a固定设在安装部上,且第二底座70a和安装部的底部均设置有通孔,以使第二底座70a可以通过紧固件固定在安装部上。
需要说明的是,第二底座70a和腕托20之间的连接方式包括但不限于紧固件连接,在一些实施例中,第二底座70a和腕托20之间也可以通过卡合连接、粘接等方式实现固定连接,只要是能够将第二底座70a和腕托20固定连接,均属于本申请技术方案的保护范围。
图31为本申请一实施例提供的可穿戴设备的第二底座的结构示意图。图32为本申请一实施例提供的可穿戴设备的第二底座另一角度的结构示意图。如图31和图32所示,第二底座70a上具有可供竖直转轴32的一端穿过的第三开孔71a;且竖直转轴32的底端具有第二凸 台321a,第三开孔71a的顶端内壁上具有与第二凸台321a相互阻挡的第二凸沿73a,第二凸台321a与第二凸沿73a接触连接,以使竖直转轴32的底端固定设在第二底座70a内。
需要说明的是,第三开孔71a的形状与实施例一中第一开孔71的形状相同,因此对于第三开孔71a的形状可参见实施例一中的描述,在此不再重复说明。
本实施例中,转轴支架31a内设有可供竖直转轴32的部分容纳的第二通孔312a(参见图29所示),转轴组件30还包括:第二动凸轮35a,第二动凸轮35a套设在竖直转轴32上且位于第二通孔312a(与实施例一中的第一通孔312相同)中。
图33为本申请一实施例提供的可穿戴设备的转轴组件的部分结构示意图。参见图29和图33所示,第二动凸轮35a与竖直转轴32转动连接,且与第二通孔312a固定连接,即第二动凸轮35a与转轴支架31a固定连接,相当于第二动凸轮35a与水平转轴31固定连接;第二底座70a上具有伸入第二通孔312a的第二延伸部72a,第二动凸轮35a抵在第二延伸部72a上,第三开孔71a延伸到第二延伸部72a的顶端端面,第二凸沿73a位于第二延伸部72a上;且第二动凸轮35a面向第二延伸部72a一面设置为凹凸不平的第三凹凸面,第二延伸部72a面向第二动凸轮35a的一面设置为与第三凹凸面的凹凸部位配合的第四凹凸面722a;第三凹凸面和第四凹凸面722a的凸部和凹部之间均设置有弧形过渡面721a,以使第二动凸轮35a与第二底座70a转动相连。
需要说明的是,在使用过程中,通过翻转设备主体10可以带动摩擦轴341相对于转轴支架31a绕着摩擦轴341的轴向转动,通过转动设备主体10可以带动水平转轴31绕着竖直转轴32的轴向转动。由于第二动凸轮35a与转轴支架31a固定连接,相当于与水平转轴31固定连接,而水平转轴31的两端与设备主体10固定连接,所以旋转设备主体10可以带动转轴支架31a围绕竖直转轴32转动,而转轴支架31a与第二动凸轮35a固定连接,所以旋转设备主体10会带动第二动凸轮35a围绕竖直转轴32转动。通过在第三凹凸面和第四凹凸面722a的凸部和凹部之间均设置有弧形过渡面721a,一方面可以保证设备主体10在不受力的情况下,设备主体10不会随意转动;另一方面,在设备主体10受到扭力时,可以使第二动凸轮35a和第二延伸部72a之间的过渡平滑,以实现第二动凸轮35a和第二延伸部72a之间的相对转动。
需要说明的是,关于转轴组件30中的其它部件例如:第三弹性件37、顶垫片36和底垫片38的结构与实施例一中相同,因此,关于第三弹性件37、顶垫片36和底垫片38相关内容可参见实施例一中的描述,在此不再重复说明。另外,本实施例中关于位于设备主体10第二端的卡合组件40的结构也和实施例一中相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。
本实施例中,通过将锁合组件60设计成包括滑槽64、滑块65和弹片66的结构,可以方便快捷的将设备主体10和腕托20分离,这样可以使设备主体10在任意角度调节,从而可以提高可穿戴设备100的多场景适应能力。另外,滑槽64和滑块65之间通过插拔方式实现可拆卸连接,不但结构简单,而且操作简单,可以节约成本以及使用者的学习时间。
实施例十三
本实施例中除锁合组件60的结构与实施例一中不同外,其他结构均与实施例一中的相同。
图34为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图。图35为本申请 一实施例提供的可穿戴设备的竖直转轴和挡块的爆炸图。如图34和图35所示,锁合组件60包括:锁合卡槽67和卡合部68,锁合卡槽67位于腕托的第一端21,卡合部68位于竖直转轴32的底端;锁合卡槽67顶端开设可供卡合部68垂直滑入的锁合卡槽开口671;锁合卡槽67的两侧设有挡块672,两个挡块672相对设置且与腕托20滑动连接,以使锁合卡槽开口671的大小可调节;在竖直转轴32沿第一方向转动时,卡合部68卡在锁合卡槽67内,锁合组件60处于锁合状态;在竖直转轴32沿与第一方向相反的第二方向转动时,卡合部68挤压挡块672并使锁合卡槽开口671变大,以使锁合组件60处于解锁状态。
需要说明的是,第一方向可以为顺时针方向,第二方向可以为逆时针方向。
如图34和图35所示,卡合部68位于竖直转轴32的底端,在卡合部68上设置有卡合凸起681,且卡合部68的横截面为椭圆形,卡合凸起681设置在卡合部68的外侧壁上,且卡合凸起681位于椭圆形的长轴以外的任意位置,这样在旋转竖直转轴32时,才能保证在椭圆形的长轴所在的位置为卡合部68外径最大的位置,这样才能保证在将竖直转轴32旋转至椭圆形的长轴所在的位置时,锁合卡槽开口671处于最大的状态,以保证卡合部68可以从锁合卡槽67中拔出,从而使设备主体10和腕托20分离。
挡块672上设有卡合槽6721,卡合凸起681与卡合槽6721接触的一面可以卡合在卡合槽6721内,从而在竖直转轴32沿第一方向转动时,卡合凸起681卡在卡合槽6721处,此时竖直转轴32不能旋转,其中,第一方向为卡合凸起681靠近卡合槽6721的方向。卡合凸起681不与卡合槽6721接触的一面与竖直转轴32的外壁平滑连接,以保证竖直转轴32沿第二方向转动时,卡合部68挤压挡块672并使锁合卡槽开口671变大,以使锁合组件60处于解锁状态,其中,第二方向为卡合凸起681远离卡合槽6721的方向。
通过将卡合部68设置为椭圆形,这样不需要在增加其他结构,就可以实现竖直转轴32沿不同方向转动锁合卡槽开口671的大小可以调节的效果,可以简化竖直转轴32的结构。
图36为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图。如图36所示,锁合卡槽67设置在腕托的第一端21,锁合卡槽67顶端开设可供卡合部68垂直滑入的锁合卡槽开口671;锁合卡槽67的两侧设有挡块672,在挡块672上设置有与卡合凸起681配合的卡合槽6721。锁合卡槽开口671的顶端设有斜面6711,其中,斜面6711靠近设备主体10一端的直径大于斜面6711靠近腕托20一端的直径,以使竖直转轴32可沿斜面6711滑入锁合卡槽67。
需要说明的是,卡合凸起681和卡合槽6721的位置可以互换,也就是说,卡合凸起681可以设置在挡块672上,而卡合槽6721可以设置在卡合部68上。只要是挡块672和卡合部68中的一个上设置卡合凸起681,另一个上设置卡合槽6721均属与本申请技术方案的保护范围。
如图36所示,锁合组件60还包括:底座挡板674和第二弹性件673;腕托20上设置有安装挡块672以及第二弹性件673的容纳腔,挡块672设置在容纳腔内;挡块672与容纳腔的侧壁之间设置有第二弹性件673,挡块672挤压第二弹性件673可使锁合卡槽开口671变大;底座挡板674盖设在容纳腔的顶端,底座挡板674上开设有装配孔,挡块672的顶端位于装配孔内,且装配孔的侧壁和挡块672之间设有间隙,间隙用于为挡块672的滑动提供空间。
如图35和图36所示,转轴支架31a内设有可供竖直转轴32部分容纳的第三通孔;转轴组件30还包括:第三动凸轮35b,第三动凸轮35b套设在竖直转轴32上且与竖直转轴32转动连 接,第三动凸轮35b位于第三通孔中且与第三通孔固定连接,相当于第三动凸轮35b与转轴支架31a固定连接,即第三动凸轮35b与水平转轴31固定连接,而水平转轴31的两端与设备主体10固定连接,所以第三动凸轮35b与设备主体相当于固定连接,其中,第三动凸轮35b的两端可以设置相外延伸的卡块,第三通孔中设有与卡块配合的挡壁,以使第三动凸轮35b与第三通孔固定连接,竖直转轴32上具有伸入第三通孔的第一定凸轮322,第一定凸轮322围绕竖直转轴32向外延伸,第三动凸轮35b抵在第一定凸轮322上;第三动凸轮35b面向第一定凸轮322的一面设置为凹凸不平的第五凹凸面,第一定凸轮322面向第三动凸轮35b的一面设置为与第五凹凸面的凹凸部位配合的第六凹凸面3221。
如图35所示,第五凹凸面的凸部和凹部之间间隔设置有弧形过渡面721a和直角过渡面;第六凹凸面3221的凸部和凹部之间间隔设置有弧形过渡面721a和直角过渡面;且第五凹凸面的弧形过渡面721a与第六凹凸面3221的弧形过渡面721a配合连接,第五凹凸面的直角过渡面与第六凹凸面3221的直角过渡面配合连接,以使设备主体10围绕竖直转轴32沿第一方向旋转时,第三动凸轮35b可绕竖直转轴32旋转,设备主体10围绕竖直转轴32沿第二方向旋转时,第三动凸轮35b卡合在第一定凸轮322上并带动第一定凸轮322竖直转轴32沿第二方向旋转,以使卡合凸起681滑出卡合槽6721,竖直转轴32与腕托的第一端21分开。
需要说明的是,关于转轴组件30中的其它部件例如:第三弹性件37(图中未示出,可参见实施例一)、顶垫片36和底垫片38的结构与实施例一中相同,因此,关于第三弹性件37、顶垫片36和底垫片38相关内容可参见实施例一中的描述,在此不再重复说明。本实施例中关于位于设备主体10第二端的卡合组件40的结构也和实施例一中相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。
实施例十四
图37为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸图。图38为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面图。如图37和图38所示,竖直转轴32的底端与腕托20固定相连,水平转轴31的两端分别与设备主体10通过紧固件固定相连。当锁合组件60处于锁合状态时,竖直转轴32的顶端位于水平转轴31内,锁合组件60将水平转轴31与竖直转轴32锁合相连,以使设备主体的第一端11与腕托的第一端21相连;当锁合组件60处于解锁状态时,水平转轴31与竖直转轴32拆开,以使设备主体的第一端11与腕托的第一端21分开。
需要说明的是,与前述三个实施例相同的是,水平转轴31包括转轴支架31a和设置在转轴支架31a两端的转动组件34,转轴支架31a的轴向与竖直转轴32的轴向相互垂直设置,转轴支架31a的两端均设有容纳转动组件34的空腔结构;转动组件34的一端位于空腔结构内,另一端与设备主体10相连。转动组件均包括摩擦轴341、摩擦片342和限位件343。限位件343以及两个摩擦片342均套设在摩擦轴341上,且限位件343以及两个摩擦片342均与摩擦轴341转动连接,限位件343以及两个摩擦片342均与转轴支架31a固定连接,以使摩擦轴相对于转轴支架31a可以转动。限位件343和摩擦片342接触连接,且限位件343位于摩擦片342靠近摩擦轴的第二端341b的一侧,摩擦轴的第二端341b与设备主体10固定连接。因此,水平转轴31的两端即为两个摩擦轴的第二端341b。
在本实施例中,如图37所示,竖直转轴32上套设有限位套筒39,限位套筒39与竖直转 轴32转动相连;锁合组件60用于将转轴支架31a与限位套筒39锁合相连或解锁配合,相当于将水平转轴31与限位套筒39锁合相连或解锁配合。
在本实施例中,如图37所示,锁合组件60包括:卡槽69,锁合按键69a和锁合件69a3,锁合件69a3沿着转轴支架31a的轴向可伸缩地设置在转轴支架31a内,卡槽69设在限位套筒39上;锁合件69a3的一端具有与卡槽69卡合的锁合端,当锁合件69a3的锁合端与卡槽69卡合时,限位套筒39与转轴支架31a锁合相连,相当于限位套筒39与水平转轴31锁合相连;锁合按键69a可伸缩地设在转轴支架31a上,且锁合按键69a被按压时,锁合按键69a的一端驱动锁合件69a3远离卡槽69移动,且当锁合件69a3的锁合端脱离卡槽69时,限位套筒39与转轴支架31a拆开,相当于限位套筒39与水平转轴31拆开。
图39为本申请一实施例提供的可穿戴设备的限位套筒和竖直转轴的结构示意图。如图39所示,限位套筒39面向锁合按键69a的一面上设有凸起392,凸起392的两侧分别设有卡槽69,每个卡槽69对应设有一个锁合件69a3;且凸起392朝向限位筒体的正投影呈箭头结构,且箭头结构中的箭头指向竖直转轴32的顶端。转轴组件30还可以包括第三底座70b,第三底座70b设置在竖直转轴32的底端,第三底座70b上设有朝向竖直转轴32顶端延伸的第三延伸部70b1;限位套筒39的底端抵接在第三延伸部70b1上,且限位套筒39的底端设有凹凸不平的第七凹凸面391,第三延伸部70b1面向限位套筒39的一面上设有与第七凹凸面391配合的第八凹凸面70b2。第七凹凸面391和第八凹凸面70b2的凸部和凹部之间均设置有弧形过渡面721a,以使限位套筒39与第三底座70b转动相连。这样在锁合件69a3的锁合端与卡槽69卡合时,限位套筒39与转轴支架31a锁合相连,旋转设备主体10可以使转轴支架31a围绕竖直转轴32旋转,相当于水平转轴31围绕竖直转轴32旋转。
图40为本申请一实施例提供的可穿戴设备的设置锁合按键处的爆炸图。图41A为本申请一实施例提供的可穿戴设备的转轴组件处的剖面图。如图40和41所示,锁合按键69a可以包括:按键盖板69a1和第四弹性件69a2,按键盖板69a1固定在转轴支架31a的外表面上,且按键盖板69a1上开设可供锁合按键69a的按压面裸露的开口;第四弹性件69a2的一端与转轴支架31a相连,第四弹性件69a2的另一端与锁合件69a3相连,锁合件69a3通过第四弹性件69a2可伸缩设置。锁合按键69a的两端分别具有驱动部69a4,每个驱动部69a4上具有第一斜面69a5,每个锁合件69a3上具有与第一斜面69a5配合的第二斜面69a6;第一斜面69a5用于在锁合按键69a被按压时驱动第二斜面69a6移动,以使锁合件69a3远离卡槽69移动;第二斜面69a6用于在锁合按键69a上的外力去除后在第四弹性件69a2的弹力作用下驱动第一斜面69a5移动,以使锁合件69a3复位。
需要说明的是,第四弹性件69a2安装时处于压缩状态,这样才能保证在没有外力的作用下,锁合件69a3位于卡槽69内,锁合按键69a处于锁合状态。
如图41A所示,转轴组件30还可以包括:设在转轴支架31a内且相对竖直转轴32对称的两个抵接组件80,每个抵接组件80的一端与摩擦轴的第一端341a相连,每个抵接组件80的另一端可伸缩地抵接在限位套筒39的外壁上。具体的,每个抵接组件80包括:抵接块81和第五弹性件82,第五弹性件82的一端与摩擦轴的第一端341a的内部相连,第五弹性件82的另一端与抵接块81相连,且抵接块81的一端罩设在摩擦轴的第一端341a外,抵接块81的另一端具有抵接头;限位套筒39的外壁上设有与抵接头卡合的第二凹槽393。
本实施例中,转轴组件30还可以包括:第六弹性件90,第六弹性件90套设在竖直转轴 32上,且第六弹性件90的一端抵在限位套筒39的内底面上,第六弹性件90的一端通过卡簧与竖直转轴32的顶端相连。限位套筒39的顶端与卡簧之间设有转轴垫片。
本实施例中关于位于设备主体10第二端的卡合组件40的结构也和实施例一中相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。
需要说明的是,本申请上述四个实施例中的第一弹性件633、第二弹性件673、第三弹性件37、第四弹性件69a2、第五弹性件82和第六弹性件90包括但不限于弹簧结构。
本申请实施例提供的可穿戴设备通过设置转轴组件,可以实现设备主体绕水平转轴和竖直转轴旋转,通过设置锁合组件可以将设备主体与腕托分离。佩戴时,设备主体的第二端通过卡合组件与腕托的第二端卡合连接,这样可以方便佩戴;打开时,按压卡合组件可将设备主体抬起,以使设备主体的第二端和腕托的第二端分离,在转轴组件的作用下设备主体可以绕水平转轴翻转,也可以绕竖直转轴旋转,这样可以提升可穿戴设备的可玩性和机械感;另外,在打开卡合组件的同时还可以将设备主体从腕托上拆卸下来,以使设备主体和腕托完全分离,这样可以提升多场景适应能力。
需要说明的是,在本实施例中,通过将锁合组件设计成包括卡槽、锁合按键和锁合件的结构,通过按压锁合按键可以将锁合组件解锁,以使水平转轴和竖直转轴分离,进而将设备主体和腕托分离。当然,锁合组件的结构包括但不限于上述实施例中的结构,在一些实施例中,还可以将锁合组件设计成其它结构,如图41B所示的结构
图41B为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构示意图。如图41B所示,锁合组件60包括:退让凹槽69i和锁合凸台61a,转轴支架31a的顶端开设可供竖直转轴32的顶端穿过的避让口(图中未示出);避让口的内壁上开设退让凹槽69i;锁合凸台61a设在竖直转轴32的顶端;且锁合凸台61a与退让凹槽69i在竖直转轴32的轴向上重叠时,转轴支架31a与竖直转轴32处于解锁状态;锁合凸台61a与退让凹槽69i在竖直转轴32的轴向上错开时,转轴支架31a与竖直转轴32处于锁合状态。
需要说明的是,退让凹槽69i和锁合凸台61a的设置位置不构成对本申请技术方案保护范围的限制,只要是退让凹槽69i和锁合凸台61a中的其中一个设在转轴支架31a上,退让凹槽69i和锁合凸台61a中的另一个设在竖直转轴32上,即属于本申请技术方案的保护范围。
图41C为本申请一实施例提供的可穿戴设备的腕托和转轴组件30的部分结构示意图。结合图41B和图41C所示,转轴支架31a的顶端具有绕着避让口设置的环形轨道31a2,退让凹槽69i位于环形轨道31a2上且与避让口相通;且锁合凸台61a与退让凹槽69i在竖直转轴32的轴向上错开时,锁合凸台61a位于环形轨道31a2上,以使竖直转轴32与转轴支架31a锁合相连。竖直转轴32的顶端套设有锁环324,锁环324的外边缘向外凸起形成锁合凸台61a。竖直转轴32上套接有压环323,压环323在竖直转轴32上位于限位套筒39的顶端与锁环324之间。
通过设置压环323可以为锁合凸台61a提供安装位置,进而简化锁合组件60的结构,进而降低成本。
图41D为本申请一实施例提供的可穿戴设备的腕托和转轴组件的部分结构的一剖面结构示意图。如图41D所示,限位套筒39的外侧壁上设有限位块394,转轴支架31a上设有与限位块394配合的限位腔31a1。通过设置限位块394以及限位腔31a1,可以在设备主体 10和腕托20连接时,防止转轴支架31a与限位套筒39之间发生相对转动。
本申请实施例提供的可穿戴设备,通过设置锁合凸台61a,在锁合凸台61a和退让凹槽69i错开时,可以使转轴支架31a和竖直转轴32处于锁合状态,以防止设备主体10和腕托20分离,进而增加设备主体10和腕托20之间的连接稳定性。
在上述实施例中,介绍了在可穿戴设备的设备主体和腕托分离时,竖直转轴留在了腕托上,而水平转轴则与设备主体一起与腕托分离的技术方案,并且在本实施例中,竖直转轴的顶端为自由端,并且竖直转轴的顶端与限位套筒旋转连接。可以理解的是,在另外一些实施例中,还可以将竖直转轴设计成其它的结构来实现这种在将设备主体和腕托分离时,使水平转轴和竖直转轴分开的技术方案,示例性地,如下实施例十五中的描述。
实施例十五
图42为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。图43为本申请一实施例提供的可穿戴设备的设备主体和腕托以及转轴组件的爆炸图。
如图42和图43所示,在本实施例中,可穿戴设备100包括设备主体10、腕托20以及转轴组件30。转轴组件30包括轴外壳33、水平转轴31和竖直转轴32,竖直转轴32的底端与腕托的第一端21转动相连,水平转轴31底端套设在竖直转轴32的顶端上,水平转轴31与设备主体10固定连接,锁合组件60设置在竖直转轴32上,且锁合组件60用于将水平转轴31的转轴支架31a和竖直转轴32在竖向上锁合连接进而使设备主体10和腕托20锁合连接。
图44为本申请一实施例提供的可穿戴设备的水平转轴的爆炸结构示意图。如图43和图44所示,水平转轴31包括转轴支架31a以及转动组件34,转动组件34包括摩擦轴341以及设置在摩擦轴341上的转头3414和多个摩擦片342。其中,转头3414设置在摩擦轴的第二端341b,且转头3414与设备主体10和摩擦轴341均固定连接,摩擦轴341与转头3414通过铆接的方式固定连接,当然,在一些实施例中,也可以通过其他方式使摩擦轴341和转头3414固定连接,在本实施例中对于转头3414和摩擦轴341之间固定连接的具体方式是不限定的。摩擦片342固定设置在转轴支架31a上,且摩擦片342与摩擦轴341旋转连接。这样在抬起设备主体10时,摩擦轴341会相对于转轴支架31a旋转,进而使设备主体10可以相对于水平转轴31可以翻转。
结合图43和图44所示,转轴支架31a的两端分别设置有容纳转动组件34的空腔结构311,其中,在摩擦轴的第一端341a设置有沿着摩擦轴341的轴向向外凸起的挡边,摩擦轴341穿设于转轴支架31a的空腔结构311内以使该挡边可以卡在转轴支架31a上。摩擦轴341的轴体3411以及摩擦片342均位于转轴支架31a的空腔结构311内。
转轴支架31a的空腔结构311内设置有与摩擦片342卡合连接的第四内槽31a7,摩擦片342上的第五限位凸起3421与第四内槽31a7配合连接,以使摩擦片342可以固定在转轴支架31a内。摩擦轴的第二端341b穿设于转头3414上,转头3414靠近转轴支架31a的一端与转轴支架31a旋转连接,且转头3414靠近转轴支架31a的一端将摩擦片342封堵在转轴支架31a内,进而可以防止摩擦片342从转轴支架31a内脱落。另外,通过设置摩擦片342可以避免摩擦轴341和转轴支架31a之间的磨损,从而可以提高转轴支架31a的使用寿命,降低维护成本。
需要说明的是,在本申请实施例中,转动组件34的数量为两个,分别设置在转轴支架31a的两侧,以使转轴组件30的两端均与设备主体10连接,从而提高转轴组件30和设备主体 10的连接稳定性。另外,对于摩擦片342的数量不做具体限定,可以为三个、四个或者更多,具体可以根据具体需要来设定。
图45为本申请一实施例提供的可穿戴设备的竖直转轴的爆炸结构示意图。如图42和图45所示,竖直转轴32的顶端设置有滑轨支架325,水平转轴31的转轴支架31a底端具有可供滑轨支架325竖向上伸入的装配腔31a3,竖直转轴32的底端设有Z轴支架326,Z轴支架326设在腕托的第一端21,且Z轴支架326与竖直转轴32转动相连。
在本实施例中,滑轨支架325可以包括滑轨盖3251、滑轨腔3252以及围成滑轨腔3252的滑轨壁3253,滑轨盖3251盖设在滑轨壁3253的顶端,以使滑轨腔3252的顶端被封住,从而防止滑轨腔3252内落灰或者零件丢失。在本实施例中,滑轨盖3251的与滑轨壁3253的连接方式是不限定的,可以为铆接、焊接、粘接等;另外滑轨盖3251可以为图45中所示的长方形的板状结构,当然也可以为其它形状的板状结构,具体可根据滑轨支架325的形状来确定,因此对于滑轨盖3251的具体结构在本申请实施例中不作具体限定。
在本实施例中,锁合组件60设置在滑轨腔3252内。锁合组件60包括两个第一锁合组件(图中未示出)和两个第二锁合组件60b,两个第一锁合组件和两个第二锁合组件60b均与滑轨支架325可伸缩连接,且第一锁合组件的一部分结构和第二锁合组件60b的一部分结构均位于滑轨支架325内。
其中,两个第一锁合组件在滑轨支架325内靠近竖直转轴32设置,且两个第一锁合组件分别相对竖直转轴32中心对称设置;两个第二锁合组件60b沿着水平转轴31的轴向设置,且两个第二锁合组件60b设置在滑轨支架325的两端。第一锁合组件用于在水平转轴31处于第一位置时,将滑轨支架325与装配腔31a3的内壁锁合相连,以及在水平转轴31旋转至第二位置时,第一锁合组件处于解锁状态;第二锁合组件60b用于将滑轨支架325与水平转轴31的装配腔31a3之间进行弹性锁合。
作为解释说明,弹性锁合指的是通过弹性件来实现锁合或者解锁,通俗来讲就是一个活扣,在安装上时可以自动锁合,利用外力或者其它手段也可以使其解锁。
需要说明的是,第一锁合组件可相对于滑轨支架325沿y方向伸缩运动,第二锁合组件60b可相对于滑轨支架325沿x方向伸缩运动,并且在第一锁合组件和第二锁合组件60b均不受外力时,第一锁合组件的部分结构和转轴支架31a卡接,第二锁合组件60b的部分结构和转轴支架31a也卡接,当第一锁合组件解锁后,由于第二锁合组件60b与滑轨支架325可伸缩连接,且第二锁合组件60b与转轴支架31a的配合面为倾斜面(如图42和图45所示),所以利用外力可以直接将第二锁合组件60b解锁。
图46为本申请一实施例提供的可穿戴设备的设备主体位于第一位置时设备主体和腕托的部分结构的剖面结构示意图。
如图45和图46所示,每个第一锁合组件均包括伸缩卡扣60a1、第一内槽60a2和第一滑轨弹簧60a3,伸缩卡扣60a1与第一内槽60a2相配合。其中,第一内槽60a2位于装配腔31a3的内壁上,伸缩卡扣60a1与滑轨支架325可伸缩连接,且伸缩卡扣60a1的一端位于滑轨支架325的滑轨腔3252内,伸缩卡扣60a1的另一端具有卡扣部60a11,卡扣部60a11可伸出滑轨支架325;滑轨支架325与装配腔31a3的内壁之间通过伸缩卡扣60a1的卡扣部60a11与第一内槽60a2卡合进行锁合相连;第一滑轨弹簧60a3位于滑轨支架325的滑轨腔3252内,且第一滑轨弹簧60a3的一端与伸缩卡扣60a1的一端相连,第一滑轨弹簧60a3的另一端与滑轨支架325 的内壁抵接(参见图45)。这样在向靠近滑轨腔3252的方向挤压伸缩卡扣60a1时,伸缩卡扣60a1可相对于滑轨壁3253向后移动,从而带动伸缩卡扣60a1的卡扣部60a11向后移动,在卡扣部60a11移出第一内槽60a2时,第一锁合组件处于解锁状态。
在本实施例中,伸缩卡扣60a1与转轴支架31a可伸缩连接;伸缩卡扣60a1的一端设有第一驱动部60a12,第一驱动部60a12的一端位于滑轨支架325外;第一驱动部60a12用于在水平转轴31向第二位置旋转时,驱动伸缩卡扣60a1水平移动,以带动伸缩卡扣60a1的卡扣部60a11与第一内槽60a2脱离,以使第一锁合组件处于解锁状态。
其中,伸缩卡扣60a1的驱动过程需要第一驱动部60a12和Z轴支架326相配合。如图45所示,Z轴支架326上具有可供竖直转轴32转动的转动孔3261,并且竖直转轴32的底端通过该转动孔3261伸入Z轴支架326内,在竖直转轴32位于Z轴支架326内的结构上可以套设摩擦片342和固定片3263(摩擦片342的数量不限定),其中,摩擦片342和Z轴支架326固定连接,竖直转轴32和摩擦片342转动连接,以使竖直转轴32和Z轴支架326转动连接。竖直转轴32和固定片3263固定连接,固定片3263与Z轴支架326活动连接,且Z轴支架326的底端设置有阻挡固定片3263挡沿3264,其中,固定片3263的外径大于挡沿3264的内径,以使竖直转轴32通过该Z轴支架326固定在腕托的第一端21,并且可以相对于Z轴支架326旋转。Z轴支架326上绕着转动孔3261的周向设有下沉槽3262,第一驱动部60a12位于下沉槽3262处,且下沉槽3262为扁形槽,扁形槽的部分槽壁用于在水平转轴31向第二位置旋转时向第一驱动部60a12施力,以使第一驱动部60a12带动伸缩卡扣60a1移动。
需要说明的是,竖直转轴32和Z轴支架326的结构包括但不限于本实施例中的结构,只要是能够实现其功能即可。
图47为本申请一实施例提供的可穿戴设备的设备主体位于第一位置时腕托的剖面结构示意图。图48为本申请一实施例提供的可穿戴设备的设备主体位于第二位置时设备主体和腕托的的剖面结构示意图。图49为本申请一实施例提供的可穿戴设备的设备主体位于第二位置时腕托的剖面结构示意图。
结合图46和图47可知,在第一位置时,第一驱动部60a12位于Z轴支架326的下沉槽3262直径最大的位置,此时两个伸缩卡扣60a1的卡接部位于第一内槽60a2内,第一锁合组件处于锁合状态。
如图48和图49所示,当设备主体10旋转至第二位置时,第一驱动部60a12位于Z轴支架326的下沉槽3262直径最小的位置,此时两个伸缩卡扣60a1的卡接部移出第一内槽60a2,第一锁合组件处于解锁状态。
需要说明的是,第一驱动部60a12从下沉槽3262直径最大的位置到下沉槽3262直径最小的位置向滑轨支架325内移动的距离,恰好能够使伸缩卡扣60a1的卡接部移出第一内槽60a2即可。对于,下沉槽3262的形状和尺寸,以及第一驱动部60a12和卡扣部60a11的具体尺寸再此不做具体限定,只要符合其功能具体情况可以具体设定。
图50为本申请一实施例提供的可穿戴设备的伸缩卡扣的结构示意图。如图50所示,该伸缩卡扣60a1为一体式结构,且伸缩卡扣60a1的卡扣部60a11靠近腕托的一面为平面60a14,靠近设备主体10的一面为斜面60a13。这样在第一锁合组件处于锁合状态时,由于卡扣部60a11靠近腕托20的一面为平面60a14,所以该平面60a14可以卡合在第一内槽60a2内,保证锁合力度较大,防止在锁合状态下腕托20和设备主体10意外分离。
而将卡扣部60a11靠近设备主体10的一面设置为斜面60a13,这样在将设备主体10和腕托20连接时可以保证转轴支架31a可相对于该斜面60a13滑动,由于该伸缩卡扣60a1与滑轨支架325可伸缩连接,所以在向下按压转轴支架31a时卡扣部60a11会受到向内的推力进而使卡扣部60a11向滑轨支架325的内部移动,以使滑轨支架325进入转轴支架31a的装配腔31a3内,当卡扣部60a11的底端到达第一内槽60a2的底端时,也就是说,转轴支架31a上没有侧壁挤压卡扣部60a11时,卡扣部60a11自动回弹至第一内槽60a2内,进而使转轴支架31a和滑轨支架325锁合连接,即设备主体10和腕托20锁合连接。
需要说明的是,在本实施例中,第一位置为锁合组件60处于锁合状态位置,即设备主体10不能从腕托20上拆卸时的位置;第二位置为锁合组件60处于解锁状态的位置,即设备主体10可以和腕托20分离的位置。在本实施例中,第一位置为设备主体10不旋转时的初始位置(如图42所示的位置),或者是仅绕着水平转轴31翻转一定角度的任一位置;第二位置为设备主体10绕着竖直转轴32旋转90°的位置(如图51所示的位置),从第一位置到第二位置为设备主体10绕着竖直转轴32从0°旋转至90°的过程。如图51所示,在设备主体10和腕托20分离时,设备主体10和水平转轴31固定连接,而腕托20和竖直转轴32固定连接,也就是说,设备主体10和腕托20分离时,转轴组件30的一部分留在了腕托20上,另一部分和设备主体10一起从腕托20上分离下来。
另外,如图42和图45所示,每个第二锁合组件60b包括弹性顶块60b1以及与弹性顶块60b1配合的第二内槽60b2,第二内槽60b2位于装配腔31a3的内壁上,弹性顶块60b1的至少部分位于滑轨支架325内且靠近滑轨支架325的端部;且滑轨支架325的端部与装配腔31a3之间通过弹性顶块60b1与第二内槽60b2卡合进行弹性锁合。每个第二锁合组件60b均包括第二滑轨弹簧60b3,第二滑轨弹簧60b3位于滑轨支架325内,且第二滑轨弹簧60b3的一端与弹性顶块60b1相连,第二滑轨弹簧60b3的另一端与滑轨支架325的内壁抵接,其中滑轨支架325的内壁即为滑轨壁3253位于滑轨腔3252内的部分结构。
其中,弹性顶块60b1靠近第二内槽60b2的一端的顶部和底部均设有第一倾斜导向面60b11,并且在第二内槽60b2上设置有与该第一倾斜导向面60b11配合的第二倾斜导向面,第二倾斜导向面即为第二内槽60b2的内壁,这样在将设备主体10安装在腕托上时,可直接用力将设备主体10向下按压,这样在装配腔31a3的内部对第一倾斜导向面60b11产生向内的推力,进而使滑轨支架325滑入转轴支架31a的装配腔31a3内,在滑轨支架325滑入装配腔31a3内时,弹性顶块60b1自动回弹,进而将设备主体10和腕托20锁合连接;将设备主体10从腕托20上拆卸时,可直接将设备主体10向上拉,这样位于底端的第二倾斜导向面会对位于底端的第一倾斜导向面60b11产生向内的推力,进而使弹性顶块60b1向滑轨支架325的内部移动,进而将设备主体10从腕托20上分离。
继续参见图45所示,滑轨支架325相对的两个侧面上设有定位凸起3254,装配腔31a3的内壁上设有与定位凸起3254配合的定位槽31a4。通过设置定位凸起3254可以在将设备主体10和腕托20连接时,使水平转轴31的转轴支架31a只能沿着定位凸起3254的方向向下滑动,从而可以防止安装不对位导致安装失败;并且,在插拔时不会产生卡顿的现象。
当然,对于定位凸起3254和定位槽31a4的结构包括但不限于本申请实施例附图中所示的结构,在一些实施例中也可以为其它结构,只要是能够保证滑轨支架325可以平行滑入或者滑出转轴支架31a即可,因此对于定位凸起3254和定位槽31a4的结构在本实施例中不做 具体限定。
另外,在转轴支架31a的底端的侧壁上还设置有第三内槽31a6,本实施例中第三内槽31a6的数量可以为四个,在转轴支架31a的前后两侧分别设置两个第三内槽31a6,位于不同侧的第三内槽31a6相对设置,并且在轴外壳33的内壁上设置有与第三内槽31a6配合的固定块331,轴外壳33和转轴支架31a支架通过第三内槽31a6和固定块331的配合实现固定连接。并且轴外壳33可以对转轴支架31a起到一定的保护作用。当然,第三内槽31a6和固定块331的数量以及设置位置是不限定的,只要是能够起到一定的固定作用即可。
需要说明的是,对于第一锁合组件和第二锁合组件60b的设置方向包括但不限于本实施例附图中所示的结构,示例性地,第一锁合组件和第二锁合组件60b的设置位置可以互换,或者改变第一锁合组件和第二锁合组件60b的结构,只要是能够实现其功能即可。另外,本申请实施例中的锁合组件60只有在设备主体10绕着竖直转轴32旋转90°时才处于解锁状态。
另外,在本申请实施例中,第一锁合组件的包括伸缩卡扣60a1、第一内槽60a2和第一滑轨弹簧60a3的结构,其中,第一驱动部60a12设置在伸缩卡扣60a1上,也就是说,驱动部和卡扣部60a11设置在了同一个部件上,这样在驱动第一驱动部60a12时,就可以带动卡扣部60a11一起运动,以实现卡扣部60a11与转轴支架31a可伸缩连接。
当然,在另外一些实施例中,第一锁合组件还可以为其它结构,如图52和图53所示,在本实施例中,每个第一锁合组件可以包括伸缩卡扣60a1、转轴顶块60a4、第一内槽60a2和第一滑轨弹簧60a3,其中,转轴顶块60a4的一端与伸缩卡扣60a1配合,转轴顶块60a4的另一端具有第二驱动部60a41,第二驱动部60a41用于在水平转轴31向第二位置旋转时,驱动转轴顶块60a4向上移动,以带动伸缩卡扣60a1水平移动,以使伸缩卡扣60a1的卡扣部60a11与第一内槽60a2脱离。
在本实施例中,Z轴支架326上具有可供竖直转轴32转动的转动孔3261,Z轴支架326上绕着转动孔3261的周向设有下沉槽3262,第二驱动部60a41位于下沉槽3262处,下沉槽3262为圆形槽;且圆形槽的部分槽底具有锥形台阶3265,锥形台阶3265用于在水平转轴31向第二位置旋转时,驱动第二驱动部60a41向上移动,以使伸缩卡扣60a1水平移动。
下面结合附图具体介绍Z轴支架326和第二驱动部60a41的配合过程。
如图54所示,伸缩卡扣60a1与转轴顶块60a4配合的一端具有第三倾斜面60a15,转轴顶块60a4上具有与第三倾斜面60a15配合的第四倾斜面60a42,第四倾斜面60a42用于在转轴顶块60a4向上移动时对第三倾斜面60a15施力,以使伸缩卡扣60a1水平移动。
需要说明的是,图54为设备主体10处于第一状态时的结构示意图,在此状态下,伸缩卡扣60a1上的第三倾斜面60a15和转轴顶块60a4上的第四倾斜面60a42相互贴合,且第三倾斜面60a15底端也位于第四倾斜面60a42上,第一锁合组件的伸缩卡扣60a1的卡扣部60a11位于第一内槽60a2中(如图55所示),此时锁合组件60中的第一锁合组件和第二锁合组件60b均处于锁合状态;当将设备主体10从第一位置旋转至第二位置时(参见图56所示),此时伸缩卡扣60a1上的第三倾斜面60a15和转轴顶块60a4上的第四倾斜面60a42也相互贴合,但是第四倾斜面60a42相对于第三倾斜面60a15向上移动了,并且由于第四倾斜面60a42向上移动,从而挤压第三倾斜面60a15向内移动(如图57所示),这样就使伸缩卡扣60a1带动着卡扣部60a11向内移动,进而移出了第一内槽60a2(如图58所示),此时锁合组件60的第一 锁合组件处于解锁状态。
通过第三倾斜面60a15和第四倾斜面60a42的配合,以使转轴顶块60a4在竖直方向上的移动,转化成伸缩卡扣60a1在水平方向上的移动,进而使锁合组件60处于解锁状态。另外斜面配合的方式会使锁合组件60的结构更加简单,从而可以降低成本。
当然,在一些实施例中,还可以将伸缩卡扣60a1设置成其它结构,并通过其它配合方式实现相对于滑轨支架325的水平方向的移动,进而使第一锁合组件可以在设备主体10旋转至第二位置时处于解锁状态,在本实施例中不作赘述。
另外,需要说明的是,第二锁合组件60b设备主体10承受相向的拉力时,即可解锁。另外,本实施例中关于位于设备主体的第二端12的卡合组件40的结构可以和实施例一中结构相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。对于水平转轴和竖直转轴的结构包括但不限于本实施例中所示的结构,也可以为实施例一中所示的结构,具体可以根据实际情况具体设计,在此不作具体限定。
本申请实施例中的可穿戴设备100,通过设置第一锁合组件和第二锁合组件60b,可以提高设备主体10和腕托之间的锁合力,另外,通过将第一锁合组件设计成只有在将设备主体10旋转至90°时才能解锁的结构,可以防止用户在使用该穿戴设备时设备主体10会在任一角度从腕托上脱落,进而降低设备主体10因意外脱落而导致损坏的风险,另外,通过设置第一锁合组件和第二锁合组件60b可以提升锁合手感。
实施例十五中介绍了两种将设备主体10绕着竖直转轴32旋转90°后才能将锁合组件60解锁的技术方案,当然在一些实施例中,也可以绕着竖直转轴32旋转至其他角度后解锁,在本实施例中,对于这个绕着竖直转轴32旋转的角度是不限定的。另外在一些实施例中,还可将锁合组件60设计成围绕水平转轴31旋转到特定角度时可以解锁的结构。具体参见实施例十六中的介绍。
实施例十六
图59为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。图60为本申请一实施例提供的可穿戴设备的设备主体和腕托的爆炸结构示意图。
如图59和图60所示,可穿戴设备100包括设备主体10、腕托20以及转轴组件30。转轴组件30包括轴外壳33、水平转轴31和竖直转轴32,竖直转轴32的底端与腕托的第一端21转动相连,水平转轴31的底端与竖直转轴32的顶端滑动相连,水平转轴31与设备主体10固定连接,锁合组件60设置在竖直转轴32内,且锁合组件60用于在水平方向上对水平转轴31与竖直转轴32锁合相连,以阻挡水平转轴31在竖直转轴32上滑动;以及在锁合组件60处于解锁状态时,水平转轴31可从竖直转轴32上向外滑出。
如图60所示,竖直转轴32的顶端具有滑轨架327,水平转轴31的转轴支架31a底端具有可供滑轨架327水平滑入的滑轨槽31a5;在滑轨架327位于滑轨槽31a5内,且设备主体10处于第一位置(如图59所示的位置)时,锁合组件60用于将滑轨架327与水平转轴31锁合相连;在设备主体10绕着水平转轴31旋转至第二位置(如图61所示的位置)时,锁合组件60处于解锁状态,以使水平转轴31从滑轨架327上水平滑出。
结合图59和图60所示,锁合组件60包括锁紧弹块60c以及与锁紧弹块60c配合的槽孔60c1,槽孔60c1开设在水平转轴31的转轴支架31a上,锁紧弹块60c设在滑轨架327上,且锁 紧弹块60c的一端在滑轨架327的顶端端面上可伸缩设置;水平转轴31与滑轨架327通过锁紧弹块60c与槽孔60c1卡合在水平方向上进行锁合相连,以及在锁紧弹块60c从槽孔60c1移出时,水平转轴31与滑轨架327在水平方向上处于解锁状态。
如图60所示,在锁紧弹块60c的顶端水平方向(沿x方向)的两侧面上设有倾斜的滑面60c3,在滑轨槽31a5的顶壁的沿x方向的两个端面上均可以设置与倾斜的滑面60c3配合的斜挡31a51。并且该斜挡31a51与倾斜的滑面60c3的倾斜度可以相同,这样当滑轨架327沿x方向从转轴支架31a的任意一端滑入滑轨槽31a5时,该斜挡31a51可以驱动倾斜的滑面60c3向下移动,进而使锁紧弹块60c被压入滑轨架327内,以使滑轨架327可以滑入滑轨槽31a5内。当锁紧弹块60c的顶端全部进入槽孔60c1时,锁紧弹块60c顶端的约束消失,锁紧弹块60c的顶端进入槽孔60c1内,以使水平转轴31与滑轨架327在水平方向上锁合连接。
通过在滑轨槽31a5上设置与倾斜的滑面60c3配合的斜挡31a51,以使滑轨架327可以滑入滑轨槽31a5内,并且斜面的配合较为简单可以简化滑轨架327和滑轨槽31a5的结构。
另外,可以理解的是,只要锁紧弹块60c顶端的倾斜的滑面60c3的底端位于槽孔60c1底端时,或者在倾斜的滑面60c3的一部分位于槽孔60c1内时,水平转轴31与滑轨架327在水平方向上就可以通过外力使水平转轴31从滑轨架327的一侧滑出,即水平转轴31与滑轨架327在水平方向上处于解锁状态。当然,在倾斜的滑面60c3完全离开槽孔60c1时,水平转轴31与滑轨架327在水平方向上也处于解锁状态,但是这样会是设备主体10和腕托20之间没有任何约束,所以设备主体10容易从腕托20上滑落,所以在本实施例中,倾斜的滑面60c3的至少部分位于槽孔60c1内,这样可以防止设备主体10从腕托20上意外滑落。
在倾斜的滑面60c3的至少部分位于槽孔60c1内时,在不受外力的情况下,水平转轴31与滑轨架327之间处于解锁的状态,但是还具有一定的锁合力,需要通过外力将水平转轴31与滑轨架327分离,这样可以防止水平转轴31从滑轨架327上意外脱落,造成设备主体的损坏。并且,在锁紧弹块60c的顶端设置倾斜的滑面60c3,还可以减小拆卸时以及安装时所需的力度,从而方便安装和拆卸。
锁合组件60还可以包括:解锁结构60d,解锁结构60d用于在设备主体10绕着水平转轴31朝向第二位置移动时,驱动锁紧弹块60c从槽孔60c1移出。
如图60所示,解锁结构60d可以包括:转轴压臂60d1、转轴凸轮60d2、转轴弹簧60d3,转轴凸轮60d2的两端分别与水平转轴31的两个摩擦轴341相连,转轴凸轮60d2的中部位于转轴压臂60d1之上;转轴压臂60d1的一端朝向转轴凸轮60d2,转轴压臂60d1的另一端位于槽孔60c1中;转轴压臂60d1用于在转轴凸轮60d2的驱动下向下移动,以驱动锁紧弹块60c从槽孔60c1移出;转轴弹簧60d3设在水平转轴31的转轴支架31a上,且转轴弹簧60d3的一端与转轴压臂60d1相连,转轴弹簧60d3用于在转轴凸轮60d2移开时驱动。
需要说明的是,转轴凸轮60d2与摩擦轴341的固定方式包括但不限于铆接、卡接或者焊接等,因此在本申请实施例中,对于转轴凸轮60d2和摩擦轴341支架的固定方式不作具体限定。另外,对于转轴凸轮60d2的尺寸也不作具体限定,只要是能够将锁紧弹块60c从槽孔60c1移出即可。
锁合组件60还可以包括:第三滑轨弹簧60c2,第三滑轨弹簧60c2位于滑轨架327内,且第三滑轨弹簧60c2的一端与锁紧弹块60c相连。
滑轨架327上还设置有滑轨盖板3271,其中,滑轨盖板3271盖设在锁紧弹块60c上且与 滑轨架327相连,滑轨盖板3271上开设可供锁紧弹块60c的一端伸出的孔。另外,滑轨架327上沿滑轨架327的滑动方向的两侧设有限位凸起部3272,滑轨槽31a5内具有与限位凸起部3272配合的限位槽31a8,水平转轴31的转轴支架31a与滑轨架327通过限位凸起部3272与限位槽31a8配合在竖向上进行限位。
另外,转轴组件30还包括:Z轴架328,Z轴架328设在腕托的第一端21,且Z轴架328与竖直转轴32的底端旋转相连,以使设备主体10可以绕着竖直转轴32旋转。具体的,Z轴架328上具有可供竖直转轴32转动的转孔3281,并且竖直转轴32的底端通过该转孔3281伸入Z轴架328内,在竖直转轴32位于Z轴架328内的结构上可以套设摩擦片342和固定片3263(摩擦片342的数量不限定),其中,摩擦片342和Z轴架328固定连接,竖直转轴32和摩擦片342转动连接,以使竖直转轴32和Z轴架328转动连接。竖直转轴32和固定片3263固定连接,固定片3263与Z轴架328活动连接,且Z轴架328的底端设置有阻挡固定片3263阻挡台3282,其中,固定片3263的外径大于阻挡台3282的内径,以使竖直转轴32通过该Z轴架328固定在腕托的第一端21,并且可以相对于Z轴架328旋转。
图61为本申请一实施例提供的可穿戴设备的设备主体和腕托的分离时的结构示意图。图62为本申请一实施例提供的可穿戴设备的锁合组件处于解锁状态时的剖面结构示意图。
如图61所示,在设备主体10处于第二位置时,锁合组件60处于解锁状态,这时可将水平转轴31从竖直转轴32上向外滑出,即设备主体10从腕托的一侧滑出。在本实施例中,第一位置即为图59中所示的设备主体10和腕托20处于初始状态时的位置,第二位置为设备主体10绕着水平转轴31旋转90°的位置即图61中的位置。
如图62所示,在设备主体10从第一位置旋转至第二位置时,水平转轴31带动转轴凸轮60d2旋转,并且使转轴凸轮60d2上的凸轮从外径最小的位置到达外径最大的位置,由于凸轮的外径从小变大,这样就会使凸轮压着转轴压臂60d1向下移动,由于转轴压臂60d1远离转轴凸轮60d2的一端位于转轴支架31a上的槽孔60c1内,而锁紧弹块60c的顶端也位于槽孔60c1内,那么在转轴压臂60d1向下移动并与锁紧弹块60c接触时,就会带动锁紧弹块60c向下移动,在锁紧弹块60c的顶端的倾斜的滑面60c3的至少部分移出槽孔60c1时,水平转轴31与滑轨架327在水平方向上处于解锁状态,此时水平转轴31可以从滑轨架327的一侧滑出。
需要说明的是,上述介绍的锁合组件60的结构包括但不限于附图中的结构,在另外一些实施例中,锁合组件60还可以为其它结构,只要是能够将设备主体10和腕托在水平方向锁合,并且旋转至一定角度可以将锁合组件60解锁的技术方案均属于本申请技术方案的保护范围。另外,本实施例中关于位于设备主体的第二端12的卡合组件40的结构也和实施例一中相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。
本申请实施例通过将锁合组件60设置将水平转轴31和竖直转轴32在水平方向锁合的结构,当设备主体10旋转至特定位置,可以将设备主体10从腕托的一侧滑出,这种将设备主体10旋转至特定位置才能解锁的技术方案可以减小拆卸时的力度,从而适应更多客户,并且可以防止设备主体10从腕托上意外脱落。
在本实施例中,设备主体10可以从腕托20的的第三端24或第四端25滑出,当然,在其它实施例中,设备主体10还可以从腕托的第一端21或第二端22滑出,示例性地可参见下面的实施例十七。
实施例十七
图63为本申请一实施例提供的可穿戴设备的设备主体和腕托的剖面结构示意图。如图63所示,可穿戴设备100包括设备主体10、腕托20以及转轴组件30。转轴组件30包括轴外壳33和水平转轴31。水平转轴31包括转轴支架31a以及设置在转轴支架31a内的转动组件34,其中,两个转动组件34分别设置在转轴支架31a的两端,每个转动组件34均包括摩擦轴341、摩擦片342以及设置在摩擦轴第二端341b的转头3414,并且转头3414靠近转轴支架31a的一端与转轴支架31a旋转连接,且转头3414靠近转轴支架31a的一端将摩擦片342封堵在转轴支架31a内,进而可以防止摩擦片342从转轴支架31a内脱落。在转轴支架31a的外侧设置有固定凸起,在轴外壳33的内侧设置有与固定凸起配合的凹槽332,这样在将轴外壳33安装在转轴支架31a上时通过固定凸起和凹槽332的配合可以防止轴外壳33从转轴支架31a上脱落。
在本实施例中,锁合组件60包括锁紧弹块60c以及与锁紧弹块60c配合的槽孔60c1,槽孔60c1开设在转轴支架31a上,锁紧弹块60c设在腕托的第一端21,且锁紧弹块60c的一端在腕托的第一端21的顶端端面上可伸缩设置;水平转轴31与腕托20通过锁紧弹块60c与槽孔60c1卡合在水平方向上进行锁合相连,以及在锁紧弹块60c从槽孔60c1移出时,水平转轴31与滑轨架327在水平方向上处于解锁状态。
在本实施例中,锁合组件60还可以包括:解锁结构60d,解锁结构60d用于在设备主体10绕着水平转轴31朝向第二位置移动时,驱动锁紧弹块60c从槽孔60c1移出。如图63所示,解锁结构60d可以包括:转轴压臂60d1、转轴凸轮60d2、转轴弹簧60d3,转轴凸轮60d2的两端分别与水平转轴31的两个摩擦轴341相连,转轴凸轮60d2的中部位于转轴压臂60d1之上;转轴压臂60d1的一端朝向转轴凸轮60d2,转轴压臂60d1的另一端位于槽孔60c1中;转轴压臂60d1用于在转轴凸轮60d2的驱动下向下移动,以驱动锁紧弹块60c从槽孔60c1移出;转轴弹簧60d3套设在转轴压臂60d1,且转轴弹簧60d3的一端与转轴压臂60d1相连,转轴弹簧60d3的另一端抵在转轴支架31a上,转轴弹簧60d3用于在转轴凸轮60d2移开时驱动转轴压臂60d1向上移动。
另外,在本实施例中,结合图63和图64所示,转轴支架31a靠近腕托20的一端设置有支架底座31a10,该支架底座31a10内设容纳转轴压臂60d1以及转轴弹簧60d3的腔体,并且该腔体的底端与槽孔60c1的顶端连通,以使转轴压臂60d1的底端可以和锁紧弹块60c的接触。需要说明的是,槽孔60c1的内径大于转轴压臂60d1的底端的外径。
在本实施例中,锁合组件60还可以包括锁合凸起61和锁合沉槽62,其中锁合凸起61设置在支架底座31a10的底端,锁合沉槽62设置在腕托的第一端21,转轴支架31a与腕托20通过锁合凸起61卡合在锁合沉槽62内时在竖向上锁合连接,以及在锁合凸起61从锁合沉槽62中移出时,转轴支架31a和腕托20在竖向上处于解锁状态。
如图63所示,在本实施例中,锁合组件60还可以包括第三磁性件60e1和第四磁性件60e2,其中,第三磁性件60e1设置在腕托20上的锁合沉槽62的底部,第四磁性件60e2设置在转轴支架31a的支架底座31a10内,其中,支架底座31a10内设置有用于容纳第四磁性件60e2的安装槽位,安装槽位的开口朝向靠近腕托20的一端。第四磁性件60e2设置在安装槽位内,并且在安装槽位的开口端设置有挡板31a11,该挡板31a11转轴支架31a固定连接,以防止第四磁性件60e2从转轴支架31a上脱落。
当转轴支架31a上的锁合凸起61位于腕托20上的锁合沉槽62内时,第三磁性件60e1 和第四磁性件60e2相互吸引,可以增加转轴支架31a和腕托20之间的锁合力。当将设备主体10绕着水平转轴翻转90°到达第二位置时,锁合组件60处于解锁状态,这时可以将设备主体10从腕托20的一侧滑出,本实施例中是从朝向靠近腕托的第二端22的方向滑出。当然在一些实施例中,还可以从朝向远离腕托的第二端22的方向滑出。
本申请实施例中,通过设置锁紧弹块60c以及与锁紧弹块60c配合的槽孔60c1,可以使转轴支架31a和腕托20支架在横向上实现锁合连接,通过设置锁合凸起61和锁合沉槽62可以实现转轴支架31a和腕托20支架在竖向上的锁合连接,通过设置第三磁性件60e1和第四磁性件60e2可以增加锁合力,从而防止设备主体10相对于腕托20出现晃动、松动等问题。
需要说明的是,上述介绍的锁合组件60的结构包括但不限于附图中的结构,在另外一些实施例中,锁合组件60还可以为其它结构,只要是能够将设备主体10和腕托在水平方向锁合,并且旋转至一定角度可以将锁合组件60解锁的技术方案均属于本申请技术方案的保护范围。另外,本实施例中关于位于设备主体的第二端12的卡合组件40的结构也和实施例一中相同,因此,关于卡合组件40的介绍可以参见实施例一中的描述,在此不再重复说明。
本申请实施例还可以提供的一种可穿戴系统,包括终端设备和可穿戴设备,其中,终端设备和可穿戴设备通信连接。
最后应说明的是:以上各实施例仅用以说明本申请实施例的技术方案,而非对其限制;尽管参照前述各实施例对本申请实施例进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请实施例技术方案的范围。
Claims (48)
- 一种可穿戴设备,其特征在于,包括:设备主体;腕托,用于承载所述设备主体;转轴组件,所述转轴组件包括水平转轴和竖直转轴,所述水平转轴的两端与所述设备主体的第一端转动连接,以使所述设备主体可绕所述水平转轴翻转;所述竖直转轴的至少一端与所述腕托的第一端和所述水平转轴中的至少一个转动连接,以使所述设备主体可绕所述竖直转轴旋转;锁合组件,且当所述锁合组件处于锁合状态时,所述锁合组件将所述转轴组件与所述设备主体或者与所述腕托进行锁合,或者所述锁合组件将所述竖直转轴与所述水平转轴锁合连接,以使所述设备主体的第一端与所述腕托的第一端相连,以及当所述锁合组件处于解锁状态时,所述转轴组件与所述设备主体或者与所述腕托拆开,或者所述水平转轴与所述竖直转轴拆开,以使所述设备主体的第一端与所述腕托的第一端分开。
- 根据权利要求1所述的可穿戴设备,其特征在于,所述水平转轴包括:转轴支架以及分别位于所述转轴支架两端的两个转动组件;所述转轴支架的两端均设有容纳所述转动组件的空腔结构;所述转动组件的一端位于所述空腔结构内,另一端与所述设备主体相连。
- 根据权利要求1或2所述的可穿戴设备,其特征在于,所述竖直转轴的底端与所述腕托的第一端转动相连,所述水平转轴底端套设在所述竖直转轴的顶端上;当所述锁合组件处于锁合状态时,所述水平转轴与所述竖直转轴的顶端锁合相连,以使所述设备主体的第一端与所述腕托的第一端相连;当所述锁合组件处于解锁状态时,所述水平转轴与所述竖直转轴拆开,以使所述设备主体的第一端与所述腕托的第一端分开。
- 根据权利要求3所述的可穿戴设备,其特征在于,所述竖直转轴的顶端具有滑轨支架,所述水平转轴的转轴支架底端具有可供所述滑轨支架竖向上伸入的装配腔;当所述滑轨支架位于所述装配腔,且所述水平转轴处于第一位置时,所述锁合组件用于将所述滑轨支架与所述装配腔的内壁锁合相连;当所述水平转轴绕着所述竖直转轴旋转至第二位置时,所述锁合组件处于解锁状态,以使所述水平转轴可与所述滑轨支架拆开。
- 根据权利要求4所述的可穿戴设备,其特征在于,所述竖直转轴的底端设有Z轴支架,所述Z轴支架设在所述腕托的第一端,且所述Z轴支架与所述竖直转轴转动相连。
- 根据权利要求5所述的可穿戴设备,其特征在于,所述锁合组件包括至少一个第一锁合组件,所述第一锁合组件的至少部分位于所述滑轨支架内;且所述第一锁合组件用于在所述水平转轴处于所述第一位置时,将所述滑轨支架与所述装配腔的内壁锁合相连,以及在所述水平转轴旋转至所述第二位置时,所述第一锁合组件处于解锁状态。
- 根据权利要求6所述的可穿戴设备,其特征在于,每个所述第一锁合组件包括:伸缩卡扣以及与所述伸缩卡扣配合的第一内槽,所述第一内槽位于所述装配腔的内壁上;所述伸缩卡扣与所述滑轨支架可伸缩连接,且所述伸缩卡扣的一端位于所述滑轨支架 内,所述伸缩卡扣的另一端具有卡扣部,所述卡扣部可伸出所述滑轨支架;所述滑轨支架与所述装配腔的内壁之间通过所述卡扣部与所述第一内槽卡合进行锁合相连。
- 根据权利要求7所述的可穿戴设备,其特征在于,所述伸缩卡扣与所述转轴支架可伸缩连接;所述伸缩卡扣的一端设有第一驱动部,所述第一驱动部的一端位于所述滑轨支架外,所述第一驱动部用于在所述水平转轴向所述第二位置旋转时,驱动所述伸缩卡扣水平移动,以带动所述伸缩卡扣的所述卡扣部与所述第一内槽脱离,以使所述第一锁合组件处于解锁状态。
- 根据权利要求8所述的可穿戴设备,其特征在于,所述Z轴支架上具有可供所述竖直转轴转动的转动孔,所述Z轴支架上绕着所述转动孔的周向设有下沉槽,所述第一驱动部位于所述下沉槽处,且所述下沉槽为扁形槽,所述扁形槽的部分槽壁用于在所述水平转轴向所述第二位置旋转时向所述第一驱动部施力,以使所述第一驱动部带动所述伸缩卡扣移动。
- 根据权利要求8所述的可穿戴设备,其特征在于,每个所述第一锁合组件还包括:转轴顶块,所述转轴顶块的一端与所述伸缩卡扣配合,所述转轴顶块的另一端具有第二驱动部,所述第二驱动部用于在所述水平转轴向所述第二位置旋转时,驱动所述转轴顶块向上移动,以带动所述伸缩卡扣水平移动,以使所述伸缩卡扣的所述卡扣部与所述第一内槽脱离。
- 根据权利要求10所述的可穿戴设备,其特征在于,所述Z轴支架上具有可供所述竖直转轴转动的转动孔,所述Z轴支架上绕着所述转动孔的周向设有下沉槽,所述第二驱动部位于所述下沉槽处,所述下沉槽为圆形槽;且所述圆形槽的部分槽底具有锥形台阶,所述锥形台阶用于在所述水平转轴向所述第二位置旋转时,驱动所述第二驱动部向上移动,以使所述伸缩卡扣水平移动。
- 根据权利要求10或11所述的可穿戴设备,其特征在于,所述伸缩卡扣的一端具有第三倾斜面,所述转轴顶块上具有与所述第三倾斜面配合的第四倾斜面,所述第四倾斜面用于在所述转轴顶块向上移动时对所述第三倾斜面施力,以使所述伸缩卡扣水平移动。
- 根据权利要求7-12任一所述的可穿戴设备,其特征在于,每个所述第一锁合组件还包括:第一滑轨弹簧,所述第一滑轨弹簧位于所述滑轨支架内,且所述第一滑轨弹簧的一端与所述伸缩卡扣的一端相连,所述第一滑轨弹簧的另一端与所述滑轨支架的内壁抵接。
- 根据权利要求6-13任一所述的可穿戴设备,其特征在于,所述第一锁合组件的数量为两个,且所述两个第一锁合组件在所述滑轨支架内靠近所述竖直转轴设置,且所述两个第一锁合组件分别相对所述竖直转轴中心对称设置。
- 根据权利要求4-14任一所述的可穿戴设备,其特征在于,所述锁合组件还包括:至少一个第二锁合组件,所述第二锁合组件用于将所述滑轨支架与所述水平转轴的所述装配腔之间进行弹性锁合。
- 根据权利要求15所述的可穿戴设备,其特征在于,每个所述第二锁合组件包括弹性顶块以及与所述弹性顶块配合的第二内槽,所述第二内槽位于所述装配腔的内壁上,所述弹性顶块的至少部分位于所述滑轨支架内且靠近所述滑轨支架的端部;且所述滑轨支架的端部与所述装配腔之间通过所述弹性顶块与所述第二内槽卡合进行弹性锁合。
- 根据权利要求16所述的可穿戴设备,其特征在于,每个所述第二锁合组件包括第二滑轨弹簧,所述第二滑轨弹簧位于所述滑轨支架内,且所述第二滑轨弹簧的一端与所述弹性顶块相连,所述第二滑轨弹簧的另一端与所述滑轨支架的内壁抵接。
- 根据权利要求4-17任一所述的可穿戴设备,其特征在于,所述滑轨支架相对的两个侧面上设有定位凸起,所述装配腔的内壁上设有与所述定位凸起配合的定位槽。
- 根据权利要求1或2任一所述的可穿戴设备,其特征在于,所述竖直转轴的底端与所述腕托的第一端转动相连,所述水平转轴的底端与所述竖直转轴的顶端滑动相连;所述锁合组件用于在水平方向上对所述水平转轴与所述竖直转轴锁合相连,以阻挡所述水平转轴在所述竖直转轴上滑动;以及在所述锁合组件处于解锁状态时,所述水平转轴可从所述竖直转轴上向外滑出。
- 根据权利要求19所述的可穿戴设备,其特征在于,所述竖直转轴的顶端具有滑轨架,所述水平转轴的转轴支架底端具有可供所述滑轨架水平滑入的滑轨槽;在所述滑轨架位于所述滑轨槽内,且所述设备主体处于第一位置时,所述锁合组件用于将所述滑轨架与所述水平转轴锁合相连;在所述设备主体绕着所述水平转轴旋转至第二位置时,所述锁合组件处于解锁状态,以使所述水平转轴从所述滑轨架上水平滑出。
- 根据权利要求20所述的可穿戴设备,其特征在于,所述锁合组件包括锁紧弹块以及与所述锁紧弹块配合的槽孔,所述槽孔开设在所述水平转轴的转轴支架上,所述锁紧弹块设在所述滑轨架上,且所述锁紧弹块的一端在所述滑轨架的顶端端面上可伸缩设置;所述水平转轴与所述滑轨架通过所述锁紧弹块与所述槽孔卡合在水平方向上进行锁合相连,以及在所述锁紧弹块从所述槽孔移出时,所述水平转轴与所述滑轨架在水平方向上处于解锁状态。
- 根据权利要求21所述的可穿戴设备,其特征在于,所述锁合组件还包括:解锁结构,所述解锁结构用于在所述设备主体绕着所述水平转轴朝向所述第二位置移动时,驱动所述锁紧弹块从所述槽孔移出。
- 根据权利要求22所述的可穿戴设备,其特征在于,所述解锁结构包括:转轴压臂和转轴凸轮,所述转轴凸轮的两端分别与所述水平转轴相连,所述转轴凸轮的中部位于所述转轴压臂之上;所述转轴压臂的一端朝向所述转轴凸轮,所述转轴压臂的另一端位于槽孔中;所述转轴压臂用于在所述转轴凸轮的驱动下向下移动,以驱动所述锁紧弹块从所述槽孔移出。
- 根据权利要求23所述的可穿戴设备,其特征在于,所述解锁结构还包括:转轴弹簧,所述转轴弹簧设在所述水平转轴的转轴支架上,且所述转轴弹簧的一端与所述转轴压臂相连。
- 根据权利要求21-24任一所述的可穿戴设备,其特征在于,所述锁合组件还包括:第三滑轨弹簧,所述第三滑轨弹簧位于所述滑轨架内,且所述第三滑轨弹簧的一端与所述锁紧弹块相连。
- 根据权利要求21-25任一所述的可穿戴设备,其特征在于,还包括:滑轨盖板,所述滑轨盖板盖设在所述锁紧弹块上且与所述滑轨架相连,所述滑轨盖板上开设可供所述锁紧弹块的一端伸出的孔。
- 根据权利要求20-25任一所述的可穿戴设备,其特征在于,所述滑轨架上沿所述滑轨架的滑动方向的两侧设有限位凸起部,所述滑轨槽内具有与所述限位凸起部配合的限位槽,所述水平转轴的转轴支架与所述滑轨架通过所述限位凸起部与所述限位槽配合在竖向上进行限位。
- 根据权利要求19-27任一所述的可穿戴设备,其特征在于,所述转轴组件还包括:Z轴架,所述Z轴架设在所述腕托的第一端,且所述Z轴架与所述竖直转轴的底端旋转相连。
- 根据权利要求2所述的可穿戴设备,其特征在于,所述锁合组件包括:锁合沉槽和锁合凸起,所述锁合沉槽和所述锁合凸起中的其中一个设置在所述腕托上,所述锁合沉槽和所述锁合凸起中的另一个设置在所述竖直转轴的底端;所述竖直转轴和所述腕托通过所述锁合沉槽与所述锁合凸起配合实现锁合相连。
- 根据权利要求29所述的可穿戴设备,其特征在于,所述竖直转轴的底端设有第一底座,所述竖直转轴的底端固定设置在所述第一底座内;所述第一底座上设有所述锁合沉槽或所述锁合凸起。
- 根据权利要求30所述的可穿戴设备,其特征在于,所述锁合沉槽位于所述腕托上,所述锁合凸起位于所述第一底座靠近所述腕托的一端上;所述锁合沉槽的一侧开设可供所述锁合凸起水平滑入所述锁合沉槽的锁合沉槽开口。
- 根据权利要求31所述的可穿戴设备,其特征在于,所述锁合沉槽开口朝向所述腕托的第二端,以使所述锁合凸起沿着从所述腕托的第二端至第一端延伸的方向水平滑入所述锁合沉槽。
- 根据权利要求32所述的可穿戴设备,其特征在于,所述腕托上具有相对的第三端和第四端,且所述第三端和第四端位于所述腕托的第一端和第二端之间;所述锁合沉槽开口朝向所述第三端,以使所述锁合凸起沿着从所述腕托的第三端至第四端延伸的方向水平滑入所述锁合沉槽;或者,所述锁合沉槽开口朝向所述第四端,以使所述锁合凸起沿着从所述腕托的第四端至第三端延伸的方向水平滑入所述锁合沉槽。
- 根据权利要求31-33任一所述的可穿戴设备,其特征在于,所述锁合沉槽的顶端具有挡边,在所述锁合凸起位于所述锁合沉槽内时,所述挡边在所述竖直转轴的轴向上将所述锁合凸起锁合在所述锁合沉槽中,以使所述竖直转轴的一端与所述腕托的第一端相连。
- 根据权利要求31-34任一所述的可穿戴设备,其特征在于,所述第一底座上具有可供所述竖直转轴的一端穿过的第一开孔;所述竖直转轴的底端具有第一凸台,所述第一开孔的顶端内壁上具有与所述第一凸台相互阻挡的第一凸沿。
- 根据权利要求35所述的可穿戴设备,其特征在于,所述转轴支架内设有可供所述竖直转轴部分容纳的第一通孔;所述转轴组件还包括:第一动凸轮,所述第一动凸轮套设在所述竖直转轴上且与所述 竖直转轴转动连接,所述第一动凸轮位于所述第一通孔中且与所述第一通孔固定连接;所述第一底座上具有伸入所述第一通孔的第一延伸部,所述第一动凸轮抵在所述第一延伸部上,所述第一开孔延伸到所述第一延伸部的顶端端面,所述第一凸沿位于所述第一延伸部上;所述第一动凸轮面向所述第一延伸部的一面设置为凹凸不平的第一凹凸面,所述第一延伸部面向所述第一动凸轮的一面设置为与所述第一凹凸面的凹凸部位配合的第二凹凸面,所述第一凹凸面和所述第二凹凸面的凸部和凹部之间均设置有弧形过渡面,以使所述第一动凸轮与所述第一底座转动相连。
- 根据权利要求29-32任一所述的可穿戴设备,其特征在于,所述锁合组件还包括至少一个止挡组件,所述止挡组件可伸缩地设置在所述腕托上,且所述至少一个止挡组件位于所述锁合沉槽的至少一侧;所述腕托的至少一侧设置有安装所述止挡组件的安装槽,每个所述安装槽靠近所述锁合沉槽的侧壁上均设有与所述锁合沉槽连通的第二开孔;所述止挡组件的第一端穿过所述第二开孔并延伸至所述锁合沉槽内,所述止挡组件的第二端固定在所述安装槽内。
- 根据权利要求37所述的可穿戴设备,其特征在于,所述止挡组件包括顶盖板、挡板、第一弹性件和止挡件,其中,所述挡板固定在所述安装槽内;所述止挡件的第一端穿过所述第二开孔并延伸至所述锁合沉槽内,所述止挡件的第二端套设在所述第一弹性件上;所述第一弹性件的一端套设在所述止挡件位于所述安装槽内的第二端上,所述第一弹性件的另一端抵在所述挡板上;所述顶盖板位于所述安装槽的顶端,并固定在所述腕托上。
- 根据权利要求38所述的可穿戴设备,其特征在于,所述止挡件的第一端为半球形凸起,所述锁合凸起上设置有与所述半球形凸起配合的卡合凹槽;所述半球形凸起滑入所述卡合凹槽内时,所述锁合组件处于锁合状态;所述半球形凸起滑出所述卡合凹槽之外时,所述锁合组件处于解锁状态。
- 根据权利要求38或39所述的可穿戴设备,其特征在于,所述止挡件上设置有向外凸起的止挡部,所述止挡部位于所述安装槽内,且与所述安装槽的侧壁抵接。
- 根据权利要求37-40任一所述的可穿戴设备,其特征在于,所述锁合组件还包括:至少一个压块按钮,所述压块按钮可伸缩地设置在所述腕托朝向所述水平转轴的一面上;在所述水平转轴旋转至压在所述压块按钮上时,所述压块按钮下移且所述压块按钮的底端压在所述止挡组件上,以阻挡所述止挡组件远离所述锁合沉槽移动;在所述水平转轴旋转至从所述压块按钮上移开时,所述压块按钮上移且所述压块按钮的顶端从所述腕托朝向所述水平转轴的一面上向外伸出。
- 根据权利要求41所述的可穿戴设备,其特征在于,所述压块按钮的底端具有楔形面,所述止挡组件上具有可供所述压块按钮的底端伸入的楔形槽,所述楔形槽内具有与所述楔形面配合的倾斜面;所述楔形面用于在所述压块按钮下移时与所述倾斜面配合,以使所述止挡组件朝向所 述锁合沉槽移动;所述倾斜面用于在所述止挡组件远离所述锁合沉槽移动时与所述楔形面配合,以使所述压块按钮上移。
- 根据权利要求41或42所述的可穿戴设备,其特征在于,所述压块按钮的顶端具有呈倾斜状的第一引导面和第二引导面;所述第一引导面用于在所述水平转轴沿第一方向旋转时引导所述水平转轴旋转至所述压块按钮上;所述第二引导面用于在所述水平转轴沿第二方向旋转时引导所述水平转轴旋转至所述压块按钮上;所述第一方向和所述第二方向中的其中一个方向为逆时针方向,另一个为顺时针方向。
- 根据权利要求41-43任一所述的可穿戴设备,其特征在于,所述压块按钮的数量为两个,所述止挡组件的数量为两个,两个所述止挡组件分别位于所述锁合沉槽中的两侧,每个所述压块按钮对应设置一个所述止挡组件。
- 根据权利要求29-44任一所述的可穿戴设备,其特征在于,所述锁合组件还包括:第一磁性件和第二磁性件,所述第一磁性件和所述第二磁性件中的其中一个设置在腕托内,所述第一磁性件和所述第二磁性件中的另一个设在所述竖直转轴上或者设在所述竖直转轴底端设置的第一底座内。
- 根据权利要求1-45任一项所述的可穿戴设备,其特征在于,还包括卡合组件,所述卡合组件固设在所述设备主体的第二端,所述设备主体的第二端通过所述卡合组件与所述腕托的第二端可拆卸连接。
- 根据权利要求1-46任一所述的可穿戴设备,其特征在于,还包括:表带,所述表带与所述腕托转动相连。
- 一种可穿戴系统,其特征在于,包括终端设备和至少一个权利要求1-47任一项所述的可穿戴设备,所述终端设备和所述可穿戴设备通信连接。
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| CN118266693A (zh) * | 2022-12-30 | 2024-07-02 | 华为技术有限公司 | 一种可穿戴设备、电子设备及安装支架 |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2017141220A1 (en) * | 2016-02-19 | 2017-08-24 | Amardeep Singh | A wrist and head mounted camera |
| CN110138930A (zh) * | 2018-09-29 | 2019-08-16 | 广东小天才科技有限公司 | 可取卸式智能主机结构及其智能手表 |
| CN212112144U (zh) * | 2020-06-29 | 2020-12-08 | 深圳市闯一闯科技有限公司 | 一种智能手表旋转结构及智能手表 |
| CN112114514A (zh) * | 2020-09-22 | 2020-12-22 | 瑞声新能源发展(常州)有限公司科教城分公司 | 一种智能手表 |
| CN213517908U (zh) * | 2020-11-03 | 2021-06-22 | 读书郎教育科技有限公司 | 一种纵横转动的智能手表 |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP4813250B2 (ja) * | 2006-05-08 | 2011-11-09 | シチズンホールディングス株式会社 | リバーシブル表示装置 |
| CN210466040U (zh) * | 2019-11-07 | 2020-05-05 | 深圳市英利来科技有限公司 | 一种双旋转手表 |
| CN211349013U (zh) * | 2019-12-09 | 2020-08-25 | 广州誉鑫精密部件有限公司 | 一种可旋转的智能手表翻转机构 |
| CN211698626U (zh) * | 2020-04-20 | 2020-10-16 | 广东小天才科技有限公司 | 一种智能手表 |
| CN211698776U (zh) * | 2020-04-20 | 2020-10-16 | 广东小天才科技有限公司 | 一种转动连接结构、智能主机及智能手表 |
| CN114764221B (zh) * | 2020-12-31 | 2023-11-17 | 华为技术有限公司 | 可穿戴设备及其转动装置 |
-
2022
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Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2017141220A1 (en) * | 2016-02-19 | 2017-08-24 | Amardeep Singh | A wrist and head mounted camera |
| CN110138930A (zh) * | 2018-09-29 | 2019-08-16 | 广东小天才科技有限公司 | 可取卸式智能主机结构及其智能手表 |
| CN212112144U (zh) * | 2020-06-29 | 2020-12-08 | 深圳市闯一闯科技有限公司 | 一种智能手表旋转结构及智能手表 |
| CN112114514A (zh) * | 2020-09-22 | 2020-12-22 | 瑞声新能源发展(常州)有限公司科教城分公司 | 一种智能手表 |
| CN213517908U (zh) * | 2020-11-03 | 2021-06-22 | 读书郎教育科技有限公司 | 一种纵横转动的智能手表 |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP4378346A4 |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119781588A (zh) * | 2025-03-10 | 2025-04-08 | 湖南博匠信息科技有限公司 | 一种基于快拆卸式lrm模块的机箱 |
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