WO2022001932A1 - 喷雾器及储存装置 - Google Patents
喷雾器及储存装置 Download PDFInfo
- Publication number
- WO2022001932A1 WO2022001932A1 PCT/CN2021/102677 CN2021102677W WO2022001932A1 WO 2022001932 A1 WO2022001932 A1 WO 2022001932A1 CN 2021102677 W CN2021102677 W CN 2021102677W WO 2022001932 A1 WO2022001932 A1 WO 2022001932A1
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- WIPO (PCT)
- Prior art keywords
- module
- progressive
- locking
- box body
- rotating
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- Ceased
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0065—Inhalators with dosage or measuring devices
- A61M15/0068—Indicating or counting the number of dispensed doses or of remaining doses
- A61M15/0081—Locking means
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M11/00—Sprayers or atomisers specially adapted for therapeutic purposes
- A61M11/006—Sprayers or atomisers specially adapted for therapeutic purposes operated by applying mechanical pressure to the liquid to be sprayed or atomised
- A61M11/007—Syringe-type or piston-type sprayers or atomisers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0028—Inhalators using prepacked dosages, one for each application, e.g. capsules to be perforated or broken-up
- A61M15/003—Inhalators using prepacked dosages, one for each application, e.g. capsules to be perforated or broken-up using capsules, e.g. to be perforated or broken-up
- A61M15/0033—Details of the piercing or cutting means
- A61M15/0035—Piercing means
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0065—Inhalators with dosage or measuring devices
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0065—Inhalators with dosage or measuring devices
- A61M15/0068—Indicating or counting the number of dispensed doses or of remaining doses
- A61M15/007—Mechanical counters
- A61M15/0071—Mechanical counters having a display or indicator
- A61M15/0073—Mechanical counters having a display or indicator on a ring
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B11/00—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
- B05B11/01—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
- B05B11/10—Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
- B05B11/1042—Components or details
- B05B11/108—Means for counting the number of dispensing strokes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B11/00—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
- B05B11/01—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
- B05B11/10—Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
- B05B11/109—Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle the dispensing stroke being affected by the stored energy of a spring
- B05B11/1091—Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle the dispensing stroke being affected by the stored energy of a spring being first hold in a loaded state by locking means or the like, then released
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0001—Details of inhalators; Constructional features thereof
- A61M15/0021—Mouthpieces therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0028—Inhalators using prepacked dosages, one for each application, e.g. capsules to be perforated or broken-up
- A61M15/003—Inhalators using prepacked dosages, one for each application, e.g. capsules to be perforated or broken-up using capsules, e.g. to be perforated or broken-up
- A61M15/0033—Details of the piercing or cutting means
- A61M15/0041—Details of the piercing or cutting means with movable piercing or cutting means
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2202/00—Special media to be introduced, removed or treated
- A61M2202/04—Liquids
- A61M2202/0468—Liquids non-physiological
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/12—General characteristics of the apparatus with interchangeable cassettes forming partially or totally the fluid circuit
- A61M2205/121—General characteristics of the apparatus with interchangeable cassettes forming partially or totally the fluid circuit interface between cassette and base
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/12—General characteristics of the apparatus with interchangeable cassettes forming partially or totally the fluid circuit
- A61M2205/123—General characteristics of the apparatus with interchangeable cassettes forming partially or totally the fluid circuit with incorporated reservoirs
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/27—General characteristics of the apparatus preventing use
- A61M2205/276—General characteristics of the apparatus preventing use preventing unwanted use
Definitions
- the present invention relates to a sprayer, in particular to a sprayer and a storage device with a limited number of operations.
- the interior of the existing sprayer can be used to install a replaceable container bottle, and the existing sprayer can atomize the liquid in the container bottle through its structural design.
- the existing nebulizers do not have any precise mechanism to limit the number of times of use thereof, so that the existing nebulizers may be inadvertently operated by the user to an unreasonable number of times.
- the purpose of the embodiments of the present invention is to provide a sprayer and a storage device, which can effectively improve the possible defects of the existing sprayer.
- the embodiment of the present invention discloses a sprayer, which includes a casing defining a rotation axis; an atomization module, which is fixed in the casing and located on the rotation axis; an activation module is mounted on the casing; a rotation module includes: a A rotating mechanism is inserted into the casing and is rotatably installed on the casing with the axis of rotation as the axis; and a cover body is installed on the rotating mechanism to form an inner space together with the casing; The inner bottom of the container; a linkage module is installed on the rotation module, and the linkage module is used to configure a container bottle; wherein, the rotation module can be rotated by a preset angle to drive the linkage module, so that the linkage module can be pressed in the The casing moves from an initial position to a position to be activated along the rotation axis, and is then limited to the activation module; wherein, when the linkage module is in the position to be activated, the activation module can be pressed to release and
- the triggering mechanism comprises: a rotating member; and a progressive member, connected to the rotating member, and the rotating member can drive the progressive member to move by rotating; wherein, when the atomizer completes a preset number of atomization operations, the progressive member Driven by the rotating member until the locking mechanism is pushed, so that the locking mechanism is moved toward the housing and limited.
- the locking module includes a box body for connecting the bottle bottom of the container bottle; wherein, the box body is formed with an opening located on the action path of the locking mechanism, and the trigger mechanism is installed in the box body; wherein, when the sprayer completes the preset During several atomization operations, the progressive piece is driven by the rotating piece until the opening is closed and the locking mechanism is pushed.
- the housing is formed with a locking groove
- the locking mechanism includes: an elastic member disposed in the locking groove; and a locking lever having a rod body and a protrusion extending from the rod body; wherein, the position of the rod body corresponds to the opening, The position of the protruding portion corresponds to the locking groove; wherein, when the sprayer completes a preset number of atomization operations, the rod body is pushed by the progressive piece, so that the protruding portion moves into the locking groove and is pressed against the elastic piece.
- the locking module includes a box body for connecting the bottle bottom of the container bottle;
- the trigger mechanism is installed in the box body and includes a driving part
- the rotating part includes: a screw rod, which is pivotally connected to the box body; wherein, the progressive part It is slidably arranged on the box body and is screwed to the screw rod; and a plurality of teeth are located on the screw rod; wherein, when the sprayer completes one atomization operation, the driving member can be pressed and moved by the pushing member, so as to drive at least one tooth to move.
- the screw is rotated, which in turn drives the movement of the progressive piece.
- the driving member includes: a disc body; a spring, abutting against the box body and the disc body, and the spring tends to push the disc body to the bottom of the box body; and a toggle hook formed on the disc body and positioned corresponding to At least one tooth; wherein, when the sprayer completes one atomization operation, the disc body can move back and forth in the box body once through the pusher and the spring, so that the hook drives the at least one tooth to rotate the screw.
- the locking module includes a box body for connecting the bottle bottom of the container bottle; the trigger mechanism is installed in the box body, and the rotating member includes a turntable whose position corresponds to the pushing member and a stud formed upright on the turntable. ;
- the progressive piece includes: a progressive disc, screwed on the stud, and the turntable can be rotated by the pressing of the pusher, so as to drive the progressive disc to move along the stud; and a progressive rod, slidably arranged on the box body The top, and the progressive rod and the progressive disc are set apart; wherein, when the sprayer completes the preset number of atomization operations, the progressive disc is driven by the rotating member until the progressive rod is pushed, so that the progressive rod pushes the locking mechanism to move toward the housing and is limited. bit.
- a limit structure is formed on the inner side wall of the box body, and a first height of the limit structure relative to the bottom of the box body is lower than a second height of the stud relative to the bottom of the box body;
- the progressive disc driven by the turntable is limited by the limiting structure and cannot rotate, and can only move in a straight line along the stud;
- the progressive disc can Driven by the turntable to rotate together to push the progressive rod.
- the embodiment of the present invention also discloses a storage device, which includes: a container bottle; and a locking module, including: a box body connected to the bottom of the container bottle, and the box body is formed with an opening; and a trigger mechanism, installed inside the box, and the trigger mechanism includes a rotating piece; and a progressive piece connected to the rotating piece, and the rotating piece can drive the progressive piece to move toward the opening by rotating; wherein, when the rotating piece rotates a preset number of times, the progressive piece Driven by the rotating member until the opening is closed.
- the box body is inseparably fixed to the bottom of the container bottle.
- the sprayer disclosed in the embodiments of the present invention is matched with the housing and the rotation module through the structural design of the locking module, so that the sprayer can complete all the preset times of the sprayer. After the atomization operation, the rotation of the rotation module is restricted by the locking module, so that the sprayer cannot continue to use the container bottle installed therein.
- FIG. 1 is a schematic perspective view of a sprayer according to Embodiment 1 of the present invention.
- FIG. 2 is a partial exploded schematic diagram of the sprayer according to the first embodiment of the present invention.
- FIG. 3 is a schematic cross-sectional view taken along line III-III of FIG. 1 .
- FIG. 4 is a schematic cross-sectional view of the nebulizer of FIG. 3 when it is in a position to be activated.
- FIG. 5 is a partial three-dimensional cross-sectional schematic diagram of the sprayer according to the first embodiment of the present invention.
- FIG. 6 is a schematic view of the operation of the nebulizer of FIG. 5 .
- FIG. 7A is a schematic cross-sectional view of FIG. 1 along the line VIIA-VIIA.
- FIG. 7B is a schematic view of the operation of the nebulizer of FIG. 7A .
- FIG. 7C is a schematic diagram of the continuous operation of the sprayer of FIG. 7B .
- FIG. 8 is a schematic cross-sectional view of FIG. 1 along the line VIII-VIII.
- FIG. 9 is an exploded schematic diagram of the locking module of the sprayer according to the first embodiment of the present invention.
- FIG. 10A is a schematic cross-sectional view taken along line XA-XA of FIG. 1 .
- FIG. 10B is a schematic view of the operation of the nebulizer of FIG. 10A .
- FIG. 10C is a schematic diagram of the continuous operation of the nebulizer of FIG. 10B .
- FIG. 11 is a schematic perspective view of the sprayer according to the second embodiment of the present invention.
- FIG. 12 is a schematic cross-sectional view taken along line XII-XII of FIG. 11 .
- FIG. 13 is a schematic cross-sectional view of the sprayer of FIG. 12 when it is in a position to be activated.
- FIG. 14A is a partial three-dimensional cross-sectional schematic diagram of the sprayer according to the second embodiment of the present invention.
- FIG. 14B is a schematic view of the operation of the nebulizer of FIG. 14A .
- FIG. 15A is a schematic cross-sectional view taken along the line XVA-XVA of FIG. 11 .
- FIG. 15B is a schematic view of the operation of the nebulizer of FIG. 15A .
- 16 is a schematic three-dimensional cross-sectional view of the sprayer according to the second embodiment of the present invention related to the initialization component.
- FIG. 17 is a schematic view of the operation of the nebulizer of FIG. 16 .
- FIG. 18 is a schematic diagram of the continuous operation of the sprayer of FIG. 17 .
- 19 is an exploded schematic view of the locking module of the sprayer according to the second embodiment of the present invention.
- 20A is a partial cross-sectional schematic diagram of the locking module of the sprayer according to the second embodiment of the present invention.
- FIG. 20B is a schematic diagram of the operation of the locking module of FIG. 20A .
- FIG. 20C is a schematic diagram of the connection operation of the locking module of FIG. 20B .
- FIG. 21 is a schematic perspective view of a sprayer according to Embodiment 3 of the present invention.
- FIG. 22A is a schematic cross-sectional view of FIG. 21 along the line XIIIA-XXIIA.
- FIG. 22B is a schematic cross-sectional view of the nebulizer of FIG. 22A in a position to be activated.
- FIG. 23 is an exploded schematic view of the nebulizer of FIG. 21 .
- FIG. 24 is a schematic exploded view of the nebulizer of FIG. 21 from another perspective.
- FIG. 25A is a partial cross-sectional schematic diagram of the sprayer according to the third embodiment of the present invention.
- FIG. 25B is a schematic view of the operation of the nebulizer of FIG. 25A .
- FIG. 25C is a schematic diagram of the continuous operation of the nebulizer of FIG. 25B .
- FIG. 1 to FIG. 10C are Embodiment 1 of the present invention.
- the present embodiment discloses a nebulizer 100 (Nebulizer), which is preferably limited to be driven by a mechanical structure rather than driven by electrical energy.
- the sprayer 100 is used to install a container bottle 200 (eg, a medicine bottle) therein, and the sprayer 100 can be used to atomize the solution (eg, medicine liquid) in the container bottle 200 to for users to use.
- a container bottle 200 eg, a medicine bottle
- the sprayer 100 can be used to atomize the solution (eg, medicine liquid) in the container bottle 200 to for users to use.
- the sprayer 100 includes a housing 1, an atomizing module 2 fixed in the housing 1, a starting module 3 (operably) mounted on the housing 1, and rotatably mounted.
- the locking module 7 and the container bottle 200 can be jointly defined as a storage device, and the storage device can be used independently (eg, sold) or used with other components.
- the sprayer 100 is described in this embodiment as including the above components, the present invention is not limited thereto.
- the sprayer 100 may omit at least one of the counting component 6 and the locking module 7 according to design requirements.
- the basic structure of the nebulizer 100 will be described below, and then the time counting function and the locking function of the nebulizer 100 will be introduced.
- the casing 1 is used as a stationary fixed component to illustrate the operation relationship of other components, but the present invention is not limited to this. Furthermore, in this embodiment, the casing 1 is assembled from a plurality of components to form a substantially tubular structure, and the casing 1 defines a rotation axis R, and the rotation axis R is substantially overlapped with the casing. 1, but the present invention is not limited to this.
- the casing 1 in this embodiment includes a casing section 11 , a spray section 12 connected to the top of the casing section 11 , and a spray section 12 located on the casing Section 11 and a working section 13 within the spray section 12.
- the activation module 3 is embedded in the housing segment 11 and partially exposed outside the housing segment 11 for the user to operate; the inner edge of the housing segment 11 is formed with a circle centered at the An annular groove 111 on the axis of rotation R.
- the operation section 13 fixes the atomization module 2 so that the atomization module 2 is located on the rotation axis R; the spray section 12 is substantially tubular and surrounds the top of the atomization module 2, and The spray section 12 can be used to guide the solution atomized by the atomization module 2 .
- the operating section 13 is further formed with a spiral guide surface 131 located at the outer edge thereof and surrounding the rotation axis R. As shown in FIG.
- the rotation module 4 includes a rotation mechanism 41 inserted into the housing 1 and a cover 42 detachably mounted on the rotation mechanism 41 .
- the rotating mechanism 41 is rotatably mounted on the casing 1 with the rotating axis R as the axis (eg, the rotating mechanism 41 is rotatably embedded in the annular groove of the casing section 11 ) 111), and the cover body 42 and the housing 1 together enclose an inner space S.
- the linkage module 5 is used to configure the container bottle 200 , and includes a linkage member 51 and a firing spring 52 .
- One side of the linkage member 51 abuts against the spiral of the housing 1 .
- the guide surface 131 (such as: FIG. 5 and FIG. 6 ), and the other side of the linking member 51 is used to hold the top of the container bottle 200, and a transmission tube 53 of the linking member 51 is inserted It is arranged on the atomization module 2 and the container bottle 200 , so that the container bottle 200 can communicate with the atomization module 2 .
- the linking member 51 is limited (or linked) to the rotating mechanism 41 and is slidably disposed on the rotating mechanism 41 along a linear direction L parallel to the rotating axis R (that is, the connecting The moving member 51 can rotate together with the rotating mechanism 41 and can move relative to the rotating mechanism 41 along the linear direction L), and the firing spring 52 surrounds the outer side of the container bottle 200 .
- the rotation module 4 can be rotated (relative to the casing 1 ) by a predetermined angle to drive the linkage module 5 , so that the linkage module 5 can be pressed against the casing 1 to move along the
- the rotation axis R moves from an initial position to a ready-to-start position (as shown in FIG. 3 to FIG. 6 : the linkage 51 is pressed and moves along the helical guide surface 131 , and compresses the firing spring 52 ). so that it has a resilient force), and is then limited to the starting module 3 .
- the activation module 3 can be pressed to release and drive the linkage module 5 to move to the initial position (eg, release the The elastic force of the firing spring 52 ) is used to allow the liquid in the container bottle 200 to pass through the atomization module 2 to perform an atomization operation toward the outside of the sprayer 100 .
- the rotation module 4 when the rotation module 4 rotates the preset angle, the rotation module 4 can drive the count component 6 to rotate by a count angle, but based on the sprayer 100
- the specific structure of the components for realizing the time counting function can be adjusted and changed according to the design requirements, so this embodiment is described in the following only by one of the possible ways of the sprayer 100 , but the present invention is not limited thereto.
- a limiting groove 112 is formed inside the casing 1 (eg, the inner edge of the bottom of the casing section 11 ), and the casing 1 further includes a A reset elastic member 14 in the limiting groove 112, and the reset elastic member 14 is a spring that can be elastically compressed along the linear direction L in this embodiment.
- the rotating mechanism 41 includes a tube body 411 and a driving block 412 , and one end of the tube body 411 (eg, the top end of the tube body 411 in FIG. 3 ) is embedded in the annular shape of the housing section 11 .
- the other end of the tube body 411 eg, the bottom end of the tube body 411 in FIG. 3
- a rail groove 4111 is formed on (the outer surface of) the pipe body 411
- the driving block 412 is located in the limiting groove 112 and is movably mounted on the rail groove 4111 .
- the tube body 411 presses the driving block 412 through the track groove 4111, so that the driving block 412 is limited by the limiting groove 112 and follows the straight line (the track groove 4111 and) Move in direction L (eg: Figure 7A to Figure 7C).
- the reset elastic member 14 is located on the action path of the driving block 412 , and the driving block 412 abuts against the reset elastic member 14 .
- the preset angle is 360/N degrees
- N is a positive integer greater than 1 and a factor of 360.
- the track groove 4111 includes N spiral grooves 4112 distributed along the rotation axis R and N communication grooves 4113 parallel to the linear direction L, and the head ends of the N spiral grooves 4112 correspond to
- the rotation axis R is located at the same height
- the tail ends of the N spiral grooves 4112 are also located at the same height corresponding to the rotation axis R, are adjacent to each other and belong to the two spiral grooves 4112.
- the head end and the tail end communicate with each other through one of the communication grooves 4113 .
- N is described as 2, but the present invention is not limited to this.
- the driving block 412 is located in the One of the communication grooves 4113 is moved to the other of the communication grooves 4113 by pressing and rotating the connected spiral grooves 4112 .
- the driving block 412 in this embodiment includes a carrier plate 4121 , an inner convex portion 4122 connected to the inner surface of the carrier plate 4121 , and a first convex portion connected to the outer surface of the carrier plate 4121 . 4123 and a second convex portion 4124.
- the driving block 412 is movably installed in the track groove 4111 by the inner convex portion 4122 , and the first convex portion 4123 and the second convex portion 4124 are dislocated.
- the time counting assembly 6 is located on the movement path of the driving block 412 , and includes a ring body 61 and a plurality of gear teeth 62 formed on the inner surface of the ring body 61 at intervals. Wherein, a part of the ring body 61 is exposed outside the casing section 11 , so as to display the rotation angle of the ring body 61 , and then know the number of atomization operations performed by the atomizer 100 .
- the The driving block 412 of the rotating module 4 can push at least one of the gear teeth 62 to drive the counting component 6 to rotate by a counting angle (eg, FIGS. 7A to 7C ). Furthermore, after the driving block 412 pushes at least one of the gear teeth 62 , the restoring elastic member 14 can push the driving block 412 to return to its origin along the linear direction L.
- the first convex portion 4123 faces one of the gear teeth 62 along the linear direction L (referred to as the are the first gear teeth 621 ), and the second protruding portion 4124 is inserted between the other two adjacent gear teeth 62 (referred to as the second gear teeth 622 and the third gear 63 ).
- the driving block 412 is driven by the restoring elastic member 14 to move upward along the linear direction L, so that the first The two protruding portions 4124 are inserted into the third gear teeth 623 and the fourth gear teeth 624 beside it, and the first protruding portion 4123 faces the second gear teeth 622 in the linear direction L.
- the nebulizer 100 disclosed in this embodiment is matched with the housing 1 and the rotation module 4 through the structural design of the counting component 6 , so that it can rotate the counting angle to present all
- the usage times of the nebulizer 100 is determined, so that the user can intuitively know the current status of the nebulizer 100 .
- the housing 1 is formed with a locking groove 113 , and the locking groove 113 is formed concavely along the linear direction L on the inner surface of the housing section 11 .
- the rotation module 4 includes a pusher 43 mounted on the inner bottom of the cover body 42 .
- the pushing member 43 is integrally formed and connected to the inner bottom of the cover body 42 upright, but the present invention is not limited thereto.
- the locking module 7 is used for connecting the bottom of the container bottle 200 and being accommodated in the inner space S. As shown in FIG. In this embodiment, the locking module 7 includes a box body 71 for connecting the bottle bottom, a trigger mechanism 72 installed in the box body 71 and corresponding to the position of the pusher 43 , and an installation place. A locking mechanism 73 of the rotating mechanism 41 is described.
- the box body 71 is inseparably fixed on the bottle bottom of the container bottle 200 in this embodiment, and the box body 71 is formed with an opening 711 located on the movement path of the locking mechanism 73 .
- the present invention is not limited to this.
- the box body 71 may also be detachably fixed to the bottle bottom of the container bottle 200 according to design requirements.
- the trigger mechanism 72 includes a driving member 721 , a rotating member 722 corresponding to the driving member 721 , and a progressive member 723 connected to the rotating member 722 .
- the driving member 721 includes a disk body 7211 , a spring 7212 pressing against the box body 71 and the disk body 7211 , and a paddle (upright) formed on the disk body 7211 .
- Tick 7213 The plate body 7211 is disposed at the bottom of the box body 71 and the position corresponds to the pusher 43 , and the spring 7212 tends to push the plate body 7211 to the bottom of the box body 71 , so The position of the dial hook 7213 corresponds to the rotating member 722 .
- the rotating member 722 includes a screw rod 7221 pivotally connected to the box body 71 and a plurality of teeth 7222 located on the screw rod 7221 .
- a plurality of the teeth 7222 are arranged on the screw 7221 in a ring shape, preferably in the shape of a ratchet gear, and the progressive member 723 is slidably disposed on the box body 71 and screwed to the The screw 7221, and the rotating member 722 can drive the progressive member 723 (along the screw 7221) to move by rotating.
- the driving member 721 (the disc body 7211 ) can be pressed and moved by the pushing member 43 (eg, the pushing member 43 ). Passing through the bottom of the box body 71 and pressing the disk body 7211) to rotate the screw rod 7221 by driving at least one of the teeth 7222, thereby driving the progressive piece 723 (along the screw rod 7221 to move farther away the direction of the teeth 7222) to move.
- the locking module 7 can move back and forth along the rotation axis R, so that the trigger mechanism 72 can pass through the pusher 43 . is pressed to move toward the locking mechanism 73 .
- the rotation of the screw 7221 is achieved in the following manner: when the atomizer 100 completes one atomization operation, the disk body 7211 can pass the pusher 43 and the spring. 7212 to move back and forth in the box body 71 once, so that the dial hook 7213 drives at least one of the teeth 7222 to rotate the screw rod 7221 .
- the locking mechanism 73 is mounted on the tubular body 411 of the rotating mechanism 41 , and the locking mechanism 73 includes an elastic member 731 and a locking rod 732 in this embodiment.
- the elastic member 731 is disposed in the locking groove 113 of the housing 1
- the locking rod 732 has a rod body 7321 and a protruding portion 7322 (vertically) extending from the rod body 7321 .
- the rod body 7321 (slidably along the linear direction L) is mounted on the tube body 411 and its position corresponds to (eg, toward) the opening 711 of the box body 71, and the protruding The position of the portion 7322 corresponds to (eg, towards) the locking groove 113 of the housing 1 .
- the trigger mechanism 72 pushes the locking mechanism 73 to make the locking mechanism 73 move toward the The casing 1 is moved to be limited, thereby locking the rotation of the rotating mechanism 41 .
- the progressive member 723 is driven by the rotating member 722 until the locking mechanism 73 is pushed (eg, the progressive member 723 Driven by the rotating member 722 until the opening 711 is closed and the locking mechanism 73 is pushed), so that the locking mechanism 73 moves toward the housing 1 and is limited.
- the locking mechanism 73 is limited in the following manner: when the atomizer 100 completes the pre-set number of atomization operations, the rod body 7321 is blocked by the progressive member. 723 to move the protruding portion 7322 into the locking slot 113 and press against the elastic member 731 , thereby restricting the rotation of the rotating module 4 . That is to say, before the sprayer 100 completes the predetermined number of atomization operations, the bottom edge of the rod body 7321 is located in the opening 711 , and the protrusion 7322 is located in the locking groove 113 outside and in contact with the elastic member 731 .
- the locking mechanism 73 may also include a puncture needle 74 installed upright on the box body 71, and the puncture needle 74 can be pressed to pass through the top of the box body 71, and then from the container bottle The bottom of the bottle 200 is pierced, so that the internal pressure of the container bottle 200 can be kept consistent with the external atmospheric pressure, but the present invention is not limited thereto.
- the sprayer 100 disclosed in this embodiment is matched with the housing 1 and the rotation module 4 through the structural design of the locking module 7 , so that the sprayer 100 can complete the preset number of times in the sprayer 100 .
- the rotation of the rotation module 4 is restricted by the locking module 7 (eg, the protrusion 7322 ), so that the atomizer 100 cannot continue to use the container bottle 200 installed therein.
- FIG. 11 to FIG. 20C is the second embodiment of the present invention. Since this embodiment is similar to the above-mentioned first embodiment, the similarities between the two embodiments (such as the basic structure of the sprayer 100 ) will not be repeated, and the difference between this embodiment and the above-mentioned first embodiment mainly lies in : The related structure of the time counting function and the locking function of the sprayer 100 is realized, and the sprayer 100 also has an initialization function in this embodiment.
- the housing 1 is formed with a first annular rack 15 and a second annular rack 16 facing each other in a direction parallel to the straight line L, and the first annular rack 15
- the plurality of teeth of the second ring rack 16 are arranged in a staggered and reversed configuration (eg, FIG. 15A and FIG. 15B ).
- a projection area formed by orthographic projection of any one of the teeth of the first annular rack 15 on the second annular rack 16 along the linear direction L covers the second annular Two adjacent teeth of the rack 16 .
- the housing 1 includes a reset elastic member 14 disposed therein, and the reset elastic member 14 can be elastically compressed along the linear direction L in this embodiment. of a spring. Wherein, the reset elastic member 14 is fixed to the housing segment 11 and the count assembly 6 to tend to drive the count assembly 6 to move toward the second annular rack 16 .
- the rotating mechanism 41 includes a tubular body 411 and a driving block 412 .
- one end of the pipe body 411 eg, the top end of the pipe body 411 in FIG. 12
- the other end of the pipe body 411 eg: The bottom end of the tube body 411 in FIG. 12 is assembled with the cover body 42
- the driving block 412 is formed on the tube body 411 (eg, the driving block 412 protrudes out of the tube body) 411 on the outer surface).
- the time counting component 6 is located on the motion path of the driving block 412 , and the time counting component 6 is substantially annular and includes a ring body 61 and a plurality of Gear teeth 62. Wherein, a part of the ring body 61 may be exposed outside the casing section 11 , so as to display the rotation angle of the ring body 61 , and then know the number of atomization operations performed by the atomizer 100 .
- the plurality of gear teeth 62 of the time counting assembly 6 respectively face and have shapes corresponding to the plurality of teeth of the first annular rack 15 and the second annular rack 16 .
- a plurality of the gear teeth 62 are respectively located at both ends of the time counting component 6 (eg, the top and bottom ends of the time counting component 6 in FIG. 15A and FIG. 15B ) and are arranged in two circles , and the two circles of the gear teeth 62 of the time counting assembly 6 face each other and have a shape corresponding to the plurality of teeth of the first annular rack 15 and the plurality of the teeth of the second annular rack 16 tooth.
- the drive block 412 of the rotation module 4 can (indirectly) push at least one of the gear teeth 62 to drive the count assembly 6 to rotate by a count angle. Further, when the rotation module 4 rotates the preset angle, the driving block 412 presses (the part of) the time counting assembly 6 , so that the time counting assembly 6 moves along the linear direction L moves, and a plurality of the gear teeth 62 move along the corresponding teeth of the first annular rack 15 and the second annular rack 16 in turn to rotate the count assembly 6 .
- the plurality of gear teeth 62 can move along the first annular rack 15 through the driving block 412 moving the counting assembly 6 .
- the reset elastic member 14 abuts against the time counting assembly 6 , so that after the plurality of gear teeth 62 move along the corresponding teeth of the first annular rack 15 , the The reset elastic member 14 can push the count assembly 6 to move toward the second annular rack 16 , so that the plurality of gear teeth 62 are along the corresponding teeth of the second annular rack 16 . Moved and restrained.
- the sprayer 100 further includes an initialization component 8 installed on the housing 1 and the count component 6 , and when the cover 42 is removed from the rotating mechanism When 41 is removed, the initialization assembly 8 can be driven, so as to eliminate any counting angle rotated by the counting assembly 6 through the initialization assembly 8 .
- the specific structure of the components for realizing the initialization function of the atomizer 100 can be adjusted and changed according to the design requirements. Therefore, this embodiment is described in the following only by one of the possible ways of the atomizer 100, but the present invention does not limited by this.
- the initialization component 8 includes an initialization spring 81, and the two ends of the initialization spring 81 are respectively fixed to a part of the casing 1 and the time counting component 6, and the cover 42 is buckled. connected to the second annular rack 16 . Accordingly, when the cover body 42 is detached from the rotating mechanism 41, the cover body 42 drives the second annular rack 16 (to move together) to disengage the count assembly 6 (that is, the The time counting assembly 6 is no longer limited by the second annular rack 16 ), so that the initialization spring 81 tends to (release its resilience) to rotate the time counting assembly 6 to its origin.
- the initializing spring 81 is generally received in an annular groove 611 recessed on the outer surface of the ring body 61 , and one end of the initializing spring 81 is fixed to the ring body 61 , and the The other end of the initialization spring 81 extends out of the annular groove 611 and is fixed to the part of the housing section 11 .
- the rotation module 4 rotates by the preset angle (eg, FIG. 16 and FIG. 17 )
- the count component 6 rotates by the count angle and is limited to the second annular rack 16 ( And the counting component 6 is not in contact with the first annular rack 15), so that the initializing spring 81 is stretched to store a resilient force.
- the cover 42 when the cover 42 is removed from the rotating mechanism 41 (eg, FIG. 18 ), the cover 42 drives another part of the housing 1 (eg, the second ring gear 16 ). ) is disengaged from the counting assembly 6 (and the counting assembly 6 is also not in contact with the first annular rack 15 ), so that the initializing spring 81 releases the resilient force, thereby rotating the counting Component 6 to its origin.
- the nebulizer 100 disclosed in this embodiment is matched with the housing 1 and the count component 6 through the initialization component 8 , so that the nebulizer 100 can pass through the cover 42 to remove the At least one time of the accumulative rotation of the counting component 6 is reset to zero, thereby providing the user with more diverse functions and facilitating the reuse of the sprayer 100 .
- the housing 1 is formed with a locking groove 113 , and the locking groove 113 is formed concavely along the linear direction L on the inner surface of the housing section 11 .
- the rotation module 4 includes a pusher 43 mounted on the inner bottom of the cover body 42 .
- the pushing member 43 is integrally formed and connected to the inner bottom of the cover body 42 upright, but the present invention is not limited thereto.
- the locking module 7 is used for connecting the bottom of the container bottle 200 and being accommodated in the inner space S.
- the locking module 7 includes a box body 71 for connecting the bottle bottom, a trigger mechanism 72 installed in the box body 71 and corresponding to the position of the pusher 43 , and an installation place.
- a locking mechanism 73 of the rotating mechanism 41 is described. Wherein, when the atomizer 100 completes one atomization operation, the locking module 7 can reciprocate along the rotation axis R, so that the trigger mechanism 72 can be pressed by the push member 43 Move towards the locking mechanism 73 .
- the box body 71 is inseparably fixed on the bottle bottom of the container bottle 200 in this embodiment.
- the box body 71 is formed with an opening 711 located on the action path of the locking mechanism 73, and the inner side wall of the box body 71 is formed with a limiting structure 712 (eg, a plurality of positions parallel to the linear direction L). cylinder), but the present invention is not limited thereto.
- the box body 71 can also be detachably fixed to the bottle bottom of the container bottle 200 according to design requirements.
- the trigger mechanism 72 includes a rotating member 722 and a progressive member 723 connected to the rotating member 722 , and the rotating member 722 can drive the progressive member 723 to move by rotating.
- the rotating member 722 includes a turntable 7223 corresponding to the push member 43 and a stud 7224 formed on the turntable 7223 upright.
- a first height of the limiting structure 712 relative to the bottom of the box body 71 is lower than a second height of the studs 7224 relative to the bottom of the box body 71 .
- the progressive piece 723 includes a progressive disc 7231 screwed to the stud 7224 and a progressive rod 7232 slidably disposed on the top of the box 71, and the progressive rod 7232 and the progressive disc 7231 Set for separation.
- the rotating disc 7223 can be rotated by the pressing of the pushing member 43 , so as to drive the progressive disc 7231 to move along the stud 7224 .
- the progressive disc 7231 is driven by the rotating member 722 until the progressive rod 7232 is pushed, so that the progressive rod 7232 is pushed. 7232 pushes the locking mechanism 73 to move toward the housing 1 and is limited.
- the rotating disk will The progressive disc 7231 driven by 7223 is limited by the limiting structure 712 and cannot rotate, and can only move linearly along the stud 7224 (towards the direction away from the turntable 7223); when the progressive disc 7231 When the position is higher than the first height (for example: the 8th to 10th atomization operations), the part of the progressive disc 7231 is located at the same height as the progressive rod 7232, and the progressive disc 7231 can be driven by the turntable 7223 to rotate together to push the progressive rod 7232.
- the first height for example: the 8th to 10th atomization operations
- the locking mechanism 73 is installed on the tubular body 411 of the rotating mechanism 41 , and the locking mechanism 73 includes an elastic member 731 and a locking rod 732 in this embodiment.
- the elastic member 731 is disposed in the locking groove 113 of the housing 1
- the locking rod 732 has a rod body 7321 and a protruding portion 7322 (vertically) extending from the rod body 7321 .
- the rod body 7321 (slidably along the linear direction L) is mounted on the tube body 411 and its position corresponds to (eg, toward) the opening 711 of the box body 71, and the protruding The position of the portion 7322 corresponds to (eg, towards) the locking groove 113 of the housing 1 .
- the trigger mechanism 72 pushes the locking mechanism 73 so that the locking mechanism 73 moves toward the housing 1 to be blocked. limit, thereby locking the rotation of the rotating mechanism 41 .
- the progressive member 723 is driven by the rotating member 722 until the locking mechanism 73 is pushed (eg, the progressive member 723 Driven by the rotating member 722 until the opening 711 is closed and the locking mechanism 73 is pushed), so that the locking mechanism 73 moves toward the housing 1 and is limited.
- the locking mechanism 73 is limited in the following manner: when the atomizer 100 completes the pre-set number of atomization operations, the rod body 7321 is blocked by the progressive member. 723 to move the protruding portion 7322 into the locking slot 113 and press against the elastic member 731 , thereby restricting the rotation of the rotating module 4 . That is to say, before the atomizer 100 completes the atomization operation for the preset number of times, the bottom edge of the rod body 7321 may be located in the opening 711, and the protrusion 7322 is located in the locking groove 113 and in contact with the elastic member 731 .
- the locking mechanism 73 may also include a puncture needle 74 installed upright on the box body 71, and the puncture needle 74 can be pressed to pass through the top of the box body 71, and then from the container bottle The bottom of the bottle 200 is pierced, so that the internal pressure of the container bottle 200 can be kept consistent with the external atmospheric pressure, but the present invention is not limited thereto.
- the sprayer 100 disclosed in this embodiment is matched with the housing 1 and the rotation module 4 through the structural design of the locking module 7 , so that the sprayer 100 can complete the preset number of times in the sprayer 100 .
- the rotation of the rotation module 4 is restricted by the locking module 7 (eg, the protrusion 7322 ), so that the atomizer 100 cannot continue to use the container bottle 200 installed therein.
- FIG. 21 to FIG. 25C are Embodiment 3 of the present invention. Since this embodiment is similar to the above-mentioned second embodiment, the similarities between the two embodiments (such as the basic structure and the locking function of the sprayer 100 ) will not be repeated, and this embodiment is compared with the above-mentioned embodiment. The difference between the second embodiment mainly lies in: realizing the related structure of the time counting function and the initialization function of the sprayer 100 .
- the rotating mechanism 41 includes a tubular body 411 and a driving block 412 .
- One end of the pipe body 411 eg, the top end of the pipe body 411 in FIG. 22A
- the other end of the pipe body 411 is assembled to the
- the cover body 42 and the driving block 412 are formed on the pipe body 411 (eg, the driving block 412 protrudes from the outer surface of the pipe body 411 ).
- the (part of) the time counting assembly 6 is located on the motion path of the driving block 412 , and the time counting assembly 6 includes at least one gear 63 pivotally connected to the housing 1 .
- at least one of the gears 63 is located on the motion path of the driving block 412 and is formed with a plurality of gear teeth 6311 .
- part of at least one of the gears 63 is exposed outside the housing section 11, so as to display its rotation angle, and then know the number of atomization operations performed by the atomizer 100.
- the rotation module 4 when the rotation module 4 rotates the preset angle (that is, when the linkage module 5 moves from the initial position to the position to be activated), the rotation module 4
- the driving block 412 can push at least one of the gear teeth 6311 to drive the counting component 6 to rotate by a counting angle. Further, when the rotation module 4 rotates the preset angle, the driving block 412 toggles at least one of the gear teeth 6311 to rotate at least one of the gears 63 .
- the specific structure of the atomizer 100 to realize the time counting function in a gear manner can be adjusted and changed according to the design requirements, so this embodiment is described in the following only by one of the possible methods of the atomizer 100, but The present invention is not limited to this.
- the number of at least one of the gears 63 is further limited to a plurality, and the plurality of the gears 63 are pivotally connected to the housing 1 and mesh with each other.
- one of the gears 63 is formed with a plurality of the gear teeth 6311 and is defined as a carry gear 631
- the other gear 63 is defined as a count gear 632 and is partially exposed to the casing 1, the rotation angle is displayed accordingly.
- the driving block 412 passes the The carry gear 631 drives the count gear 632 to rotate by the count angle, and the angle rotated by the carry gear 631 is greater than the count angle.
- the time counting assembly 6 is described with two gears 63 (eg, the carry gear 631 and the time counting gear 632 ) in this embodiment, but the present invention is not limited to this.
- the count assembly 6 may be provided with at least one transmission gear 63 between the carry gear 631 and the count gear 632 that meshes with each other, according to the So that the carry gear 631 can rotate the count gear 632 through at least one of the transmission gears 63 .
- the initialization assembly 8 includes an initialization rack 82 , and when the rotation module 4 rotates the predetermined angle, the drive block 412 of the rotation module 4 can At least one of the gear teeth 6311 is pushed to drive the count assembly 6 to rotate by the count angle, while the initialization rack 82 remains stationary; and when the cover 42 is removed from the rotating mechanism 41 , the cover body 42 drives the initialization rack 82 so that the initialization rack 82 reversely rotates the count assembly 6 to its origin.
- At least one of the gears 63 includes a plurality of receding teeth 6312 located on opposite sides of the plurality of the gear teeth 6311 , and the position of the initialization rack 82 corresponds to the plurality of the receding teeth 6312 .
- the cover body 42 drives the initialization rack 82 , so that the initialization rack 82 pushes at least one of the receding teeth 6312 to rotate in a reverse direction At least one of said gears 63 to its origin.
- the carry gear 631 and the count gear 632 each have a plurality of receding teeth 6312 and 6321 , and the plurality of receding teeth 6312 of the carry gear 631 are not meshed with the plurality of the count gear 632 .
- the receding teeth 6321, and the plurality of the receding teeth 6312 of the carry gear 631 are located on the opposite side of the plurality of the gear teeth 6311.
- the initialization rack 82 is U-shaped, and the positions of the initialization rack 82 correspond to the plurality of receding teeth 6312 of the carry gear 631 and the plurality of the counter gears 632 respectively. Recessed tooth 6321.
- the cover body 42 drives the initialization rack 82 , so that the initialization rack 82 pushes at least one of the carry gears 631 .
- the receding teeth 6312 and at least one of the receding teeth 6321 of the counter gear 632 reversely rotate the plurality of gears 63 to their origin.
- the sprayer disclosed in the embodiments of the present invention can be matched with the housing and the rotation module through the structural design of the count component, so that it can display all the features by rotating the count angle.
- the number of times of use of the nebulizer is determined, so that the user can intuitively know the current state of the nebulizer.
- the nebulizer disclosed in this embodiment is matched with the housing and the rotation module through the structural design of the locking module, so that the nebulizer can complete the preset number of times of atomization in the nebulizer.
- the rotation of the rotating module is restricted by the locking module (eg, a protrusion), so that the sprayer cannot continue to use the container bottle installed therein.
- the nebulizer disclosed in this embodiment is matched with the housing and the count component through the initialization component, so that the nebulizer can pass through the cover to accumulate and rotate the count component.
- the counting angle is reset to zero at least once, thereby providing the user with more diverse functions and facilitating the reuse of the sprayer.
- the atomizer may be matched with the time counting function and/or the zeroing function in any of the embodiments on the basic structure according to design requirements, and the time counting function in any of the above embodiments is also
- the corresponding initialization functions can be selectively matched to effectively provide users with more diverse products.
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Abstract
一种喷雾器包含外壳(1)、雾化模块(2)、可旋转地安装于外壳(1)的旋转模块(4)、安装于旋转模块(4)的连动模块(5)及锁定模块(7)。连动模块(5)用来供容器瓶(200)配置,启动模块(3)能被按压以使容器瓶(200)内的液体通过雾化模块(2)而朝喷雾器(100)外进行一次雾化作业。锁定模块(7)连接容器瓶(200)的瓶底,当喷雾器(100)完成预设次数的雾化作业时,锁定机构(73)朝外壳(1)移动而被限位,进而锁定喷雾器(100)的运作。一种储存装置包括容器瓶(200)、锁定模块(7),锁定模块(7)包括盒体(71),盒体(71)形成有开口(711)、触发机构(72),触发机构(72)包含有转动件(722)及渐进件(723),渐进件(723)连接于转动件(722),转动件(722)能通过转动而驱使渐进件(723)朝向开口(711)移动。当转动件(722)转动预设次数时,渐进件(723)被转动件(722)驱使直至封闭开口(711)。该喷雾器能在完成预设次数的雾化作业后,通过锁定机构限制旋转模块的转动而使喷雾器无法继续使用安装于其内的容器瓶。
Description
本发明涉及一种喷雾器,尤其涉及一种具备有限制运作次数的喷雾器及储存装置。
现有喷雾器的内部能用来安装有可替换的容器瓶,并且现有喷雾器能通过其结构设计而将所述容器瓶内的液体进行雾化作业。然而,现有喷雾器并未有任何精准的机制来限制其使用次数,因而使得现有喷雾器可能会被使用者不自觉地运作到不合理的次数。
于是,本发明人认为上述缺陷可改善,乃特潜心研究并配合科学原理的运用,终于提出一种设计合理且有效改善上述缺陷的本发明。
发明内容
本发明实施例的目的在于提供一种喷雾器及储存装置,其能有效地改善现有喷雾器所可能产生的缺陷。
本发明实施例公开一种喷雾器,其包括一外壳,定义有一旋转轴线;一雾化模块,固定于外壳内且位于旋转轴线上;一启动模块,安装于外壳;一旋转模块,包含有:一旋转机构,插设于外壳、并以旋转轴线为轴心而可旋转地安装于外壳;及一盖体,安装于旋转机构,以与外壳共同包围成一内部空间;一推动件,安装于盖体的内底部;一连动模块,安装于旋转模块,并且连动模块用来供一容器瓶配置;其中,旋转模块能旋转一预设角度来带动连动模块,以使连动模块通过压迫于外壳而沿旋转轴线自一初始位置移动至一待启动位置,进而限位于启动模块;其中,当连动模块处于待启动位置时,启动模块能被按压而释放且驱使连动模块移动至初始位置,用以供容器瓶内的液体通过雾化模块而朝喷雾器外进行一次雾化作业;以及一锁定模块,用来连接容器瓶的瓶底,并且锁定模块包含:一触发机构,位置对应于推动件;及一锁定机构,安装旋转机构;其中,当喷雾器完成一次雾化作业时,锁定模块能沿着旋转轴线往复移动一趟,以使触发机构通过推动件压迫而朝向锁定机构移动;其中,当喷雾器完成一预设次数的雾化作业时,触发机构推动锁定机构,以使锁定机构朝外壳移动而被限位,进而锁定旋转机构的旋转。
优选地,触发机构包含有:一转动件;及一渐进件,连接于转动件,并且转动件能通过转动而驱使渐进件移动;其中,当喷雾器完成预设次数的雾化作业时,渐进件被转动件驱使直至推动锁定机构,以使锁定机构朝外壳移动且被限位。
优选地,锁定模块包含有一盒体,用来连接容器瓶的瓶底;其中,盒体形成有位在锁定机构动作路径上的一开口,触发机构安装于盒体内;其中,当喷雾器完成预设次数的雾化作业时,渐进件被转动件驱使直至封闭开口并推动锁定机构。
优选地,外壳形成有一锁定槽,锁定机构包含有:一弹性件,设置于锁定槽内;及一锁定杆,具有一杆体及自杆体延伸的一突出部;其中,杆体的位置对应于开口,突出部的位置对应于锁定槽;其中,当喷雾器完成预设次数的雾化作业时,杆体被渐进件推动,以使突出部移动进入锁定槽内并压迫于弹性件。
优选地,锁定模块包含有一盒体,用来连接容器瓶的瓶底;触发机构安装于盒体内并包含有一驱动件,并且转动件包含有:一螺杆,枢接于盒体;其中,渐进件可滑动地设置于盒体并螺接于螺杆;及多个齿,位于螺杆上;其中,当喷雾器完成一次雾化作业时,驱动件能通过推动件压迫而移动,以通过带动至少一个齿而旋转螺杆,进而驱使渐进件移动。
优选地,驱动件包含有:一盘体;一弹簧,顶抵于盒体与盘体,并且弹簧倾向推抵盘体至盒体的底部;及一拨勾,形成于盘体且位置对应于至少一个齿;其中,当喷雾器完成一次雾化作业时,盘体能通过推动件与弹簧而于盒体内往复移动一次,以使拨勾带动至少一个齿而旋转螺杆。
优选地,锁定模块包含有一盒体,用来连接容器瓶的瓶底;触发机构安装于盒体内,并且转动件包含有位置对应于推动件的一转盘及直立地形成于转盘上的一螺柱;渐进件包含有:一渐进盘,螺接于螺柱,并且转盘能通过推动件的压迫而转动,以驱使渐进盘沿着螺柱移动;及一渐进杆,可滑动地设置于盒体的顶部,并且渐进杆与渐进盘为分离设置;其中,当喷雾器完成预设次数的雾化作业时,渐进盘被转动件驱使直至推动渐进杆,以使渐进杆推动锁定机构朝外壳移动且被限位。
优选地,盒体的内侧壁形成有一限位结构,并且限位结构相对于盒体的底部的一第一高度低于螺柱相对于盒体的底部的一第二高度;其中,当渐进盘的位置低于第一高度时,被转盘驱使的渐进盘受限于限位结构而无法转动、且仅能沿着螺柱直线移动;当渐进盘的位置高于第一高度时,渐进盘能被转盘驱使而一同转动,以推动渐进杆。
本发明实施例也公开一种储存装置,其包括:一容器瓶;以及一锁定模块,包含: 一盒体,连接于容器瓶的瓶底,并且盒体形成有一开口;及一触发机构,安装于盒体内,并且触发机构包含有一转动件;及一渐进件,连接于转动件,并且转动件能通过转动而驱使渐进件朝向开口移动;其中,当转动件转动一预设次数时,渐进件被转动件驱使直至封闭开口。
优选地,盒体是不可拆分地固定于容器瓶的瓶底。
综上所述,本发明实施例所公开的喷雾器,其通过所述锁定模块的结构设计搭配于所述外壳与所述旋转模块,以使其能够在所述喷雾器完成所述预设次数的所述雾化作业之后,通过所述锁定模块限制所述旋转模块的转动而使所述喷雾器无法继续使用安装于其内的所述容器瓶。
为能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与附图,但是此等说明与附图仅用来说明本发明,而非对本发明的保护范围作任何的限制。
图1为本发明实施例一的喷雾器的立体示意图。
图2为本发明实施例一的喷雾器的局部分解示意图。
图3为图1沿剖线III-III的剖视示意图。
图4为图3的喷雾器处于待启动位置时的剖视示意图。
图5为本发明实施例一的喷雾器的局部立体剖视示意图。
图6为图5的喷雾器的动作示意图。
图7A为图1沿剖线VIIA-VIIA的剖视示意图。
图7B为图7A的喷雾器的动作示意图。
图7C为图7B的喷雾器的接续动作示意图。
图8为图1沿剖线VIII-VIII的剖视示意图。
图9为本发明实施例一的喷雾器的锁定模块的分解示意图。
图10A为图1沿剖线XA-XA的剖视示意图。
图10B为图10A的喷雾器的动作示意图。
图10C为图10B的喷雾器的接续动作示意图。
图11为本发明实施例二的喷雾器的立体示意图。
图12为图11沿剖线XII-XII的剖视示意图。
图13为图12的喷雾器处于待启动位置时的剖视示意图。
图14A为本发明实施例二的喷雾器的局部立体剖视示意图。
图14B为图14A的喷雾器的动作示意图。
图15A为图11沿剖线XVA-XVA的剖视示意图。
图15B为图15A的喷雾器的动作示意图。
图16为本发明实施例二的喷雾器相关于初始化组件的立体剖视示意图。
图17为图16的喷雾器的动作示意图。
图18为图17的喷雾器的接续动作示意图。
图19为本发明实施例二的喷雾器的锁定模块的分解示意图。
图20A为本发明实施例二的喷雾器的锁定模块的局部剖视示意图。
图20B为图20A的锁定模块的动作示意图。
图20C为图20B的锁定模块的接续动作示意图。
图21为本发明实施例三的喷雾器的立体示意图。
图22A为图21沿剖线XXIIA-XXIIA的剖视示意图。
图22B为图22A的喷雾器处于待启动位置时的剖视示意图。
图23为图21的喷雾器的分解示意图。
图24为图21的喷雾器的另一视角分解示意图。
图25A为本发明实施例三的喷雾器的局部剖视示意图。
图25B为图25A的喷雾器的动作示意图。
图25C为图25B的喷雾器的接续动作示意图。
以下是通过特定的具体实施例来说明本发明所公开有关“喷雾器及储存装置”的实施方式,本领域技术人员可由本说明书所公开的内容了解本发明的优点与效果。本发明可通过其他不同的具体实施例加以施行或应用,本说明书中的各项细节也可基于不同观点与应用,在不悖离本发明的构思下进行各种修改与变更。另外,本发明的附图仅为简单示意说明,并非依实际尺寸的描绘,事先声明。以下的实施方式将进一步详细说明本发明的相关技术内容,但所公开的内容并非用以限制本发明的保护范围。
应当可以理解的是,虽然本文中可能会使用到“第一”、“第二”、“第三”等术语 来描述各种组件或者信号,但这些组件或者信号不应受这些术语的限制。这些术语主要是用以区分一组件与另一组件,或者一信号与另一信号。另外,本文中所使用的术语“或”,应视实际情况可能包括相关联的列出项目中的任一个或者多个的组合。
[实施例一]
请参阅图1至图10C所示,其为本发明的实施例一。如图1至图3所示,本实施例公开一种喷雾器100(Nebulizer),其较佳是限定为通过机械构造来进行喷雾驱动、而非通过电能来进行喷雾驱动。其中,所述喷雾器100用来供一容器瓶200(如:药瓶)安装于其内,并且所述喷雾器100能用来雾化所述容器瓶200内的溶液(如:药液),以供使用者使用。
于本实施例中,所述喷雾器100包含有一外壳1、固定于所述外壳1内的一雾化模块2、(可操作地)安装于所述外壳1的一启动模块3、可转动地安装于所述外壳1的一旋转模块4、安装于所述旋转模块4的一连动模块5、可活动地设置于所述外壳1与所述旋转模块4之间的一计次组件6及用来连接于所述容器瓶200瓶底的一锁定模块7。其中,所述锁定模块7与所述容器瓶200于本实施例中可共同定义为一储存装置,并且所述储存装置可以独立地被应用(如:贩卖)或搭配其他组件使用。
需额外说明的是,所述喷雾器100于本实施例中虽是以包含上述组件来说明,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述喷雾器100可依据设计需求而省略所述计次组件6及所述锁定模块7的至少其中之一。以下将先就所述喷雾器100的基础架构作一说明,而后再介绍所述喷雾器100的计次功能与锁定功能。
[实施例一的喷雾器的基础架构]
所述喷雾器100于本实施例的文字描述中是以所述外壳1作为不动的固定组件来说明其他组件的运作关系,但本发明不以此为限。再者,所述外壳1于本实施例中是由多个部件组装而构成大致呈管状的结构,并且所述外壳1定义有一旋转轴线R,而所述旋转轴线R是大致重叠于所述外壳1的中心线,但本发明不以此为限。
更详细地说,如图2至图4所示,所述外壳1于本实施例中包含有一壳体段11、相连于所述壳体段11顶端的一喷雾段12及位于所述壳体段11与所述喷雾段12内的一运作段13。其中,所述启动模块3嵌设于所述壳体段11且其局部裸露于所述壳体段11之外,以供使用者操作;所述壳体段11的内缘形成有圆心位于所述旋转轴线R上的一环形槽111。
所述运作段13固定所述雾化模块2,以使所述雾化模块2位于所述旋转轴线R上;所述喷雾段12大致呈管状并围绕在所述雾化模块2的顶部,并且所述喷雾段12能用来导引经过所述雾化模块2雾化后的溶液。其中,所述运作段13于本实施例中还形成有位于其外缘且围绕所述旋转轴线R的一螺旋导引面131。
所述旋转模块4于本实施例中包含有插设于所述外壳1的一旋转机构41及可拆卸地安装于所述旋转机构41的一盖体42。其中,所述旋转机构41以所述旋转轴线R为轴心而可旋转地安装于所述外壳1(如:所述旋转机构41可转动地嵌设所述壳体段11的所述环形槽111),并且所述盖体42与所述外壳1共同包围成一内部空间S。
所述连动模块5用来供所述容器瓶200配置、并包含有一连动件51与一击发弹簧52,所述连动件51的一侧部位顶抵于所述外壳1的所述螺旋导引面131(如:图5和图6),而所述连动件51的另一侧部位用来固持所述容器瓶200的顶端,并且所述连动件51的一传输管53插设于所述雾化模块2与所述容器瓶200,以使所述容器瓶200能连通于所述雾化模块2。
再者,所述连动件51限位(或连动)于所述旋转机构41并沿平行所述旋转轴线R的一直线方向L滑设于所述旋转机构41(也就是,所述连动件51能与所述旋转机构41一同转动、并能相对于所述旋转机构41沿所述直线方向L移动),而所述击发弹簧52则是围绕于所述容器瓶200外侧。
依上所述,所述旋转模块4能(相对于所述外壳1)旋转一预设角度来带动所述连动模块5,以使所述连动模块5通过压迫于所述外壳1而沿所述旋转轴线R自一初始位置移动至一待启动位置(如图3至图6:所述连动件51被压迫且沿着所述螺旋导引面131移动、并压缩所述击发弹簧52使其蓄有一回弹力),进而限位于所述启动模块3。
当所述连动模块5处于所述待启动位置时(如:图4),所述启动模块3能被按压而释放且驱使所述连动模块5移动至所述初始位置(如:释放所述击发弹簧52的所述回弹力),用以供所述容器瓶200内的液体通过所述雾化模块2而朝所述喷雾器100外进行一次雾化作业。
需额外说明的是,所述启动模块3与所述连动模块5之间的限位与驱动关系是本领域中常用的技术手段,其可依据设计需求而加以调整变化,所以本实施例在此不加以赘述。
[实施例一的喷雾器的计次功能]
以上为所述喷雾器100于本实施例中的基础架构说明,以下接着介绍所述喷雾器100 于本实施例中的计次功能。其中,如图5至图7C所示,当所述旋转模块4旋转所述预设角度时,所述旋转模块4能驱使所述计次组件6旋转一计次角度,但基于所述喷雾器100实现所述计次功能的具体组件构造可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
进一步地说,如图3至图6所示,所述外壳1内部(如:所述壳体段11的底部内缘)形成有一限位槽112,并且所述外壳1还包含有设于所述限位槽112内的一复位弹性件14,而所述复位弹性件14于本实施例中为能够沿所述直线方向L被弹性地压缩的一弹簧。
所述旋转机构41包含有一管体411与一驱动块412,所述管体411的一端(如:图3中的所述管体411顶端)嵌设于所述壳体段11的所述环形槽111,所述管体411的另一端(如:图3中的所述管体411底端)组接于所述盖体42。其中,所述管体411(的外表面)形成有一轨道槽4111,而所述驱动块412位于所述限位槽112内且可移动地安装于所述轨道槽4111。
也就是说,当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自图3所示的所述初始位置移动至图4所示的所述待启动位置时),所述管体411通过所述轨道槽4111压迫所述驱动块412,以使所述驱动块412受限于所述限位槽112而沿(所述轨道槽4111与)所述直线方向L移动(如:图7A至图7C)。其中,所述复位弹性件14位于所述驱动块412的动作路径上,并且所述驱动块412顶抵于所述复位弹性件14。
更详细地说,如图3至图6所示,所述预设角度为360/N度,并且N为大于1的正整数且为360的因子(factor)。其中,所述轨道槽4111包含有沿着所述旋转轴线R分布的N个螺旋槽4112及平行于所述直线方向L的N个连通槽4113,并且N个所述螺旋槽4112的头端对应于所述旋转轴线R位于相同的高度,而N个所述螺旋槽4112的尾端对应于所述旋转轴线R也位于相同的高度,彼此相邻且分属两个所述螺旋槽4112的所述头端与所述尾端通过一个所述连通槽4113而相连通。于本实施例中,N是以2来说明,但本发明不受限于此。
据此,当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自所述初始位置移动至所述待启动位置时),所述驱动块412由位于其中一个所述连通槽4113、通过相连通的所述螺旋槽4112压迫与旋转而移动至其中另一个所述连通槽4113。
再者,所述驱动块412于本实施例中包含有一载板4121、相连于所述载板4121内表面的一内凸部4122及相连于所述载板4121外表面的一第一凸部4123与一第二凸部4124。 其中,所述驱动块412以所述内凸部4122可移动地安装于所述轨道槽4111内,而所述第一凸部4123与所述第二凸部4124则是呈错位设置。
所述计次组件6位于所述驱动块412的动作路径上、且包含有一环体61及间隔地形成于所述环体61内表面的多个轮齿62。其中,所述环体61的局部裸露于所述壳体段11之外,据以显示所述环体61的旋转角度,进而得知所述喷雾器100进行的所述雾化作业次数。
当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自图3所示的所述初始位置移动至图4所示的所述待启动位置时),所述旋转模块4的所述驱动块412能推动至少一个所述轮齿62,以驱使所述计次组件6旋转一计次角度(如:图7A至图7C)。再者,在所述驱动块412在推动至少一个所述轮齿62之后,所述复位弹性件14能推动所述驱动块412沿所述直线方向L归回其原点。
进一步地说,如图5和图7A所示,当所述连动模块5位于所述初始位置时,所述第一凸部4123沿所述直线方向L朝向一个所述轮齿62(称之为第一轮齿621),而所述第二凸部4124则是插设于相邻的另外两个所述轮齿62(称之为第二轮齿622与第三齿轮63)之间。
如图6和图7B所示,当所述连动模块5自所述初始位置移动至所述待启动位置的过程中,所述驱动块412受到一个所述螺旋槽4112的压迫而沿所述直线方向L朝下移动,以使所述驱动块412的所述第一凸部4123插入所述第一轮齿621与所述第二轮齿622之间,而所述第二凸部4124则是沿所述直线方向L朝向所述第三轮齿623。
如图7C所示,当所述连动模块5位于所述待启动位置时,所述驱动块412受到所述复位弹性件14驱使而沿所述直线方向L朝上移动,以使所述第二凸部4124插设于所述第三轮齿623及其旁的第四轮齿624,而所述第一凸部4123则是所述直线方向L朝向所述第二轮齿622。
据此,本实施例所公开的所述喷雾器100通过所述计次组件6的结构设计搭配于所述外壳1与所述旋转模块4,以使其能够通过旋转所述计次角度来呈现所述喷雾器100的使用次数,进而便于使用者能够直观地知晓所述喷雾器100的现况。
[实施例一的喷雾器的锁定功能]
以上为所述喷雾器100于本实施例中的计次功能说明,以下接着介绍所述喷雾器100于本实施例中的锁定功能。然而,基于所述喷雾器100实现所述锁定功能的具体组件构造 可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
如图8至图10C所示,所述外壳1形成有一锁定槽113,并且所述锁定槽113是于所述壳体段11的内表面沿所述直线方向L凹设所形成。所述旋转模块4于本实施例中包含有安装于所述盖体42内底部的一推动件43。其中,所述推动件43于本实施例中是一体成形且直立地连接于所述盖体42的所述内底部,但本发明不以此为限。
所述锁定模块7用来连接所述容器瓶200的瓶底并收容于所述内部空间S之中。于本实施例中,所述锁定模块7包含有用来连接所述瓶底的一盒体71、安装于所述盒体71内且位置对应于所述推动件43的一触发机构72及安装所述旋转机构41的一锁定机构73。
所述盒体71于本实施例中是不可拆分地固定于所述容器瓶200的所述瓶底,并且所述盒体71形成有位在所述锁定机构73动作路径上的一开口711,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述盒体71也可以依据设计需求而为可拆卸地固定于所述容器瓶200的所述瓶底。
所述触发机构72包含有一驱动件721、对应于所述驱动件721设置的一转动件722及连接于所述转动件722的一渐进件723。于本实施例中,所述驱动件721包含有一盘体7211、顶抵于所述盒体71与所述盘体7211的一弹簧7212及(直立地)形成于所述盘体7211的一拨勾7213。其中,所述盘体7211设置于所述盒体71的底部且位置对应于所述推动件43,所述弹簧7212倾向推抵所述盘体7211至所述盒体71的所述底部,所述拨勾7213的位置对应于所述转动件722。
所述转动件722包含有枢接于所述盒体71的一螺杆7221及位于所述螺杆7221上的多个齿7222。其中,多个所述齿7222以环状配置于所述螺杆7221且较佳是呈棘轮状(ratchet gear),所述渐进件723可滑动地设置于所述盒体71并螺接于所述螺杆7221,并且所述转动件722能通过转动而驱使所述渐进件723(沿所述螺杆7221)移动。
依上所述,当所述喷雾器100完成一次所述雾化作业时,所述驱动件721(的所述盘体7211)能通过所述推动件43压迫而移动(如:所述推动件43穿过所述盒体71底部而压迫所述盘体7211),以通过带动至少一个所述齿7222而旋转所述螺杆7221,进而驱使所述渐进件723(沿着所述螺杆7221朝远离多个所述齿7222的方向)移动。
换个角度来看,当所述喷雾器100完成一次所述雾化作业时,所述锁定模块7能沿着所述旋转轴线R往复移动一趟,以使所述触发机构72通过所述推动件43的压迫而朝向所 述锁定机构73移动。于本实施例中,有关于所述螺杆7221的旋转是以下述方式实现:当所述喷雾器100完成一次所述雾化作业时,所述盘体7211能通过所述推动件43与所述弹簧7212而于所述盒体71内往复移动一次,以使所述拨勾7213带动至少一个所述齿7222而旋转所述螺杆7221。
进一步地说,所述锁定机构73安装所述旋转机构41的所述管体411,并且所述锁定机构73于本实施例中包含有一弹性件731与一锁定杆732。其中,所述弹性件731设置于所述外壳1的所述锁定槽113内,并且所述锁定杆732具有一杆体7321及自所述杆体7321(垂直地)延伸的一突出部7322。再者,所述杆体7321(沿所述直线方向L可滑动地)安装于所述管体411且其位置对应于(如:朝向)所述盒体71的所述开口711,而所述突出部7322的位置对应于(如:朝向)所述外壳1的所述锁定槽113。
请参阅图10A至图10C所示,当所述喷雾器100完成一预设次数的所述雾化作业时,所述触发机构72推动所述锁定机构73,以使所述锁定机构73朝所述外壳1移动而被限位,进而锁定所述旋转机构41的旋转。进一步地说,当所述喷雾器100完成所述预设次数的所述雾化作业时,所述渐进件723被所述转动件722驱使直至推动所述锁定机构73(如:所述渐进件723被所述转动件722驱使直至封闭所述开口711并推动所述锁定机构73),以使所述锁定机构73朝所述外壳1移动且被限位。
于本实施例中,有关于所述锁定机构73被限位是以下述方式实现:当所述喷雾器100完成所述预设次数的所述雾化作业时,所述杆体7321被所述渐进件723推动,以使所述突出部7322移动进入所述锁定槽113内并压迫于所述弹性件731,进而限制所述旋转模块4的转动。也就是说,在所述喷雾器100完成所述预设次数的所述雾化作业之前,所述杆体7321的底缘位于所述开口711内,并且所述突出部7322是位于所述锁定槽113之外且接触于所述弹性件731。
此外,所述锁定机构73还可以包含有直立地安装于所述盒体71的一刺针74,并且所述刺针74能被按压而穿出所述盒体71的顶部、进而自所述容器瓶200的所述瓶底刺入,据以使所述容器瓶200的内部压力能与外部大气压力维持一致,但本发明不受限于此。
据此,本实施例所公开的所述喷雾器100通过所述锁定模块7的结构设计搭配于所述外壳1与所述旋转模块4,以使其能够在所述喷雾器100完成所述预设次数的所述雾化作业之后,通过所述锁定模块7(如:突出部7322)限制所述旋转模块4的转动而使所述喷雾器100无法继续使用安装于其内的所述容器瓶200。
[实施例二]
请参阅图11至图20C所示,其为本发明的实施例二。由于本实施例类似于上述实施例一,所以两个实施例的相同处(如:所述喷雾器100的基础架构)不再加以赘述,而本实施例相较于上述实施例一的差异主要在于:实现所述喷雾器100的所述计次功能与所述锁定功能的相关构造,并且所述喷雾器100于本实施例中还具备有初始化功能。
[实施例二的喷雾器的计次功能]
如图11至图13所示,所述外壳1形成有沿平行所述直线方向L彼此相向的一第一环形齿条15与一第二环形齿条16,并且所述第一环形齿条15的多个齿是与所述第二环形齿条16的多个齿呈错位设置且为反向配置(如:图15A和图15B)。举例来说,所述第一环形齿条15的任一个所述齿沿所述直线方向L正投影于所述第二环形齿条16而形成的一投影区域,其覆盖于所述第二环形齿条16的相邻两个所述齿。
如图12和图14A所示,所述外壳1包含有设于其内的一复位弹性件14,而所述复位弹性件14于本实施例中为能够沿所述直线方向L被弹性地压缩的一弹簧。其中,所述复位弹性件14是固定于所述壳体段11与所述计次组件6,以倾向驱使所述计次组件6朝向所述第二环形齿条16移动。
所述旋转机构41包含有一管体411与一驱动块412。其中,所述管体411的一端(如:图12中的所述管体411顶端)嵌设于所述壳体段11的所述环形槽111,所述管体411的另一端(如:图12中的所述管体411底端)组接于所述盖体42,而所述驱动块412形成于所述管体411上(如:所述驱动块412突伸出所述管体411的外表面)。
如图14A至图15B所示,所述计次组件6(的局部)位于所述驱动块412的动作路径上,并且所述计次组件6大致呈环状且包含有一环体61及多个轮齿62。其中,所述环体61的局部可以裸露于所述壳体段11之外,据以显示所述环体61的旋转角度,进而得知所述喷雾器100进行的所述雾化作业次数。
再者,所述计次组件6的多个所述轮齿62分别面向且形状对应于所述第一环形齿条15与所述第二环形齿条16的多个所述齿。于本实施例中,多个所述轮齿62分别位于所述计次组件6的两端(如:图15A和图15B中的所述计次组件6顶端与底端)而排成两圈,并且所述计次组件6的两圈所述轮齿62分别面向且形状对应于所述第一环形齿条15的多个所述齿与所述第二环形齿条16的多个所述齿。
依上所述,当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自图 12所示的所述初始位置移动至图13所示的所述待启动位置时),所述旋转模块4的所述驱动块412能(间接地)推动至少一个所述轮齿62,以驱使所述计次组件6旋转一计次角度。进一步地说,当所述旋转模块4旋转所述预设角度时,所述驱动块412压迫所述计次组件6(的所述局部),以使所述计次组件6沿所述直线方向L移动,并且多个所述轮齿62则轮流沿着所述第一环形齿条15与所述第二环形齿条16的相对应所述齿移动而使所述计次组件6旋转。
需说明的是,多个所述轮齿62是通过所述驱动块412移动所述计次组件6而能沿着所述第一环形齿条15移动。接着,通过所述复位弹性件14抵接于所述计次组件6,以使在多个所述轮齿62在沿着所述第一环形齿条15的相对应所述齿移动之后,所述复位弹性件14能推动所述计次组件6朝向其中所述第二环形齿条16移动,以使多个所述轮齿62沿着所述第二环形齿条16的相对应所述齿移动并被限位。
[实施例二的喷雾器的初始化功能]
以上为所述喷雾器100于本实施例中的计次功能说明,以下接着介绍所述喷雾器100于本实施例中用来搭配上述计次功能的初始化功能。如图12及图16至图18所示,所述喷雾器100进一步包含有安装于所述外壳1与所述计次组件6的一初始化组件8,并且当所述盖体42自所述旋转机构41拆下时,能带动所述初始化组件8,以通过所述初始化组件8消除所述计次组件6所旋转的任何所述计次角度。然而,基于所述喷雾器100实现所述初始化功能的具体组件构造可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
于本实施例中,所述初始化组件8包含有一初始化弹簧81,并且所述初始化弹簧81的两端分别固定于所述外壳1的局部以及所述计次组件6,而所述盖体42扣接于所述第二环形齿条16。据此,当所述盖体42自所述旋转机构41拆下时,所述盖体42驱使所述第二环形齿条16(共同移动而)脱离所述计次组件6(也就是,所述计次组件6不再受到所述第二环形齿条16的限位),以使所述初始化弹簧81倾向(释放其回弹力而)旋转所述计次组件6至其原点。
更详细地说,所述初始化弹簧81大致收容于凹设在所述环体61外表面的一环状沟槽611内,并且所述初始化弹簧81的一端固定于所述环体61,而所述初始化弹簧81的另一端延伸出所述环状沟槽611并固定于所述壳体段11的所述局部。
据此,当所述旋转模块4旋转所述预设角度时(如:图16和图17),所述计次组件 6旋转所述计次角度并限位于所述第二环形齿条16(并且所述计次组件6未接触于所述第一环形齿条15),以使所述初始化弹簧81被拉伸而蓄有一回弹力。再者,当所述盖体42自所述旋转机构41拆下时(如:图18),所述盖体42驱使所述外壳1的另一局部(如:所述第二环形齿条16)脱离所述计次组件6(并且所述计次组件6也未接触于所述第一环形齿条15),据以使所述初始化弹簧81释放所述回弹力,进而旋转所述计次组件6至其原点。
据此,本实施例所公开的所述喷雾器100通过所述初始化组件8搭配于所述外壳1与所述计次组件6,以使得所述喷雾器100能通过所述盖体42而将所述计次组件6所累积旋转的至少一次所述计次角度进行归零,进而提供用户更为多元的功能且利于所述喷雾器100的再次使用。
[实施例二的喷雾器的锁定功能]
以上为所述喷雾器100于本实施例中的初始化功能说明,以下接着介绍所述喷雾器100于本实施例中的锁定功能。然而,基于所述喷雾器100实现所述锁定功能的具体组件构造可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
如图12及图19至图20C所示,所述外壳1形成有一锁定槽113,并且所述锁定槽113是于所述壳体段11的内表面沿所述直线方向L凹设所形成。所述旋转模块4于本实施例中包含有安装于所述盖体42内底部的一推动件43。其中,所述推动件43于本实施例中是一体成形且直立地连接于所述盖体42的所述内底部,但本发明不以此为限。
所述锁定模块7用来连接所述容器瓶200的瓶底并收容于所述内部空间S之中。于本实施例中,所述锁定模块7包含有用来连接所述瓶底的一盒体71、安装于所述盒体71内且位置对应于所述推动件43的一触发机构72及安装所述旋转机构41的一锁定机构73。其中,当所述喷雾器100完成一次所述雾化作业时,所述锁定模块7能沿着所述旋转轴线R往复移动一趟,以使所述触发机构72通过所述推动件43的压迫而朝向所述锁定机构73移动。
更详细地说,所述盒体71于本实施例中是不可拆分地固定于所述容器瓶200的所述瓶底。其中,所述盒体71形成有位在所述锁定机构73动作路径上的一开口711,所述盒体71的内侧壁形成有一限位结构712(如:平行所述直线方向L的多个柱体),但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述盒体71也可以依据设 计需求而可拆卸地固定于所述容器瓶200的所述瓶底。
所述触发机构72包含有一转动件722及连接于所述转动件722的一渐进件723,并且所述转动件722能通过转动而驱使所述渐进件723移动。于本实施例中,所述转动件722包含有位置对应于所述推动件43的一转盘7223及直立地形成于所述转盘7223上的一螺柱7224。其中,所述限位结构712相对于所述盒体71的底部的一第一高度低于所述螺柱7224相对于所述盒体71的所述底部的一第二高度。
所述渐进件723包含有螺接于所述螺柱7224的一渐进盘7231及可滑动地设置于所述盒体71顶部的一渐进杆7232,并且所述渐进杆7232与所述渐进盘7231为分离设置。其中,所述转盘7223能通过所述推动件43的压迫而转动,以驱使所述渐进盘7231沿着所述螺柱7224移动。
依上所述,当所述喷雾器100完成所述预设次数的所述雾化作业时,所述渐进盘7231被所述转动件722驱使直至推动所述渐进杆7232,以使所述渐进杆7232推动所述锁定机构73朝所述外壳1移动且被限位。进一步地说,如果所述预设次数为10次,当所述渐进盘7231的位置低于所述第一高度时(如:第1~7次的所述雾化作业),被所述转盘7223驱使的所述渐进盘7231受限于所述限位结构712而无法转动、且仅能沿着所述螺柱7224(朝远离所述转盘7223的方向)直线移动;当所述渐进盘7231的位置高于所述第一高度时(如:第8~10次的所述雾化作业),所述渐进盘7231的局部是与所述渐进杆7232位在相同高度,并且所述渐进盘7231能被所述转盘7223驱使而一同转动,以推动所述渐进杆7232。
再者,所述锁定机构73安装于所述旋转机构41的所述管体411,并且所述锁定机构73于本实施例中包含有一弹性件731与一锁定杆732。其中,所述弹性件731设置于所述外壳1的所述锁定槽113内,并且所述锁定杆732具有一杆体7321及自所述杆体7321(垂直地)延伸的一突出部7322。再者,所述杆体7321(沿所述直线方向L可滑动地)安装于所述管体411且其位置对应于(如:朝向)所述盒体71的所述开口711,而所述突出部7322的位置对应于(如:朝向)所述外壳1的所述锁定槽113。
依上所述,当所述喷雾器100完成一预设次数的所述雾化作业时,所述触发机构72推动所述锁定机构73,以使所述锁定机构73朝所述外壳1移动而被限位,进而锁定所述旋转机构41的旋转。进一步地说,当所述喷雾器100完成所述预设次数的所述雾化作业时,所述渐进件723被所述转动件722驱使直至推动所述锁定机构73(如:所述渐进件 723被所述转动件722驱使直至封闭所述开口711并推动所述锁定机构73),以使所述锁定机构73朝所述外壳1移动且被限位。
于本实施例中,有关于所述锁定机构73被限位是以下述方式实现:当所述喷雾器100完成所述预设次数的所述雾化作业时,所述杆体7321被所述渐进件723推动,以使所述突出部7322移动进入所述锁定槽113内并压迫于所述弹性件731,进而限制所述旋转模块4的转动。也就是说,在所述喷雾器100完成所述预设次数的所述雾化作业之前,所述杆体7321的底缘可以位于所述开口711内,并且所述突出部7322是位于所述锁定槽113之外且接触于所述弹性件731。
此外,所述锁定机构73还可以包含有直立地安装于所述盒体71的一刺针74,并且所述刺针74能被按压而穿出所述盒体71的顶部、进而自所述容器瓶200的所述瓶底刺入,据以使所述容器瓶200的内部压力能与外部大气压力维持一致,但本发明不受限于此。
据此,本实施例所公开的所述喷雾器100通过所述锁定模块7的结构设计搭配于所述外壳1与所述旋转模块4,以使其能够在所述喷雾器100完成所述预设次数的所述雾化作业之后,通过所述锁定模块7(如:突出部7322)限制所述旋转模块4的转动而使所述喷雾器100无法继续使用安装于其内的所述容器瓶200。
[实施例三]
请参阅图21至图25C所示,其为本发明的实施例三。由于本实施例类似于上述实施例二,所以两个实施例的相同处(如:所述喷雾器100的所述基础架构及所述锁定功能)不再加以赘述,而本实施例相较于上述实施例二的差异主要在于:实现所述喷雾器100的所述计次功能与所述初始化功能的相关构造。
[实施例三的喷雾器的计次功能]
如图21至图23所示,所述旋转机构41包含有一管体411与一驱动块412。其中,所述管体411的一端(如:图22A中的所述管体411顶端)嵌设于所述壳体段11的所述环形槽111,所述管体411的另一端组接于所述盖体42,而所述驱动块412形成于所述管体411上(如:所述驱动块412突伸出所述管体411的外表面)。
如图23至图25B所示,所述计次组件6(的局部)位于所述驱动块412的动作路径上,并且所述计次组件6包含枢接于所述外壳1的至少一个齿轮63,并且至少一个所述齿轮63位于所述驱动块412的所述动作路径上且形成有多个轮齿6311。其中,至少一个所述齿轮63的局部裸露于所述壳体段11之外,据以显示其旋转角度,进而得知所述喷雾 器100进行的所述雾化作业次数。
依上所述,当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自所述初始位置移动至所述待启动位置时),所述旋转模块4的所述驱动块412能推动至少一个所述轮齿6311,以驱使所述计次组件6旋转一计次角度。进一步地说,当所述旋转模块4旋转所述预设角度时,所述驱动块412拨动至少一个所述轮齿6311,以使至少一个所述齿轮63旋转。
其中,基于所述喷雾器100以齿轮方式实现所述计次功能的具体构造可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
于本实施例中,至少一个所述齿轮63的数量进一步限定为多个,并且多个所述齿轮63枢接于所述外壳1且彼此啮合。更详细地说,其中一个所述齿轮63形成有多个所述轮齿6311且定义为一进位齿轮631,其中另一个所述齿轮63定义为一计次齿轮632且其局部裸露于所述外壳1之外,据以显示其旋转角度。
据此,当所述旋转模块4旋转所述预设角度时(也就是,当所述连动模块5自所述初始位置移动至所述待启动位置时),所述驱动块412通过所述进位齿轮631驱使所述计次齿轮632旋转所述计次角度,而所述进位齿轮631所旋转的角度大于所述计次角度。
需说明的是,所述计次组件6于本实施例中是以两个所述齿轮63(如:所述进位齿轮631与所述计次齿轮632)来说明,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述计次组件6可以在所述进位齿轮631与所述计次齿轮632之间设有彼此啮合的至少一个传动齿轮63,据以使所述进位齿轮631可以通过至少一个所述传动齿轮63而旋转所述计次齿轮632。
[实施例三的喷雾器的初始化功能]
以上为所述喷雾器100于本实施例中的计次功能说明,以下接着介绍所述喷雾器100于本实施例中用来搭配上述计次功能的初始化功能。其中,如图25A至图25C所示,所述初始化组件8包含有一初始化齿条82,并且当所述旋转模块4旋转所述预设角度时,所述旋转模块4的所述驱动块412能推动至少一个所述轮齿6311,以驱使所述计次组件6旋转所述计次角度,而所述初始化齿条82保持不动;而当所述盖体42自所述旋转机构41拆下时,所述盖体42带动所述初始化齿条82,以使所述初始化齿条82逆向旋转所述计次组件6至其原点。
更详细地说,至少一个所述齿轮63包含有位于多个所述轮齿6311相反侧的多个退位齿6312,并且所述初始化齿条82的位置对应于多个所述退位齿6312。其中,当所述盖体42自所述旋转机构41拆下时,所述盖体42带动所述初始化齿条82,以使所述初始化齿条82推动至少一个所述退位齿6312而逆向旋转至少一个所述齿轮63至其原点。
然而,基于所述喷雾器100实现所述初始化功能的具体组件构造可依设计需求而加以调整变化,所以本实施例于下述仅以所述喷雾器100的其中一个可能方式进行说明,但本发明不受限于此。
所述进位齿轮631与所述计次齿轮632各具有多个退位齿6312、6321,并且所述进位齿轮631的多个所述退位齿6312未啮合于所述计次齿轮632的多个所述退位齿6321,而所述进位齿轮631的多个所述退位齿6312是位于其多个所述轮齿6311的相反侧。再者,所述初始化齿条82呈U形,并且所述初始化齿条82的位置分别对应于所述进位齿轮631的多个所述退位齿6312以及所述计次齿轮632的多个所述退位齿6321。
据此,当所述盖体42自所述旋转机构41拆下时,所述盖体42带动所述初始化齿条82,以使所述初始化齿条82推动所述进位齿轮631的至少一个所述退位齿6312及所述计次齿轮632的至少一个所述退位齿6321,而逆向旋转多个所述齿轮63至其原点。
[本发明实施例的技术效果]
综上所述,本发明实施例所公开的喷雾器,其能通过所述计次组件的结构设计搭配于所述外壳与所述旋转模块,以使其能够通过旋转所述计次角度来呈现所述喷雾器的使用次数,进而便于使用者能够直观地知晓所述喷雾器的现况。
再者,本实施例所公开的所述喷雾器通过所述锁定模块的结构设计搭配于所述外壳与所述旋转模块,以使其能够在所述喷雾器完成所述预设次数的所述雾化作业之后,通过所述锁定模块(如:突出部)限制所述旋转模块的转动而使所述喷雾器无法继续使用安装于其内的所述容器瓶。
另外,本实施例所公开的所述喷雾器通过所述初始化组件搭配于所述外壳与所述计次组件,以使得所述喷雾器能通过所述盖体而将所述计次组件所累积旋转的至少一次所述计次角度进行归零,进而提供用户更为多元的功能且利于所述喷雾器的再次使用。
此外,所述喷雾器在所述基础架构上可以依据设计需求而搭配任一个实施例中的所述计次功能及/或所述归零功能,并且上述任一个实施例的所述计次功能还能选择性地搭配相对应的所述初始化功能,据以有效地提供用户更为多元的产品。
以上所公开的内容仅为本发明的优选可行实施例,并非因此局限本发明的专利范围,所以凡是运用本发明说明书及附图内容所做的等效技术变化,均包含于本发明的专利范围内。
Claims (10)
- 一种喷雾器,其特征在于,所述喷雾器包括:一外壳,定义有一旋转轴线;一雾化模块,固定于所述外壳内且位于所述旋转轴线上;一启动模块,安装于所述外壳;一旋转模块,包含有:一旋转机构,插设于所述外壳、并以所述旋转轴线为轴心而可旋转地安装于所述外壳;及一盖体,安装于所述旋转机构,以与所述外壳共同包围成一内部空间;一推动件,安装于所述盖体的内底部;一连动模块,安装于所述旋转模块,并且所述连动模块用来供一容器瓶配置;其中,所述旋转模块能旋转一预设角度来带动所述连动模块,以使所述连动模块通过压迫于所述外壳而沿所述旋转轴线自一初始位置移动至一待启动位置,进而限位于所述启动模块;其中,当所述连动模块处于所述待启动位置时,所述启动模块能被按压而释放且驱使所述连动模块移动至所述初始位置,用以供所述容器瓶内的液体通过所述雾化模块而朝所述喷雾器外进行一次雾化作业;以及一锁定模块,用来连接所述容器瓶的瓶底,并且所述锁定模块包含:一触发机构,位置对应于所述推动件;及一锁定机构,安装所述旋转机构;其中,当所述喷雾器完成一次所述雾化作业时,所述锁定模块能沿着所述旋转轴线往复移动一趟,以使所述触发机构通过所述推动件压迫而朝向所述锁定机构移动;其中,当所述喷雾器完成一预设次数的所述雾化作业时,所述触发机构推动所述锁定机构,以使所述锁定机构朝所述外壳移动而被限位,进而锁定所述旋转机构的旋转。
- 依据权利要求1所述的喷雾器,其特征在于,所述触发机构包含有:一转动件;及一渐进件,连接于所述转动件,并且所述转动件能通过转动而驱使所述渐进件移动;其中,当所述喷雾器完成所述预设次数的所述雾化作业时,所述渐进件被所述转动件驱使直至推动所述锁定机构,以使所述锁定机构朝所述外壳移动且被限位。
- 依据权利要求2所述的喷雾器,其特征在于,所述锁定模块包含有一盒体,用来连接所述容器瓶的所述瓶底;其中,所述盒体形成有位在所述锁定机构动作路径上的一开口,所述触发机构安装于所述盒体内;其中,当所述喷雾器完成所述预设次数的所述雾化作业时,所述渐进件被所述转动件驱使直至封闭所述开口并推动所述锁定机构。
- 依据权利要求3所述的喷雾器,其特征在于,所述外壳形成有一锁定槽,所述锁定机构包含有:一弹性件,设置于所述锁定槽内;及一锁定杆,具有一杆体及自所述杆体延伸的一突出部;其中,所述杆体的位置对应于所述开口,所述突出部的位置对应于所述锁定槽;其中,当所述喷雾器完成所述预设次数的所述雾化作业时,所述杆体被所述渐进件推动,以使所述突出部移动进入所述锁定槽内并压迫于所述弹性件。
- 依据权利要求2所述的喷雾器,其特征在于,所述锁定模块包含有一盒体,用来连接所述容器瓶的所述瓶底;所述触发机构安装于所述盒体内并包含有一驱动件,并且所述转动件包含有:一螺杆,枢接于所述盒体;其中,所述渐进件可滑动地设置于所述盒体并螺接于所述螺杆;及多个齿,位于所述螺杆上;其中,当所述喷雾器完成一次所述雾化作业时,所述驱动件能通过所述推动件压迫而移动,以通过带动至少一个所述齿而旋转所述螺杆,进而驱使所述渐进件移动。
- 依据权利要求5所述的喷雾器,其特征在于,所述驱动件包含有:一盘体;一弹簧,顶抵于所述盒体与所述盘体,并且所述弹簧倾向推抵所述盘体至所述盒体的底部;及一拨勾,形成于所述盘体且位置对应于至少一个所述齿;其中,当所述喷雾器完成一次所述雾化作业时,所述盘体能通过所述推动件与所述弹簧而于所述盒体内往复移动一次,以使所述拨勾带动至少一个所述齿而旋转所述螺杆。
- 依据权利要求2所述的喷雾器,其特征在于,所述锁定模块包含有一盒体,用来连接所述容器瓶的所述瓶底;所述触发机构安装于所述盒体内,并且所述转动件包含有位置对应于所述推动件的一转盘及直立地形成于所述转盘上的一螺柱;所述渐进件包含有:一渐进盘,螺接于所述螺柱,并且所述转盘能通过所述推动件的压迫而转动,以驱使所述渐进盘沿着所述螺柱移动;及一渐进杆,可滑动地设置于所述盒体的顶部,并且所述渐进杆与所述渐进盘为分离设置;其中,当所述喷雾器完成所述预设次数的所述雾化作业时,所述渐进盘被所述转动件驱使直至推动所述渐进杆,以使所述渐进杆推动所述锁定机构朝所述外壳移动且被限位。
- 依据权利要求7所述的喷雾器,其特征在于,所述盒体的内侧壁形成有一限位结构,并且所述限位结构相对于所述盒体的底部的一第一高度低于所述螺柱相对于所述盒体的所述底部的一第二高度;其中,当所述渐进盘的位置低于所述第一高度时,被所述转盘驱使的所述渐进盘受限于所述限位结构而无法转动、且仅能沿着所述螺柱直线移动;当所述渐进盘的位置高于所述第一高度时,所述渐进盘能被所述转盘驱使而一同转动,以推动所述渐进杆。
- 一种储存装置,其特征在于,所述储存装置包括:一容器瓶;以及一锁定模块,包含:一盒体,连接于所述容器瓶的瓶底,并且所述盒体形成有一开口;及一触发机构,安装于所述盒体内,并且所述触发机构包含有一转动件;及一渐进件,连接于所述转动件,并且所述转动件能通过转动而驱使所述渐进件朝向所述开口移动;其中,当所述转动件转动一预设次数时,所述渐进件被所述转动件驱使直至封闭所述开口。
- 依据权利要求9所述的储存装置,其特征在于,所述盒体是不可拆分地固定于所述容器瓶的所述瓶底。
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Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117339067A (zh) * | 2023-11-02 | 2024-01-05 | 齐鲁制药有限公司 | 一种用于喷雾器的容器组件 |
| CN117550227A (zh) * | 2022-03-08 | 2024-02-13 | 艾特申博(苏州)医药科技有限公司 | 用于雾化器的触发组件以及雾化器 |
| WO2024066590A1 (zh) * | 2022-09-30 | 2024-04-04 | 传思生物公司 | 喷雾器 |
| WO2024209253A1 (en) * | 2023-04-06 | 2024-10-10 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer for a fluid contained in a container |
| GB2642606A (en) * | 2023-04-06 | 2026-01-14 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer for a fluid contained in a container |
Families Citing this family (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN216025662U (zh) | 2020-06-30 | 2022-03-15 | 微邦科技股份有限公司 | 喷雾器 |
| CN115835897B (zh) * | 2020-07-03 | 2026-02-03 | 勃林格殷格翰国际有限公司 | 喷雾器 |
| EP4448063A1 (en) * | 2021-12-14 | 2024-10-23 | A. Nattermann & Cie GmbH | Fluid dispensing device and mechanical energy storage |
| CN118304519B (zh) * | 2024-04-24 | 2026-04-07 | 艾特申博(苏州)医药科技有限公司 | 喷射装置 |
| CN120769762A (zh) * | 2024-07-03 | 2025-10-10 | 苏州新劢德医疗器械科技有限公司 | 用于雾化器的触发组件和雾化器 |
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| US12311100B1 (en) * | 2024-07-03 | 2025-05-27 | Suzhou Singmed Medical Device Science And Technology Ltd. | Trigger assembly for inhaler, and inhaler |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO1997024586A1 (en) * | 1995-12-28 | 1997-07-10 | Boehringer Ingelheim International Gmbh | Mechanical counter for a metering apparatus |
| US20130125880A1 (en) * | 2011-05-23 | 2013-05-23 | Boehringer Ingelheim International Gmbh | Nebulizer |
| CN204587620U (zh) * | 2015-01-20 | 2015-08-26 | 宁波昌祺氟塑料制品有限公司 | 一种圆形塑料容器锁紧结构 |
| CN204606793U (zh) * | 2015-05-07 | 2015-09-02 | 王一鹤 | 一种自动垃圾桶 |
| CN106232166A (zh) * | 2014-05-07 | 2016-12-14 | 勃林格殷格翰国际有限公司 | 喷雾器 |
| WO2018036388A1 (en) * | 2016-08-24 | 2018-03-01 | Ningbo Hlk Pharmaceuticals Co., Ltd. | Inhalation atomizer comprising a blocking function and a counter |
| CN110269476A (zh) * | 2019-05-06 | 2019-09-24 | 武汉长恒如工艺品有限公司 | 一种便于收纳的杯子 |
Family Cites Families (21)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP4423457B2 (ja) * | 1998-01-16 | 2010-03-03 | トルーデル メディカル インターナショナル | ディスペンサおよび投与装置用表示装置 |
| DE19807921A1 (de) * | 1998-02-25 | 1999-08-26 | Pfeiffer Erich Gmbh & Co Kg | Austrag-Steuerung für einen Medien-Spender |
| SE9902672D0 (sv) * | 1999-07-12 | 1999-07-12 | Astra Ab | Delivery device |
| US20050194006A1 (en) * | 2004-03-05 | 2005-09-08 | Hoang Quyen C. | Metered dose inhaler housing |
| JP4493526B2 (ja) * | 2005-03-16 | 2010-06-30 | 株式会社資生堂 | エアゾール容器 |
| ES2423199T3 (es) * | 2005-06-01 | 2013-09-18 | Shl Group Ab | Dispositivo para suministrar medicamento |
| WO2007022898A2 (en) * | 2005-08-24 | 2007-03-01 | Boehringer Ingelheim International Gmbh | Atomiser comprising a counter and an end of operation lock |
| EP2044967A1 (de) | 2007-10-01 | 2009-04-08 | Boehringer Ingelheim Pharma GmbH & Co. KG | Zerstäuber |
| WO2009046215A2 (en) * | 2007-10-02 | 2009-04-09 | Lab International Srl | Safety and abuse deterrent improved device |
| EP3453640A1 (en) * | 2008-10-06 | 2019-03-13 | Swimc Llc | Actuator for spray container and method regarding same |
| JP2010274232A (ja) * | 2009-05-29 | 2010-12-09 | Yoshino Kogyosho Co Ltd | エアゾール容器体装着用噴射装置及びこの噴射装置を用いたエアゾール容器 |
| US20140263456A1 (en) * | 2013-03-15 | 2014-09-18 | Launce R. Barber | Child-resistant closure systems for containers |
| WO2015018904A1 (en) * | 2013-08-09 | 2015-02-12 | Boehringer Ingelheim International Gmbh | Nebulizer |
| WO2015169430A1 (en) * | 2014-05-07 | 2015-11-12 | Boehringer Ingelheim International Gmbh | Nebulizer |
| US10576222B2 (en) * | 2014-05-07 | 2020-03-03 | Boehringer Ingelheim International Gmbh | Container, indicator device with moveable piercing part, and nebulizer |
| AU2018303701B2 (en) * | 2017-07-21 | 2023-09-21 | Boehringer Ingelheim International Gmbh | Nebulizer and container |
| CN107961433A (zh) * | 2017-12-26 | 2018-04-27 | 新昌县城关新胜轴承厂 | 用于医学护理的喷雾器 |
| CN110433361B (zh) * | 2018-05-04 | 2023-01-17 | 微邦科技股份有限公司 | 微结构喷嘴 |
| JP7202457B2 (ja) * | 2018-09-27 | 2023-01-11 | エスエイチエル・メディカル・アーゲー | エアロゾルディスペンサーのロック機構 |
| CN111195382B (zh) * | 2018-11-16 | 2022-04-19 | 微邦科技股份有限公司 | 雾化给药装置的锁定结构 |
| CN216025662U (zh) * | 2020-06-30 | 2022-03-15 | 微邦科技股份有限公司 | 喷雾器 |
-
2021
- 2021-06-28 CN CN202121448693.2U patent/CN216025662U/zh active Active
- 2021-06-28 TW TW110207457U patent/TWM620483U/zh unknown
- 2021-06-28 TW TW110207458U patent/TWM622386U/zh unknown
- 2021-06-28 US US18/013,903 patent/US12616804B2/en active Active
- 2021-06-28 TW TW110207456U patent/TWM620482U/zh unknown
- 2021-06-28 WO PCT/CN2021/102677 patent/WO2022001932A1/zh not_active Ceased
- 2021-06-28 CN CN202180032016.9A patent/CN115484999B/zh active Active
- 2021-06-28 EP EP21832545.4A patent/EP4173660A4/en active Pending
- 2021-06-28 CN CN202121446757.5U patent/CN215515024U/zh active Active
- 2021-06-28 CN CN202121446570.5U patent/CN216025661U/zh active Active
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO1997024586A1 (en) * | 1995-12-28 | 1997-07-10 | Boehringer Ingelheim International Gmbh | Mechanical counter for a metering apparatus |
| US20130125880A1 (en) * | 2011-05-23 | 2013-05-23 | Boehringer Ingelheim International Gmbh | Nebulizer |
| CN106232166A (zh) * | 2014-05-07 | 2016-12-14 | 勃林格殷格翰国际有限公司 | 喷雾器 |
| CN204587620U (zh) * | 2015-01-20 | 2015-08-26 | 宁波昌祺氟塑料制品有限公司 | 一种圆形塑料容器锁紧结构 |
| CN204606793U (zh) * | 2015-05-07 | 2015-09-02 | 王一鹤 | 一种自动垃圾桶 |
| WO2018036388A1 (en) * | 2016-08-24 | 2018-03-01 | Ningbo Hlk Pharmaceuticals Co., Ltd. | Inhalation atomizer comprising a blocking function and a counter |
| CN110269476A (zh) * | 2019-05-06 | 2019-09-24 | 武汉长恒如工艺品有限公司 | 一种便于收纳的杯子 |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP4173660A4 * |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117550227A (zh) * | 2022-03-08 | 2024-02-13 | 艾特申博(苏州)医药科技有限公司 | 用于雾化器的触发组件以及雾化器 |
| WO2024066590A1 (zh) * | 2022-09-30 | 2024-04-04 | 传思生物公司 | 喷雾器 |
| GB2639126A (en) * | 2022-09-30 | 2025-09-10 | Transpire Bio Inc | Sprayer |
| WO2024209253A1 (en) * | 2023-04-06 | 2024-10-10 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer for a fluid contained in a container |
| WO2024209239A1 (en) * | 2023-04-06 | 2024-10-10 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer and container for a nebulizer |
| GB2642605A (en) * | 2023-04-06 | 2026-01-14 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer and container for a nebulizer |
| GB2642606A (en) * | 2023-04-06 | 2026-01-14 | Neutec Inhaler Ilac Sanayi Ve Ticaret Anonim Sirketi | Nebulizer for a fluid contained in a container |
| CN117339067A (zh) * | 2023-11-02 | 2024-01-05 | 齐鲁制药有限公司 | 一种用于喷雾器的容器组件 |
| CN117339067B (zh) * | 2023-11-02 | 2024-03-29 | 齐鲁制药有限公司 | 一种用于喷雾器的容器组件 |
Also Published As
| Publication number | Publication date |
|---|---|
| US20230321365A1 (en) | 2023-10-12 |
| CN115484999A (zh) | 2022-12-16 |
| CN115484999B (zh) | 2024-02-27 |
| EP4173660A4 (en) | 2024-09-25 |
| CN216025661U (zh) | 2022-03-15 |
| CN216025662U (zh) | 2022-03-15 |
| EP4173660A1 (en) | 2023-05-03 |
| TWM620482U (zh) | 2021-12-01 |
| CN215515024U (zh) | 2022-01-14 |
| US12616804B2 (en) | 2026-05-05 |
| TWM622386U (zh) | 2022-01-21 |
| TWM620483U (zh) | 2021-12-01 |
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