CN212405354U - Multifunctional bubbler - Google Patents

Multifunctional bubbler Download PDF

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Publication number
CN212405354U
CN212405354U CN202020464243.1U CN202020464243U CN212405354U CN 212405354 U CN212405354 U CN 212405354U CN 202020464243 U CN202020464243 U CN 202020464243U CN 212405354 U CN212405354 U CN 212405354U
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water
water inlet
blade
bubble
water outlet
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CN202020464243.1U
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Chinese (zh)
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邵徽隆
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Abstract

The utility model discloses a multifunctional bubbler, connect the play water assembly on water supply connector including water supply connector and rotation, seted up the apopore on water supply connector's the bottom surface, seted up bubble water inlet opening and blade water inlet opening on the terminal surface of play water assembly, go out the inside bubble water passageway that is formed with bubble water inlet opening intercommunication and the blade water passageway that communicates with blade water inlet opening of water assembly, be formed with the bubble water spout that is linked together with bubble water passageway and the blade water spout that is linked together with blade water passageway on the bottom of play water assembly. The utility model discloses a rotate out the water subassembly and enable bubble water inlet opening or blade water inlet opening alternative and water supply connector's apopore switch on and then produce bubble water or produce the blade water that the washing area is bigger in blade water spout department in bubble water spout department for the function of bubbler forms diversification, and has improved the application scope of bubbler, and the user can come specific selection to use bubble water or blade water to wash according to washing article.

Description

Multifunctional bubbler
Technical Field
The utility model relates to a bubbler technical field, concretely relates to multi-functional bubbler.
Background
The bubbler is a device which has the foaming effect and saves water by water flow. The bubbler can fully mix the flowing water and air, and the scouring force of the water is improved a lot by adding the air, thereby effectively reducing the water consumption and saving the water. A bubbler is usually arranged on a water outlet terminal of bathroom products such as a washbasin faucet, a kitchen faucet, a drawing faucet, a spray gun, a bidet, a shower head and the like so as to achieve a satisfactory washing effect and achieve the purpose of water saving, but the existing bubbler has a single function and is lack of versatility, most of the existing bubblers only generate bubble water and cannot switch water outlet types, and the bubble water can save water to a certain extent although air exists in the water, but is weak and powerless, and cannot achieve a good washing effect on large-area east and west parts such as plates, chopping blocks, water tank bottoms and the like, especially places with stubborn stains.
SUMMERY OF THE UTILITY MODEL
The utility model provides a multi-functional bubbler, which mainly solves the technical problems of single water outlet function, lack of diversity and the like of the existing bubbler.
In order to achieve the purpose, the utility model is realized by the following technical proposal:
a multifunctional bubbler comprises a water inlet joint which can be fixedly connected with an external water inlet and a water outlet component which is rotatably connected with the water inlet joint, wherein the bottom surface of the water inlet joint, which is opposite to the water outlet component, is provided with a water outlet hole, the end surface of the water outlet component, which is opposite to the water inlet joint, is provided with a bubble water inlet hole and a blade water inlet hole, a bubble water channel which is communicated with the bubble water inlet hole and a blade water channel which is communicated with the blade water inlet hole are formed inside the water outlet component, the bubble water channel is arranged at the central position in the water outlet component, the bottom of the water outlet component is provided with a bubble water nozzle communicated with the bubble water channel and a blade water nozzle communicated with the blade water channel, the water outlet assembly is rotated to select one of the bubble water inlet hole or the blade water inlet hole to be communicated with the water outlet hole of the water inlet joint, so that bubble water is generated at the bubble water nozzle or blade water with larger washing area is generated at the blade water nozzle.
Furthermore, three apopores that are 120 intervals and set up are evenly distributed on the bottom surface of water inlet joint, three bubble water inlet holes that are 120 intervals and set up all with bubble water channel and three blade water inlet holes that are 120 intervals and set up all with blade water channel and all be linked together are evenly distributed on the terminal surface of water outlet assembly, and three bubble water inlet holes and three blade water inlet holes are annular on the terminal surface of water outlet assembly and arrange, all separate 60 between adjacent bubble water inlet hole and the blade water inlet hole, make bubble water channel and blade water channel in the water outlet assembly switch after water outlet assembly rotates 60 and be linked together with water inlet joint's apopore in order to switch out the water type.
Furthermore, the water outlet assembly is formed by sequentially and hermetically connecting a water inlet sheet, a water distribution body, a water outlet sheet, a water outlet body and a water outlet nozzle from top to bottom, and a filter screen is arranged between the water outlet body and the water outlet nozzle.
Furthermore, a plurality of bubble water nozzles and a blade water nozzle are arranged in the water outlet nozzle, the blade water nozzle is arranged at the central position of the water outlet nozzle and communicated with the blade water channel, each bubble water nozzle uniformly surrounds the periphery of the blade water nozzle and is communicated with the bubble water channel, a semi-elliptical cavity is formed inside the blade water nozzle, and a V-shaped notch for blade water is formed in the bottom of the semi-elliptical cavity.
Furthermore, the central position department of the piece of intaking is formed with the connecting axle that can upwards stretch into in the water supply connector, and the connecting axle rotates through screw and gasket to be connected on the water supply connector and then makes the piece of intaking 360 rotations of water supply connector axial relatively.
Further, the bubble water inlet hole and the blade water inlet hole are both arranged on the water inlet sheet, and sealing rings for sealing are arranged in each bubble water inlet hole and each blade water inlet hole.
Furthermore, the bottom surface of the water inlet joint is provided with a positioning pin which can elastically stretch out and draw back up and down relative to the water inlet joint, six positioning concave holes which are arranged at intervals of 60 degrees are uniformly distributed on the water inlet sheet, and the positioning pin can form positioning fit with the corresponding positioning concave holes after the water outlet assembly rotates for 60 degrees.
Furthermore, the water inlet sheet, the water distribution body, the water outlet sheet, the water outlet body and the water outlet nozzle are hermetically connected together through ultrasonic waves or hot melting.
Furthermore, a plurality of ribs convenient to rotate are arranged on the periphery of the water outlet body.
Furthermore, a threaded part for connecting an external water inlet is arranged on the water inlet joint.
The utility model discloses a multi-functional bubbler, have following advantage:
the water outlet assembly is rotatably connected to the bottom of the water inlet connector, a water outlet hole is formed in the bottom surface of the water inlet connector, a bubble water inlet hole and a blade water inlet hole are formed in the end surface of the water outlet assembly, a bubble water channel communicated with the bubble water inlet hole and a blade water channel communicated with the blade water inlet hole are formed in the water outlet assembly, a bubble water nozzle communicated with the bubble water channel and a blade water nozzle communicated with the blade water channel are formed in the bottom of the water outlet assembly, the bubble water inlet hole or the blade water inlet hole in the water outlet assembly can be selectively communicated with the water outlet hole of the water inlet connector by rotating the water outlet assembly, and accordingly, soft bubble water is generated at the bubble water nozzle, or blade water with larger impact force and larger washing area is generated at the blade water nozzle, so that the bubbler has the function of switching the generated bubble water and the blade water, and the function of the bubbler is diversified, the application range of the bubbler is improved, and a user can specifically select to use bubble water or blade water for washing according to the washed articles; and the switching process of the water outlet type is simple, convenient and quick, and the switching of the water outlet type can be completed only by rotating the water outlet assembly to enable one of the bubble water inlet hole or the blade water inlet hole on the water outlet assembly to be communicated with the water outlet hole of the water inlet joint.
Drawings
Fig. 1 is a schematic perspective view of an embodiment of the present invention.
Fig. 2 is an exploded schematic view of a three-dimensional structure of a water inlet joint and a water outlet assembly according to an embodiment of the present invention.
Fig. 3 is an exploded view of the water inlet joint and the water outlet assembly according to another angle of the present invention.
Fig. 4 is an exploded view of the whole structure of the embodiment of the present invention.
Fig. 5 is another angle exploded view of the whole structure of the embodiment of the present invention.
Fig. 6 is a structural section view of the utility model discloses apopore and bubble water passageway when switching on and produce bubble water.
Fig. 7 is a structural section view of the utility model discloses apopore and blade water passageway when switching on and produce blade water.
Description of reference numerals:
1. the water inlet connector comprises a water inlet connector body, 2, a water outlet assembly body, 11, a water outlet hole, 12, a screw, 13, a gasket, 14, a positioning pin, 15, a threaded portion, 21, a water inlet sheet, 22, a water distribution sheet, 23, a water distribution body, 24, a water outlet sheet, 25, a water outlet body, 26, a water outlet nozzle, 27, a filter screen, 28, a bubble water channel, 29, a blade water channel, 211, a bubble water inlet hole, 212, a blade water inlet hole, 213, a connecting shaft, 214, a positioning concave hole, 251, a convex edge, 261, a bubble water nozzle, 262 and a blade water nozzle.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1 to 7, in the present embodiment, a multifunctional bubbler includes a water inlet connector 1 fixedly connected to an external water inlet and a water outlet assembly 2 rotatably connected to the water inlet connector 1, a water outlet hole 11 is formed on a bottom surface of the water inlet connector 1 opposite to the water outlet assembly 2, a bubble water inlet hole 211 and a blade water inlet hole 212 are formed on an end surface of the water outlet assembly 2 opposite to the water inlet connector 1, a bubble water channel 28 communicated with the bubble water inlet hole 211 and a blade water channel 29 communicated with the blade water inlet hole 212 are formed inside the water outlet assembly 2, the bubble water channel 28 is disposed at a central position inside the water outlet assembly 2, a bubble water nozzle 261 communicated with the bubble water channel 28 and a blade water nozzle 262 communicated with the blade water channel 29 are formed on a bottom of the water outlet assembly 2, and the bubble water inlet hole 211 or the blade water inlet hole 212 is selectively communicated with the water outlet hole 11 of the water inlet connector 1 by rotating the water outlet assembly 2, so as to form a bubble water nozzle 261 on the bubble water nozzle 261 To generate softer bubble water or generate blade water with larger impact force and washing area at the blade water nozzle 262.
In this embodiment, the water outlet assembly 2 is rotatably connected to the bottom of the water inlet connector 1, the bottom of the water inlet connector 1 is provided with a water outlet 11, the end surface of the water outlet assembly 2 is provided with a bubble water inlet 211 and a blade water inlet 212, the water outlet assembly 2 is internally provided with a bubble water passage 28 communicated with the bubble water inlet 211 and a blade water passage 29 communicated with the blade water inlet 212, the bottom of the water outlet assembly 2 is provided with a bubble water nozzle 261 communicated with the bubble water passage 28 and a blade water nozzle 262 communicated with the blade water passage 29, the bubble water inlet 211 or the blade water inlet 212 on the water outlet assembly 2 can be selectively communicated with the water outlet 11 of the water inlet connector 1 by rotating the water outlet assembly 2, so as to generate softer bubble water at the bubble water nozzle 261 or generate blade water with larger impact force and washing area at the blade water nozzle 262, the bubbler has the function of switching to generate bubble water and blade water, so that the functions of the bubbler are diversified, the application range of the bubbler is improved, and a user can specifically select and use the bubble water or the blade water for washing according to washed articles; and the switching process of the water outlet type is simple and quick, and the switching of the water outlet type can be completed only by rotating the water outlet assembly 2 to enable one of the bubble water inlet hole 211 or the blade water inlet hole 212 on the water outlet assembly 2 to be communicated with the water outlet hole 11 of the water inlet joint 1.
Referring to fig. 1 to 7, in the present embodiment, preferably, three water outlet holes 11 arranged at intervals of 120 ° are uniformly distributed on the bottom surface of the water inlet connector 1, three bubble water inlet holes 211 arranged at intervals of 120 ° and communicated with the bubble water channel 28 and three blade water inlet holes 212 arranged at intervals of 120 ° and communicated with the blade water channel 29 are uniformly distributed on the end surface of the water outlet assembly 2, and the three bubble water inlet holes 211 and the three blade water inlet holes 212 are arranged in a central symmetric ring shape on the end surface of the water outlet assembly 2, and the adjacent bubble water inlet holes 211 and the blade water inlet holes 212 are spaced by 60 °, so that the bubble water channel 28 and the blade water channel 29 in the water outlet assembly 2 can be switched to be communicated with the water outlet holes 11 of the water inlet connector 1 after the water outlet assembly 2 rotates by 60 ° to switch the water outlet type. However, those skilled in the art will understand that in other embodiments, the number of the outlet holes 11 on the bottom surface of the water inlet joint 1 is not limited to three as disclosed in the present embodiment, and the larger the number of the outlet holes 11, the larger the outlet amount of the outlet assembly 2, and those skilled in the art can design specifically according to specific needs, and is not limited to three in the present embodiment, and may be one, two or more; the number of the bubble water inlet holes 211 and the blade water inlet holes 212 on the end surface of the water outlet assembly 2 is not limited to three as disclosed in the present embodiment, and the number of the bubble water inlet holes 211 and the blade water inlet holes 212 may be other numbers, such as one, two, or even more, as long as the water outlet assembly 2 is rotated to enable the bubble water inlet holes 211 and the blade water inlet holes 212 to be alternatively connected to the water outlet holes 11 for conduction. For example, in other embodiments, a water outlet 11 is formed on the bottom surface of the water inlet connector 1, a bubble water inlet 211 and a blade water inlet 212 are formed on the end surface of the water outlet assembly 2, the bubble water inlet 211 and the blade water inlet 212 are distributed in a central symmetry manner, and when the water outlet assembly 2 rotates 180 °, the bubble water inlet 211 and the blade water inlet 212 are alternatively abutted with the water outlet 11 of the water inlet connector 1 to achieve conduction, thereby achieving the purpose of switching the water outlet type.
Referring to fig. 4 and 5, in the embodiment, preferably, the water outlet assembly 2 is formed by sequentially and hermetically connecting a water inlet sheet 21, a water diversion sheet 22, a water diversion body 23, a water outlet sheet 24, a water outlet body 25 and a water outlet nozzle 26 from top to bottom, and a filter screen 27 is disposed between the water outlet body 25 and the water outlet nozzle 26.
Referring to fig. 4 to 7, in the present embodiment, preferably, a plurality of bubble water nozzles 261 and a blade water nozzle 262 are provided in the water outlet nozzle 26, the blade water nozzle 262 is disposed at a central position of the water outlet nozzle 26 and is communicated with the blade water channel 29, each bubble water nozzle 261 is uniformly disposed at an outer circumferential position of the blade water nozzle 262 in a surrounding manner and is communicated with the bubble water channel 28, a semi-elliptical cavity is formed inside the blade water nozzle 262, and a V-shaped notch for blade water is formed at a bottom of the semi-elliptical cavity, so that the blade water nozzle 262 forms a structure similar to a fish mouth. In this embodiment, when the water flowing through the blade water channel 29 is sprayed from the blade water nozzle 262, the blade water with a wider spraying range and a larger impact force can be presented, which is further beneficial to improving the cleaning efficiency of the articles such as dishes. In addition, in the present embodiment, the principle that the water flows through the bubble water passage 28 and is ejected from each bubble water ejection port 261 to form bubble water is well known to those skilled in the art, and will not be described herein.
Referring to fig. 2 and 4, in the present embodiment, preferably, a connecting shaft 213 extending upward into the water inlet joint 1 is formed at a central position of the water inlet sheet 21, and the connecting shaft 213 is rotatably connected to the water inlet joint 1 through a screw 12 and a gasket 13 so that the water inlet sheet 21 can axially rotate 360 ° relative to the water inlet joint 1.
Referring to fig. 2 and 4, in the present embodiment, preferably, the bubble water inlet 211 and the blade water inlet 212 are both formed on the water inlet plate 21, and each of the bubble water inlet 211 and the blade water inlet 212 is provided with a sealing ring for sealing.
Referring to fig. 3 and 5, in the embodiment, preferably, a positioning pin 14 capable of elastically stretching up and down relative to the water inlet joint 1 is disposed on the bottom surface of the water inlet joint 1, and six positioning concave holes 214 arranged at intervals of 60 ° are uniformly distributed on the water inlet sheet 21, so that the positioning pin 14 can form a positioning fit with the corresponding positioning concave hole 214 after the water outlet assembly 2 rotates 60 °. In this embodiment, a mounting hole is formed in the bottom surface of the water inlet connector 1, the positioning pin 14 is mounted in the mounting hole, and a compression spring is further arranged in the mounting hole, so that the positioning pin 14 can elastically stretch up and down relative to the water inlet connector 1, and the bottom of the positioning pin 14 is of a semicircular structure. When the water outlet assembly 2 rotates 60 degrees to switch the water outlet type, the positioning pin 14 can form positioning fit with the positioning concave hole 214 on the corresponding position of the water inlet sheet 21, so that the water outlet assembly 2 and the water inlet joint 1 are relatively fixed, and stable water outlet of the water outlet assembly 2 can be ensured. When the water outlet type needs to be switched, the water outlet assembly 2 is only required to be slightly screwed, the water outlet assembly 2 rotates 60 degrees relative to the water inlet connector 1, and then the positioning pin 14 can automatically eject downwards to jack the corresponding positioning concave hole 214 on the water inlet sheet 21 to realize positioning.
Referring to fig. 2 and 3, in the embodiment, preferably, the water inlet sheet 21, the water distribution sheet 22, the water distribution body 23, the water outlet sheet 24, the water outlet body 25 and the water outlet nozzle 26 are connected together by ultrasonic or hot melting sealing.
Referring to fig. 4 and 5, in the embodiment, preferably, a plurality of ribs 251 are disposed on the outer periphery of the water outlet 25 for facilitating rotation. In this embodiment, the rib 251 has an anti-slip function, and the water outlet assembly 2 can be conveniently rotated by the rib 251 to switch bubble water and blade water.
Referring to fig. 4, in the present embodiment, preferably, the water inlet joint 1 is provided with a threaded portion 15 for connecting an external water inlet. In this embodiment, the water inlet connector 1 can be quickly and firmly screwed with the external water inlet through the threaded portion 15.
The above-mentioned embodiments are only used for illustrating the technical solution of the present invention, and not for limiting the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; these modifications and substitutions do not depart from the spirit and scope of the embodiments of the present invention, and therefore, all other embodiments obtained by those skilled in the art without any creative effort fall within the protection scope of the present invention.

Claims (10)

1. A multi-functional bubbler, comprising: comprises a water inlet joint which can be fixedly connected with an external water inlet and a water outlet component which is rotatably connected with the water inlet joint, the bottom surface of the water inlet joint relative to the water outlet component is provided with a water outlet hole, the end surface of the water outlet component relative to the water inlet joint is provided with a bubble water inlet hole and a blade water inlet hole, the interior of the water outlet component is provided with a bubble water channel which is communicated with the bubble water inlet hole and a blade water channel which is communicated with the blade water inlet hole, the bubble water channel is arranged at the central position in the water outlet component, the bottom of the water outlet component is provided with a bubble water nozzle communicated with the bubble water channel and a blade water nozzle communicated with the blade water channel, the water outlet assembly is rotated to select one of the bubble water inlet hole or the blade water inlet hole to be communicated with the water outlet hole of the water inlet joint, so that bubble water is generated at the bubble water nozzle or blade water with larger washing area is generated at the blade water nozzle.
2. The multi-functional bubbler of claim 1, wherein: the equipartition has three apopore that is 120 intervals and sets up on water supply connector's the bottom surface, the equipartition has three bubble water inlet that is 120 intervals and sets up on water outlet assembly's terminal surface, all be the bubble water inlet that is linked together with bubble water passageway and three be 120 intervals and set up, the blade water inlet that all is linked together with blade water passageway, and three bubble water inlet and three blade water inlet are annular and arrange on water outlet assembly's terminal surface, equal interval 60 between adjacent bubble water inlet and the blade water inlet, make water outlet assembly rotate after 60 bubble water outlet assembly and blade water passageway in the water outlet assembly can switch and be linked together with water inlet connector's apopore and be linked together in order to switch out the water type.
3. The multi-functional bubbler according to claim 1 or 2, wherein: the water outlet assembly is formed by sequentially and hermetically connecting a water inlet sheet, a water distribution body, a water outlet sheet, a water outlet body and a water outlet nozzle from top to bottom, and a filter screen is arranged between the water outlet body and the water outlet nozzle.
4. The multi-functional bubbler of claim 3, wherein: the water outlet nozzle is internally provided with a plurality of bubble water nozzles and a blade water nozzle, the blade water nozzles are arranged at the central position of the water outlet nozzle and are communicated with the blade water channel, each bubble water nozzle uniformly surrounds the peripheral position of the blade water nozzle and is communicated with the bubble water channel, a semi-elliptical cavity is formed inside the blade water nozzle, and the bottom of the semi-elliptical cavity is provided with a V-shaped notch for discharging blade water.
5. The multi-functional bubbler of claim 3, wherein: the central position department of the piece of intaking is formed with the connecting axle that can upwards stretch into in the water supply connector, and the connecting axle rotates through screw and gasket to be connected on the water supply connector and then make the piece of intaking 360 rotations of water supply connector axial relatively.
6. The multi-functional bubbler of claim 3, wherein: the air bubble water inlet hole and the blade water inlet hole are both arranged on the water inlet sheet, and sealing rings for sealing are arranged in the air bubble water inlet holes and the blade water inlet holes.
7. The multi-functional bubbler of claim 3, wherein: the bottom surface of the water inlet joint is provided with a positioning pin which can elastically stretch out and draw back up and down relative to the water inlet joint, six positioning concave holes which are arranged at intervals of 60 degrees are uniformly distributed on the water inlet piece, and the positioning pin can form positioning fit with the corresponding positioning concave holes after the water outlet assembly rotates for 60 degrees.
8. The multi-functional bubbler of claim 3, wherein: the water inlet sheet, the water distribution body, the water outlet sheet, the water outlet body and the water outlet nozzle are hermetically connected together through ultrasonic waves or hot melting.
9. The multi-functional bubbler of claim 3, wherein: and a plurality of convex edges convenient to rotate are arranged on the periphery of the water outlet body.
10. The multi-functional bubbler of claim 1, wherein: the water inlet connector is provided with a thread part for connecting an external water inlet.
CN202020464243.1U 2020-04-01 2020-04-01 Multifunctional bubbler Active CN212405354U (en)

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Application Number Priority Date Filing Date Title
CN202020464243.1U CN212405354U (en) 2020-04-01 2020-04-01 Multifunctional bubbler

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Application Number Priority Date Filing Date Title
CN202020464243.1U CN212405354U (en) 2020-04-01 2020-04-01 Multifunctional bubbler

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CN212405354U true CN212405354U (en) 2021-01-26

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CN202020464243.1U Active CN212405354U (en) 2020-04-01 2020-04-01 Multifunctional bubbler

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US12005465B2 (en) 2021-02-07 2024-06-11 Spark (Xiamen) Sanitary Ware Co., Ltd. Rotary water outlet mechanism and flushing device containing same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US12005465B2 (en) 2021-02-07 2024-06-11 Spark (Xiamen) Sanitary Ware Co., Ltd. Rotary water outlet mechanism and flushing device containing same

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