CN213980304U - Double-control lock cylinder with novel clutch structure - Google Patents
Double-control lock cylinder with novel clutch structure Download PDFInfo
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- CN213980304U CN213980304U CN202022543552.0U CN202022543552U CN213980304U CN 213980304 U CN213980304 U CN 213980304U CN 202022543552 U CN202022543552 U CN 202022543552U CN 213980304 U CN213980304 U CN 213980304U
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- 210000003813 thumb Anatomy 0.000 claims abstract description 44
- 238000000926 separation method Methods 0.000 claims abstract description 21
- 238000006073 displacement reaction Methods 0.000 claims abstract description 11
- 230000005540 biological transmission Effects 0.000 claims description 67
- 230000033001 locomotion Effects 0.000 claims description 20
- 238000003780 insertion Methods 0.000 claims description 10
- 230000037431 insertion Effects 0.000 claims description 10
- 230000002093 peripheral effect Effects 0.000 claims description 10
- 230000000694 effects Effects 0.000 claims description 7
- WHXSMMKQMYFTQS-UHFFFAOYSA-N Lithium Chemical compound [Li] WHXSMMKQMYFTQS-UHFFFAOYSA-N 0.000 claims description 4
- 210000001503 joint Anatomy 0.000 claims description 4
- 229910052744 lithium Inorganic materials 0.000 claims description 4
- 238000004891 communication Methods 0.000 claims description 3
- 238000000034 method Methods 0.000 claims 1
- 230000007246 mechanism Effects 0.000 abstract description 10
- 239000011258 core-shell material Substances 0.000 abstract 2
- 238000009434 installation Methods 0.000 description 3
- 238000005034 decoration Methods 0.000 description 2
- 241000238631 Hexapoda Species 0.000 description 1
- 241000425571 Trepanes Species 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000007796 conventional method Methods 0.000 description 1
- 230000001066 destructive effect Effects 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
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- 239000008188 pellet Substances 0.000 description 1
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Abstract
The utility model relates to a two accuse lock cores of new separation and reunion structure, including the outer handle, interior handle, outer handle dabber, interior handle dabber, lock core shell and lock core thumb wheel, set up the thumb wheel mounting groove on the lock core shell and divide first axial mounting hole and the second axial mounting hole of locating thumb wheel mounting groove both sides, the lock core thumb wheel is installed in the thumb wheel mounting groove, interior handle dabber one end and interior handle fixed connection, the other end passes first axial mounting hole and lock core thumb wheel joint, install the commentaries on classics cover in the second axial mounting hole, outer handle dabber one end and outer handle fixed connection, the other end stretches into in the second axial mounting hole with the commentaries on classics cover joint, still include the separation and reunion cover and be used for controlling separation and reunion cover axial displacement in order to let commentaries on classics cover and lock core thumb wheel joint or the first separation and reunion control mechanism and second separation and reunion control mechanism of taking off the outfit. The inner handle can be directly unlocked, clutch control is required only when the outer handle is unlocked, and the lock has the advantages of simple and reliable structure, safety and convenience in use, strong universality and the like.
Description
Technical Field
The utility model relates to a lock core especially relates to a two accuse lock cores of new separation and reunion structure.
Background
The lock core is a main part for controlling the unlocking of the lock, is the heart of the lock, and can realize the opening and closing of the lock by driving the movement of the lock bolt through the rotation of the lock core, so that the structure of the lock core determines the unlocking mode of the lock and the safety performance of the lock.
At present, in the field of door locks, the mechano-electronic double-control lock cylinder is safer and more convenient than the traditional mechanical lock cylinder, so that the mechanical-electronic double-control lock cylinder is popular among consumers and is more and more widely applied.
However, most of the mechatronic double-control lock cylinders in the prior art have the problems of complex clutch structure, poor reliability and the like, and further improvement is needed for the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned prior art not enough, provide a simple and convenient reliable, the safe convenient, the two accuse lock cores of mechano-electronic that the commonality is strong of structure.
The purpose of the utility model is realized through the following technical scheme:
a double-control lock cylinder with a novel clutch structure comprises an outer handle, an inner handle, an outer handle mandrel, an inner handle mandrel, a lock cylinder shell and a lock cylinder thumb wheel, wherein the lock cylinder shell is provided with a thumb wheel mounting groove, a first axial mounting hole and a second axial mounting hole which are respectively arranged on two sides of the thumb wheel mounting groove and axially communicated with the thumb wheel mounting groove, and the lock cylinder thumb wheel is rotatably mounted in the thumb wheel mounting groove; one end of the inner handle mandrel is fixedly connected with the inner handle, the other end of the inner handle mandrel penetrates through the first axial mounting hole to be clamped with the lock cylinder shifting wheel, a rotating sleeve is mounted in the second axial mounting hole, one end of the outer handle mandrel is fixedly connected with the outer handle, and the other end of the outer handle mandrel extends into the second axial mounting hole to be clamped with the rotating sleeve; the lock cylinder shifting wheel is characterized by further comprising a clutch sleeve, the clutch sleeve is circumferentially fixed and axially movably mounted at one end, close to the lock cylinder shifting wheel, of the rotary sleeve, a transmission convex part is arranged on the clutch sleeve, a transmission groove is formed in the lock cylinder shifting wheel, when the transmission convex part moves along the axial direction of the clutch sleeve, close to the lock cylinder shifting wheel, and is clamped into the transmission groove, the rotary sleeve and the lock cylinder shifting wheel are in a joint state, and when the transmission convex part moves along the axial direction of the clutch sleeve, opposite to the lock cylinder shifting wheel, and is separated from the transmission groove, the rotary sleeve and the lock cylinder shifting wheel are in a separation state; the clutch device comprises a lock cylinder rotor arranged in the rotating sleeve, and the lock cylinder rotor can generate axial displacement and drive the clutch sleeve to axially move according to the insertion rotation operation of an external key matched with the lock cylinder rotor.
Furthermore, the transmission assembly comprises a first rotating shaft, a second rotating shaft and a clutch deflector rod which are sequentially arranged along the axial direction, the first rotating shaft and the second rotating shaft are both arranged in the inner handle mandrel, one end of the first rotating shaft is connected with the output end of the motor, the other end of the first rotating shaft is axially provided with a transmission chute, one end of the second rotating shaft is provided with a transmission rod part which extends into the transmission chute and is in circumferential transmission axial sliding fit with the transmission chute, the other end of the second rotating shaft is in axial transmission fit with one end of the clutch deflector rod, the other end of the clutch deflector rod is in axial transmission fit with the clutch sleeve, the outer wall of the second rotating shaft is circumferentially provided with a first spiral groove, the inner handle mandrel is provided with a first limiting pin which extends into the first spiral groove, the rotary motion of the second rotating shaft can generate axial displacement under the matching action of the first spiral groove and the first limiting pin, and then the clutch sleeve is driven by the clutch deflector rod to do axial clutch motion, the transmission assembly further comprises a first spring which is sleeved on the clutch shift lever, one end of the first spring abuts against the second rotating shaft, and the other end of the first spring abuts against the clutch sleeve.
Furthermore, one end of the clutch driving lever, which is in axial transmission fit with the clutch sleeve, penetrates through the clutch sleeve and is provided with a first convex shoulder, a first stopping step is convexly arranged on the inner wall of one end, which is far away from the first convex shoulder, of the clutch sleeve, and a second spring is abutted between the first convex shoulder and the first stopping step.
Furthermore, one side of the first convex shoulder, which is back to the clutch sleeve, is in abutting fit with the inner end of the lock cylinder rotor, a second convex shoulder is arranged at one end of the clutch shift lever, which is in axial transmission fit with the second rotating shaft, an opening sliding groove for the second convex shoulder to be embedded and capable of axially sliding in is arranged at one end of the second rotating shaft, which is in axial transmission fit with the clutch shift lever, and a second stopping step which is in abutting fit with the second convex shoulder is formed at the axial outer end of the opening sliding groove.
Furthermore, a second spiral groove is hollowed in the peripheral wall of the rotating sleeve, a second limiting pin extending into the second spiral groove is arranged on the lock cylinder rotor, and the rotating motion of the lock cylinder rotor can generate axial displacement under the matching action of the second limiting pin and the second spiral groove so as to drive the clutch sleeve to perform axial clutch motion through the clutch deflector rod.
Furthermore, a key slot is axially arranged on the lock cylinder rotor, the spindle of the outer handle axially penetrates through the outer handle, a key insertion hole which axially penetrates through the spindle of the outer handle and is communicated with the key slot is formed in the spindle of the outer handle, and the outer end of the outer handle is detachably connected with a decorative cover which is used for covering and hiding the inlet end of the key insertion hole.
Further, the outer end of outer handle is equipped with a lug seat respectively in radial both sides, all articulates in each lug seat has a movable buckle, the buckling parts of activity buckle expose in the lug seat, the dorsad of activity buckle one side butt joint of buckling parts has and is used for making the buckling parts keeps the third spring that exposes the trend, the dress trim cover have towards the open trepanning of outer handle, the dress trim cover passes through trepanning overcoat in on the outer end of outer handle and two lug seats, be equipped with the catching groove that the buckling parts of the activity buckle that supplies to correspond buckled respectively on the both sides wall of trepanning.
Furthermore, the outer handle is slidably sleeved on the outer handle mandrel, a first positioning long groove is formed in the outer wall of the outer handle mandrel along the axial direction, a first screw hole is radially formed in the peripheral wall of the outer handle, and the first screw hole is fixedly connected with any position of the first positioning long groove through a first locking screw; the inner handle is in sliding fit with the inner handle mandrel in a sliding mode, a second positioning long groove is formed in the outer wall of the inner handle mandrel in the axial direction, a second screw hole is radially formed in the peripheral wall of the inner handle, and the second screw hole is fixedly connected with any position of the second positioning long groove through a second locking screw.
Furthermore, a main control board used for controlling the motor, a lithium battery electrically connected with the main control board and a charging board are arranged in the inner handle, a charging interface exposed out of the inner handle is arranged on the charging board, and a Bluetooth module in communication connection with an external mobile terminal is arranged on the main control board.
Furthermore, an open slot facing the opening of the lock cylinder shifting wheel is arranged on the peripheral wall of one end of the rotating sleeve close to the lock cylinder shifting wheel, and a transmission convex part of the clutch sleeve is embedded into the open slot and can axially slide in the open slot.
Compared with the prior art, the utility model discloses following beneficial effect has:
1) the utility model discloses in, the interior handle can directly be unblanked, need not carry out clutch control, and only when the outer handle operation of unblanking, just need carry out clutch control to the clutch control structure of lock core has been simplified greatly, has also made things convenient for the use simultaneously.
2) The utility model discloses a first separation and reunion control mechanism and second separation and reunion control mechanism arrange in the lock core along the axial, and two separation and reunion control mechanisms all control the separation and reunion through circumference rotary motion pivot to linear motion's mode, consequently not only can the inside finite space of rational utilization lock core, make lock core compact structure, small in size, but also can improve driven reliability.
3) The utility model discloses all set up two separation and reunion control mechanism and main control board in lock core casing and interior handle, because lock core casing and interior handle are located a body inside and inboard respectively when the lock core installation is used, consequently can prevent that lawless persons from unblanking through destructive means from the external side of door, improve the security of using then.
4) The utility model discloses in, the axial position of outer handle and interior handle is adjustable to make the installation user demand that this lock core is applicable in the door plant of various different thickness specifications, improve the application scope of lock core then, the commonality is strong.
Drawings
Fig. 1 is a schematic perspective view of the dual-control lock cylinder of the present invention.
Fig. 2 is a schematic cross-sectional view of the dual-control lock cylinder of the present invention.
Fig. 3 is an enlarged schematic view of a in fig. 2.
Fig. 4 is an exploded schematic view of the dual-control lock cylinder of the present invention.
Fig. 5 is a schematic view of the internal structure of the dual-control lock cylinder of the present invention.
Fig. 6 is a schematic view of the assembly and disassembly of the lock cylinder thumb wheel, the clutch sleeve and the rotating sleeve.
Fig. 7 is a schematic view illustrating the transmission of the first rotating shaft, the second rotating shaft, the clutch shift lever and the clutch sleeve according to the present invention.
Fig. 8 is an exploded view of the inner handle of the present invention.
Fig. 9 is a schematic top view of the dual-control lock cylinder of the present invention.
Fig. 10 is a schematic cross-sectional view of B-B in fig. 9.
Fig. 11 is an exploded view of the mounting of the decorative cover of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments shown in the drawings.
As shown in fig. 1 to 11, the embodiment of the present invention provides a dual-control lock cylinder with a new clutch structure, which includes an outer handle 1, an inner handle 2, an outer handle core shaft 3, an inner handle core shaft 4, a lock cylinder housing 5 and a lock cylinder thumb wheel 6. The lock cylinder shell 5 is provided with a thumb wheel mounting groove 501, a first axial mounting hole 502 and a second axial mounting hole 503 which are respectively arranged on two sides of the thumb wheel mounting groove 501 and axially run through the thumb wheel mounting groove 501, and the lock cylinder thumb wheel 6 is rotatably mounted in the thumb wheel mounting groove 501. One end of the inner handle mandrel 4 is fixedly connected with the inner handle 2, the other end of the inner handle mandrel passes through the first axial mounting hole 502 to be clamped with the lock cylinder shifting wheel 6, the rotating sleeve 7 is mounted in the second axial mounting hole 503, one end of the outer handle mandrel 3 is fixedly connected with the outer handle 1, and the other end of the outer handle mandrel extends into the second axial mounting hole 503 to be clamped with the rotating sleeve 7.
The double-control lock core also comprises a clutch sleeve 8, and the clutch sleeve 8 is circumferentially fixed and axially movably arranged at one end of the rotating sleeve 7 close to the lock core thumb wheel 6. The clutch sleeve 8 is provided with a transmission convex part 801, and the lock cylinder thumb wheel 6 is provided with a transmission groove 601. When the transmission convex part 801 is clamped into the transmission groove 601 by moving the clutch sleeve 8 towards the axial direction of the lock cylinder thumb wheel, the rotating sleeve 7 and the lock cylinder thumb wheel 6 are in a joint state, and at the moment, the lock cylinder thumb wheel 6 can be driven to carry out unlocking action by rotating the outer handle 1. When the transmission convex part 801 moves along the axial direction of the clutch sleeve 8 back to the lock cylinder thumb wheel 6 and is separated from the transmission groove 601, the rotating sleeve 7 and the lock cylinder thumb wheel 6 are in a disengaging state, and at the moment, the rotating outer handle 1 cannot drive the lock cylinder thumb wheel 6 to carry out unlocking action.
In a specific embodiment of the utility model, be equipped with on the one end perisporium that is close to lock core thumb wheel 6 of rotating sleeve 7 and face towards the open slot 71 of lock core thumb wheel 6, separation and reunion cover 8's transmission convex part 801 embedding open slot 71 and can be in it axial slip to make separation and reunion cover 8 circumference fixed and axially movably install the one end that is close to lock core thumb wheel 6 at rotating sleeve 7, in other words, separation and reunion cover 8 can be along open slot 71 axial displacement on rotating sleeve 7, and the rotary motion of rotating sleeve 7 simultaneously can drive separation and reunion cover 8 and rotate thereupon.
The double-control lock core further comprises a first clutch control mechanism and a second clutch control mechanism which are used for controlling the clutch sleeve 8 to axially move so as to enable the rotary sleeve 7 to be connected with or disconnected from the lock core thumb wheel 6, the first clutch control mechanism comprises a motor 9 arranged in the inner handle mandrel 4 and a transmission component 10 in transmission connection with the motor 9, the rotary motion of the motor 9 can drive the clutch sleeve 8 to axially move through the transmission component 10, the second clutch control mechanism comprises a lock core rotor 11 arranged in the rotary sleeve 7, and the lock core rotor 11 can generate axial displacement and drive the clutch sleeve 8 to axially move according to the insertion and rotation operation of an external key matched with the lock core rotor 11.
Specifically, the transmission assembly 10 includes a first rotation shaft 101, a second rotation shaft 102 and a clutch shift lever 103 sequentially arranged along an axial direction, the first rotation shaft 101 and the second rotation shaft 102 are both disposed in the inner handle spindle 4, one end of the first rotation shaft 101 is connected to an output end of the motor 9, the other end is axially provided with a transmission chute 1011, one end of the second rotation shaft 102 is provided with a transmission rod portion 1021 extending into the transmission chute 1011 and axially slidably engaged with the transmission chute in a circumferential direction, the other end is axially engaged with one end of the clutch shift lever 103, the other end of the clutch shift lever 103 is axially engaged with the clutch sleeve 8, the outer wall of the second rotation shaft 102 is provided with a first spiral groove 1022 in the circumferential direction, the inner handle spindle 4 is provided with a first limit pin 401 extending into the first spiral groove 1022, the rotational motion of the second rotation shaft 102 can generate axial displacement under the engagement of the first spiral groove 1022 and the first limit pin 401, and then the clutch shift lever 103 drives the clutch sleeve 8 to perform axial clutch motion, the transmission assembly 10 further includes a first spring 104 sleeved on the clutch shift lever 103, and one end of the first spring abuts against the second rotating shaft 102, and the other end of the first spring abuts against the clutch sleeve 8.
In a specific embodiment of the present invention, in order to realize the circumferential transmission axial sliding fit between the transmission rod portion 1021 and the transmission chute 1011, the transmission chute 1011 is a square groove, and the transmission rod portion 1021 is a square rod body adapted to the square groove, so that on the one hand, the rotation motion of the first rotating shaft 101 can drive the second rotating shaft 102 to rotate therewith, and on the other hand, the second rotating shaft 102 can move axially relative to the first rotating shaft 101.
The utility model discloses in, separation and reunion driving lever 103 pass separation and reunion cover 8 and be equipped with first convex shoulder 1031 with 8 axial transmission complex one ends of separation and reunion cover, and the one end inner wall epirelief of keeping away from first convex shoulder 1031 of separation and reunion cover 8 is equipped with first backstop step 802, and the butt has second spring 12 between first convex shoulder 1031 and the first backstop step 802.
Further, one side of the first protruding shoulder 1031 facing away from the clutch sleeve 8 abuts against and is matched with the inner end of the lock cylinder rotor 11, one end of the clutch shift lever 103, which is in axial transmission fit with the second rotating shaft 102, is provided with a second protruding shoulder 1032, one end of the second rotating shaft 102, which is in axial transmission fit with the clutch shift lever 103, is provided with an opening sliding groove 1023, which is embedded by the second protruding shoulder 1032 and can axially slide in the opening sliding groove 1023, and a second stopping step 1024 which abuts against and is matched with the second protruding shoulder 1032 is formed at the axial outer end of the opening sliding groove 1023.
Furthermore, a second spiral groove 701 is hollowed in the peripheral wall of the rotating sleeve 7, a second limit pin 111 extending into the second spiral groove 701 is arranged on the lock cylinder rotor 11, and the rotational motion of the lock cylinder rotor 11 can be axially displaced under the matching action of the second limit pin 111 and the second spiral groove 701, so that the clutch sleeve 8 is driven by the clutch shift lever 103 to perform axial clutch motion.
The utility model discloses in, be equipped with key slot 112 along the axial on the lock core rotor 11, the 3 axial of outer handle dabber runs through in outer handle 1, is equipped with on the outer handle dabber 3 and runs through outer handle dabber and with the communicating key patchhole 301 of key slot 112 along the axial, during the mechanical unlocking operation, the key slot 112 on the lock core rotor 11 is inserted from key patchhole 301 to outside key. In addition, the outer end of the outer handle 1 is detachably connected with a decorative cover 13 which is used for covering and hiding the inlet end of the key insertion hole 301, when the lock is not unlocked usually, the decorative cover 13 covers and hides the inlet end of the key insertion hole 301, so that foreign matters such as dust and insects can be prevented from entering, a curiosity person or a thief can be prevented from maliciously picking the lock, meanwhile, the appearance is ensured, and when the key is required to be inserted for unlocking, the decorative cover 13 is opened.
The utility model discloses in, the outer end of outer handle 1 is equipped with a lug seat 14 respectively in radial both sides, it has a movable buckle 15 all to articulate in each lug seat 14, the buckling parts 151 of movable buckle 15 expose in lug seat 14, one side butt joint of the buckling parts 151 dorsad of movable buckle 15 is used for making buckling parts 151 keep the third spring 16 who exposes the trend, dress trim cover 13 has the open trepanning 131 of face outside handle 1, dress trim cover 13 overlaps on outer end and two lug seats 14 of outer handle 1 through trepanning 131, be equipped with respectively on the both sides wall of trepanning 131 and supply the catching groove 1311, 1312 that the buckling parts 151 of corresponding movable buckle 15 buckled into. When the decoration cover 13 needs to be opened, the decoration cover 13 is pulled out in the axial direction, so that the fastening portions 151 of the movable fasteners 15 on both sides of the outer handle 1 are pulled out of the fastening grooves 1311, 1312 on both side walls of the trepan boring 131.
In the utility model, the outer handle 1 is slidably sleeved on the outer handle mandrel 3, the outer wall of the outer handle mandrel 3 is provided with a first positioning long groove 302 along the axial direction, the peripheral wall of the outer handle 1 is radially provided with a first screw hole 161, and the first screw hole 161 is fixedly connected with any position of the first positioning long groove 302 through a first locking screw 17; the inner handle 2 is slidably sleeved on the inner handle mandrel 4, a second positioning long groove 402 is axially formed in the outer wall of the inner handle mandrel 4, a second screw hole 201 is radially formed in the peripheral wall of the inner handle 2, and the second screw hole 201 is fixedly connected with any position of the second positioning long groove 402 through a second locking screw 18. This structure makes the utility model discloses an outer handle 1 and inner handle 2's axial position is adjustable, during specific adjustment, loosens first locking screw 17 or second locking screw 18 earlier, then corresponding outer handle 1 or inner handle 2 removal to required position, after that lock first locking screw 17 or second locking screw 18 to first location elongated slot 302 or second location elongated slot 402 corresponding position can, thereby make the utility model discloses an it is applicable in the installation user demand of the door plant of various different thickness specifications to control the lock core.
The utility model discloses in, be equipped with the main control board 19 that is used for controlling motor 9 in the interior handle 2, with 19 electric connection's of main control board lithium cell 20 and charging panel 21, be equipped with on the charging panel 21 and expose in the interface 211 that charges of interior handle 2, be equipped with on the main control board 19 with outside mobile terminal communication connection's bluetooth module, outside mobile terminal specifically can be the cell-phone, during the operation of electron unblanking, send control signal to main control board 19 through the cell-phone, and then the corresponding operation of controlling motor 9.
The utility model discloses two accuse lock cores are because 4 one ends of interior handle dabber and 2 fixed connection of interior handle, the other end and the 6 joints of lock core thumb wheel, so when unblanking in the door, only need rotatory interior handle 2, can drive the action of unblanking of lock core thumb wheel 6 through interior handle dabber 4.
The utility model discloses two accuse lock cores when unblanking outdoors, have the electron and unblank and mechanically unblank two kinds of modes of unblanking, specifically as follows:
when the electronic lock is unlocked, a control signal can be sent to the main control board 19 through a mobile phone connected with the main control board 19 through bluetooth, so that the motor 9 is controlled to drive the first rotating shaft 101 and the second rotating shaft 102 to rotate clockwise, the clockwise rotation of the second rotating shaft 102 can drive the clutch shift lever 103 to axially displace in a direction close to the first rotating shaft 101 under the matching action of the first spiral groove 1022 and the first limit pin 401, then the axial displacement of the clutch shift lever 103 in the direction drives the clutch sleeve 8 to displace along with the first limit stop step 802 through the pressing of the first shoulder 1031 on the second spring 12 and the first limit stop step 802, and a part of the transmission convex part 801 on the clutch sleeve 8 is clamped into the transmission groove 601 of the lock cylinder dial wheel 6, and the other part is kept in the open slot 71 of the rotary sleeve 7, so that the rotary sleeve 7 and the lock cylinder dial wheel 6 are in a joint state, and at the moment, the outer handle 1 can be rotated sequentially through the outer handle spindle 3, The rotating sleeve 7 and the clutch sleeve 8 drive the lock cylinder shifting wheel 6 to carry out unlocking action.
When the lock is mechanically unlocked, the decorative cover 13 on the outer handle 1 is opened, then a key is inserted into the key slot 112 on the lock cylinder rotor 11 from the key insertion hole 301, so that the limit stop component 113 on the lock cylinder rotor 11 is disengaged from the preset limit groove on the inner wall of the rotating sleeve 7, the lock cylinder rotor 11 is in a state of circumferential rotation and axial movement, then the lock cylinder rotor 11 is driven to rotate through the clockwise rotation operation of the key, the rotation motion of the lock cylinder rotor 11 can be axially displaced towards the direction close to the lock cylinder thumb wheel 6 under the cooperation effect of the second limit pin 111 and the second spiral groove 701, and the clutch shift lever 103 is propped against to drive the clutch sleeve 8 to displace along with the second spring 12 and the first stop step 802 through the first shoulder 1031, so that one part of the transmission convex part 801 on the clutch sleeve 8 is clamped into the transmission groove 601 of the lock cylinder thumb wheel 6, and the other part is kept in the opening groove 71 of the rotating sleeve 7, and then the rotating sleeve 7 and the lock cylinder thumb wheel 6 are in a joint state, and the lock cylinder thumb wheel 6 is driven to carry out unlocking action by rotating the outer handle 1 through the outer handle mandrel 3, the rotating sleeve 7 and the clutch sleeve 8 in sequence.
The utility model discloses in, spacing backstop subassembly 113 on the lock core rotor 11 include the bullet group and with bullet group complex pellet shot from a slingshot spring group and spacing backstop piece, this is conventional technique, so the utility model discloses no longer detailed description.
The above mentioned embodiments are only preferred embodiments of the present invention, and the scope of the present invention can not be limited thereby, and all the simple equivalent changes and modifications made according to the claims and the description of the present invention are still included in the scope of the present invention.
Claims (10)
1. A double-control lock cylinder with a novel clutch structure comprises an outer handle, an inner handle, an outer handle mandrel, an inner handle mandrel, a lock cylinder shell and a lock cylinder thumb wheel, wherein the lock cylinder shell is provided with a thumb wheel mounting groove, a first axial mounting hole and a second axial mounting hole which are respectively arranged on two sides of the thumb wheel mounting groove and axially communicated with the thumb wheel mounting groove, and the lock cylinder thumb wheel is rotatably mounted in the thumb wheel mounting groove; the method is characterized in that:
one end of the inner handle mandrel is fixedly connected with the inner handle, the other end of the inner handle mandrel penetrates through the first axial mounting hole to be clamped with the lock cylinder shifting wheel, a rotating sleeve is mounted in the second axial mounting hole, one end of the outer handle mandrel is fixedly connected with the outer handle, and the other end of the outer handle mandrel extends into the second axial mounting hole to be clamped with the rotating sleeve;
the lock cylinder shifting wheel is characterized by further comprising a clutch sleeve, the clutch sleeve is circumferentially fixed and axially movably mounted at one end, close to the lock cylinder shifting wheel, of the rotary sleeve, a transmission convex part is arranged on the clutch sleeve, a transmission groove is formed in the lock cylinder shifting wheel, when the transmission convex part moves along the axial direction of the clutch sleeve, close to the lock cylinder shifting wheel, and is clamped into the transmission groove, the rotary sleeve and the lock cylinder shifting wheel are in a joint state, and when the transmission convex part moves along the axial direction of the clutch sleeve, opposite to the lock cylinder shifting wheel, and is separated from the transmission groove, the rotary sleeve and the lock cylinder shifting wheel are in a separation state;
the clutch device comprises a lock cylinder rotor arranged in the rotating sleeve, and the lock cylinder rotor can generate axial displacement and drive the clutch sleeve to axially move according to the insertion rotation operation of an external key matched with the lock cylinder rotor.
2. The double-control lock cylinder with the novel clutch structure is characterized in that: the transmission assembly comprises a first rotating shaft, a second rotating shaft and a clutch deflector rod which are sequentially arranged along the axial direction, the first rotating shaft and the second rotating shaft are both arranged in the inner handle mandrel, one end of the first rotating shaft is connected with the output end of the motor, the other end of the first rotating shaft is axially provided with a transmission chute, one end of the second rotating shaft is provided with a transmission rod part which extends into the transmission chute and is in circumferential transmission axial sliding fit with the transmission chute, the other end of the second rotating shaft is in axial transmission fit with one end of the clutch deflector rod, the other end of the clutch deflector rod is in axial transmission fit with the clutch sleeve, the outer wall of the second rotating shaft is circumferentially provided with a first spiral groove, the inner handle mandrel is provided with a first limiting pin which extends into the first spiral groove, the rotary motion of the second rotating shaft can generate axial displacement under the matching action of the first spiral groove and the first limiting pin, and then the clutch sleeve is driven by the clutch deflector rod to perform axial clutch motion, the transmission assembly further comprises a first spring which is sleeved on the clutch shift lever, one end of the first spring abuts against the second rotating shaft, and the other end of the first spring abuts against the clutch sleeve.
3. The double-control lock cylinder with the novel clutch structure as claimed in claim 2, characterized in that: one end of the clutch driving lever, which is in axial transmission fit with the clutch sleeve, penetrates through the clutch sleeve and is provided with a first convex shoulder, a first stopping step is convexly arranged on the inner wall of one end, which is far away from the first convex shoulder, of the clutch sleeve, and a second spring is abutted between the first convex shoulder and the first stopping step.
4. The double-control lock cylinder with the novel clutch structure as claimed in claim 3, wherein: one side of the first convex shoulder, which is back to the clutch sleeve, is in abutting fit with the inner end of the lock cylinder rotor, a second convex shoulder is arranged at one end of the clutch shift lever, which is in axial transmission fit with the second rotating shaft, an opening sliding groove is arranged at one end of the second rotating shaft, which is in axial transmission fit with the clutch shift lever, and the second convex shoulder is embedded into the opening sliding groove and can axially slide in the opening sliding groove, and a second stopping step which is in abutting fit with the second convex shoulder is formed at the axial outer end of the opening sliding groove.
5. The double-control lock cylinder with the novel clutch structure is characterized in that: a second spiral groove is hollowed in the peripheral wall of the rotating sleeve, a second limiting pin extending into the second spiral groove is arranged on the lock cylinder rotor, and the rotating motion of the lock cylinder rotor can generate axial displacement under the matching action of the second limiting pin and the second spiral groove so as to drive the clutch sleeve to perform axial clutch motion through the clutch deflector rod.
6. The double-control lock cylinder with the novel clutch structure as claimed in claim 1, 2, 3, 4 or 5, wherein: the lock core rotor is provided with a key slot along the axial direction, the outer handle mandrel axially penetrates through the outer handle, the outer handle mandrel is provided with a key insertion hole which axially penetrates through the outer handle mandrel and is communicated with the key slot, and the outer end of the outer handle is detachably connected with a decorative cover which is used for covering and hiding the inlet end of the key insertion hole.
7. The double-control lock cylinder with the novel clutch structure is characterized in that: the outer end of outer handle is equipped with a lug seat respectively in radial both sides, all articulates in each lug seat has a movable buckle, the buckling parts of activity buckle expose in the lug seat, the dorsad of activity buckle one side butt joint of buckling parts has and is used for making the buckling parts keeps the third spring that exposes the trend, the dress trim cover have towards the open trepanning of outer handle, the dress trim cover passes through trepanning overcoat in on the outer end of outer handle and two lug seats, be equipped with the catching groove that the buckling parts that supply the activity buckle that corresponds were buckled respectively on the both sides wall of trepanning.
8. The double-control lock cylinder with the novel clutch structure as claimed in claim 1, 2, 3, 4 or 5, wherein: the outer handle is sleeved on the outer handle mandrel in a sliding manner, a first positioning long groove is formed in the outer wall of the outer handle mandrel along the axial direction, a first screw hole is formed in the circumferential wall of the outer handle in the radial direction, and the first screw hole is fixedly connected with any position of the first positioning long groove through a first locking screw; the inner handle is in sliding fit with the inner handle mandrel in a sliding mode, a second positioning long groove is formed in the outer wall of the inner handle mandrel in the axial direction, a second screw hole is radially formed in the peripheral wall of the inner handle, and the second screw hole is fixedly connected with any position of the second positioning long groove through a second locking screw.
9. The double-control lock cylinder with the novel clutch structure as claimed in claim 1, 2, 3, 4 or 5, wherein: the charging device comprises an inner handle and an outer handle, wherein a main control board used for controlling the motor, a lithium battery and a charging board are arranged in the inner handle, the lithium battery and the charging board are electrically connected with the main control board, a charging interface exposed out of the inner handle is arranged on the charging board, and a Bluetooth module in communication connection with an external mobile terminal is arranged on the main control board.
10. The double-control lock cylinder with the novel clutch structure as claimed in claim 1, 2, 3, 4 or 5, wherein: an open slot facing the opening of the lock cylinder shifting wheel is arranged on the peripheral wall of one end of the rotating sleeve close to the lock cylinder shifting wheel, and a transmission convex part of the clutch sleeve is embedded into the open slot and can axially slide in the open slot.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022543552.0U CN213980304U (en) | 2020-11-06 | 2020-11-06 | Double-control lock cylinder with novel clutch structure |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022543552.0U CN213980304U (en) | 2020-11-06 | 2020-11-06 | Double-control lock cylinder with novel clutch structure |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN213980304U true CN213980304U (en) | 2021-08-17 |
Family
ID=77261286
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202022543552.0U Withdrawn - After Issue CN213980304U (en) | 2020-11-06 | 2020-11-06 | Double-control lock cylinder with novel clutch structure |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN213980304U (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112282512A (en) * | 2020-11-06 | 2021-01-29 | 杭州小安物联科技有限公司 | Double-control lock cylinder with novel clutch structure |
| CN119641170A (en) * | 2024-11-26 | 2025-03-18 | 深圳市迈悍德实业有限公司 | Dual-system clutch mechanism and intelligent lock |
-
2020
- 2020-11-06 CN CN202022543552.0U patent/CN213980304U/en not_active Withdrawn - After Issue
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112282512A (en) * | 2020-11-06 | 2021-01-29 | 杭州小安物联科技有限公司 | Double-control lock cylinder with novel clutch structure |
| CN112282512B (en) * | 2020-11-06 | 2024-07-12 | 杭州小安物联科技有限公司 | Novel clutch structure double-control lock cylinder |
| CN119641170A (en) * | 2024-11-26 | 2025-03-18 | 深圳市迈悍德实业有限公司 | Dual-system clutch mechanism and intelligent lock |
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Granted publication date: 20210817 Effective date of abandoning: 20240712 |