Multi-waterway shower head with water stopping function

By incorporating a water-stopping component and a water path switching component into the shower head, and utilizing the water-stopping pivot and water-changing plate, one-button water-stopping and fluid flow mode switching are achieved. This solves the problems of slipping in humid environments and the inability to briefly shut off the water in multi-functional shower heads, thus improving the user experience.

CN224072281UActive Publication Date: 2026-04-03NINGBO KAIFUTE SANITARY WARE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing multi-functional shower heads are prone to slipping in humid environments, affecting water circuit switching operations and failing to provide a brief water shut-off function.

Method used

A multi-channel shower head with water-stopping function was designed. By setting water-stopping components and water-channel switching components, one-button water-stopping can be achieved by using water-stopping shaft and water-stopping plate, and the water outlet mode can be switched by switching shaft and water-changing plate.

Benefits of technology

It improves user convenience, enables stable operation in humid environments and provides a one-button water shut-off function to meet short-term water shut-off needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224072281U_ABST
    Figure CN224072281U_ABST
Patent Text Reader

Abstract

The multi-waterway shower head with the water stopping function comprises a shower head body, the shower head body comprises a water outlet end and a holding end, and the holding end is provided with a water stopping assembly and a waterway switching assembly which are communicated with each other; a water channel assembly is arranged between the water outlet end and the holding end; fluid enters the water outlet end through the holding end and the water channel assembly; a switching rotating shaft and a water changing plate are arranged in the water way switching assembly in a linkage mode, a water stopping rotating shaft and a water stopping plate are arranged in the water stopping assembly in a linkage mode, the water outlet end is arranged for water outlet work, and the water way switching assembly is arranged for switching water outlet ways of fluid; a switching rotating shaft and a water changing plate are arranged, so that the water changing plate rotates through the switching rotating shaft to realize switching of water outlet modes of fluid; and the water stop rotating shaft and the water stop plate are arranged, so that the water stop plate rotates through the water stop rotating shaft, and then circulation and blocking of fluid are achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of shower heads, and in particular to a multi-channel shower head with a water-stopping function. Background Technology

[0002] Current shower systems typically feature water flow switching capabilities, especially on the showerhead's spray nozzles. To meet the diverse needs of showerheads, a water flow switching device is usually included, allowing fluid to flow through different outlets. Existing multi-functional showerheads typically switch water flow modes by rotating the switching device. However, in some environments, if the user's hands or the showerhead are wet, the device may slip when rotating, affecting usability. Some existing systems use a push-button system for water flow switching, but while this works, the water valve needs to be closed when not in use or when a brief pause is needed, which disrupts the user experience and fails to provide the necessary functionality for short-term water shut-off. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a multi-channel shower head with a water-stopping function, based on the current state of the technology.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows:

[0005] A multi-channel shower head with a water-stopping function includes a shower head body, which includes a water outlet end and a grip end. The grip end is provided with a water-stopping component and a water channel switching component that are connected to each other. A water channel component is provided between the water outlet end and the grip end. The fluid enters the water outlet end through the grip end and the water channel component. A switching shaft and a water-changing plate are linkedly provided in the water channel switching component, and a water-stopping shaft and a water-stopping plate are linkedly provided in the water-stopping component. Pressing the water-stopping component causes the water-stopping shaft to drive the water-stopping plate to rotate, so that the fluid forms a water-stopping passage. Pressing the water channel switching component causes the switching shaft to drive the water-changing plate to rotate, so that the fluid forms a water outlet passage.

[0006] The aforementioned components achieve the following effects: They include a water outlet for water dispensing, a grip for easy handling, a water-stopping assembly for one-button water shut-off, a water path switching assembly for switching the fluid's outlet path, a switching shaft and water exchange plate that allow the water exchange plate to rotate via the switching shaft to switch the fluid's outlet mode, a water-stopping shaft and water-stopping plate that allow the water-stopping plate to rotate via the water-stopping shaft to allow fluid flow and blockage, and improved user convenience through the water-stopping and water path switching assemblies.

[0007] Preferably, a switching housing is provided at the connection between the water outlet and the gripping end; the water-stopping component and the water channel switching component are disposed inside the switching housing; the housing assembly includes a first housing, a second housing, and a third housing arranged sequentially from top to bottom; one end of the switching housing is connected to the gripping end and is provided with a water inlet, and the other end is connected to the water channel assembly and is provided with a water outlet unit; the water inlet is located at the end of the second housing and the third housing; the water outlet unit is located at the end of the second housing; a water-stopping placement cavity and a switching placement cavity are provided between the second housing and the third housing for placing the water-stopping component and the water channel switching component; a water passage hole is provided on the second housing to connect the water-stopping placement cavity and the switching placement cavity.

[0008] The aforementioned components achieve the following effects: a switching housing is provided for placing the water-stopping assembly and the water circuit switching assembly; water inlets are provided on the second and third housings for water intake; a water outlet unit is provided at the end of the second housing for water outlet; the water-stopping placement cavity and the switching placement cavity are provided for placing the water-stopping assembly and the water circuit switching assembly; and the water passage hole is provided for fluid conduction.

[0009] Preferably, the water-stopping assembly further includes a water-stopping cap, a water-stopping reset component, and a water-stopping positioning plate; the water-stopping cap is disposed on the upper end of the water-stopping rotating shaft; the lower end of the water-stopping rotating shaft is provided with four water-stopping lower inclined surfaces; a water-stopping column extends from the upper end of the water-stopping plate; the upper end of the water-stopping column is provided with four water-stopping upper inclined surfaces corresponding to the water-stopping lower inclined surfaces; a water-stopping fixing column is provided on the water-stopping column; a water-stopping fixing hole is provided inside the water-stopping rotating shaft; the water-stopping plate and the water-stopping rotating shaft are connected to the water-stopping fixing column through the water-stopping fixing hole; a water-stopping through hole is provided at the lower end of the water-stopping plate; a water-stopping positioning plate is provided with a water-stopping positioning plate fixing column extending upward; the water-stopping plate and the water-stopping positioning plate are connected to the water-stopping positioning plate fixing column through the water-stopping through hole; the water-stopping reset component is disposed between the water-stopping positioning plate and the water-stopping plate; the lower end of the water-stopping positioning plate is disposed between the third housing and the second housing.

[0010] The aforementioned components achieve the following effects: a water-stop cap is provided for user pressing; a water-stop reset component is provided for resetting the water-stop cap and water-stop shaft; a water-stop positioning plate is provided for fixing the water-stop assembly; four corresponding lower and upper water-stop slopes are provided to facilitate user pressing and rotation of the water-stop plate; water-stop fixing posts and holes enhance the fixing effect; water-stop through holes and water-stop positioning plate fixing posts further enhance the fixing effect; and placing the lower end of the water-stop positioning plate between the third and second housings ensures a more stable connection.

[0011] Preferably, the water circuit switching assembly further includes a switching cap, a switching reset component, and a switching positioning plate; the switching cap is disposed on the upper end of the switching shaft; the lower end of the switching shaft is provided with three switching lower inclined surfaces; a water exchange column extends from the upper end of the water exchange plate; the upper end of the water exchange column is provided with three switching upper inclined surfaces corresponding to the switching lower inclined surfaces; a water exchange fixing column is provided on the water exchange column; a switching fixing hole is provided inside the switching shaft; the water exchange plate and the switching shaft are connected to the switching fixing column through the water exchange fixing hole; a water exchange through hole is provided at the lower end of the water exchange plate; a switching positioning plate fixing column extends upward from the switching positioning plate; the water exchange plate and the switching positioning plate are connected to the switching positioning plate fixing column through the water exchange through hole; the switching reset component is disposed between the switching positioning plate and the water exchange plate; the lower end of the switching positioning plate is disposed between the third housing and the second housing.

[0012] The aforementioned components achieve the following effects: a switching cap is provided for user pressing; a switching reset component is provided for resetting the switching cap and switching shaft; a switching positioning plate is provided to fix the water circuit switching assembly; three corresponding lower and upper switching slopes facilitate user pressing and rotating the water exchange plate; the water exchange fixing post and switching fixing hole enhance the fixing effect; the water exchange through hole and switching positioning plate fixing post further enhance the fixing effect; and placing the lower end of the switching positioning plate between the third and second housings ensures a more stable connection.

[0013] Preferably, both the first housing and the second housing are provided with shaft through holes through which the water-stopping shaft and the switching shaft pass.

[0014] The effect achieved by the above components is that, by setting through holes, they provide better fixation and limiting, and more stable connection.

[0015] Preferably, both the water exchange plate and the water stop plate are provided with sealing elements; the water stop plate is divided into three modules with the water stop column as the center, including two interconnected first water stop parts and first water passage parts; the water exchange plate is divided into four modules with the water exchange column as the center, including oppositely arranged second water stop parts and second water passage parts.

[0016] The effects achieved by the above components are as follows: the sealing element improves the water-blocking effect; the first water-stopping part blocks the fluid; the first water-passing part allows water to pass through; the second water-stopping part blocks the fluid; and the second water-passing part allows water to pass through.

[0017] Preferably, the outlet unit includes a first outlet, a second outlet, and a third outlet; the water channel assembly includes a first water channel, a second water channel, and a third water channel; the outlet end is provided with a first outlet end, a second outlet end, and a third outlet end; the first outlet is connected to the first water channel and the first outlet end; the second outlet is connected to the second water channel and the second outlet end; and the third outlet is connected to the third water channel and the third outlet end.

[0018] The aforementioned components achieve the following effects: by setting a first water outlet, a first water channel, and a first water outlet end, a water path is formed for water discharge; by setting a second water outlet, a second water channel, and a second water outlet end, a water path is formed for water discharge; by setting a third water outlet, a third water channel, and a third water outlet end, a water path is formed for water discharge.

[0019] Preferably, the water-stop placement cavity is provided with two water-stop outlets; the switching placement cavity is provided with a first switching outlet, a second switching outlet and a third switching outlet; the first switching outlet is connected to the first outlet; the second switching outlet is connected to the second outlet; and the third switching outlet is connected to the third outlet.

[0020] The above components achieve the following effects: water is discharged by setting a water-stop outlet; water is discharged by switching between different water paths through the first, second and third switching outlets.

[0021] Compared with the prior art, the advantages of this utility model are as follows: It features a water outlet for water dispensing and a grip for easy handling; a water-stopping component for one-button water stopping; a water path switching component for switching the fluid's water path; a switching shaft and a water-changing plate, allowing the water-changing plate to switch the fluid's dispensing mode by rotating the switching shaft; a water-stopping shaft and a water-stopping plate, allowing the water-stopping plate to flow and block fluid by rotating the water-stopping shaft; and the inclusion of the water-stopping component and the water path switching component improves user convenience. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of this utility model;

[0023] Figure 2 This is the extension of the present utility model. Figure 1 A schematic diagram of the structural cross-section of section line AA;

[0024] Figure 3 This is the utility model Figure 2 Enlarged schematic diagram of the structure at point B;

[0025] Figure 4 This is an exploded view of the switching housing structure of this utility model;

[0026] Figure 5 This is a schematic diagram of the outlet unit and waterway assembly structure of this utility model;

[0027] Figure 6 This is an exploded view of the waterway switching component structure of this utility model;

[0028] Figure 7 This is an exploded view of the structure of the water-stopping component of this utility model.

[0029] Reference numerals: 1. Shower head body; 11. Water outlet; 12. Handle end; 13. Seal; 14. First water outlet; 15. Second water outlet; 16. Third water outlet; 2. Water-stop assembly; 21. Water-stop pivot; 22. Water-stop plate; 23. Water-stop cap; 24. Water-stop reset component; 25. Water-stop positioning plate; 26. Water-stop lower slope; 27. Water-stop column; 28. Water-stop upper slope; 29. ​​Water-stop fixing column; 211. Water-stop fixing hole; 212. Water-stop through hole; 213. Water-stop positioning plate fixing column; 214. First water-stop part; 215. First water passage part; 3. Water circuit switching assembly; 31. Switching pivot; 32. Water changing plate; 33. Switching cap; 34. Switching reset component; 35. Switching positioning plate; 36. Switching lower slope; 37. 38. Water column; 39. Switching upper inclined surface; 311. Water changing fixing column; 312. Water changing through hole; 313. Switching positioning plate fixing column; 314. Second water stop part; 315. Second water passage part; 4. Switching housing; 41. First housing; 42. Second housing; 43. Third housing; 44. Water inlet; 45. Water stop placement cavity; 46. Switching placement cavity; 47. Water passage hole; 48. Rotating shaft through hole; 49. Water stop outlet; 411. First switching outlet; 412. Second switching outlet; 413. Third switching outlet; 5. Outlet unit; 51. First outlet; 52. Second outlet; 53. Third outlet; 6. Water channel assembly; 61. First water channel; 62. Second water channel; 63. Third water channel. Detailed Implementation

[0030] The following drawings will disclose several embodiments of this utility model. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this utility model. That is, in some embodiments of this utility model, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.

[0031] It should be noted that all directional indicators in this utility model embodiment, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0032] Furthermore, in addition to indicating orientation or positional relationship, the aforementioned terms may also be used to indicate other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. For those skilled in the art, the specific meaning of these terms in this utility model can be understood according to the specific circumstances.

[0033] Furthermore, the terms "installation," "setting," "equipped with," "connection," "linking," and "socketing" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral structures; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium, or internal connections between two devices, components, or parts. The connection methods described herein are existing technologies without any modifications and are common knowledge to those skilled in the art. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0034] Furthermore, in this utility model, the use of terms such as "first" and "second" is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit the utility model. They are merely used to distinguish components or operations described with the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0035] like Figures 1 to 7As shown, this utility model provides a multi-channel shower head with a water-stopping function, including a shower head body 1. The shower head body 1 includes a water outlet end 11 and a grip end 12. The grip end 12 is provided with a water-stopping component 2 and a water channel switching component 3 that are connected to each other. A water channel component 6 is provided between the water outlet end 11 and the grip end 12. The fluid enters the water outlet end 11 through the grip end 12 and the water channel component 6. A switching shaft 31 and a water exchange plate 32 are linkedly arranged inside the water channel switching component 3. A water-stopping shaft 21 and a water-stopping plate 22 are linkedly arranged inside the water-stopping component 2. Pressing the water-stopping component 2 causes the water-stopping shaft 21 to drive the water-stopping plate 22 to rotate, so that the fluid forms a water-stopping passage. Pressing the water channel switching component 3 causes the switching shaft 31 to drive the water exchange plate 32 to rotate, so that the fluid forms a water outlet passage. The system incorporates a water outlet 11 for water dispensing and a grip 12 for easy handling. A water-stop component 2 enables one-button water shut-off. A water path switching component 3 allows for switching the fluid's outlet path. A switching shaft 31 and a water-changing plate 32 allow the water-changing plate 32 to rotate via the switching shaft 31, switching the fluid dispensing method. A water-stop shaft 21 and a water-stop plate 22 allow the water-stop plate 22 to rotate via the water-stop shaft 21, enabling fluid flow and sealing. The inclusion of the water-stop component 2 and the water path switching component 3 enhances user convenience.

[0036] A switching housing 4 is provided at the connection between the water outlet 11 and the gripping end 12; the water-stopping component 2 and the water channel switching component 3 are disposed inside the switching housing 4; the housing assembly includes a first housing 41, a second housing 42 and a third housing 43 arranged sequentially from top to bottom; one end of the switching housing 4 is connected to the gripping end 12 and is provided with a water inlet 44, and the other end is connected to the water channel assembly 6 and is provided with a water outlet unit 5; the water inlet 44 is located at the ends of the second housing 42 and the third housing 43; the water outlet unit 5 is located at the end of the second housing 42; a water-stopping placement cavity 45 and a switching placement cavity 46 for placing the water-stopping component 2 and the water channel switching component 3 are provided between the second housing 42 and the third housing 43; a water passage hole 47 is provided on the second housing 42 to connect the water-stopping placement cavity 45 and the switching placement cavity 46. A switching housing 4 is provided for placing the water-stopping component 2 and the water circuit switching component 3; water inlets 44 are provided on the second housing 42 and the third housing 43 for water intake; a water outlet unit 5 is provided at the end of the second housing 42 for water outlet; a water-stopping placement cavity 45 and a switching placement cavity 46 are provided for placing the water-stopping component 2 and the water circuit switching component 3; and a water passage hole 47 is provided for fluid conduction.

[0037] The water-stopping assembly 2 further includes a water-stopping cap 23, a water-stopping reset component 24, and a water-stopping positioning plate 25; the water-stopping cap 23 is disposed on the upper end of the water-stopping rotating shaft 21; the lower end of the water-stopping rotating shaft 21 is provided with four water-stopping lower inclined surfaces 26; a water-stopping column 27 extends from the upper end of the water-stopping plate 22; the upper end of the water-stopping column 27 is provided with four water-stopping upper inclined surfaces 28 corresponding to the water-stopping lower inclined surfaces 26; a water-stopping fixing column 29 is provided on the water-stopping column 27; a water-stopping fixing hole 211 is provided inside the water-stopping rotating shaft 21; the water-stopping plate 22 and... The water-stopping shaft 21 is connected to the water-stopping fixing column 29 through the water-stopping fixing hole 211; the lower end of the water-stopping plate 22 is provided with a water-stopping through hole 212, and the water-stopping positioning plate 25 extends upward and is provided with a water-stopping positioning plate fixing column 213; the water-stopping plate 22 and the water-stopping positioning plate 25 are connected to the water-stopping positioning plate fixing column 213 through the water-stopping through hole 212; the water-stopping reset member 24 is provided between the water-stopping positioning plate 25 and the water-stopping plate 22; the lower end of the water-stopping positioning plate 25 is provided between the third housing 43 and the second housing 42. A water-stop cap 23 is provided for the user to press; a water-stop reset component 24 is provided for resetting the water-stop cap 23 and the water-stop rotating shaft 21; a water-stop positioning plate 25 is provided to fix the water-stop component 2; four corresponding water-stop lower inclined surfaces 26 and water-stop upper inclined surfaces 28 are provided to facilitate the user to press and drive the water-stop plate 22 to rotate; a water-stop fixing post 29 and a water-stop fixing hole 211 are provided to improve the fixing effect; a water-stop through hole 212 and a water-stop positioning plate fixing post 213 are provided to improve the fixing effect; the lower end of the water-stop positioning plate 25 is set between the third housing 43 and the second housing 42 to make the fixed connection more stable.

[0038] The water circuit switching assembly 3 further includes a switching cap 33, a switching reset component 34, and a switching positioning plate 35; the switching cap 33 is disposed on the upper end of the switching shaft 31; the lower end of the switching shaft 31 is provided with three switching lower inclined surfaces 36; the upper end of the water exchange plate 32 extends a water exchange column 37; the upper end of the water exchange column 37 is provided with three switching upper inclined surfaces 38 corresponding to the switching lower inclined surfaces 36; a water exchange fixing column 39 is provided on the water exchange column 37; and a switching fixing hole 311 is provided inside the switching shaft 31 for water exchange. Plate 32 and switching shaft 31 are connected to switching fixing post through water exchange fixing hole; water exchange through hole 312 is provided at the lower end of water exchange plate 32, and switching positioning plate 35 extends upward and is provided with switching positioning plate fixing post 313; water exchange plate 32 and switching positioning plate 35 are connected to switching positioning plate fixing post 313 through water exchange through hole 312; switching reset component 34 is provided between switching positioning plate 35 and water exchange plate 32; the lower end of switching positioning plate 35 is provided between third housing 43 and second housing 42. A switching cap 33 is provided for the user to press; a switching reset component 34 is provided for resetting the switching cap 33 and the switching shaft 31; a switching positioning plate 35 is provided to fix the water circuit switching component 3; three corresponding lower switching slopes 36 and upper switching slopes 38 are provided to facilitate the user's pressing and rotation of the water exchange plate 32; a water exchange fixing post 39 and a switching fixing hole 311 are provided to improve the fixing effect; a water exchange through hole 312 and a switching positioning plate fixing post 313 are provided to improve the fixing effect; the lower end of the switching positioning plate 35 is set between the third housing 43 and the second housing 42 to make the fixed connection more stable.

[0039] Both the first housing 41 and the second housing 42 are provided with through holes 48 for the water-stopping shaft 21 and the switching shaft 31 to pass through. By providing through holes, the fixing and limiting effect is improved, and the connection is more stable.

[0040] Both the water-changing plate 32 and the water-stop plate 22 are equipped with sealing elements 13. The water-stop plate 22 is divided into three modules centered on the water-stop column 27, including two interconnected first water-stop parts 214 and first water-passing parts 215. The water-changing plate 32 is divided into four modules centered on the water-changing column 37, including opposing second water-stop parts 314 and second water-passing parts 315. The sealing elements 13 improve the water-blocking effect; the first water-stop parts 214 block the fluid; the first water-passing parts 215 allow water to pass through; the second water-stop parts 314 block the fluid; and the second water-passing parts 315 allow water to pass through.

[0041] The outlet unit 5 includes a first outlet 51, a second outlet 52, and a third outlet 53; the water channel assembly 6 includes a first water channel 61, a second water channel 62, and a third water channel 63; the outlet end 11 is provided with a first outlet end 14, a second outlet end 15, and a third outlet end 16; the first outlet 51 is connected to the first water channel 61 and the first outlet end 14; the second outlet 52 is connected to the second water channel 62 and the second outlet end 15; the third outlet 53 is connected to the third water channel 63 and the third outlet end 16. By setting up a first water outlet 51, a first water channel 61, and a first water outlet 14, a waterway is formed for water discharge; by setting up a second water outlet 52, a second water channel 62, and a second water outlet 15, a waterway is formed for water discharge; by setting up a third water outlet 53, a third water channel 63, and a third water outlet 16, a waterway is formed for water discharge.

[0042] The water-stop placement cavity 45 is provided with two water-stop outlets 49; the switching placement cavity 46 is provided with a first switching outlet 411, a second switching outlet 412, and a third switching outlet 413; the first switching outlet 411 is connected to the first outlet 51; the second switching outlet 412 is connected to the second outlet 52; and the third switching outlet 413 is connected to the third outlet 53. The water-stop outlets 49 are used for water discharge; the first switching outlet 411, the second switching outlet 412, and the third switching outlet 413 allow for switching between different water paths for water discharge.

[0043] In this embodiment 1, when the user needs to select the water-stopping operation, the water-stop cap 23 needs to be pressed. After the water-stop cap 23 is pressed down, it drives the water-stop rotating shaft 21 to rotate. The water-stopping lower inclined surface 26 will abut against the water-stopping upper inclined surface 28. After the water-stopping upper inclined surface 28 is pressed down, the downward inclined end of the water-stopping upper inclined surface 28 will be limited to move, which will then drive the water-stopping plate 22 to rotate. Because four water-stopping upper inclined surfaces 28 and water-stopping lower inclined surfaces 26 are set to cooperate, the water-stopping plate 22 will rotate 90 degrees. The first water-stopping part 214 will block the water-stopping outlet 49. After the water-stop cap 23 is released, the water-stopping reset part 24 will drive the water-stop cap 23, the water-stop rotating shaft 21 and the water-stopping plate 22 to reset and complete the water-stopping operation.

[0044] In this embodiment 2, when the user needs to select the first water outlet 14 for water dispensing, the water stop cap 23 needs to be pressed. After the water stop cap 23 is pressed down, it drives the water stop shaft 21 to rotate. The lower water stop slope 26 will abut against the upper water stop slope 28. After the upper water stop slope 28 is pressed down, the downward-sloping end of the upper water stop slope 28 will be limited, subsequently driving the water stop plate 22 to rotate. Because four upper water stop slopes 28 and lower water stop slopes 26 are provided for cooperation, the water stop plate 22 will rotate 90 degrees, and the first water passage 215 will connect with the water stop outlet 49. When the water stop cap 23 is released, the water stop reset member 24 will drive the water stop cap 23, the water stop shaft 21, and the water stop plate 22 to reset. The fluid then flows through the water passage hole 47, the water inlet 44, and the first water passage... Water section 215 enters the switching placement chamber 46; then the switching cap 33 is pressed down, and the switching cap 33 drives the switching shaft 31 to rotate. The lower switching slope 36 will contact and connect with the upper switching slope 38. After the upper switching slope 38 is pressed down, the slope setting will limit the movement of the lower inclined end of the upper switching slope 38, and then drive the water exchange plate 32 to rotate. Because three upper switching slopes 38 and lower switching slopes 36 are set to cooperate, the water exchange plate 32 will rotate 120 degrees. The second water passage 315 will connect with the first switching water outlet. At this time, after the switching cap 33 is released, the switching reset member 34 will drive the switching cap 33, the switching shaft 31 and the water exchange plate 32 to reset. Then the fluid flows through the first water outlet 51 and into the first water channel 61 and flows out from the first water outlet 14.

[0045] In this embodiment 3, when the user needs to select the second water outlet 15 for water dispensing, the water stop cap 23 needs to be pressed. After the water stop cap 23 is pressed down, it drives the water stop shaft 21 to rotate. The lower water stop slope 26 will contact and connect with the upper water stop slope 28. After the upper water stop slope 28 is pressed down, the downward-sloping end of the upper water stop slope 28 will be limited, subsequently driving the water stop plate 22 to rotate. Because four upper water stop slopes 28 and lower water stop slopes 26 are provided for cooperation, the water stop plate 22 will rotate 90 degrees, and the first water passage 215 will connect with the water stop outlet 49. When the water stop cap 23 is released, the water stop reset member 24 will drive the water stop cap 23, the water stop shaft 21, and the water stop plate 22 to reset. The fluid then flows through the water passage hole 47, the water inlet 44, and the first water passage... Water 215 enters the switching placement chamber 46; then the switching cap 33 is pressed down, and the switching cap 33 drives the switching shaft 31 to rotate. The lower switching slope 36 will contact and connect with the upper switching slope 38. After the upper switching slope 38 is pressed down, the slope setting will limit the movement of the lower inclined end of the upper switching slope 38, and then drive the water changing plate 32 to rotate. Because three upper switching slopes 38 and lower switching slopes 36 are set to cooperate, the water changing plate 32 will rotate 120 degrees. The second water passage 315 will connect with the second switching water outlet. At this time, after the switching cap 33 is released, the switching reset member 34 will drive the switching cap 33, the switching shaft 31 and the water changing plate 32 to reset. Then the fluid flows through the second water outlet 52 and into the second water channel 62 and flows out from the second water outlet 15.

[0046] In this embodiment 4, when the user needs to select the third water outlet 16 for water dispensing, the water stop cap 23 needs to be pressed. After the water stop cap 23 is pressed down, it drives the water stop shaft 21 to rotate. The lower water stop slope 26 will abut against the upper water stop slope 28. After the upper water stop slope 28 is pressed down, the downward-sloping end of the upper water stop slope 28 will be limited, subsequently driving the water stop plate 22 to rotate. Because four upper water stop slopes 28 and lower water stop slopes 26 are provided for cooperation, the water stop plate 22 will rotate 90 degrees, and the first water passage 215 will connect with the water stop outlet 49. When the water stop cap 23 is released, the water stop reset component 24 will drive the water stop cap 23, the water stop shaft 21, and the water stop plate 22 to reset. The fluid then flows through the water passage 47, the water inlet 44, and the second water stop outlet 49. The first water passage 215 enters the switching placement chamber 46; then the switching cap 33 is pressed down, and the switching cap 33 drives the switching shaft 31 to rotate. The lower switching slope 36 will contact and connect with the upper switching slope 38. After the upper switching slope 38 is pressed down, the slope setting will limit the movement of the lower inclined end of the upper switching slope 38, and then drive the water exchange plate 32 to rotate. Because three upper switching slopes 38 and lower switching slopes 36 are set to cooperate, the water exchange plate 32 will rotate 120 degrees. The third water passage will connect with the first switching water outlet. At this time, after the switching cap 33 is released, the switching reset member 34 will drive the switching cap 33, the switching shaft 31 and the water exchange plate 32 to reset. Then the fluid flows through the third water outlet 53 and into the third water channel 63 and flows out from the third water outlet 16.

[0047] In the description of this specification, references are made to the terms "one embodiment", "some embodiments", "example", "specific example".

[0048] The descriptions using terms such as "example" or "some examples" indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0049] All standard parts used in this invention can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, welding, and bonding that are mature in the existing technology, and will not be described in detail here.

[0050] The above description is only a preferred embodiment of this utility model. For those skilled in the art, various modifications and variations can be made in the specific implementation and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.

Claims

1. A multi-channel shower head with a water-stopping function, comprising a shower head body, wherein the shower head body includes a water outlet end and a grip end, characterized in that: The gripping end is equipped with a connected water-stopping component and a water-channel switching component; a water channel component is provided between the water outlet end and the gripping end; fluid enters the water outlet end through the gripping end and the water channel component; a switching shaft and a water-changing plate are linkedly installed inside the water-channel switching component, and a water-stopping shaft and a water-stopping plate are linkedly installed inside the water-stopping component; pressing the water-stopping component causes the water-stopping shaft to rotate and the water-stopping plate to form a water-stopping passage for the fluid; pressing the water-channel switching component causes the switching shaft to rotate and the water-changing plate to form a water outlet passage for the fluid.

2. A multi-channel shower head with a water-stopping function according to claim 1, characterized in that: A switching housing is provided at the connection between the water outlet and the gripping end; the water-stopping component and the water channel switching component are disposed inside the switching housing; the housing assembly includes a first housing, a second housing, and a third housing arranged sequentially from top to bottom; one end of the switching housing is connected to the gripping end and is provided with a water inlet, and the other end is connected to the water channel assembly and is provided with a water outlet unit; the water inlet is located at the end of the second housing and the third housing; the water outlet unit is located at the end of the second housing; a water-stopping placement cavity and a switching placement cavity are provided between the second housing and the third housing for placing the water-stopping component and the water channel switching component; a water passage hole is provided on the second housing to connect the water-stopping placement cavity and the switching placement cavity.

3. A multi-channel shower head with a water-stopping function according to claim 2, characterized in that: The water-stopping assembly also includes a water-stopping cap, a water-stopping reset component, and a water-stopping positioning plate; the water-stopping cap is disposed on the upper end of the water-stopping rotating shaft; the lower end of the water-stopping rotating shaft is provided with four water-stopping lower inclined surfaces; a water-stopping column extends from the upper end of the water-stopping plate; the upper end of the water-stopping column is provided with four water-stopping upper inclined surfaces corresponding to the water-stopping lower inclined surfaces; a water-stopping fixing column is provided on the water-stopping column; a water-stopping fixing hole is provided inside the water-stopping rotating shaft; the water-stopping plate and the water-stopping rotating shaft are connected to the water-stopping fixing column through the water-stopping fixing hole; a water-stopping through hole is provided at the lower end of the water-stopping plate; a water-stopping positioning plate is provided with a water-stopping positioning plate fixing column extending upward; the water-stopping plate and the water-stopping positioning plate are connected to the water-stopping positioning plate fixing column through the water-stopping through hole; the water-stopping reset component is disposed between the water-stopping positioning plate and the water-stopping plate; the lower end of the water-stopping positioning plate is disposed between the third housing and the second housing.

4. A multi-channel shower head with a water-stopping function according to claim 3, characterized in that: The water circuit switching assembly further includes a switching cap, a switching reset component, and a switching positioning plate; the switching cap is disposed on the upper end of the switching shaft; the lower end of the switching shaft is provided with three switching lower inclined surfaces; a water exchange column extends from the upper end of the water exchange plate; the upper end of the water exchange column is provided with three switching upper inclined surfaces corresponding to the switching lower inclined surfaces; a water exchange fixing column is provided on the water exchange column; a switching fixing hole is provided inside the switching shaft; the water exchange plate and the switching shaft are connected to the switching fixing column through the water exchange fixing hole; a water exchange through hole is provided at the lower end of the water exchange plate; a switching positioning plate fixing column extends upward from the switching positioning plate; the water exchange plate and the switching positioning plate are connected to the switching positioning plate fixing column through the water exchange through hole; the switching reset component is disposed between the switching positioning plate and the water exchange plate; the lower end of the switching positioning plate is disposed between the third housing and the second housing.

5. A multi-channel shower head with a water-stopping function according to claim 4, characterized in that: Both the first housing and the second housing are provided with shaft through holes through which the water-stopping shaft and the switching shaft pass.

6. A multi-channel shower head with a water-stopping function according to claim 5, characterized in that: Both the water exchange plate and the water stop plate are equipped with sealing elements; the water stop plate is divided into three modules with the water stop column as the center, including two interconnected first water stop parts and first water passage parts; the water exchange plate is divided into four modules with the water exchange column as the center, including a second water stop part and a second water passage part arranged opposite to each other.

7. A multi-channel shower head with a water-stopping function according to claim 6, characterized in that: The outlet unit includes a first outlet, a second outlet, and a third outlet; the water channel assembly includes a first water channel, a second water channel, and a third water channel; the outlet end is provided with a first outlet end, a second outlet end, and a third outlet end; the first outlet is connected to the first water channel and the first outlet end; the second outlet is connected to the second water channel and the second outlet end; the third outlet is connected to the third water channel and the third outlet end.

8. A multi-channel shower head with a water-stopping function according to claim 7, characterized in that: The water-stop placement cavity is provided with two water-stop outlets; the switching placement cavity is provided with a first switching outlet, a second switching outlet and a third switching outlet; the first switching outlet is connected to the first outlet; the second switching outlet is connected to the second outlet; and the third switching outlet is connected to the third outlet.