Double-spray-gun-mode shower head convenient to switch and capable of automatically resetting
By setting an automatic reset function button and a reset spring on the showerhead, the problem of needing to manually adjust and switch showerheads is solved, enabling quick and convenient water flow mode switching and automatic reset, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-03-17
AI Technical Summary
Existing shower equipment requires manual adjustment and switching of spray heads and cannot automatically reset, resulting in inconvenience in operation and limitations on water output modes.
A dual-spray gun mode shower head was designed that is easy to switch and can automatically reset. The first function button and the second function button control different water outlets respectively, and the automatic reset is achieved by a reset spring, which simplifies the operation process.
It enables quick and convenient switching of water flow modes and automatic reset, improving user experience and operational efficiency, and is especially suitable for scenarios where water flow modes are frequently switched.
Smart Images

Figure CN223996336U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bathroom technology, and more specifically, to a dual-spray gun mode shower head that is easy to switch and can automatically reset. Background Technology
[0002] Currently, most showerheads on the market can switch between different nozzles or water flow paths, but these require manual adjustment of the switch. Furthermore, once the water flow path is changed, it often needs to be manually reset to its initial state. In addition, the existing single-button control method is not only simplistic in operation, severely limiting the showerhead's water flow modes, but also requires user intervention to switch back, and does not automatically reset quickly after being pressed, making it difficult to determine the current water flow status for subsequent use. Moreover, the automatic reset function in existing technology is not widely used in showerheads, necessitating a structural improvement. Utility Model Content
[0003] In view of this, the purpose of this utility model is to provide a dual-spray gun mode shower head that is easy to switch and can automatically reset, so as to solve the above problems.
[0004] The present invention adopts the following solution:
[0005] This application provides a dual-spray gun mode shower head that is easy to switch and can automatically reset, including: a shower head body, a water distribution body, and a switching body; the shower head body is provided with a water inlet, a shower water path, and a spray gun water path, the spray gun water path having a first water outlet and a second water outlet capable of dispensing different spray gun water; the water distribution body is used to select the water outlet to the corresponding water path; the switching body includes a first function button for controlling the water outlet of the first water outlet and a second function button for controlling the water outlet of the second water outlet; in the initial state, the water distribution body selects the water outlet to the shower water path; in the switching state, pressing the first function button or the second function button selects the water outlet to the first water outlet or the second water outlet, and after releasing the press, it can automatically reset to switch to the shower water path.
[0006] As a further improvement, in the initial state, the spray gun water path and the shower water path are in a conductive state, and the shower water is output at this time; when switching states, the first function button or the second function button is pressed to close the conductive state between the spray gun water path and the shower water path, and water is preferentially output to its respective water output path, and at this time at least the spray gun water is output.
[0007] As a further improvement, the first function button and the second function button are arranged adjacent to each other on the back of the shower body; each function button includes a pressing element, a switching shaft and a reset spring arranged along the axis, and the water distribution body is configured as a water distribution seat, and the water distribution seat is provided with a water distribution cavity corresponding to each function button.
[0008] As a further improvement, the first function button and the second function button are respectively installed in the water distribution chamber. In the initial state, the water distribution chamber prioritizes water supply to the shower head water path. In the switching state, the water distribution chamber outputs water to the corresponding water outlet path of the function button.
[0009] As a further improvement, the water outlet path of the water distribution chamber is provided with two parallel water passages and one water outlet in sequence. The switching shaft is freely blocked on the respective water passages by a reset spring, so that in the initial state, water is preferentially discharged to the shower water path along the water outlet. In the switching state, the switching shaft releases the blockage of the water passages to select the water outlet path to which it belongs.
[0010] As a further improvement, the water distribution seat is connected to a water inlet seat, and the top of the water inlet seat is provided with a nozzle. The nozzle includes a first nozzle connected to a first water outlet to output blade water and a second nozzle connected to a second water outlet to output columnar water.
[0011] As a further improvement, the water inlet seat also includes a water outlet surface disposed at the end face and connected to the shower head water path.
[0012] As a further improvement, the shower head body is provided with a spindle that connects to the water distribution seat, and the water inlet is formed inside the spindle.
[0013] As a further improvement, the shower head body is provided with a handheld part and a water outlet part, the spindle is correspondingly arranged in the handheld part, and the spindle is detachably connected to the water distribution seat through a connecting seat.
[0014] As a further improvement, the water inlet seat and the water distribution seat are directly detached and connected, the shower water path is formed in the middle of the water inlet seat, the first water outlet path is formed in one of the annular outer rings of the water inlet seat, and the second water outlet path is formed in the other annular outer ring of the water inlet seat.
[0015] By adopting the above technical solution, the present invention can achieve the following technical effects:
[0016] 1. The dual-spray mode shower head of this application, which is easy to switch and can automatically reset, allows users to quickly select whether to spray water through the first or second water outlet by setting a first function button and a second function button. The switching method is simple and quick, making it more convenient for users to operate. After pressing the corresponding function button, it can automatically reset to the shower head water outlet after releasing the button, reducing the trouble of manually adjusting it again, making it more worry-free and efficient to use.
[0017] 2. Compared with traditional shower heads that require manual adjustment of the switch, this dual-spray-gun mode shower head can be switched with a simple button operation, and the reset mechanism eliminates the need for repeated adjustments, improving the overall user experience. For users who need to frequently switch between different water flow modes, such as in homes or commercial settings, it can provide greater comfort and operational efficiency. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a dual-spray gun mode shower head that is easy to switch and can be automatically reset according to an embodiment of the present invention;
[0019] Figure 2 This is a partial sectional view of a dual-spray gun mode shower head that is easy to switch and can be automatically reset according to an embodiment of the present invention; wherein, the arrows indicate the water path of the shower head and the water path of the spray gun.
[0020] Figure 3 This is an explosion diagram of a dual-spray gun mode shower head that is easy to switch and can be automatically reset according to an embodiment of the present invention.
[0021] Figures 4 to 6 This is a schematic diagram of the initial state and the switching state of the dual-spray gun mode shower head, which is easy to switch and can be automatically reset according to an embodiment of the present utility model.
[0022] Figure 7 This is a schematic diagram of the water path of the dual-spray gun mode shower head, which is easy to switch and can be automatically reset according to an embodiment of this utility model.
[0023] Icons: 1-Shower head body; 2-Water divider; 3-First function button; 4-Second function button; 5-Pressing part; 6-Switching shaft; 7-Reset spring; 8-Water inlet hole; 9-Water outlet hole; 10-Water inlet seat; 11-Nose; 12-First nozzle; 13-Second nozzle; 14-Water outlet surface; 15-Spindle; 16-Connecting seat. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Therefore, the following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely to represent selected embodiments of this utility model.
[0025] Example
[0026] Combination Figures 1 to 7 This embodiment provides a dual-spray gun mode shower head that is easy to switch and can be automatically reset, including: shower head body 1, water distribution body 2 and switching body.
[0027] The shower head body 1 is provided with a water inlet, a shower water path, and a spray gun water path. The spray gun water path has a first water outlet and a second water outlet capable of dispensing different spray gun water. The water distribution body 2 is used to select the water outlet to the corresponding water path. The switching body includes a first function button 3 for controlling the water outlet of the first water path and a second function button 4 for controlling the water outlet of the second water path.
[0028] In the initial state, the water distribution body 2 selects to output water to the shower head water path. When switching states, pressing the first function button 3 or the second function button 4 selects to output water to the first water path or the second water path, and automatically resets to switch to the shower head water path after releasing the button.
[0029] The dual-spray mode shower head described above allows users to quickly select whether to spray water through the first or second water outlet by setting the first function button 3 and the second function button 4. The switching method is simple and quick, making it more convenient for users to operate. Furthermore, after pressing the corresponding function button, it can automatically reset to the shower head water outlet after releasing the press, reducing the trouble of users having to manually adjust it again, making it more worry-free and efficient to use.
[0030] Compared to traditional showerheads that require manual adjustment, this dual-spray-gun mode showerhead allows for easy switching via a simple button operation. Furthermore, the reset mechanism eliminates the need for repeated adjustments, enhancing the overall user experience. For users who frequently need to switch between different water flow modes, such as in homes or commercial settings, it provides greater comfort and operational efficiency.
[0031] like Figure 7 As shown, in the initial state, the spray gun water path and the shower head water path are in a connected state, and shower head water is output. When switching states, pressing the first or second function button closes the connection between the spray gun water path and the shower head water path, and water is preferentially output to its respective water outlet path, at least spray gun water is output.
[0032] Specifically, after pressing the first function button 3, the water flow input to the shower head water circuit is immediately shut off, and the water flow from the spray gun water circuit is further preferentially directed to the first water outlet circuit, corresponding to the output of one of the spray gun water (blade water) along the first water outlet circuit. At this time, the shower head water circuit either stops flowing or the water flow becomes smaller. After releasing the pressure, it automatically returns to the initial state.
[0033] Correspondingly, after pressing the second function button 4, the water flow input to the shower head is immediately shut off, and the water flow from the spray gun is further preferentially directed to the second water outlet, where another spray gun (columnar water) will exit. At this time, the shower head will not produce water or the water flow will be reduced. After releasing the pressure, it will automatically return to the initial state.
[0034] As described above, when the function button is pressed, it immediately shuts off the connection between the spray gun and showerhead water circuits, ensuring that water flow is preferentially directed to its designated outlet. Furthermore, upon releasing the button, it automatically returns to its original position, at which point the water flow is connected to the showerhead circuit, while the designated outlet is disconnected. It should be noted that for specific settings regarding the on / off connection of the function button in the water circuits, please refer to the detailed connection method and structural configuration of the function button described below.
[0035] Preferably, the first function button 3 and the second function button 4 are configured as push-button switches that can be automatically reset after being pressed, as further described below.
[0036] like Figures 2 to 4 As shown, in this embodiment, the first function button 3 and the second function button 4 are arranged adjacent to each other on the back of the shower head body 1. Each function button includes a pressing member 5, a switching shaft 6, and a return spring 7 arranged along the axis. This ensures that the button can quickly reset after being released from pressure, guaranteeing the automatic return to the shower head water path function, while also enhancing the button's durability and response speed.
[0037] The water distribution body 2 is configured as a water distribution base, and the water distribution base is provided with corresponding water distribution chambers that cooperate with each function button. The design of the water distribution base, with water distribution chambers that cooperate with the function buttons, allows for more precise guidance of water flow switching. Each function button controls the corresponding water circuit connection, ensuring that the water flow selection between the shower head circuit and the spray gun circuit is stable and controllable, thus improving reliability.
[0038] Specifically, the first function button 3 and the second function button 4 are respectively installed in the water distribution chamber. In the initial state, the water distribution chamber prioritizes water supply to the shower head water path. In the switching state, the water distribution chamber outputs water to the corresponding water path of the function button. On one hand, when the user presses a function button, the water distribution chamber guides the water flow to the corresponding water path according to the pressed function button. On the other hand, the water distribution chamber prioritizes water supply to the shower head water path, so the shower head water flow can be used directly in the default state without any additional operation. In the switching state, the water distribution chamber can select to output water to the corresponding spray gun water path according to the pressed function button. At this time, the water distribution chamber stops outputting water to the shower head water path, realizing efficient and quick water path switching.
[0039] Furthermore, the water outlet path of the water distribution chamber is provided with two parallel water passage holes 8 and one water outlet hole 9. The switching shaft 6 is freely sealed to its respective water passage hole 8 by a return spring 7, so that in the initial state, water is preferentially discharged to the shower water path through the water outlet hole 9. In the switching state, the switching shaft 6 releases the seal on the water passage hole 8, thereby selecting the water outlet path. It can be understood that in the initial state, the switching shaft 6 freely seals its respective water passage hole 8 by the return spring 7, thereby ensuring that water flow preferentially passes through the water outlet hole 9 to supply water to the shower water path. The function of the return spring 7 is to ensure that the switching shaft 6 can automatically return to its initial state after being released from pressure, that is, sealing the water passage hole 8 and guiding the water flow to the shower water path. In the switching state, the switching shaft 6 can release the seal on the water passage hole 8, allowing the water flow to selectively flow to the corresponding water outlet path.
[0040] like Figure 2 and Figure 3 As shown, in this embodiment, the water distribution seat is connected to a water inlet seat 10. The top of the water inlet seat 10 is provided with a nozzle 11. The nozzle 11 includes a first nozzle 12 connected to a first water outlet to output blade-shaped water (a wide, diffused, blade-like water flow) and a second nozzle 13 connected to a second water outlet to output columnar water (a concentrated, straight water flow). Therefore, the first and second water outlets are connected to different types of nozzles, allowing the water flow to be switched according to different needs. For example, blade-shaped water is suitable for wide-coverage cleaning tasks, quickly covering large areas. Columnar water is suitable for cleaning scenarios requiring concentrated high-pressure water flow, such as spraying to remove stubborn stains or performing precise rinsing. This flexible water flow selection enhances the adaptability of the equipment and meets more usage needs.
[0041] The water inlet seat 10 also includes a water outlet surface 14 disposed on its end face and connected to the shower water path. Thus, blade-shaped water or jet-shaped water can be output through the nozzle 11, and a regular shower water flow can also be output through the water outlet surface 14. Users can choose the appropriate water flow mode according to different usage needs to achieve a more efficient and comfortable shower experience.
[0042] like Figure 3 As shown, in this embodiment, the shower head body 1 is provided with a spindle 15 that connects to the water distribution seat, and the water inlet is formed within the spindle 15. The shower head body 1 has a handheld part and a water outlet part, with the spindle 15 correspondingly disposed within the handheld part. The spindle 15 is detachably connected to the water distribution seat via a connecting seat 16. By integrating the water inlet within the spindle 15 and achieving detachable connection with the water distribution seat via the connecting seat 16, not only is the stability and transmission efficiency of the water flow improved, but the installation, maintenance, and replacement process of the equipment is also simplified.
[0043] like Figure 2 and Figure 3As shown, in this embodiment, the water inlet seat 10 and the water distribution seat are directly detached and connected. The shower head water path is formed in the middle of the water inlet seat 10. The first water outlet path is formed within one of the annular outer rings of the water inlet seat 10, and the second water outlet path is formed within the other annular outer ring of the water inlet seat 10. By separating the different water paths, effective water flow distribution is achieved, ensuring clear water flow channels and reducing cross-flow and confusion. The middle of the water inlet seat 10 serves as the main water flow channel, concentrating and guiding the water flow to the shower head water path, ensuring efficient water output from the main water path.
[0044] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions that fall within the scope of this utility model's concept are protected by this utility model.
Claims
1. A dual-spray pattern showerhead with easy switching and automatic reset, characterized in that, The shower body is provided with a water inlet path, a shower water path and a spray gun water path, the spray gun water path has a first water outlet path and a second water outlet path capable of outputting different spray gun water; The water distribution body is used to select water outlet to the corresponding water path; The switching body includes a first function button for controlling the first water outlet path and a second function button for controlling the second water outlet path; In the initial state, the water distribution body selects water outlet to the shower water path; In the switching state, the first function button or the second function button is pressed to select water outlet to the first water outlet path or the second water outlet path, and it can automatically reset to switch to the shower water path after the pressing is released. In the initial state, the spray gun water path and the shower water path are in a conductive state, and the shower water is output at this time; in the switching state, the first function button or the second function button is pressed to close the conductive state of the spray gun water path and the shower water path, and the corresponding water outlet path is preferentially output, and at least the spray gun water is output at this time. The first function button and the second function button are arranged adjacent to the back of the shower body; each function button includes a pressing piece arranged along an axis, a switching shaft and a reset spring, the water distribution body is arranged as a water distribution seat, and a water distribution cavity corresponding to each function button is arranged on the water distribution seat.
2. The dual-spray pattern showerhead of claim 1, wherein, The first function button and the second function button are arranged in the water distribution cavity, in the initial state, the water distribution cavity preferentially supplies water to the shower water path, and in the switching state, the water distribution cavity correspondingly outputs water to the water outlet path corresponding to the function button.
3. The dual-spray pattern showerhead with easy switch-over and automatic resettable according to claim 1, characterized in that, Two parallel water holes and a water outlet hole are arranged in sequence on the water outlet path of the water distribution cavity, the switching shaft is freely blocked on the corresponding water hole by the reset spring, so as to preferentially output water to the shower water path along the water outlet hole in the initial state, and the switching shaft is unblocked from the water hole in the switching state, so as to select water outlet to the corresponding water outlet path.
4. The dual-spray-pattern showerhead of claim 3, wherein, The water distribution seat is connected to a water inlet seat, the top of the water inlet seat is provided with a nozzle, the nozzle includes a first nozzle part connected to the first water outlet path to output blade water and a second nozzle part connected to the second water outlet path to output columnar water.
5. The dual-spray-pattern showerhead of claim 4, wherein, The water inlet seat further includes a water outlet surface part arranged at the end surface and connected to the shower water path.
6. The dual-spray-pattern showerhead of claim 4, wherein, The shower body is provided with a core shaft connected to the water distribution seat, and the water inlet path is formed in the core shaft.
7. The dual-spray-pattern showerhead of claim 6, wherein, The shower body is provided with a hand holding part and a water outlet part, the core shaft is correspondingly arranged in the hand holding part, and the core shaft is detachably connected to the water distribution seat through a connecting seat.
8. The dual-spray-pattern showerhead of claim 4, wherein, The water inlet seat and the water distribution seat are directly detachably connected, the shower water path is formed in the middle of the water inlet seat, the first water outlet path is formed in one of the annular outer rings of the water inlet seat, and the second water outlet path is formed in the other annular outer ring of the water inlet seat.
9. The dual-spray-pattern showerhead of claim 8, wherein, 10. The dual-spray-pattern showerhead of claim 6, wherein,