Shower head with integrated control button
Through the design of integrated control buttons, the combination of pressing and rotation can realize the water circuit switching and flow adjustment of the shower, which solves the problem that the existing shower requires two control switches, and achieves the effect of simplicity of operation and simple structure.
Patent Information
- Application Number
- PCT/CN2024/092503
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-02-23
- Filing Date
- 2024-05-11
- Publication Date
- 2025-08-28
AI Technical Summary
The existing shower function is single, and two control switches are required to control water circuit switching and flow adjustment respectively. The operation is complicated and the structure is cumbersome.
An integrated control button is designed to integrate the water circuit switching and flow adjustment functions through a combination of pressing and rotating, and slide and rotate in the slide chute using the rotating shaft, and combine the first and second driving parts to drive the transmission parts to achieve the switching of the two functions.
The operation process is simplified and two functions are realized through one control button. The structure is simple, the operation is convenient and the function is reliable.
Smart Images

Figure CN2024092503_28082025_PF_FP_ABST
Abstract
Description
A shower head with an integrated control button Technical Field
[0001] The present invention relates to the technical field of shower heads, and in particular to a shower head with an integrated control button. Background Art
[0002] Most showerheads currently on the market only offer a single waterway switching function or a single flow rate adjustment function, which is incomplete and fails to meet the needs of some consumers. To provide more functional showerheads, some showerheads are designed to have both waterway switching and flow rate adjustment functions. However, these showerheads typically require two control switches: one for the waterway switching function and the other for the flow rate adjustment function. This dual-switch control method is cumbersome to operate and has a complex structure.
[0003] In view of this, how to further simplify the control method of the shower head is a technical problem that needs to be solved by those skilled in the art. Summary of the Invention
[0004] In order to solve the above technical problems, the present invention provides a shower head with an integrated control button, wherein the control button integrates a press-driven mode and a rotation-driven mode, and has convenient operation, a simple structure and reliable functions.
[0005] To achieve the above object, the present invention provides a shower head with an integrated control button, comprising:
[0006] The body has a slide groove;
[0007] A control button, comprising an operating portion, a rotating shaft, a first driving portion, and a second driving portion, wherein the rotating shaft is capable of sliding and rotating in the sliding groove, thereby enabling the control button to slide and rotate relative to the body via the rotating shaft;
[0008] A first function control mechanism is provided on the body and enables the shower head to have a first function;
[0009] A second function control mechanism is provided on the main body and enables the shower head to have a second function;
[0010] a first transmission member, movably provided on the body and cooperating with the first function control mechanism, the first transmission member comprising a first transmission portion cooperating with the first driving portion;
[0011] a second transmission member movably disposed on the body and cooperating with the second function control mechanism, the second transmission member comprising a second transmission portion cooperating with the second driving portion;
[0012] A reset member, used for driving the control button to slide and reset;
[0013] When the operating part is pressed, the control button slides relative to the body and drives the first transmission member through the first driving part. After the pressing force is removed, the control button slides and resets under the action of the reset member; when the operating part is toggled, the control button rotates relative to the body and drives the second transmission member through the second driving part.
[0014] In a preferred embodiment, the first transmission member has a rotating portion, the first transmission member is rotatably connected to the main body via the rotating portion, and the first transmission portion is in abutment with the first driving portion.
[0015] In a preferred embodiment, the first driving portion is provided in the middle of the control button, and the control button is capable of rotating around a center line of the first transmission portion, and the center line of the first transmission portion is coaxial with the rotation axis of the rotation shaft.
[0016] In a preferred embodiment, the second transmission member is slidably disposed on the body, and the control button can drive the second transmission member to slide back and forth.
[0017] In a preferred embodiment, one end of the second transmission member is provided with the second transmission part, and the other end cooperates with the second function control mechanism, the second transmission part has a groove, and the second driving part is a circular driving block, which can be slidably arranged in the groove along the sliding direction of the control button, and the control button is in contact with the inner wall of the groove through the circular driving block to drive the second transmission member to slide back and forth.
[0018] In a preferred embodiment, the first function control mechanism is a water channel switching mechanism, and the first function is a water channel switching function. Each time the control button drives the first transmission member, the first transmission member drives the water channel switching mechanism to switch once; the second function control mechanism is a flow regulation mechanism, and the second function is a flow regulation function.
[0019] In a preferred embodiment, the water channel switching mechanism includes a push rod slidably arranged on the main body, a gear plate, a stop plate and a switching plate respectively rotatably arranged on the main body, the gear plate, the stop plate and the switching plate rotate coaxially, the first transmission member is coordinated with the push rod for transmission, the push rod is provided with straight teeth that cooperate with the teeth on the gear plate, the switching plate and the stop plate rotate in linkage, a first one-way ratchet structure is provided between the gear plate and the stop plate, and a second one-way ratchet structure is provided between the stop plate and the main body, and the stopping directions of the first one-way ratchet structure and the second one-way ratchet structure are opposite.
[0020] In a preferred embodiment, a flow port for water to flow through is provided in the main body, and the flow regulating mechanism includes a flow tube with two ends connected therethrough, one end of the flow tube is connected to the second transmission member, and the side wall of the other end cooperates with the flow port in the main body, the water in the flow port flows through the inner cavity of the flow tube, and the size of the flow port is controlled by moving the flow tube.
[0021] In a preferred embodiment, the reset member is a spring or a magnetic member, and the reset member drives the first transmission member and the control button to reset simultaneously.
[0022] In a preferred embodiment, the control part is an arc-shaped structure, and the mounting hole of the main body is exposed outside the control part for manual operation; the main body includes a head and a handle, the first function control mechanism is arranged on the head, and the control button and the second function control mechanism are arranged on the handle, and the first function control mechanism and the second function control mechanism are located on both sides of the control button.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] The present invention provides a control button, a first transmission member, and a second transmission member. The rotating shaft of the control button can slide and rotate in the sliding groove of the main body, thereby enabling the control button to slide and rotate relative to the main body through the rotating shaft. When the operating part of the control button is pressed, the control button slides relative to the main body and drives the first transmission member through the first driving part, thereby driving the first function control mechanism to realize the first function. After the pressing force is removed, the control button slides and resets under the action of the reset member; when the operating part is toggled, the control button rotates relative to the main body and drives the second transmission member through the second driving part, thereby driving the second function control mechanism to realize the second function. In this way, the control button integrates the pressing drive mode and the rotating drive mode, and the pressing drive and the rotating drive do not interfere with each other. One control button can simultaneously drive the first function control mechanism and the second function control mechanism, thereby realizing two functions. There is no need to set two control buttons. The operation is convenient, the structure is simple, and the function is reliable. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The drawings described herein are used to provide further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute improper limitations on the present invention.
[0026] in:
[0027] FIG1 is a schematic diagram of the overall three-dimensional assembly of a shower head provided by one embodiment of the present invention;
[0028] FIG2 is a three-dimensional exploded view of a shower head provided in one embodiment of the present invention;
[0029] FIG3 is a partial perspective view of a shower head body provided by one embodiment of the present invention;
[0030] FIG4 is a schematic diagram of a three-dimensional structure of a control button provided in an embodiment of the present invention, wherein FIG4a, FIG4b, FIG4c, and FIG4d are schematic diagrams of the control button from different viewing angles, respectively;
[0031] FIG5 is a partial perspective cross-sectional view of a shower head provided in one embodiment of the present invention;
[0032] FIG6 is a schematic diagram of the internal structure of a shower head according to an embodiment of the present invention;
[0033] FIG7 is a second schematic diagram of the internal structure of a shower head provided by an embodiment of the present invention;
[0034] FIG8 is a partial cross-sectional view of a shower head according to an embodiment of the present invention (when water flow is stopped);
[0035] FIG9 is a second partial cross-sectional view of a shower head provided in one embodiment of the present invention (when the water flow rate is large);
[0036] FIG10 is a cross-sectional view of a shower head according to an embodiment of the present invention (when the water flow rate is low and the control button is in an initial non-pressed state);
[0037] FIG11 is a second partial cross-sectional view of a shower head provided in one embodiment of the present invention (when the water flow rate is small and the control button is in a pressed state);
[0038] FIG12 is a third partial cross-sectional view of a shower head provided in one embodiment of the present invention (when the water flow rate is large and the control button is in the initial unpressed state);
[0039] FIG13 is a fourth partial cross-sectional view of a shower head provided in one embodiment of the present invention (when water flow is stopped and the control button is in an initial non-pressed state).
[0040] The accompanying drawings are denoted as follows:
[0041] 10-body; 11-chute; 12-flow port; 13-head; 14-handle; 15-fourth ratchet; 16-mounting hole;
[0042] 20-control button; 21-operating part; 22-rotating shaft; 23-first driving part; 24-second driving part;
[0043] 30-first transmission member; 31-first transmission part; 32-rotating part;
[0044] 40-second transmission member; 41-second transmission part; 411-groove;
[0045] 50 - first function control mechanism; 51 - push rod; 52 - gear plate; 521 - first ratchet; 53 - anti-rotation plate; 531 - second ratchet; 532 - third ratchet; 54 - switching plate; 55 - first one-way ratchet gear structure; 56 - second one-way ratchet gear structure;
[0046] 60-second function control mechanism; 61-flow pipe;
[0047] 70-Reset piece. DETAILED DESCRIPTION
[0048] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention more clear and understandable, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0049] Referring to Figures 1 to 13 , a shower head with an integrated control button according to a preferred embodiment of the present invention includes:
[0050] The body 10 has a slide groove 11;
[0051] The control button 20 includes an operating portion 21, a rotating shaft 22, a first driving portion 23, and a second driving portion 24. The rotating shaft 22 can slide and rotate in the sliding groove 11, thereby allowing the control button 20 to slide and rotate relative to the body 10 via the rotating shaft 22.
[0052] The first function control mechanism 50 is provided on the main body 10 and enables the shower head to have a first function;
[0053] The second function control mechanism 60 is provided on the main body 10 and enables the shower head to have a second function;
[0054] The first transmission member 30 is movably provided on the body 10 and cooperates with the first function control mechanism 50. The first transmission member 30 includes a first transmission part 31 that cooperates with the first driving part 23.
[0055] The second transmission member 40 is movably provided on the body 10 and cooperates with the second function control mechanism 60. The second transmission member 40 includes a second transmission part 41 that cooperates with the second driving part 24.
[0056] A reset member 70 is used to drive the control button 20 to slide and reset;
[0057] When the operating portion 21 is pressed, the control button 20 slides relative to the body 10 and drives the first transmission member 30 via the first driving portion 23. When the pressing force is released, the control button 20 slides and resets under the action of the reset member 70. When the operating portion 21 is moved, the control button 20 rotates relative to the body 10 and drives the second transmission member 40 via the second driving portion 24. This design integrates a press-driven mode and a rotation-driven mode, and the press-driven and rotation-driven modes do not interfere with each other. A single control button 20 can simultaneously drive the first function control mechanism 50 and the second function control mechanism 60, thereby achieving two functions. This eliminates the need for two control buttons, resulting in convenient operation, a simple structure, and reliable functionality.
[0058] Specifically, in this embodiment, the first transmission member 30 is a swinging member having a rotating portion 32. The first transmission member 30 is rotatably connected to the main body 10 via the rotating portion 32. An axial hole can be provided at corresponding positions on the rotating portion 32 and the main body 10, respectively. A pin (not shown) is inserted through the two axial holes to achieve a rotational connection between the first transmission member 30 and the main body 10. The first transmission member 31 abuts and engages with the first drive member 23. It is understood that the first transmission member 31 and the first drive member 23 can also be rotatably connected together. The first transmission member 30 adopts a swinging member structure and is rotatably connected to the main body 10, which has a simple structure and is easy to install.
[0059] Referring to Figures 8 and 9 , in this embodiment, the first drive portion 23 is located in the middle of the control button 20. The control button 20 is capable of rotating about the centerline of the first transmission portion 31, which is coaxial with the rotation axis of the rotation shaft 22. Specifically, the first drive portion 23 is formed into an arc-shaped groove, and the end surface of the first transmission portion 31 is correspondingly formed into an arc-shaped surface that mates with the inner wall of the arc-shaped groove. This design ensures reliable transmission and coordination between the first drive portion 23 and the first transmission portion 31, and facilitates simple assembly.
[0060] In this embodiment, a second transmission member 40 is slidably mounted on the body 10, and the control button 20 is capable of driving the second transmission member 40 to slide back and forth. More specifically, a second transmission portion 41 is provided at one end of the second transmission member 40, and the other end engages with the second function control mechanism 60. Referring to Figures 2, 8, and 9, the second transmission portion 41 has a groove 411. The second drive portion 24 is a circular drive block that is slidably mounted in the groove 411 in the direction of the control button 20's movement. The control button 20 engages the inner wall of the groove 411 via the circular drive block to drive the second transmission member 40 to slide back and forth. A C-shaped retaining ring is provided at the other end of the second transmission member 40, and an annular retaining groove is provided at one end of the flow tube 61 (described below). The C-shaped retaining ring engages with the annular retaining groove to connect the second transmission member 40 to the flow tube 61. This design results in a simple structure for the second transmission member 40 and reliable transmission between the second drive portion 24 and the second transmission portion 41.
[0061] In this embodiment, the first function control mechanism 50 is a water channel switching mechanism with a first function of water channel switching. Each time the control button 20 actuates the first transmission member 30, the first transmission member 30 drives the water channel switching mechanism to switch, thereby switching the water flow mode (e.g., massage water mode, granular water mode, waterfall water mode, etc.). The second function control mechanism 60 is a flow adjustment mechanism with a second function of flow adjustment, allowing the water flow rate to be adjusted as needed.
[0062] Specifically, in this embodiment, the waterway switching mechanism includes a push rod 51 slidably mounted on the body 10, a gear plate 52, a stop plate 53, and a switching plate 54, which are rotatably mounted on the body 10. The gear plate 52, the stop plate 53, and the switching plate 54 rotate coaxially. The first transmission member 30 is in transmission engagement with the push rod 51. The push rod 51 is provided with spur teeth that mate with the teeth on the gear plate 52. The switching plate 54 rotates in conjunction with the stop plate 53. A first one-way ratchet structure 55 is provided between the gear plate 52 and the stop plate 53, and a second one-way ratchet structure 56 is provided between the stop plate 53 and the body 10. The first one-way ratchet structure 55 and the second one-way ratchet structure 56 have opposite stopping directions. Specifically, the first one-way ratchet tooth structure 55 includes a first ratchet tooth 521 arranged on the side of the gear plate 52 facing the anti-rotation plate 53 and a second ratchet tooth 531 arranged on the side of the anti-rotation plate 53 facing the gear plate 52; the second one-way ratchet tooth structure 56 includes a third ratchet tooth 532 arranged on the side of the anti-rotation plate 53 facing the main body 10 and a fourth ratchet tooth 15 arranged on the main body 10 facing the anti-rotation plate 53, that is, the second ratchet tooth 531 and the third ratchet tooth 532 are respectively located on both sides of the anti-rotation plate 53, and both are elastic and face opposite directions.
[0063] The working principle of the water channel switching mechanism of this embodiment is roughly as follows:
[0064] When the control button 20 is pressed, the control button 20 drives the push rod 51 to slide via the first transmission member 30. The push rod 51, through the meshing of the spur teeth provided on the push rod 51 with the teeth on the gear plate 52, drives the gear plate 52 to rotate. The gear plate 52, through the action of the first one-way ratchet structure 55 (at this time, the first ratchet teeth 521 and the second ratchet teeth 531 are meshed), drives the anti-rotation disk 53 to rotate. The anti-rotation disk 53 then drives the switching disk 54 to rotate a predetermined angle. The switching disk 54 is provided with a flow hole. After the switching disk 54 rotates the predetermined angle, the flow hole position changes accordingly, thereby switching the water path. During this process, the second one-way ratchet structure 56 does not function, that is, the third ratchet teeth 532 and the fourth ratchet teeth 15 do not mesh. As the switching disk 54 rotates, the third ratchet teeth 532 undergo elastic deformation, causing relative displacement with the fourth ratchet teeth 15. When the external force applied to the control button 20 is removed, under the action of the reset member 70, the push rod 51 drives the first transmission member 30 to reset, and the first transmission member 30 further drives the control button 20 to reset. During the reset process of the push rod 51, the straight teeth on the push rod 51 mesh with the teeth on the gear plate 52 and drive the gear plate 52 to rotate in the opposite direction. At this time, the first one-way ratchet structure 55 does not play a role, that is, the first ratchet teeth 521 and the second ratchet teeth 531 do not mesh. During the rotation of the gear plate 52, the second ratchet teeth 531 will be elastically deformed, thereby engaging with the first ratchet teeth. The teeth 521 are relatively displaced, and at the same time, the second one-way ratchet structure 56 comes into play, that is, the third ratchet 532 and the fourth ratchet 15 are engaged, so that the anti-rotation disk 53 is fixedly positioned by the fourth ratchet 15, and the gear disk 52 will not drive the anti-rotation disk 53 to rotate when it rotates, so that the anti-rotation disk 53 will not drive the switching disk 54 to rotate. The switching disk 54 remains positioned at the switching gear position. After the control button 20 is pressed next time, the switching disk 54 will continue to rotate in the same direction by a predetermined angle based on this position, thereby realizing waterway switching.
[0065] It can be understood that the water channel switching mechanism provided in this embodiment is only a preferred solution, which has a simple structure and reliable switching. In other embodiments, other existing well-known water channel switching mechanisms can also be adopted, such as a ballpoint pen-like spring-press water channel switching mechanism, etc., which are not listed here one by one.
[0066] In this embodiment, the body 10 is provided with a flow opening 12 for water flow. The flow regulating mechanism includes a through-flow tube 61 with two connected ends. One end of the flow tube 61 is connected to the second transmission member 40, and the sidewall of the other end cooperates with the flow opening 12 in the body 10. Water in the flow opening 12 flows through the inner cavity of the flow tube 61, and the size of the flow opening 12 is controlled by moving the flow tube 61. The flow tube 61 is designed as a through-flow tube at both ends. In this way, the water pressure at both ends of the flow tube 61 in the waterway is balanced, making it easier to operate the flow tube 61 without having to overcome the pressure of the water flow.
[0067] In this embodiment, the reset member 70 is a spring that simultaneously drives the push rod 51, the first transmission member 30, and the control button 20 to reset. One end of the reset member 70 abuts the body 10, and the other end abuts the push rod 51. After the pressing force is removed, the reset member 70 drives the push rod 51 and the first transmission member 30 to reset. The first transmission member 30 drives the control button 20 to reset through the abutment between the first transmission part 31 and the first driving part 23. It can be understood that the reset member 70 drives the control button 20 to reset through the first transmission member 30. When the control button 20 is initially not pressed, the first transmission part 31 and the first driving part 23 maintain abutment. Of course, in other embodiments, the reset member 70 may not simultaneously drive the push rod 51 and the first transmission member 30 to reset. The push rod 51 and the first transmission member 30 may be provided with a separate reset spring to reset both simultaneously, or two separate reset springs may be provided to reset both independently. In this case, when the control button 20 is initially not pressed, the first transmission member 31 and the first driving member 23 may be in contact with each other or at a certain distance. It is understood that in other embodiments, the reset member 70 may also be replaced by a magnetic member.
[0068] In this embodiment, the control unit is an arc-shaped structure, exposed from the mounting hole 16 of the body 10 for manual operation. The body 10 includes a head 13 and a handle 14. The first function control mechanism 50 is located in the head 13, and the control button 20 and the second function control mechanism 60 are located in the handle 14. The first and second function control mechanisms 50 and 60 are located on either side of the control button 20.
[0069] The usage process of this embodiment is as follows:
[0070] 10 , at this time, the control button 20 is in an initial unpressed state, and the swing direction of the control button 20 is centered, and the flow tube 61 is in a position where the flow port 12 is partially opened, so that the flow rate through the flow port 12 is small, that is, at this time, the water flow rate of the shower head is small.
[0071] Referring to Figure 11 , in the state shown in Figure 10 , pressing the control button 20 causes the first transmission member 30 to rotate relative to the body 10. The first transmission member 30, in turn, drives the push rod 51, causing the waterway switching mechanism (first function control mechanism 50) to switch waterways once. During this process, the control button 20 does not drive the second transmission member 40, and the flow tube 61 remains in a position partially opening the flow opening 12. Pressing the control button 20 multiple times allows for multiple waterway switching.
[0072] Referring to FIG12 , in the state of FIG10 , the control button 20 is toggled to the right. The control button 20 drives the flow tube 61 to move to the left through the cooperation of the second driving part 24 and the second transmission part 41 to fully open the flow port 12, so that the flow rate of the flow port 12 is larger. That is, at this time, the water flow rate of the shower head is larger.
[0073] 13 , in the state of FIG. 10 , the control button 20 is toggled to the left, and the control button 20 drives the flow tube 61 to move to the right through the cooperation of the second driving part 24 and the second transmission part 41 to close the flow port 12 , thereby stopping the shower head from discharging water.
[0074] The present invention is described above by way of example in conjunction with the accompanying drawings. It is obvious that the specific implementation of the present invention is not limited to the above-mentioned method. As long as various non-substantial improvements are made using the method concept and technical solution of the present invention, or the concept and technical solution of the present invention are directly applied to other occasions without improvement, they are all within the scope of protection of the present invention.
Claims
1. A shower head with an integrated control button, characterized in that: include: The body has a slide groove; A control button, comprising an operating portion, a rotating shaft, a first driving portion, and a second driving portion, wherein the rotating shaft is capable of sliding and rotating in the sliding groove, thereby enabling the control button to slide and rotate relative to the body via the rotating shaft; A first function control mechanism is provided on the body and enables the shower head to have a first function; A second function control mechanism is provided on the main body and enables the shower head to have a second function; a first transmission member, movably provided on the body and cooperating with the first function control mechanism, the first transmission member comprising a first transmission portion cooperating with the first driving portion; a second transmission member movably disposed on the body and cooperating with the second function control mechanism, the second transmission member comprising a second transmission portion cooperating with the second driving portion; A reset member, used for driving the control button to slide and reset; When the operating part is pressed, the control button slides relative to the body and drives the first transmission member through the first driving part. After the pressing force is removed, the control button slides and resets under the action of the reset member; when the operating part is toggled, the control button rotates relative to the body and drives the second transmission member through the second driving part.
2. A shower head with an integrated control button according to claim 1, characterized in that: The first transmission member has a rotating portion, the first transmission member is rotatably connected to the body through the rotating portion, and the first transmission portion is in abutment with the first driving portion.
3. A shower head with an integrated control button according to claim 2, characterized in that: The first driving part is provided in the middle of the control button. The control button can rotate around the center line of the first transmission part. The center line of the first transmission part is coaxial with the rotation axis of the rotation shaft.
4. A shower head with an integrated control button according to claim 1, characterized in that: The second transmission member is slidably disposed on the body, and the control button can drive the second transmission member to slide back and forth.
5. A shower head with an integrated control button according to claim 4, characterized in that: One end of the second transmission member is provided with the second transmission part, and the other end cooperates with the second function control mechanism. The second transmission part has a groove. The second driving part is a circular driving block. The circular driving block can be slidably arranged in the groove along the sliding direction of the control button. The control button is in contact with the inner wall of the groove through the circular driving block to drive the second transmission member to slide back and forth.
6. A shower head with an integrated control button according to claim 1, characterized in that: The first function control mechanism is a water channel switching mechanism, and the first function is a water channel switching function. Every time the control button drives the first transmission member, the first transmission member drives the water channel switching mechanism to switch once; the second function control mechanism is a flow regulation mechanism, and the second function is a flow regulation function.
7. A shower head with an integrated control button according to claim 6, characterized in that: The water channel switching mechanism includes a push rod slidably arranged on the main body, a gear plate, a stop plate and a switching plate respectively rotatably arranged on the main body, the gear plate, the stop plate and the switching plate rotate coaxially, the first transmission member is coordinated with the push rod for transmission, the push rod is provided with straight teeth that cooperate with the teeth on the gear plate, the switching plate and the stop plate rotate in linkage cooperation, a first one-way ratchet structure is provided between the gear plate and the stop plate, a second one-way ratchet structure is provided between the stop plate and the main body, and the stopping directions of the first one-way ratchet structure and the second one-way ratchet structure are opposite.
8. The shower head with an integrated control button according to claim 6, characterized in that: A flow opening for water flow is provided in the body, and the flow regulating mechanism includes a flow tube with two ends connected therethrough, one end of the flow tube is connected to the second transmission member, and the side wall of the other end cooperates with the flow opening in the body, and the water in the flow opening flows through the inner cavity of the flow tube, and the size of the flow opening is controlled by moving the flow tube.
9. The shower head with an integrated control button according to claim 1, characterized in that: The reset member is a spring or a magnetic member, and the reset member drives the first transmission member and the control button to reset simultaneously.
10. The shower head with an integrated control button according to claim 1, characterized in that: The control part is an arc-shaped structure, and the mounting hole of the main body is exposed outside the control part for manual operation; the main body includes a head and a handle, the first function control mechanism is arranged on the head, and the control button and the second function control mechanism are arranged on the handle, and the first function control mechanism and the second function control mechanism are located on both sides of the control button.
Citation Information
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