A shower device

By adopting a dual water channel structure and hydraulically driven switching in the shower device, the stability problem of the switching device under the influence of water flow is solved, and stable switching of the shower head functions and a variety of water output effects are achieved.

CN110653079BActive Publication Date: 2025-09-09XIAMEN JIANLIN SMART HOME CO LTD
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Patent Information

Application Number
CN201910807618.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2019-04-23
Filing Date
2019-08-29
Publication Date
2025-09-09
Estimated Expiration
2039-08-29

AI Technical Summary

Technical Problem

The switching device of the existing shower device is easy to change the water splash function under the influence of water flow, resulting in poor stability, and the traditional wire-controlled switching is not stable enough.

Method used

It adopts a dual water channel structure and uses hydraulic power to drive the switching device to ensure that the water supply channel and the power water channel of the switching device do not affect each other, and the stable switching of the shower head function is achieved through the control device.

Benefits of technology

The stability of the water outlet function of the shower device is enhanced, the water splash is avoided from being affected by the user's operation of the faucet, and flexible switching between two or more water outlet effects is achieved.

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Abstract

The present invention discloses a shower device, including a water flow body, a water outlet device provided on the water flow body, a water outlet hole provided on the water outlet device, a first water channel and a second water channel provided in the water flow body, a switching device provided in the water outlet device, the switching device provided with a third water channel that can communicate with the first water channel, the third water channel is also communicated with the water outlet hole, the switching device is also provided with a fourth water channel that can communicate with the second water channel, the switching device includes a water outlet effect that can switch at least two functions, and the water flow body is also provided with a control device for controlling the water to flow into from the first water channel or from the second water channel. Through the design of the above structure, the present invention utilizes the impact of water flow to change the relative position of the switching device, thereby changing the water outlet effect of the water outlet hole, thereby improving the user's shower experience.
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Description

Technical Field

[0001] The invention relates to a shower device. Background Art

[0002] With the improvement of people's living standards, shower devices with multi-functional overhead sprays have become a common showering method. However, the switching devices for switching overhead spray functions on the current market generally use wired switching, which has poor stability in the process of transmitting force. At the same time, there are also hydraulic switches on the market that use remote control of overhead spray water, but there is a common problem. The hydraulic switches on the market are all single-waterway switches, which will cause mutual interference during water flow and switching, resulting in changes in the shower head water spray and poor stability. Specifically, when the user opens the faucet switch valve without switching the switching device, the switching device in the shower device will also be affected by the water flow and work, changing the water flow hole and affecting the water spray function. Summary of the Invention

[0003] In order to solve the above technical problems, the purpose of the present invention is to provide a shower device, which specifically adopts a dual water channel structure setting and utilizes hydraulic drive to realize the function switching of the shower head, so that the water supply channel of the shower device and the power water channel that provides power for the switching device do not affect each other, thereby ensuring the stability of the top spray of the shower device.

[0004] The present invention is achieved through the following technical solutions:

[0005] A shower device includes a water flow body, a water outlet device is provided on the water flow body, a water outlet hole is provided on the water outlet device, a first water channel and a second water channel are provided in the water flow body, a switching device is provided in the water outlet device, the switching device is provided with a third water channel that can communicate with the first water channel, the third water channel is also communicated with the water outlet hole, the switching device is also provided with a fourth water channel that can communicate with the second water channel, the switching device includes a water outlet effect that can switch between at least two functions, and the water flow body is also provided with a control device that controls the water to flow into the first water channel or the second water channel.

[0006] In an embodiment of the present invention, the control device includes a main body, a water cutting body is arranged in the main body, and a water inlet, a first water outlet and a second water outlet are arranged on the water cutting body. The first water outlet is communicated with the first water channel, and the second water outlet is communicated with the second water channel. A water cutting shaft is also connected in the water cutting body, and a first spring is arranged between the water cutting shaft and the water cutting body.

[0007] In an embodiment of the present invention, the water cutting shaft is further connected with a push shaft, and the push shaft is connected with a switch.

[0008] In an embodiment of the present invention, a water inlet is further provided on the water flow body, a fifth water passage is provided on the water inlet, and a water inlet hole communicating with the water inlet is provided on the control device.

[0009] In preferred embodiment 1, the water inlet member is arranged at the upper end of the water body, and a sixth water channel is also provided in the water body, one end of the sixth water channel is communicated with the fifth water channel, and the other end of the sixth water channel is communicated with the water inlet.

[0010] In the preferred embodiment 2, the water inlet member is arranged at the lower end of the water body, and the fifth water passage is directly communicated with the water inlet hole on the control device.

[0011] In a preferred embodiment 1 of the present invention, the switching device includes a first main body, the first main body includes a first pusher, a first water diversion body and a first water sealing cover, the first water diversion body is provided with a rib with an inclined surface, the first water diversion body is also provided with a first pressure relief hole, a second spring is provided between the first pusher and the first water diversion body, the first pusher is also connected with a first upper ratchet, the first upper ratchet is connected with a first lower ratchet, the first lower ratchet is fixed on the first water diversion plate, the first water diversion plate is provided with water holes with at least two functions, and a second spring is provided between the first water diversion plate and the first lower ratchet. The third spring. More specifically, the water outlet device includes a first shell and a first water outlet cover. The first water outlet cover is provided with a third pressure relief hole, and the third pressure relief hole is communicated with the first pressure relief hole. The first shell is matched with the first water outlet cover and is connected. A first water inlet is provided between the first shell and the first water outlet cover. The first water inlet is matched with the first water diversion body and is connected. The first pushing member and the second spring are arranged in the cavity between the first water inlet and the first water diversion body. A water diversion port is provided on the first water diversion body. The first water diversion body is also matched with the first water diversion pad, and the first water sealing cover is arranged on the first water outlet cover.

[0012] In a preferred embodiment 2 of the present invention, the switching device includes a second main body, the second main body includes a second pushing member and a second water-dividing body, a fourth spring is provided between the second pushing member and the second water-dividing body, the second pushing member is also cooperated with a push rod, one end of the push rod is provided with an inclined surface cooperating with the second pushing member, the other end of the push rod is provided with a first tooth, and a fifth spring is also sleeved on the push rod, the first tooth on the push rod is cooperated with the lower plate tooth, the lower plate tooth is provided with a second tooth cooperating with the first tooth, the lower plate tooth is also provided with a third tooth, the third tooth is cooperated with the fourth tooth, the fourth tooth is provided on the upper plate tooth, and the upper plate tooth is also connected to the second water-dividing plate The water outlet device comprises a second shell and a second water outlet cover, the second shell and the second water outlet cover are cooperatively connected, a second water inlet body is provided between the second shell and the second water outlet cover, the second water inlet body is cooperatively connected with the second water diversion body, the second pusher and the fourth spring are arranged in the cavity between the second water inlet body and the second water diversion body, the second water diversion plate is also cooperatively connected with a second water diversion pad, the second water diversion pad is arranged on a water diversion part, the water diversion part is cooperatively connected with a sealing part, and a second pressure relief hole is provided on the sealing part.

[0013] A shower device of the present invention has the following beneficial effects:

[0014] 1. The water outlet function of the water outlet device is switched by hydraulic power, which overcomes the traditional wire-controlled switching and enhances stability.

[0015] 2. The control device is set at the bottom of the water body, which is convenient for users to operate.

[0016] 3. The dual-water channel structure ensures that the water supply channel of the shower device and the water channel that provides power for the switching device do not interfere with each other, ensuring the stability of the water splash function of the water outlet device and avoiding the impact of the water splash when the user switches the faucet.

[0017] 4. Only two pipes are used to realize the water spray changes of more than two functions of the water outlet device.

[0018] 5. The water inlet can be installed at the upper or lower end of the shower column, which is suitable for American and European showers, enhancing flexibility. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solution of the present invention, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 It is an exploded view of embodiment 1 of the present invention.

[0021] Figure 2 It is an exploded view of embodiment 2 of the present invention.

[0022] Figure 3 It is a cross-sectional view of embodiment 1 of the present invention.

[0023] Figure 4 It is a cross-sectional view of embodiment 2 of the present invention.

[0024] Figure 5 It is an exploded diagram of the switching device in Example 1 of the present invention.

[0025] Figure 6 It is an exploded diagram of the switching device in embodiment 2 of the present invention.

[0026] Figure 7 It is a cross-sectional view of the water outlet device in Example 1 of the present invention.

[0027] Figure 8 It is a cross-sectional view of the water outlet device in Example 2 of the present invention.

[0028] Figure 9 This is a schematic diagram of the switching device in Example 2 of the present invention. Figure 1 .

[0029] Figure 10 This is a schematic diagram of the switching device in Example 2 of the present invention. Figure 2 .

[0030] Figure 11 It is a schematic diagram of the water supply circuit of the control device and the water body of the present invention.

[0031] Figure 12 It is a schematic diagram of the switching water path of the control device and the water body of the present invention.

[0032] Figure 13 It is a schematic diagram of the water supply circuit of the water outlet device in Example 1 of the present invention.

[0033] Figure 14 This is a schematic diagram of the switching water path of the water outlet device in Example 1 of the present invention.

[0034] Figure 15 It is a schematic diagram of the water supply circuit of the water outlet device in Example 2 of the present invention.

[0035] Figure 16 This is a schematic diagram of the water supply circuit of the switching device in Example 2 of the present invention.

[0036] Figure 17 This is a schematic diagram of the switching water path of the water outlet device in Example 2 of the present invention.

[0037] Figure 18 This is a schematic diagram of the switching water path of the switching device in Example 2 of the present invention.

[0038] Figure 19 It is a schematic diagram of an American shower device of the present invention.

[0039] Figure 20 It is a schematic diagram of a European-style shower device of the present invention.

[0040] In the figure: 10-water body; 11-first water channel; 12-second water channel; 13-wall seat assembly; 14-sixth water channel; 20-water outlet device; 21-water outlet hole; 22-first shell; 23-first water outlet cover; 23a-third pressure relief hole; 24-first water inlet; 30-switching device; 31-third water channel; 32-fourth water channel; 33-first main body; 331-first pusher; 332-first water diversion body; 332a-water diversion port; 332b-rib; 332c-first pressure relief hole; 333-first water sealing cover; 334-second spring; 335-first upper ratchet; 336-first lower ratchet; 337-first water diversion plate; 338-water channel; 339-third spring; 33X-first water diversion pad; 34-second main body; 341-second pusher Component; 342-second water diversion body; 343-fourth spring; 344-push rod; 344a-inclined surface; 344b-first tooth; 345-fifth spring; 346-lower plate tooth; 346a-second tooth; 346b-third tooth; 347-upper plate tooth; 347a-fourth tooth; 348-second water diversion plate; 349-sixth spring; 34X-seventh spring; 34XI-second water diversion pad; 35-water diversion component; 36-sealing component; 36a-second pressure relief hole; 40-control device; 41-main body; 411-water inlet; 42-water cutting body; 421-first water outlet; 422-second water outlet; 425-water inlet; 43-water cutting shaft; 44-first spring; 45-pressing shaft; 46-switch; 47-fixing component; 50-water inlet component; 51-fifth water passage. DETAILED DESCRIPTION

[0041] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0042] Referring to the drawings of the specification, a shower device includes a water body 10, a water outlet device 20 is provided on the water body 10, and a water outlet hole 21 is provided on the water outlet device 20, and the water outlet device 20 includes at least two water outlet effects, a first water passage 11 and a second water passage 12 are provided in the water body 10, and a switching device 30 is provided in the water outlet device 20, and the switching device 30 is provided with a third water passage 31 that can communicate with the first water passage 11, and the third water passage 31 is also communicated with the water outlet hole 21, and the switching device 30 is provided with a third water passage 31 that can communicate with the first water passage 11, and the third water passage 31 is also communicated with the water outlet hole 21. 0 is also provided with a fourth water passage 32 that can communicate with the second water passage 12. The switching device 30 can change the water outlet effect of the water outlet 21. Specifically, the switching device includes a water distribution plate that can change the water outlet effect of the water outlet. The water passage body 10 is also provided with a control device 40 that controls the flow of incoming water from the first water passage 11 or the second water passage 12. Through the above-mentioned dual-water channel structural design, the present invention realizes the separation of the water supply channel and the switching water channel, so that there is no mutual interference during operation, and the stability of the water outlet effect is enhanced. At the same time, it also overcomes the design defects in traditional hydraulic switching, ensuring that the water supply and switching water splash of the shower device do not affect each other. The specific defects are: the transmission hydraulic switching shower device is a single-pipe design, that is, the water supply waterway and the switching power waterway share a pipe. The water pressure suddenly changes when the user opens and closes the faucet valve, which easily causes the switching device 30 to work, thereby changing the position of the functional water hole, thereby affecting the shape of the water splash. During use, the user has to adjust and switch multiple times to use the water splash shape used last time, which is not in line with the human-machine relationship.

[0043] Furthermore, the control device 40 includes a main body 41, a water cutting body 42 is provided in the main body 41, and a water inlet 425, a first water outlet 421 and a second water outlet 422 are provided on the water cutting body 42, the first water outlet 421 is communicated with the first water channel 11, and the second water outlet 422 is communicated with the second water channel 12, and a water cutting shaft 43 is also connected in the water cutting body 42, and a first spring 44 is provided between the water cutting shaft 43 and the water cutting body 42. More specifically, the water cutting shaft 43 is also connected with a press shaft 45, and the press shaft 45 is connected with a switch 46. A fixing component 47 for fixing and cooperating with the press shaft 45 and the water cutting shaft 43 is provided in the main body 41. In an embodiment of the present invention, the switch 46 is a button, which is controlled by pressing. Of course, the switch is not limited to a button, but can also be a knob, a folding button, a dial button, etc. Through the design of the above structure, the present invention allows the user to press the switch 46 to change the relative position of the water cutting axis 43 and the water cutting body 42, thereby changing the water inlet 425 to be connected with the first water outlet 421 or the second water outlet 422, thereby changing the direction of the water flow, and then realizing the shower device to be in the water supply state or the switching functional water channel state.

[0044] Furthermore, the shower device is further provided with a wall base assembly 13 that is matched with the wall, and the wall base assembly 13 realizes the overall fixation of the shower device.

[0045] Furthermore, the water flow body 10 is provided with a water inlet member 50, which is provided with a fifth water passage 51. The control device 40 is provided with a water inlet hole 411 that communicates with the water inlet channel 425. The water source flows through the water inlet member 50 and then into the control device 40 to control the direction of the water flow. When the water outlet device 20 needs to discharge water, the water cut-off shaft 43 and the water cut-off body 42 are adjusted to adjust the matching position so that the water inlet channel 425 communicates with the first water outlet channel 421. When it is necessary to adjust the water discharge effect of the water outlet hole 21 to switch the functional water, the water inlet channel 425 is connected to the second water outlet channel 422.

[0046] Furthermore, in the preferred embodiment 1, the water inlet 50 is provided at the upper end of the water body 10, and a sixth water passage 14 is further provided in the water body 10, one end of the sixth water passage 14 is communicated with the fifth water passage 51, and the other end of the sixth water passage 14 is communicated with the water inlet hole 411, and the arrangement is an American design. In the preferred design, the water inlet 50 can be integrated with the wall base assembly 13, refer to the attached manual Figure 19 shown.

[0047] Furthermore, in the preferred embodiment 2, the water inlet 50 is provided at the lower end of the water body 10, and the fifth water passage 51 is directly connected to the water inlet hole 411 on the control device 40, and its arrangement is a European design, refer to the attached manual. Figure 20 shown.

[0048] Further, in the preferred embodiment 1 of the present invention, the switching device 30 includes a first main body 33, the first main body 33 includes a first pusher 331, a first water diversion body 332 and a first water sealing cover 333, the first water diversion body 332 is provided with a rib 332b with an inclined surface, the first water diversion body 332 is also provided with a first pressure relief hole 332c, a second spring 334 is provided between the first pusher 331 and the first water diversion body 332, the first pusher 331 is also connected with a first upper ratchet 335, the first upper ratchet 335 is connected with a first lower ratchet 336, the first lower ratchet 336 is fixed on the first water diversion plate 337, the first water diversion plate 337 is provided with a first pressure relief hole 332c, and the first pusher 331 is provided with a first upper ratchet 335. 37 is provided with a water hole 338 with at least two functions, and a third spring 339 is further provided between the first water diversion plate 337 and the first lower ratchet 336. The rib 332b is provided to assist the rotation and positioning of the first lower ratchet 336. More specifically, the first upper ratchet 335 is provided with a triangular tooth, and the first lower ratchet 336 is provided with an arc-shaped tooth that matches the triangular tooth. The present invention causes the first lower ratchet 336 to rotate through the top pressure of the first upper ratchet 335 and the first lower ratchet 336, thereby driving the rotation of the first water diversion plate 337, thereby changing the relative position of the water hole 338, thereby affecting the water outlet effect of the water outlet device 20 and realizing the switching of functional water.

[0049] Furthermore, the water outlet device 20 includes a first shell 22 and a first water outlet cover 23, the first water outlet cover 23 is provided with a third pressure relief hole 23a, the third pressure relief hole 23a is communicated with the first pressure relief hole 332c, the first shell 22 is cooperatively connected with the first water outlet cover 23, a first water inlet body 24 is provided between the first shell 22 and the first water outlet cover 23, the first water inlet body 24 is cooperatively connected with the first water diversion body 332, the first pushing member 331 and the second spring 334 are arranged in the cavity between the first water inlet body 24 and the first water diversion body 332, a water diversion port 332a is provided on the first water diversion body 332, the first water diversion body 332 is also cooperatively connected with a first water diversion pad 33X, the first water diversion pad 33X is provided with multiple water outlets, and the first water sealing cover 333 is arranged on the first water outlet cover 23.

[0050] In the water-passing state of the preferred embodiment 1, please refer to the attached manual. Figure 11 、 12, 13, 14, under normal conditions, the water outlet device 20 is in the water supply state, and the water flow state of the control device 40 is as shown in the appendix of the specification. Figure 11 As shown in , at this time, the control device 40 is fed with water, and the water flows from the water inlet 425 into the space between the water cutting body 42 and the water cutting shaft 43. At this time, the cooperation position of the water cutting body 42 and the water cutting shaft 43 is that the first outlet 421 is open and the second outlet 422 is closed. Therefore, the water flows through the water inlet 425 and then flows out from the first outlet 421, then enters the first water channel 11, and then flows to the third water channel 31, and finally flows out from the water outlet 21 to form water. The water outlet waterway of the water outlet device 20 is shown in the appendix of the manual. Figure 13 shown.

[0051] Furthermore, when the user wants to change the water effect, he only needs to press the switch 46 to switch the water supply waterway to the switching waterway. The water flow state of the control device 40 is shown in the appendix of the manual. Figure 12 As shown, after pressing the switch 46, the matching position of the water cutting shaft 43 and the water cutting body 42 is changed. At this time, the first spring 44 is compressed, and the first water outlet 421 is closed, and the second water outlet 422 is opened. Therefore, the water flows through the water inlet 425 and then flows out from the second water outlet 422, and then enters the fourth water channel 32, and then enters the switching device 30 to change the relative position of the first water distribution plate 337, thereby changing the matching position of the functional water hole 338 and the water outlet hole 21, thereby achieving functional water outlets with different effects. The specific principle is as follows: when water flows out of the fourth water passage 32 and enters the switching device 30, it directly acts on the first pushing member 331. Under the cooperation of the second spring 334, the first pushing member 331 moves downward, driving the first upper ratchet 335 to move downward. Due to the cooperation of the triangular teeth of the first upper ratchet 335 and the arc-shaped teeth of the first lower ratchet 336, the first lower ratchet 336 rotates, thereby driving the first water diversion plate 337 to rotate, thereby changing the relative position of the functional water hole 338, thereby changing the water outlet effect. In this embodiment, the water outlet effect of the functional water is in three states. When the user releases the switch 46, under the action of the elastic force of the first spring 44, the water cut-off shaft 43 is reset. At this time, the first water outlet 421 is opened, the second water outlet 422 is closed, and the water outlet device restores the water supply waterway to form a water outlet state. Figure 14 During the switching process, the water outlet does not discharge water, and the first pressure relief hole 332c and the third pressure relief hole 23a discharge water.

[0052] Furthermore, in the preferred embodiment 2 of the present invention, the switching device 30 includes a second main body 34, the second main body 34 includes a second pushing member 341 and a second water diversion body 342, a fourth spring 343 is provided between the second pushing member 341 and the second water diversion body 342, the second pushing member 341 is also cooperated with a push rod 344, one end of the push rod 344 is provided with an inclined surface 344a that cooperates with the second pushing member 341, the other end of the push rod 344 is provided with a first tooth 344b, the push rod 344 is also sleeved with a fifth spring 345, the first tooth 344b on the push rod 344 is cooperated with the lower plate tooth 346, the lower plate tooth 346 is provided with a second tooth 346a that cooperates with the first tooth 344, the lower plate tooth 346 is further provided with a third tooth 346b, the third tooth 346b cooperates with the first tooth 344 The fourth tooth 347a is connected to the upper plate tooth 347, and the upper plate tooth 347 is also matched with the second water diversion plate 348. The second water diversion plate 348 is provided with a sixth spring 349 for pressing itself for limiting. The upper plate tooth 347 is also provided with a seventh spring 34X for pressing itself. More specifically, the cross-section of the third tooth 346b on the lower plate tooth 346 is a right-angled triangle, and the cross-section of the fourth tooth 347a on the upper plate tooth 347 is a right-angled triangle in the opposite direction of the third tooth 346b. The purpose is that when the lower plate tooth 346 rotates in a clockwise direction, the upper plate tooth 347 can be driven to rotate, and when the lower plate tooth 346 rotates in the other clockwise direction, the upper plate tooth 347 will not be driven to rotate by the lower plate tooth 346, thereby ensuring the stability of the relative position of the second water diversion plate 348.

[0053] Furthermore, the water outlet device 20 includes a second shell 25 and a second water outlet cover 26, the second shell 25 is cooperatively connected to the second water outlet cover 26, a second water inlet 27 is provided between the second shell 25 and the second water outlet cover 26, the second water inlet 27 is cooperatively connected to the second water diversion body 342, the second pusher 341 and the fourth spring 343 are arranged in the cavity between the second water inlet 27 and the second water diversion body 342, the second water diversion plate 348 is also cooperatively connected to the second water diversion pad 34XI, the second water diversion pad 34XI is arranged on a water diversion member 35, the water diversion member 35 is cooperatively connected to the sealing member 36, and the sealing member 36 is provided with a second pressure relief hole 36a.

[0054] In the water-passing state of the preferred embodiment 2, please refer to the attached manual. Figure 11 、 12 , 15, 16, 17, 18, under normal conditions, the water outlet device 20 is in the water supply state, and the water flow state of the control device 40 is as shown in the appendix of the specification. Figure 11As shown in , at this time, the control device 40 is fed with water, and the water flows from the water inlet 425 into the space between the water cutting body 42 and the water cutting shaft 43. At this time, the cooperation position of the water cutting body 42 and the water cutting shaft 43 is that the first outlet 421 is open and the second outlet 422 is closed. Therefore, the water flows through the water inlet 425 and then flows out from the first outlet 421, then enters the first water channel 11, and then flows to the third water channel 31, and finally flows out from the water outlet 21 to form water. The water outlet waterway of the water outlet device 20 is shown in the appendix of the manual. Figure 15 and instructions attached Figure 16 shown.

[0055] Furthermore, when the user wants to change the water effect, he only needs to press the switch 46 to switch the water supply waterway to the switching waterway. The water flow state of the control device 40 is shown in the appendix of the manual. Figure 12 As shown, after pressing the switch 46, the matching position of the water cutting shaft 43 and the water cutting body 42 is changed. At this time, the first spring 44 is compressed, and the first water outlet 421 is closed, and the second water outlet 422 is opened. Therefore, the water flows through the water inlet 425 and then flows out from the second water outlet 422, and then enters the fourth water channel 32, and then enters the switching device 30 to change the relative position of the second water distribution plate 348, thereby changing the matching position of the functional water hole and the water outlet hole 21 on the second water distribution plate 348, thereby achieving functional water discharge with different effects. This state refers to the attached manual Figure 17 and instructions attached Figure 18The specific principle is as follows: when water flows into the switching device 30, the water flows directly onto the second pusher 341, causing the second pusher 341 to move downward. At this time, the fourth spring 343 is compressed. At the same time, the second pusher 341 cooperates with the inclined surface 344a of the push rod 344, driving the horizontal movement of the push rod 344. In this embodiment, it specifically moves to the right. The movement of the push rod 344 drives the lower plate teeth 346 that cooperate with the push rod 344 to rotate. This is achieved through the cooperation of the first teeth 344b and the second teeth 346a. The rotation of the lower plate teeth 346 drives the upper plate teeth 347 that cooperate with the lower plate teeth 346 to rotate. At this time, the third teeth 346b on the lower plate teeth 346 and the fourth teeth 347a on the upper plate teeth 347 are right-angled surfaces. The action of the switch 30 is that the lower tooth 346 rotates in the clockwise direction toward the right angle of the fourth tooth 347a. The rotation of the upper tooth 346 drives the second water diversion plate 348, which cooperates with the upper tooth 346, to rotate, thereby changing the position of the functional water holes on the second water diversion plate 348, thereby achieving different functional water discharge effects. More specifically, in the embodiment of the present invention, the second water diversion plate 348 is provided with three types of functional water holes, i.e., having three different water discharge effects. Of course, the manufacturer can design a variety of water discharge effects according to market demand, i.e., change the number of functional water holes on the second water diversion plate 348 and perform functional design. Therefore, it is not limited to the embodiment of two water discharge effects. The water flow entering the switching device 30 flows out from the second pressure relief hole 36a after the action is completed. When the user releases the switch 46, the water cut-off shaft 43 is reset under the action of the elastic force of the first spring 44. At this time, the first water outlet 421 is opened and the second water outlet 422 is closed. The water outlet device 20 restores the water supply waterway to form a water discharge state. Please refer to the attached manual for details. Figure 15 and instructions attached Figure 16 As shown, at this time, the fourth spring 343 in the switching device 30 resets, thereby driving the second pusher 341 to reset. Under the elastic force of the fifth spring 345, the push rod 344 also resets, specifically moving leftward. The reset movement of the push rod 344 also drives the movement of the lower plate teeth 346. At this time, the third tooth 346b on the lower plate teeth 346 rotates along the inclined direction of the fourth tooth 347a, thereby not driving the upper plate teeth 347 to rotate, and thus does not change the relative position of the second water diversion plate 348, thereby ensuring the stability of the water discharge effect. During the switching function, the water outlet does not discharge water, and the second pressure relief hole 36a drains water.

[0056] The foregoing description shows and describes preferred embodiments of the present invention. As previously mentioned, it should be understood that the present invention is not limited to the form disclosed herein and should not be construed as excluding other embodiments. Instead, the present invention can be used in various other combinations, modifications, and environments and can be modified within the scope of the inventive concept described herein by the teachings above or by techniques or knowledge in the relevant art. Modifications and variations made by those skilled in the art without departing from the spirit and scope of the present invention are intended to be within the scope of the appended claims.

Claims

1. A shower device comprising a water body, a water outlet device provided on the water body, and a water outlet hole provided on the water outlet device, characterized in that: A first water channel and a second water channel are provided in the water flow body, a switching device is provided in the water outlet device, the switching device is provided with a third water channel that can communicate with the first water channel, the third water channel is also communicated with the water outlet hole, the switching device is also provided with a fourth water channel that can communicate with the second water channel, the switching device includes a water outlet effect that can switch at least two functions, and the water flow body is also provided with a control device that controls the water to flow into the first water channel or the second water channel.

2. A shower device according to claim 1, characterized in that: The control device includes a main body, a water cutting body is arranged in the main body, and the water cutting body is provided with a water inlet, a first water outlet and a second water outlet, the first water outlet is communicated with the first water passage, and the second water outlet is communicated with the second water passage, and a water cutting shaft is also connected in the water cutting body, and a first spring is arranged between the water cutting shaft and the water cutting body.

3. A shower device according to claim 2, characterized in that: The water cutting shaft is also connected with a pressing shaft, and the pressing shaft is connected with a switch.

4. A shower device according to any one of claims 1 to 3, characterized in that: The water flow body is further provided with a water inlet component, the water inlet component is provided with a fifth water passage, and the control device is provided with a water inlet hole communicated with the water inlet channel.

5. A shower device according to claim 4, characterized in that: The water inlet member is arranged at the upper end of the water body, and a sixth water channel is further arranged in the water body. One end of the sixth water channel is communicated with the fifth water channel, and the other end of the sixth water channel is communicated with the water inlet.

6. The shower device according to claim 4, characterized in that: The water inlet member is arranged at the lower end of the water passage, and the fifth water passage is directly communicated with the water inlet hole on the control device.

7. A shower device according to any one of claims 1-3 or 5-6, characterized in that: The switching device includes a first main body, which includes a first pushing member, a first water diversion body and a first water sealing cover. The first water diversion body is provided with a rib with an inclined surface, and the first water diversion body is also provided with a first pressure relief hole. A second spring is provided between the first pushing member and the first water diversion body. The first pushing member is also cooperatively connected with a first upper ratchet, and the first upper ratchet is cooperatively connected with a first lower ratchet. The first lower ratchet is fixed on the first water diversion plate. The first water diversion plate is provided with water holes with at least two functions, and a third spring is also provided between the first water diversion plate and the first lower ratchet.

8. The shower device according to claim 7, characterized in that: The water outlet device includes a first shell and a first water outlet cover, the first water outlet cover is provided with a third pressure relief hole, the third pressure relief hole is communicated with the first pressure relief hole, the first shell is cooperatively connected with the first water outlet cover, a first water inlet is provided between the first shell and the first water outlet cover, the first water inlet is cooperatively connected with the first water diversion body, the first pushing member and the second spring are arranged in the cavity between the first water inlet and the first water diversion body, the first water diversion body is provided with a water diversion port, the first water diversion body is also cooperatively connected with the first water diversion pad, and the first water sealing cover is arranged on the first water outlet cover.

9. A shower device according to any one of claims 1-3 or 5-6, characterized in that: The switching device includes a second main body, the second main body includes a second pushing member and a second water diversion body, a fourth spring is provided between the second pushing member and the second water diversion body, the second pushing member is also cooperated with a push rod, one end of the push rod is provided with an inclined surface cooperating with the second pushing member, the other end of the push rod is provided with a first tooth, and the push rod is also sleeved with a fifth spring, the first tooth on the push rod is cooperated with the lower plate tooth, the lower plate tooth is provided with a second tooth cooperating with the first tooth, the lower plate tooth is also provided with a third tooth, the third tooth is cooperated with the fourth tooth, the fourth tooth is provided on the upper plate tooth, the upper plate tooth is also cooperated with the second water diversion plate, the second water diversion plate is provided with a sixth spring for pressing itself for limiting, and the upper plate tooth is also provided with a seventh spring for pressing itself.

10. The shower device according to claim 9, characterized in that: The water outlet device includes a second shell and a second water outlet cover, the second shell is cooperatively connected to the second water outlet cover, a second water inlet is provided between the second shell and the second water outlet cover, the second water inlet is cooperatively connected to the second water diversion body, the second pusher and the fourth spring are arranged in the cavity between the second water inlet and the second water diversion body, the second water diversion plate is further cooperatively connected to the second water diversion pad, the second water diversion pad is arranged on a water diversion part, the water diversion part is cooperatively connected to a sealing part, and the sealing part is provided with a second pressure relief hole.

Citation Information

Patent Citations

  • Shower device

    CN211412386U