CN218573958U - Water outlet device - Google Patents

Water outlet device Download PDF

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Publication number
CN218573958U
CN218573958U CN202222251355.0U CN202222251355U CN218573958U CN 218573958 U CN218573958 U CN 218573958U CN 202222251355 U CN202222251355 U CN 202222251355U CN 218573958 U CN218573958 U CN 218573958U
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China
Prior art keywords
water
water outlet
flow channel
functional
switching
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CN202222251355.0U
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Inventor
林发椿
林晓龙
陈文福
陈东海
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Xiamen Solex High Tech Industries Co Ltd
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Xiamen Solex High Tech Industries Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/40Protecting water resources
    • Y02A20/411Water saving techniques at user level

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Abstract

The utility model provides a water outlet device, include: the water outlet device comprises a water outlet device body, a water path switching device and a foaming component; the water outlet device main body is provided with a water inlet side and a water outlet side, the waterway switching device is arranged between the water inlet side and the water outlet side, and the foaming component is arranged on the water outlet side; the foaming component is provided with a first functional water flow channel, a second functional water flow channel and an air suction hole; the waterway switching device comprises a first switching piece; the first switching piece is used for communicating the first functional water flow channel with the water inlet side or communicating the first functional water flow channel with the second functional water flow channel with the water inlet side at the same time; and when the second functional water flow channel is communicated with the water inlet side, the water flowing through the second functional water flow channel seals the air suction hole.

Description

Water outlet device
Technical Field
The utility model relates to a water outlet device especially relates to a water outlet device who possesses multiple play water effect.
Background
If the traditional water outlet device realizes various different spray, the spray usually corresponds to the water outlet flow channel and the water outlet hole. Therefore, if the types of the water outlet flowers are more, more water outlet holes are needed to be formed in the water outlet surface cover, and the area of the water outlet surface cover is large. This is not a big problem for shower heads in bathrooms, but for shower heads in kitchens with a small volume, it is not easy to arrange so many outlet holes in a limited area. Therefore, the type of the water outlet of the kitchen shower head in the prior art is generally single, and the requirements of consumers cannot be met.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the main technical problem that a water outlet device is provided, the switching of gentle water and bubble water can be realized to the structure is fairly simple.
In order to solve the technical problem, the utility model provides a water outlet device, include: the device comprises a water outlet device body, a waterway switching device and a foaming component;
the water outlet device body is provided with a water inlet side and a water outlet side, the waterway switching device is arranged between the water inlet side and the water outlet side, and the foaming component is arranged on the water outlet side;
the foaming component is provided with a first functional water flow channel, a second functional water flow channel and an air suction hole; the waterway switching device comprises a first switching piece; the first switching piece is used for communicating the first functional water flow channel with the water inlet side or communicating the first functional water flow channel with the second functional water flow channel with the water inlet side at the same time;
and when the second functional water flow channel is communicated with the water inlet side, the water flowing through the second functional water flow channel seals the air suction hole.
In a preferred embodiment: the foaming component comprises a foaming device and a surface cover; the bubbler is arranged in the face cover, the first functional water flow channel is arranged in the bubbler, and the second functional water flow channel is formed by a gap between the bubbler and the face cover.
In a preferred embodiment: the shell of the bubbler is provided with the air suction holes in a penetrating manner along the radial direction, and the air suction holes are communicated with the second functional water flow channel; and an included angle is formed between the air suction hole and the second functional water flow channel.
In a preferred embodiment: the first switching piece comprises a first mandrel, a first water distributing body, a first operating piece, a first switching shaft and a first sealing piece
The first mandrel is provided with a first water inlet communicated with the water inlet side, a first water outlet communicated with the first functional water flow channel and a second water outlet communicated with the second functional water flow channel; the first water distributing body is arranged on the first mandrel, and the first operating piece drives the first sealing piece to move from a first position to a second position relative to the first water distributing body through the first switching shaft; when the first sealing element is located at the first position, the first water outlet and the second water outlet are respectively communicated with the first water inlet, and when the first sealing element is located at the second position, the first water outlet is communicated with the first water inlet.
In a preferred embodiment: the first switching shaft is connected with a first spring, and when the first switching shaft moves from a first position to a second position, the first switching shaft extrudes the first spring to accumulate elastic reset force.
In a preferred embodiment: when the first switching shaft is located at the second position, the water flow flowing into the first water outlet from the first water inlet exerts pressure opposite to the direction of the elastic resetting force on the first sealing element.
In a preferred embodiment: the waterway switching device also comprises a first water outlet waterway, a second water outlet waterway and a second switching piece; the first water outlet waterway is arranged between the first switching piece and the water inlet side; the second switching piece is used for communicating the first water outlet waterway or the second water outlet waterway with the water inlet side;
the water outlet device main body is further provided with a third functional water flow channel communicated with the second water outlet water channel.
In a preferred embodiment: the second switching piece comprises a second mandrel, a second water dividing body, a second operating piece, a second switching shaft and a second sealing piece;
the second mandrel is provided with a second water inlet, a first water outlet waterway and a second water outlet waterway; the second water distributing body is arranged on the second mandrel, and the second operating piece drives the second sealing piece to move from the first position to the second position relative to the second water distributing body through the second switching shaft; when the second sealing element is positioned at the first position, the first water outlet waterway is communicated with the second water inlet; when the second sealing member is located the second position, the second water outlet waterway is communicated with the second water inlet.
In a preferred embodiment: the second switching shaft is connected with a second spring, and when the second switching shaft moves from the first position to the second position, the second switching shaft presses the second spring to accumulate elastic resetting force.
In a preferred embodiment: when the second switching shaft is located at the second position, the water flow in the second water outlet waterway applies pressure opposite to the direction of the elastic resetting force to the second sealing element.
In a preferred embodiment: and water outlet holes communicated with the third functional water flow channel are formed in the periphery of the bubble assembly on the water outlet side of the water outlet device main body.
Compared with the prior art, the technical scheme of the utility model possess following beneficial effect:
1. the utility model provides a water outlet device communicates to the second function rivers way through the induction port with the sparger, and like this has the rivers to pass through when having in the second function rivers way, and the induction port will be sealed. Thereby the bubble device can not realize air suction, and the soft water outlet is formed. When the second functional water channel is closed, the air suction port can normally suck air, so that bubble water is formed and discharged. Therefore, the first functional water flow channel can realize the water outlet of two different water sprays. Two independent flow channels are not needed for the soft water and the bubble water, so that the structure is simplified.
2. The utility model provides a water outlet device has set up the second switching piece again outside the first switching piece that control gentle water and bubble water switched to can realize the third kind and go out water effect, for example gentle water, bubble water and shower flower. Further enriching the functions of the product.
3. The utility model provides a go out water installation, first switching member and second all let first switching member or second switch and keep in the second position through the water pressure effect when switching member removes to the second position. Therefore, after water is shut off, the first switching piece and the second switching piece can automatically reset under the action of the elastic resetting force of the spring, and manual resetting of a user is not needed.
Drawings
FIG. 1 is a perspective view of a water outlet device according to a preferred embodiment of the present invention;
FIG. 2 is an exploded view of a water discharge device in accordance with an embodiment of the present invention;
FIG. 3 is a water path diagram of the water outlet device in the soft water state according to the preferred embodiment of the present invention;
FIG. 4 is a water path diagram of the water outlet device in the bubble water state according to the preferred embodiment of the present invention;
FIG. 5 is a sectional view of the water outlet device of the preferred embodiment of the present invention in a shower state;
FIG. 6 is another cross-sectional view of the water outlet device of the preferred embodiment of the present invention in a shower state;
FIG. 7 is a schematic end view of the outlet side of the water outlet device according to the preferred embodiment of the present invention;
fig. 8 is a schematic view of a second functional water channel in the water outlet device according to the preferred embodiment of the present invention.
Detailed Description
The technical solution in the embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiment of the present invention; obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by those skilled in the art without any inventive work are within the scope of the present invention based on the embodiments of the present invention.
In the description of the present invention, it should be noted that the terms "upper", "lower", "inner", "outer", "top/bottom", 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 simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless explicitly stated or limited otherwise, the terms "mounted," "disposed," "sleeved/connected," "connected," and the like are used in a broad sense, and for example, "connected," may be a wall-mounted connection, a detachable connection, or an integrated connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection through an intermediate medium, or a connection between two elements, and those skilled in the art will understand the specific meaning of the terms in the present invention in a specific case.
Referring to fig. 1 to 8, the present embodiment provides a water outlet device, including: the water outlet device comprises a water outlet device body 1, a water path switching device 2 and a foaming component 3;
the water outlet device body 1 is provided with a water inlet side 11 and a water outlet side 12, the waterway switching device 2 is arranged between the water inlet side 11 and the water outlet side 12, and the frothing component 3 is arranged on the water outlet side 12;
the bubbling assembly 3 has a first functional water flow passage 31, a second functional water flow passage 32, and a suction hole 33; the waterway switching device 2 comprises a first switching piece 21; the first switching member 21 is used to connect the first functional water flow path 31 to the water inlet side 11, or to connect the first functional water flow path 31 and the second functional water flow path 32 to the water inlet side 11 at the same time; when the second functional water flow path 32 is communicated with the water inlet side 11, the suction hole 33 is sealed by the water flowing through the second functional water flow path 32.
When the second functional water flow passage 32 is opened, the water flow seals the air suction hole 33, and the water in the first functional water flow passage 31 cannot suck air through the air suction hole 33, so that the water in the first functional water flow passage 31 and the water in the second functional water flow passage 32 are mixed at the outlet side 12 to form soft outlet water. When the second functional water flow path 32 is closed, the air suction hole 33 may be normally opened, and the water of the first functional water flow path 31 may be mixed with air through the air suction hole 33 to form bubble water. Thus, the first functional water channel 31 can realize the water discharge of two different water flowers. Two independent flow channels are not needed for the soft water and the bubble water, so that the structure is simplified.
In this embodiment, in order to provide the first and second functional water flow passages 31 and 32, the bubbling assembly 3 includes a bubbler 34 and a face cover 35; the bubbler 34 is disposed in a face cover 35, and the first functional water flow passage 31 is disposed in the bubbler 34, and the second functional water flow passage 32 is formed by a gap between the bubbler 34 and the face cover 35. In addition, the housing of the bubbler 34 is provided with the air suction holes 33 penetrating in the radial direction, and the air suction holes 33 communicate with the second functional water flow passage 32; and an included angle is formed between the suction hole 33 and the second functional water flow passage 32. The structure of the bubbler 34 and the disposition of the first functional water flow passage 31 are inherent in the bubbler 34 of the related art. So it is not too much expanded in this embodiment. The air suction hole 33 and the second functional water flow passage 32 are formed to have an angle therebetween in order to ensure that the water in the second functional water flow passage 32 seals the air suction hole 33 only and does not flow into the air suction hole 33.
A gap is formed between the bubbler 34 and the cover 35 in order to install the bubbler 34 and the cover 35. The face cover 35 has a receiving chamber 351 for receiving the bubbler 34; ribs 352 are arranged on the inner wall of the accommodating cavity 351 at intervals along the circumferential direction; the case of the bubbler 34 abuts against the rib 352, and the bubbler 34 and the cover 35 are fixed by friction. While the gap between two adjacent ribs 352 forms a gap between the housing of the bubbler 34 and the cover 35.
In this embodiment, the first functional water flow path 31 is communicated with the water inlet side 11 or the first functional water flow path 31 and the second functional water flow path 32 are communicated with each other at the same time. The first switching member 21 includes a first mandrel 211, a first water diverting body 212, a first operating member 213, a first switching shaft 214, and a first sealing member 215; the first mandrel 211 is provided with a first water inlet 2111 communicated with the water inlet side 11, a first water outlet 2112 communicated with the first functional water flow passage 31 and a second water outlet 2113 communicated with the second functional water flow passage 32; the first water distributing body 212 is mounted on the first mandrel 211, and the first operating member 213 drives the first sealing member 215 to move from the first position to the second position relative to the first water distributing body 212 through the first switching shaft 214; when the first sealing member 215 is located at the first position, the first water outlet 2112 and the second water outlet 2113 are respectively communicated with the first water inlet 2111, and when the first sealing member 215 is located at the second position, the first water outlet 2112 is communicated with the first water inlet 2111.
In this embodiment, the first operation member 213 drives the first switching shaft 214 to move along a direction perpendicular to the communication direction between the first water inlet 2111 and the first water outlet 2112. The first mandrel 211 has a mounting chamber 2114 parallel to the first switching axis 214, and the first water-dividing body 212 is secured in the mounting chamber 2114 by means of a sealing ring. The lower end of the first switching shaft 214 passes through the first water dividing body 212 and is provided with the first sealing member 215; the upper end of the first switching shaft 214 is connected to the first operating member 213 through the first water diverting body 212. The first operation member 213 is a button, and pressing the first operation member 213 can drive the first switching shaft 214 to move along its own axial direction.
The first water outlet 2112 and the first water inlet 2111 in the first water dividing body 212 are kept in a normally open state, a step surface 2115 is arranged at the communication position of the second water outlet 2113 and the first water inlet 2111, and when the first switching shaft 214 is located at the second position, the first sealing element 215 is attached to the step surface 2115, so that the communication position of the second water outlet 2113 and the first water inlet 2111 is disconnected.
In this embodiment, the first switching shaft 214 is fixed at the second position by means of water pressure, so that the first switching shaft 214 can be automatically reset after water is shut off. To this end, a first spring 216 is connected to the first switching shaft 214, and when the first switching shaft 214 moves from the first position to the second position, the first switching shaft 214 presses the first spring 216 to accumulate an elastic restoring force. The lower end of the first switching shaft 214 extends radially outward to form a pressure receiving surface, so that when the first switching shaft 214 is located at the second position, the water flowing from the first water inlet 2111 into the first water outlet 2112 exerts a pressure on the pressure receiving surface and the first sealing member 215 in a direction opposite to the direction of the elastic restoring force, and the water pressure is greater than the elastic force of the first spring 216. Therefore, the first switching shaft 214 is fixed at the second position, the water pressure disappears after water is shut off, the first switching shaft 214 can automatically reset to the first position under the action of the elastic resetting force, and a user does not need to perform manual resetting operation.
In this embodiment, in order to further enrich the functions of the water outlet device, the water path switching device 2 further includes a first water outlet path 22, a second water outlet path 23, and a second switching member 24; the first water outlet waterway 22 and the second water outlet waterway 23 are arranged between the water inlet side 11 and the first switching piece 21, and the second switching piece 24 is used for communicating the first water outlet waterway 22 or the second water outlet waterway 23 with the water inlet side 11; the water outlet device body 1 is further provided with a third functional water channel 13 communicated with the second water outlet waterway 23. Thus, the water flowing into the water inlet side 11 can enter the second water outlet waterway 23, so that the water flow does not pass through the foaming component 3 at all, and a third water outlet is realized.
Since the bubble water is directly discharged from the bubbler 34, the soft water is simultaneously discharged from the bubbler 34 and the face cover 35, and the water discharged from the second outlet water path 23 is discharged from the face cover 35 only, the face cover 35 is provided with the soft water outlet hole 351 and the shower water outlet hole 352 in this order in the outer circumference of the bubbler 34 along the radial direction. Wherein the outlet hole 352 is correspondingly communicated with the third functional water flow passage 13.
Specifically, the second switch 24 includes a second spindle 241, a second water diversion body 246, a second operating member 242, a second switch shaft 243, and a second sealing member 244;
the second mandrel 241 has a second water inlet 2411, and the first and second water outlet waterways 22 and 23; the portion of the second mandrel 241 corresponding to the first outlet waterway 22 is inserted into the portion of the first mandrel 211 corresponding to the first inlet 2111, so as to communicate the first inlet 2111 with the first outlet waterway 22. Similarly, the second spindle 241 also has an installation cavity 2412 along a direction perpendicular to the communication direction between the second water inlet 2411 and the first water outlet waterway 22, and the second water distributing body 246 is installed in the installation cavity 2412. The lower end of the second switching shaft 243 passes through the second branched body 246 and is connected to the second sealing member 244, and the upper end of the second switching shaft 243 passes through the second branched body 246 and is connected to the second operating member 242. In this embodiment, the second operating member 242 is a boat-shaped switch or other common switches.
The second switching shaft 243 can be pulled by the second operating member 242 to move up and down along its axial direction, so that the second sealing member 244 moves between the first position and the second position. When the second sealing member 244 is at the first position, the first outlet waterway 22 is communicated with the second inlet 2411, as shown in fig. 4; when the second sealing member 244 is located at the second position, the second outlet water path 23 is communicated with the second inlet 2411, as shown in fig. 5.
Similarly, in this embodiment, the second switching shaft 243 is fixed at the second position by means of water pressure, so that the second switching shaft 243 can be automatically reset after water is shut down. A second spring 245 is connected to the second switching shaft 243, and when the second switching shaft 243 moves from the first position to the second position, the second switching shaft 243 presses the second spring 245 to accumulate an elastic restoring force. In order to realize the effect of the water pressure on the second switching shaft 243, the lower end of the second switching shaft 243 extends radially outward to form a pressure receiving surface, so that when the second switching shaft 243 is located at the second position, the water flow in the first outlet water passage 22 applies a pressure to the second sealing member 244 in a direction opposite to the elastic restoring force, and the water pressure is greater than the elastic force of the second spring 245. Therefore, the second switching shaft 243 is fixed at the second position, and when the water pressure disappears after the water is shut off, the second switching shaft 243 automatically resets to the first position under the action of the elastic reset force, and the user does not need to perform manual reset operation.
In summary, when the user presses the boat-shaped switch to drive the second sealing member to be located at the second position, the water flowing into the water inlet side 11 all flows out from the third functional water channel 13 through the second outlet water channel 23, and the outlet water is shower water. When a user presses the boat-shaped switch to drive the second sealing element to be located at the first position, and at this time, if the first operating element 213 drives the first sealing element 215 to be located at the first position, the first water outlet 2112 and the second water outlet 2113 are respectively communicated with the first water inlet 2111, the air suction hole 33 is closed, and the outlet water is soft water. If the first operating member 213 drives the first sealing member 215 to be located at the second position, the first water outlet 2112 is communicated with the first water inlet 2111, the air suction hole 33 is opened, and the outlet water is bubble water.
The water outlet device can be a kitchen shower head, a spray gun or a bathroom shower head and the like.
The above, only be the preferred embodiment of the present invention, but the design concept of the present invention is not limited to this, and any skilled person familiar with the technical field is in the technical scope disclosed in the present invention, and it is right to utilize this concept to perform insubstantial changes to the present invention, all belong to the act of infringing the protection scope of the present invention.

Claims (11)

1. Go out water installation, its characterized in that includes: the water outlet device comprises a water outlet device body, a water path switching device and a foaming component;
the water outlet device body is provided with a water inlet side and a water outlet side, the waterway switching device is arranged between the water inlet side and the water outlet side, and the foaming component is arranged on the water outlet side;
the foaming component is provided with a first functional water flow channel, a second functional water flow channel and an air suction hole; the waterway switching device comprises a first switching piece; the first switching piece is used for communicating the first functional water flow channel with the water inlet side or communicating the first functional water flow channel with the second functional water flow channel with the water inlet side at the same time;
and when the second functional water flow channel is communicated with the water inlet side, the water flowing through the second functional water flow channel seals the air suction hole.
2. The water outlet device of claim 1, wherein: the foaming component comprises a foamer and a surface cover; the bubbler is arranged in the face cover, the first functional water flow channel is arranged in the bubbler, and the second functional water flow channel is formed by a gap between the bubbler and the face cover.
3. The water output device of claim 2, wherein: the shell of the bubbler is provided with the air suction holes in a penetrating manner along the radial direction, and the air suction holes are communicated with the second functional water flow channel; and an included angle is formed between the air suction hole and the second functional water flow channel.
4. A water outlet device according to any one of claims 1-3, characterized in that: the first switching piece comprises a first mandrel, a first water distributing body, a first operating piece, a first switching shaft and a first sealing piece
The first mandrel is provided with a first water inlet communicated with the water inlet side, a first water outlet communicated with the first functional water flow channel and a second water outlet communicated with the second functional water flow channel; the first water distributing body is arranged on the first mandrel, and the first operating piece drives the first sealing piece to move from a first position to a second position relative to the first water distributing body through the first switching shaft; when the first sealing element is located at the first position, the first water outlet and the second water outlet are respectively communicated with the first water inlet, and when the first sealing element is located at the second position, the first water outlet is communicated with the first water inlet.
5. The water outlet device of claim 4, wherein: the first switching shaft is connected with a first spring, and when the first switching shaft moves from a first position to a second position, the first switching shaft extrudes the first spring to accumulate elastic reset force.
6. The water output device of claim 5, wherein: when the first switching shaft is located at the second position, the water flow flowing into the first water outlet from the first water inlet exerts pressure opposite to the direction of the elastic resetting force on the first sealing element.
7. A water outlet device according to claim 1 or 2 or 3 or 5 or 6, wherein: the waterway switching device also comprises a first water outlet waterway, a second water outlet waterway and a second switching piece; the first water outlet waterway is arranged between the first switching piece and the water inlet side; the second switching piece is used for communicating the first water outlet waterway or the second water outlet waterway with the water inlet side;
the water outlet device main body is further provided with a third functional water flow channel communicated with the second water outlet water channel.
8. The water outlet device of claim 7, wherein: the second switching piece comprises a second mandrel, a second water dividing body, a second operating piece, a second switching shaft and a second sealing piece;
the second mandrel is provided with a second water inlet, a first water outlet waterway and a second water outlet waterway; the second water distributing body is arranged on the second mandrel, and the second operating piece drives the second sealing piece to move from the first position to the second position relative to the second water distributing body through the second switching shaft; when the second sealing element is positioned at the first position, the first water outlet waterway is communicated with the second water inlet; and when the second sealing element is positioned at the second position, the second water outlet waterway is communicated with the second water inlet.
9. The water output device of claim 8, wherein: the second switching shaft is connected with a second spring, and when the second switching shaft moves from the first position to the second position, the second switching shaft presses the second spring to accumulate elastic resetting force.
10. The water output device of claim 9, wherein: when the second switching shaft is located at the second position, the water flow in the second water outlet waterway applies pressure opposite to the direction of the elastic resetting force to the second sealing element.
11. The water output device of claim 7, wherein: and water outlet holes communicated with the third functional water flow channel are formed in the periphery of the bubble assembly on the water outlet side of the water outlet device main body.
CN202222251355.0U 2022-08-25 2022-08-25 Water outlet device Active CN218573958U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222251355.0U CN218573958U (en) 2022-08-25 2022-08-25 Water outlet device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222251355.0U CN218573958U (en) 2022-08-25 2022-08-25 Water outlet device

Publications (1)

Publication Number Publication Date
CN218573958U true CN218573958U (en) 2023-03-07

Family

ID=85363010

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222251355.0U Active CN218573958U (en) 2022-08-25 2022-08-25 Water outlet device

Country Status (1)

Country Link
CN (1) CN218573958U (en)

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