Shower head handle
By designing a shower handle with a valve core and adjustment mechanism, and utilizing a crank-connecting rod transmission mechanism, the water flow rate can be easily adjusted, solving the problem that conventional shower handles cannot adjust the flow rate and improving the ease of assembly and use.
Patent Information
- Application Number
- CN202511363885.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2025-11-11
AI Technical Summary
Conventional showerhead handles cannot actively adjust the water flow, have a complex structure, and are not easy to assemble.
The shower handle is designed with a valve core mechanism and an adjustment mechanism. The valve plate is rotated through a crank-connecting rod transmission mechanism, which simplifies the adjustment of the water flow rate. The nozzle and control button mechanism are added to meet diverse usage needs.
It achieves simple adjustment and easy operation of water flow rate, simplifies the structure, and improves assembly convenience and functionality.
Smart Images

Figure CN120920263A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bathroom fixtures technology, specifically to shower handles. Background Technology
[0002] Shower handles are common bathroom fixtures. Conventional shower handles cannot actively adjust the water flow, making them inconvenient to use. In response, actively adjustable shower handles have appeared on the market. These handles control the water flow by installing a valve core and other mechanisms inside the shower handle. However, their drawbacks are that they have a complex structure, are inconvenient to assemble, and require improvement. Summary of the Invention
[0003] To address at least one of the aforementioned technical deficiencies, the present invention provides the following technical solution:
[0004] This application discloses a shower handle, including a housing and a handle connected to the housing for gripping. The housing has a water outlet and a water delivery channel communicating with the water outlet. It also includes a valve core mechanism for controlling the flow rate and an adjustment mechanism for adjusting the valve core. The valve core mechanism is disposed on the housing and the space where the valve core mechanism is located is connected to the water delivery channel through a connecting hole. The valve core mechanism includes a valve plate with an orifice for water delivery and the connecting hole is located on the movement path of the orifice. When the orifice and the connecting hole are completely misaligned, the valve plate seals the connecting hole to disconnect the water delivery channel from the water delivery channel. When at least part of the orifice corresponds to the connecting hole, the water delivery channel is connected to the water delivery channel.
[0005] The regulating mechanism includes an operating component and a crank-connecting rod transmission mechanism. The operating component is slidably connected to the handle and is connected to the valve plate through the crank-connecting rod transmission mechanism. Under the transmission of the crank-connecting rod transmission mechanism, force is applied to slide the operating component to drive the valve plate to rotate, thereby adjusting the degree of misalignment between the orifice on the valve plate and the connecting hole to control the water flow rate.
[0006] This design redesigns the valve core mechanism and its corresponding adjustment mechanism. Under the transmission of the crank and connecting rod, the valve plate can be rotated by directly pushing the operating component during use. This adjusts the degree of misalignment between the first orifice on the valve plate and the connecting hole. If the first orifice on the valve plate is completely misaligned with the connecting hole in the initial state, the first water delivery channel and the second water delivery channel will be disconnected. During use, the operating component can be pushed to align the first orifice with the connecting hole. Specifically, partial or complete alignment can be selected according to the requirements. When partially aligned, the water flow rate is small, and when fully aligned, the water flow rate is large. This design is convenient to operate, has a simplified structure, and is easy to assemble.
[0007] Furthermore, the crank-connecting rod transmission mechanism includes a connecting rod and a connecting plate. The operating member is connected to the connecting rod, and the connecting rod is connected to the connecting plate at its end. The connecting plate is fixedly connected to the valve plate. Applying force to move the operating member drives the connecting plate to rotate, simultaneously driving the valve plate to rotate. For example, one end of the connecting rod is hinged to the operating member, and the other end of the connecting rod is hinged to the side of the connecting plate. Alternatively, one end of the connecting rod can be fixed to the operating member, and the other end of the connecting rod can be hinged to the connecting plate through a waist hole, as detailed below:
[0008] Furthermore, the operating component is slidably connected along the length of the handle and fixedly connected to the connecting rod. The connecting rod is hinged to the connecting plate at its end via a waist hole, and when the connecting rod moves, it synchronously drives the connecting plate to rotate. For the waist hole hinge structure of the connecting rod, a waist hole can be formed at the end of the connecting rod, with the protruding portion of the connecting plate inside the waist hole; or a waist hole can be formed on the top surface of the connecting plate, with the protruding portion of the connecting rod at its end inside the waist hole, depending on the requirements. Preferably, the protruding post at one end of the connecting rod is located in the waist hole formed at the other end of the connecting rod, and when the second connecting rod moves, it synchronously drives the first connecting rod to rotate.
[0009] Furthermore, the operating component is slidably connected along the length of the handle, and the operating component is connected to the crank-connecting rod transmission mechanism. The protrusion at the connecting plate is located in the waist hole formed at the end of the connecting rod. When the connecting rod moves, it synchronously drives the connecting plate to rotate, limiting the sliding direction of the operating component and making it more convenient to operate.
[0010] Furthermore, the operating component includes a connected sliding part and a pushing part. The pushing part protrudes outward from the handle, and the sliding part is slidably connected to the handle. The sliding part is connected to the connecting rod. The operating component is a split assembly mechanism, which reduces the molding difficulty and facilitates installation.
[0011] Furthermore, the sliding part is cylindrical, and it is fitted onto the handle and slides along the length of the handle, making the fitting structure convenient for installation.
[0012] Furthermore, a limiting post is elastically telescopically provided on the handle corresponding to the sliding part's movement path. The sliding part is provided with multiple slots that engage with the limiting post. The limiting post engages with the slot to stay in that position. When a force is applied to push the sliding part, the limiting post moves downward simultaneously to disengage from the corresponding slot. During the gradual movement, the limiting post elastically resets and engages with the next slot. The limiting post and slot help keep the operating component in the desired position. For example, the position of the slot corresponds to the degree of misalignment between the opening and the connecting hole, thus facilitating adjustment.
[0013] Furthermore, it also includes a nozzle and a control button mechanism. The nozzle is disposed at a water outlet hole two formed on the housing. A water delivery channel three is provided inside the housing and the water outlet hole two is connected to the water delivery channel two through the water delivery channel three. The control button mechanism is used to control the opening and closing of the water delivery channel three. The control button mechanism includes a sliding column and a button. The sliding column is elastically telescopically slidably connected to the water delivery channel three and is provided with an orifice two for water delivery on the sliding column. The end of the sliding column is connected to the button and the button protrudes out of the housing. Pressing the button moves the sliding column and simultaneously adjusts the degree of misalignment between the orifice two and the water delivery channel three to control the water flow rate. When the orifice two and the water delivery channel three are completely misaligned, the connection between the water delivery channel three and the water delivery channel two is interrupted.
[0014] This solution adds nozzles to meet different usage needs. For example, when water supply channel one and water supply channel two are interrupted, the button can be pressed to move the slide column, which simultaneously aligns orifice two with water supply channel three. Water supply channel three changes from the interrupted state to the connected state, and the water supplied from water supply channel two by the handle flows into water supply channel three, thereby causing the nozzle to spray water. If a nozzle with high water output intensity is used, the impact intensity of the sprayed water flow is large, and it can be used as a spray gun.
[0015] Furthermore, the first end of the button is hinged to the housing and its last end is connected to the slide column. The first end of the slide column is connected to the button and its last end is provided with an elastic element for resetting between it and the housing wall to form an elastic telescopic connection structure. The elastic element causes the button to reset, which is convenient for use.
[0016] Furthermore, the housing includes a main body and a mounting base disposed on its side. The first water supply channel includes a first placement cavity located at the mounting base. The valve core mechanism is disposed in the first placement cavity. The first placement cavity is connected to the first water supply channel on the main body through a connecting hole at the bottom wall, and the first placement cavity is connected to the second water supply channel at the handle. The second water supply channel includes a second placement cavity located at the mounting base. The second placement cavity is connected to the second water supply channel at the handle. The sliding column is slidably connected to the second placement cavity. The handle is connected to the mounting base, thus defining the housing configuration to facilitate the installation of the valve core mechanism, etc.
[0017] Furthermore, the housing also includes a decorative shell, the front of which is fitted onto the main body and the rear of which is fitted onto the handle. The buttons and push parts protrude outward from the decorative shell. Adding a decorative shell helps to improve aesthetics, reduce interference from external factors, and improve operational stability.
[0018] Furthermore, the water delivery channel three is located on the side of the housing and the nozzle is located on the periphery of the housing, which is a reasonable layout to facilitate use and installation of valve core mechanism, panel, etc.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0020] 1. The present invention designs the structure of the shower handle, the valve core mechanism and the adjustment mechanism, making it simpler and easier to adjust the water flow rate. At the same time, the structure is simplified and easy to assemble.
[0021] 2. This invention adds a nozzle and a corresponding control button mechanism to improve the functionality of the shower head, meet diverse usage needs, and enhance ease of use. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0023] Figure 1 This is a schematic diagram of the shower head handle in Example 1;
[0024] Figure 2 This is a schematic diagram of the shower head handle in Example 1;
[0025] Figure 3 This is a schematic diagram of the shower head handle after the housing has been removed in Example 1;
[0026] Figure 4 This is a schematic diagram of the installation structure of water delivery channel three in Example 1;
[0027] Figure 5 This is a schematic diagram of the structure of the shell in Embodiment 1;
[0028] Figure 6 This is a schematic diagram of the shower handle structure after the decorative shell is installed in Example 1;
[0029] Figure 7 In Example 1 Figure 6 A schematic diagram of the cross-sectional structure;
[0030] Figure 8 In Example 1 Figure 6 A schematic diagram of the cross-sectional structure;
[0031] The attached figures are labeled as follows:
[0032] 1. Housing; 100. Body; 101. Mounting base; 102. Second placement cavity; 103. Third water supply cavity; 104. First water supply cavity; 105. Connecting hole; 106. First placement cavity; 107. Decorative shell; 2. Handle; 21. Second water supply cavity; 3. Control button mechanism; 4. Valve core mechanism; 5. Adjustment mechanism; 6. Nozzle; 8. Limiting post; 9. Panel; 31. Button; 32. Sliding column; 33. Elastic element; 321. Second orifice; 41. Connecting plate; 42. Valve plate; 43. Gap; 410. Protruding post; 421. First orifice; 50. Pushing part; 51. Sliding part; 52. Connecting rod; 510. Slot; 521. Waist hole; 1071. Rear part; 1072. Front part. Detailed Implementation
[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0034] Example 1
[0035] like Figures 1-5 As shown, this shower handle includes a housing 1 and a handle 2 connected to the housing 1 for gripping. A water outlet is formed on the housing 1, such as at the bottom end of the housing. During use, a panel 9, a needle plate, or other common shower mechanism can be installed at the water outlet. In this example, a water delivery channel 104 connected to the water outlet is formed inside the housing 1. The handle 2 is connected to the side of the housing for easy gripping. A second water delivery channel 21 formed inside the handle 2 is connected to the first water delivery channel.
[0036] In this example, a valve core mechanism 4 for controlling flow rate and an adjustment mechanism 8 for adjusting the valve core are added. The valve core mechanism 4 is installed on the housing 1, and the space where the valve core mechanism is located is connected to the water delivery channel 104 through a connecting hole 105. Specifically, the housing 1 includes a disc-shaped body 100 and a mounting seat 101 formed on the side of the body 100. The mounting seat 101 is fixedly connected to the handle 2, such as by fitting, snapping, or screw fixing. The water delivery channel 1 includes a placement cavity 106 located at the mounting seat. A channel is formed in the cavity wall of the placement cavity 106 facing the handle 2 to communicate with the water delivery channel 21 of the handle. The placement cavity 106 and the chamber inside the body 100 form the water delivery channel 104. The valve core mechanism 4 is installed in the placement cavity 106. The placement cavity 106 has a connecting hole 105 formed on its bottom wall so that the connecting hole 105 is connected to the water delivery channel 104 (i.e., the inner chamber of the body) in the body 100.
[0037] The valve core mechanism 4 includes a valve plate 42, which is pivotally connected to the housing cavity 106. An orifice 421 for water delivery is formed on the valve plate 42, and the connecting hole is located below the movement path of the orifice 421. When the orifice 421 is completely misaligned with the connecting hole 105, the valve plate seals the connecting hole, disconnecting the water delivery channel 1 from the water delivery channel 2. During the rotation of the valve plate, when the orifice initially aligns with the connecting hole, the water delivery channel 1 connects with the water delivery channel 2. During rotation, the orifice 421 gradually aligns with the connecting hole from a state of complete misalignment. In use, if water enters the housing cavity 1 from the water delivery channel 2, it then flows from the orifice 421 on the valve plate through the connecting hole into the water delivery channel 1, and is subsequently discharged through the outlet 1.
[0038] The regulating mechanism 5 includes an operating component and a crank-connecting rod transmission mechanism. The operating component is slidably connected to the handle 2 and is connected to the valve plate 42 through the crank-connecting rod transmission mechanism. Under the transmission of the crank-connecting rod transmission mechanism, the operating component is slidably driven to rotate the valve plate, adjust the misalignment between the orifice on the valve plate and the connecting hole, and thus control the water flow rate.
[0039] For a crank-connecting rod transmission mechanism, such as a crank-connecting rod transmission mechanism including a connecting rod 52 and a connecting plate 41, an operating member is connected to the connecting rod 52, and the connecting rod 52 is connected to the connecting plate 41 at its end. The connecting plate 41 is fixedly connected to the valve plate 42. Applying force to move the operating member drives the connecting plate 41 to rotate, synchronously driving the valve plate to rotate. Specifically, one end of the connecting rod is hinged to the operating member, and the other end of the connecting rod is hinged to the side of the connecting plate.
[0040] The preferred structure is as follows: the operating member slides along the length of the handle 2 and is fixedly connected to the connecting rod 52. If the connecting rod 52 extends along the length of the handle 2, its end is hinged to the connecting plate 41 via a waist hole 521. When the operating member moves, the connecting rod moves synchronously, causing the connecting plate to rotate, and consequently, the valve plate to rotate. For the waist hole hinged structure of the connecting rod, if a waist hole 521 is formed at the end of the connecting rod 52, and a protrusion 410 formed on the top surface of the connecting plate 41 is located within the waist hole 521, then... Figure 1 , Figure 2 As shown, the waist hole accommodates the movement of the protruding column. This structure features a small range of motion for the connecting rod, facilitating installation in small devices like shower handles. Alternatively, the waist hole can be formed on the top surface of the connecting plate, with the protruding portion at the end of the connecting rod positioned within it, depending on the requirements. Furthermore, the connecting plate can be either integrally molded or assembled from separate parts, depending on the specific needs.
[0041] In this example, the operating components include a connected sliding part 51 and a pushing part 50. The sliding part 51 is slidably connected to the handle 2 and connected to the connecting rod 52. The sliding part can be block-shaped, groove-shaped, or cylindrical, etc., depending on the requirements. In this example, a cylindrical sliding part 51 is selected. The sliding part 51 is fitted onto the handle 2 and slides along the length of the handle. The pushing part 50 protrudes outward from the handle 2 to facilitate finger movement. The configuration of the pushing part can be selected according to requirements and is not limited thereto.
[0042] To better position the operating component, in this example, a limiting post 8 is elastically and telescopically installed on the handle 2 corresponding to the moving path of the sliding part 51. For example, a mounting groove is formed on the handle 2, the limiting post 8 is located in the mounting groove, and a spring is connected between the limiting post 8 and the groove wall to form an elastic telescopic structure. Multiple slots 510 are formed at intervals along the length direction to engage with the limiting post. When the limiting post is engaged with the slot, the operating component is stopped at that position. The force pushes the sliding part to move the sliding part, and simultaneously the limiting post moves down to disengage from the corresponding slot. During the gradual movement, the elastically reset limiting post engages with the next slot. The position of the slot can correspond to the degree of misalignment between the valve plate orifice and the connecting hole. For example, when the limiting post is engaged with the first slot, the valve plate orifice and the connecting hole are completely misaligned. When the limiting post is engaged with the slot in the middle position, the valve plate orifice and the connecting hole correspond to half of each other. When the limiting post is engaged with the slot at the tail end, the valve plate orifice and the connecting hole correspond to each other completely.
[0043] To enhance the functionality of the showerhead, this example also includes a nozzle 6 and a control button mechanism 3. The nozzle 6 is installed at the water outlet hole 2 formed on the housing 1, allowing for the spraying of a higher pressure water flow. For example, the water outlet hole 2 is formed at a predetermined position on the peripheral wall of the main body 100 within the housing. A water delivery channel 3 103 is formed inside the housing, connecting the water outlet hole 2 to the water delivery channel 2 of the handle. Figure 4 As shown, a water delivery channel 3103 is formed on the inner side of the body cavity of the shell.
[0044] The control button mechanism 3 is used to control the opening and closing of the water delivery channel 3. The control button mechanism may include a slide 32 and a button 31. The water delivery channel 3 103 may include a mounting cavity 2 102 located at the mounting base. Figure 6 , Figure 7 , Figure 8As shown, the second mounting cavity 102 is located below the first mounting cavity 106. The second mounting cavity 102 communicates with the channel formed on the wall of the first mounting cavity 106, and then simultaneously communicates with the second water supply channel at the handle. Alternatively, a corresponding channel can be formed on the wall of the second mounting cavity to directly communicate with the second water supply channel at the handle. Regarding the communication between the second mounting cavity and the third water supply channel at the main body, the third water supply channel at the main body can extend directly to the second mounting cavity, or be connected to the second mounting cavity and the third water supply channel at the main body through an external pipe, etc. The sliding column is slidably connected to the second mounting cavity, such as elastically sliding along the width direction of the handle. At least the first end of the sliding column protrudes outside the mounting base to connect with the button.
[0045] A second orifice 321 for water delivery is formed on the sliding column 32. The end of the sliding column 32 is connected to the button 31, and the button 31 protrudes out of the housing. Pressing the button moves the sliding column, simultaneously adjusting the degree of misalignment between the second orifice and the third water delivery channel to control the water flow rate. When the second orifice and the third water delivery channel are completely misaligned, the connection between the third water delivery channel and the second water delivery channel is interrupted. Specifically, in the initial state, the second orifice is inside the wall of the mounting cavity (i.e., the second orifice and the third water delivery channel are completely misaligned). The other columns of the sliding column close the connection between the mounting cavity and the second water delivery channel in the handle, interrupting the connection between the third water delivery channel and the second water delivery channel. Pressing the button moves the sliding column, and the second orifice on the sliding column gradually moves into the second mounting cavity (i.e., the degree of misalignment between the second orifice and the third water delivery channel continuously decreases), thereby connecting the second mounting cavity and the second water delivery channel in the handle.
[0046] To improve stability, in this example, the first end of the button 31 is hinged to the convex plate on the top surface of the body 100 in the housing, and its tail end is connected to the first end of the slide column 32. The first end of the slide column 32 is connected to the button 31, and an elastic element 33 for resetting is placed between its tail end and the housing wall to form an elastic telescopic connection structure. The elastic element causes the button to reset, such as a spring.
[0047] To improve aesthetics and reduce environmental impact, the housing in this example also includes a decorative shell 107. The front part 1072 of the decorative shell is fitted onto the main body 100, and the rear part 1071 of the decorative shell is fitted onto the handle 2. The button 31 and the push part 50 both protrude outward from the decorative shell. A groove is formed at the rear part of the decorative shell corresponding to the positions of the button and the push part to meet the movement requirements of the button and the push part. The elastic end of the reset slide can abut against the shell wall of the decorative shell.
[0048] When using it, you can choose to use only one water outlet panel to dispense water, or use the nozzle to dispense water. Of course, you can also press the button when water is dispensed from the water outlet to distribute the water flow through the nozzle, etc., depending on your needs.
[0049] The above are merely preferred embodiments of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. A shower handle, comprising a housing (1) and a handle (2) connected to the housing and used for gripping, wherein a water outlet is provided on the housing, and a water delivery channel (104) communicating with the water outlet is provided inside the housing, characterized in that, It also includes a valve core mechanism (4) for controlling flow rate and an adjustment mechanism (5) for adjusting valve core. The valve core mechanism is set on the housing and the space where the valve core mechanism is located is connected to the first water delivery channel through a connecting hole (105). The valve core mechanism (4) includes a valve plate (42). The valve plate is provided with an orifice (421) for water delivery and the connecting hole (105) is located on the moving path of the orifice. When the orifice and the connecting hole are completely misaligned, the valve plate seals the connecting hole to disconnect the first water delivery channel from the second water delivery channel. When at least part of the orifice corresponds to the connecting hole, the first water delivery channel and the second water delivery channel are connected. The regulating mechanism (5) includes an operating component and a crank-connecting rod transmission mechanism. The operating component is slidably connected to the handle (2) and is connected to the valve plate (42) through the crank-connecting rod transmission mechanism. Under the transmission of the crank-connecting rod transmission mechanism, the operating component is slidably driven to rotate the valve plate and adjust the misalignment between the orifice and the connecting hole on the valve plate to control the water flow rate.
2. The shower handle as described in claim 1, characterized in that: The crank-connecting rod transmission mechanism includes a connecting rod (52) and a connecting plate (41). The operating member is connected to the connecting rod (52). The connecting rod is connected to the connecting plate (41) at its end. The connecting plate (41) is fixedly connected to the valve plate (42). Applying force to move the operating member drives the connecting plate to rotate, and synchronously drives the valve plate to rotate.
3. The shower handle as described in claim 2, characterized in that: The operating component is slidably connected along the length of the handle and is fixedly connected to the connecting rod. The connecting rod (52) is hinged to the connecting plate (41) at its end through the waist hole (521). When the connecting rod moves, it synchronously drives the connecting plate to rotate.
4. The shower handle as described in claim 1, characterized in that: The operating component includes a sliding part (51) and a pushing part (50) connected together. The pushing part protrudes outward from the handle and the sliding part is slidably connected to the handle. The sliding part is connected to the crank connecting rod transmission mechanism.
5. The shower handle as described in claim 4, characterized in that: The sliding part (51) is cylindrical, and the sliding part is sleeved on the handle and slides with the handle along the length direction; A limiting post (8) is elastically telescopically set on the handle corresponding to the sliding part's movement path. Multiple slots (510) are provided on the sliding part (51) to engage with the limiting post (8). The limiting post is inserted into the slot to stay in that position. The force-push part moves the sliding part, and the limiting post moves down to disengage from the corresponding slot. During the gradual movement, the limiting post elastically resets and engages with the next slot.
6. The shower handle as described in claim 1, characterized in that: It also includes a nozzle (6) and a control button mechanism (3). The nozzle is set at the water outlet hole two formed on the housing. The housing is provided with a water conveying channel three (103) and the water outlet hole two and the water conveying channel two (21) are connected by the water conveying channel three. The control button mechanism (3) is used to control the opening and closing of the water conveying channel three. The control button mechanism includes a slide column (32) and a button (31). The slide column (32) is elastically telescopically slidably connected to the water conveying channel three and is provided with an orifice two for water conveying. The end of the slide column is connected to the button (31) and the button protrudes out of the housing. Pressing the button moves the slide column and simultaneously adjusts the degree of misalignment between the orifice two and the water conveying channel three to control the water flow rate. When the orifice two and the water conveying channel three are completely misaligned, the connection between the water conveying channel three and the water conveying channel two is interrupted.
7. The shower handle as described in claim 6, characterized in that: The first end of the button (31) is hinged to the housing and its tail end is connected to the slide column (32). The first end of the slide column is connected to the button and an elastic element (33) for resetting is provided between its tail end and the housing wall to form an elastic telescopic connection structure.
8. The shower handle as described in claim 6, characterized in that: The housing (1) includes a body (100) and a mounting base (101) provided on its side. The first water supply channel (104) includes a first placement cavity (106) located at the mounting base (101). The valve core mechanism (4) is located at the first placement cavity (106). The first placement cavity is connected to the first water supply channel at the body through a connecting hole at the bottom wall and is connected to the second water supply channel at the handle. The second water supply channel (21) includes a second placement cavity (102) located at the mounting base (101). The second placement cavity is connected to the second water supply channel at the handle. The sliding column (32) is slidably connected to the second placement cavity. The handle (2) is connected to the mounting base.
9. The shower handle as described in claim 8, characterized in that: The housing also includes a decorative shell (107), the front part (1072) of which is fitted onto the body and the rear part (1071) of which is fitted onto the handle (2), and the button (31) and the push part (50) both protrude outward from the decorative shell.
10. The shower handle as described in claim 6, characterized in that: The water delivery channel 3 (103) at the shell is located on the side of the shell and the nozzle (6) is located on the periphery of the shell.