Shower pipeline and shower equipment
By designing mode switching components and elastic reset parts in the shower pipeline, the problem of button status of the shower pipeline after turning off water in the most useful mode in the shower pipeline in the shower pipeline in the latest technology is solved, and the smooth switching of the water outlet mode and the improvement of user experience is achieved.
Patent Information
- Application Number
- CN202422276313.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-18
AI Technical Summary
After the existing shower pipeline is turned off in the water in the extra water outlet mode, the button is still in a state where the water inlet is connected to the second waterway, causing the water flow to directly pass through the second waterway in the extra waterway to discharge water in the extra waterway mode, which causes inconvenience to the user and is less safe to use.
Design a shower pipeline that includes a pipeline assembly, a mode switching assembly and an elastic reset member. The mode switching assembly is located downstream of the water inlet and can be switched between the first state and the second state. In the first state, the water inlet is in communication with the first water outlet, and in the second state, the water inlet is in communication with the second water outlet. Through the action of the elastic reset member, the mode switching component remains in the second state under the water flow pressure, and the user turns off the water and resets to the first state, ensuring that the next time the water is boiled, it is the usual water outlet mode.
It realizes smooth switching of the shower pipeline water outlet mode, preventing the water flow from leaking in the very useful mode when the water is boiled, improving the user's user experience and improving the safety of use.
Smart Images

Figure CN223048137U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sanitary facilities, in particular to a shower pipeline and a shower device. Background Art
[0002] In the prior art, some shower pipelines have at least two water outlet modes, where at least one is a common water outlet mode and the rest are non-common water outlet modes. For example, the overhead shower and the side spray modes, the overhead shower is the common water outlet mode and the side spray is the non-common water outlet mode. When the side spray is used, water can be sprayed from the side of the user to wash the user's back and chest, which can meet the user's needs for showering with water from the top and side of the shower pipeline. Specifically, in the existing shower pipeline with two water outlet modes, a first waterway and a second waterway are arranged inside the shower pipeline. The first waterway corresponds to the common water outlet mode, and the second waterway corresponds to the non-common water outlet mode. For example, the first waterway is connected to the shower head at the top of the shower pipeline, and the second waterway is connected to a plurality of nozzles arranged on the side of the shower pipeline. The water inlet can spray water from the shower head through the first waterway, or spray water from the plurality of nozzles on the side through the second waterway. By pressing a button arranged on the shower pipeline, the water inlet is selectively connected to the first waterway or the second waterway to realize water outlet in two water outlet modes.
[0003] The prior art has the following defects: When the water is turned off in the second waterway outlet mode (non-common water outlet mode), the button is still in the state of connecting the water inlet to the second waterway. When the user turns on the water next time, the water flow directly passes through the second waterway and discharges water in the non-common water outlet mode, which brings inconvenience to the user. Exemplarily, when the first waterway is the overhead shower mode and the second waterway is the side spray mode, if the user turns off the water in the side spray mode, the water will spray out from the plurality of nozzles on the side when the water is turned on next time, wetting the user. Moreover, when the user turns on the water, the water temperature is usually not adjusted well yet, and the sudden side spray of water will cause high-temperature water or cold water to directly spray on the user, resulting in low use safety and poor user experience.
[0004] Therefore, there is an urgent need for a shower pipeline and a shower device to solve the above problems existing in the prior art. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a shower pipeline and a shower device, which can prevent the water flow from discharging water in the non-common mode when the user turns on the water and cause inconvenience to the user while realizing the smooth switching between two water outlet modes, and improve the user experience.
[0006] To achieve this purpose, the utility model adopts the following technical solutions:
[0007] On the one hand, a shower pipeline is provided, including:
[0008] A pipeline assembly having a water inlet, a first water outlet, and a second water outlet;
[0009] A mode switching component is movably arranged on the pipeline component. The mode switching component is located downstream of the water inlet and upstream of both the first water outlet and the second water outlet; the mode switching component has a first state in which the water inlet is communicated with the first water outlet and a second state in which the water inlet is communicated with the second water outlet;
[0010] An elastic reset member is connected between the pipeline component and the mode switching component;
[0011] When the mode switching component moves from the first state to the second state, the elastic reset member is compressed, and it can be maintained in the second state under the action of water flow pressure;
[0012] The mode switching component can be moved and reset from the second state to the first state under the elastic force of the elastic reset member.
[0013] As an alternative solution of the shower pipeline provided by the present utility model, the pipeline component is provided with a water distribution cavity, a water distribution inlet, a first water distribution outlet and a second water distribution outlet; the water distribution cavity is communicated with the water inlet through the water distribution inlet, the first water distribution outlet is communicated with the first water outlet, and the second water distribution outlet is communicated with the second water outlet;
[0014] The mode switching component includes:
[0015] A button is swingably arranged on the pipeline component;
[0016] A water distribution shaft is rotatably connected with the button and movably arranged on the pipeline component. The water distribution shaft is driven by the button to switch between a first position and a second position. The water distribution shaft at the first position opens the first water distribution outlet and closes the second water distribution outlet, and the water distribution shaft at the second position opens the second water distribution outlet and closes the first water distribution outlet; the elastic reset member is arranged between the cavity wall of the water distribution cavity and the water distribution shaft.
[0017] As an alternative solution of the shower pipeline provided by the present utility model, a water distribution member is arranged in the water distribution cavity;
[0018] The water distribution member is provided with a guiding channel. The water distribution shaft partially penetrates through the guiding channel and is in sealed and sliding contact with the inner wall of the guiding channel;
[0019] The water dividing member is further provided with a first abutting surface, and the inner wall of the water dividing cavity is provided with a second abutting surface. The second abutting surface and the first abutting surface are spaced apart in the moving direction of the water dividing shaft. A first boss is annularly provided on the outer wall of the water dividing shaft, and a first groove is annularly provided along the circumference of the first boss. A first sealing member is installed in the first groove. The water dividing shaft at the first position abuts against the first abutting surface through the first sealing member, and the water dividing shaft at the second position abuts against the second abutting surface through the first sealing member.
[0020] A limiting structure is provided between the water dividing member and the cavity wall of the water dividing cavity. The limiting structure is used to limit the water dividing member in the moving direction of the water dividing shaft.
[0021] As an alternative solution of the shower pipeline provided by the present utility model, a positioning cylinder protrudes from the bottom wall of the water dividing cavity. One end of the water dividing shaft away from the button is slidably matched with the inner cavity of the positioning cylinder, and the elastic resetting member is sleeved outside the positioning cylinder and abuts against the water dividing shaft.
[0022] As an alternative solution of the shower pipeline provided by the present utility model, the pipeline assembly includes:
[0023] A pipe body, the lower end opening of the pipe body is the water inlet, the upper end opening is the first water outlet, and a side spray opening is provided on the side wall of the pipe body.
[0024] A side spray assembly is installed in the pipe body. The second water outlet is provided in the side spray assembly, and the second water outlet is communicated with the outside through the side spray opening. A top spray channel and a side spray channel are provided in the side spray assembly.
[0025] A water dividing main body is installed in the pipe body and is hermetically inserted into the side spray assembly. The water dividing cavity, the water dividing inlet, the first water dividing outlet and the second water dividing outlet are all provided on the water dividing main body. The first water dividing outlet is communicated with the first water outlet through the top spray channel, and the second water dividing outlet is communicated with the second water outlet through the side spray channel.
[0026] As an alternative solution of the shower pipeline provided by the present utility model, the side spray assembly includes:
[0027] A mounting seat body is hermetically inserted into the water dividing main body. The top spray channel and the side spray channel are both provided in the mounting seat body, and the mounting seat body is further provided with a first profiling groove, and the first profiling groove is communicated with the outlet of the side spray channel.
[0028] A fixing frame is connected to the mounting seat body and is provided with a second profiling groove. The second profiling groove is oppositely arranged with the first profiling groove to form a limiting groove by splicing.
[0029] The side spray nozzle includes a mounting portion and a water outlet nozzle. The mounting portion is clamped in the limiting groove and is in sealed contact with the inner wall of the limiting groove. The water outlet nozzle penetrates through the side spray opening, and one end of the water outlet nozzle away from the mounting portion is an opening, which is the second water outlet.
[0030] As an alternative solution of the shower pipeline provided by the present utility model, a limiting cylinder protrudes from the fixing frame. The inner cavity of the limiting cylinder communicates with the second profiling groove. The limiting cylinder penetrates and is limited in the side spray opening. The water outlet nozzle penetrates through the limiting cylinder, and there is a preset gap between the water outlet nozzle and the inner wall of the limiting cylinder.
[0031] The limiting groove is a spherical groove, and the mounting portion is spherical. The mounting portion is rotatably arranged in the limiting groove so that the angle of the water outlet nozzle relative to the limiting cylinder is adjustable.
[0032] As an alternative solution of the shower pipeline provided by the present utility model, the pipeline assembly further includes:
[0033] An upper waterway joint is installed in the pipe body and is hermetically inserted into one end of the side spray assembly away from the water distribution main body. The top spray channel communicates with the first water outlet through the upper waterway joint.
[0034] A cover. An installation opening allowing the side spray assembly, the water distribution main body, and the upper waterway joint to pass through is formed on the side wall of the pipe body. The cover covers the installation opening, and the cover is provided with a receiving hole for receiving the button. The button is swingably connected to the cover or the water distribution main body.
[0035] As an alternative solution of the shower pipeline provided by the present utility model, the shower pipeline further includes a first fastener and a second fastener. The first fastener passes through the cover and is threadedly connected to the water distribution main body. The second fastener passes through the cover and is threadedly connected to the upper waterway joint.
[0036] And / or, a limiting rib protrudes from the inner wall of the cover, and the limiting rib can abut against the side spray assembly.
[0037] As an alternative solution of the shower pipeline provided by the present utility model,
[0038] On the other hand, a shower device is provided, including a top spray shower head and the shower pipeline as described above. The top spray shower head is installed at the first water outlet of the shower pipeline.
[0039] The beneficial effects of the present utility model:
[0040] The present utility model provides a shower pipeline and a shower device including the shower pipeline. By driving the mode switching component to move relative to the pipeline component, the mode switching component can be moved to the first state or the second state. When the mode switching component is moved to the first state, the water inlet of the pipeline component is communicated with the first water outlet, and the water flow entering through the water inlet is sprayed out through the first water outlet; when the mode switching component is moved to the second state, the water inlet of the pipeline component is communicated with the second water outlet, and the water flow entering through the water inlet is sprayed out through the second water outlet. This shower pipeline has two modes: water flowing out from the first water outlet and water flowing out from the second water outlet. By setting an elastic resetting member, when the mode switching component moves from the first state to the second state, the elastic resetting member is compressed to store elastic potential energy. And when the water flow passes through the mode switching component in the second state, the pressure of the water flow on the mode switching component can keep it in the second state, realizing the function of spraying water from the second water outlet. When the user turns off the water, due to the disappearance of the water flow pressure, the elastic resetting member releases the elastic potential energy, so that the mode switching component moves and resets from the second state to the first state under the elastic force of the elastic resetting member. When the user turns on the water next time, the mode switching component in the first state enables the shower pipeline to discharge water through the first water outlet, avoiding the water flowing out from the second water outlet which may cause inconvenience to the user and improving the user experience. When the first water outlet is a top spray outlet and the second water outlet is a side spray outlet, when the user turns off the water, the mode switching component resets to the state where the water inlet is communicated with the top spray outlet. When the user turns on the water next time, the top spray function is directly defaulted, preventing the second water outlet from suddenly discharging water and spraying directly at the user when the user turns on the water, improving the use safety and enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for use in the embodiments of the present utility model will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to the drawings.
[0042] Figure 1 is an axonometric view of the shower pipeline provided by the specific embodiment of the present utility model;
[0043] Figure 2 is a partial schematic view of the shower pipeline provided by the specific embodiment of the present utility model;
[0044] Figure 3 is an exploded schematic view of the shower pipeline provided by the specific embodiment of the present utility model;
[0045] Figure 4 is a first cross-sectional view of the shower pipeline provided by the specific embodiment of the present utility model;
[0046] Figure 5 is Figure 4 a partial enlarged view of part A in
[0047] Figure 6 a schematic structural view of the water distribution shaft of the mode switching assembly provided by the specific embodiment of the present utility model;
[0048] Figure 7 is the second sectional view of the shower pipeline provided by the specific embodiment of the present utility model;
[0049] Figure 8 is Figure 7 a partial enlarged view of part B in
[0050] Figure 9 a schematic installation view of the water distribution main body and the water distribution part provided by the specific embodiment of the present utility model;
[0051] Figure 10 is a schematic structural view of the pipe body provided by the specific embodiment of the present utility model;
[0052] Figure 11 is a schematic structural view of the cover provided by the specific embodiment of the present utility model;
[0053] Figure 12 is a schematic structural view of the side spray assembly provided by the specific embodiment of the present utility model;
[0054] Figure 13 is the first exploded view of the side spray assembly provided by the specific embodiment of the present utility model;
[0055] Figure 14 is the second exploded view of the side spray assembly provided by the specific embodiment of the present utility model;
[0056] Figure 15 is Figure 4 a partial enlarged view of part C in
[0057] Figure 16 is a schematic installation view of the side spray assembly, the water distribution main body and the upper water pipeline joint in the pipe body provided by the specific embodiment of the present utility model.
[0058] In the figure:
[0059] 1. Pipeline assembly; 2. Mode switching assembly; 3. Elastic reset member; 4. First fastener; 5. Second fastener;
[0060] 11. Pipe body; 12. Side spray assembly; 13. Water distribution main body; 14. Upper water pipeline joint; 15. Cover; 16. Water distribution part; 17. Limit structure;
[0061] 111. Water inlet; 112. First water outlet; 113. Side spray opening; 114. Installation opening;
[0062] 121. Installation base body; 122. Fixing frame; 123. Side spray nozzle; 124. Fixing piece; 125. Fourth seal; 120. Preset gap;
[0063] 1211. Top spray channel; 1212. Side spray channel; 1213. First profiling groove; 1214. Fifth seal; 1215. Seventh seal; 1216. First positioning boss;
[0064] 1221. Second profiling groove; 1222. Limiting cylinder; 1223. Second positioning boss;
[0065] 1231. Installation part; 1232. Water outlet nozzle; 1230. Second water outlet;
[0066] 131. Water distribution cavity; 132. Water distribution inlet; 133. First water distribution outlet; 134. Second water distribution outlet; 135. Installation column; 136. Sixth seal;
[0067] 1311. Second abutting surface; 1312. Positioning cylinder;
[0068] 141. Eighth seal;
[0069] 151. First positioning column; 152. Second positioning column; 153. Limiting rib; 154. Accommodation hole;
[0070] 161. Guide channel; 162. First abutting surface; 163. Third seal;
[0071] 171. Locking groove; 172. Locking part;
[0072] 21. Button; 22. Water distribution shaft; 23. First seal; 24. Second seal;
[0073] 211. Rotating groove;
[0074] 221. First boss; 2211. First groove; 222. Second groove. Detailed implementation mode
[0075] The present utility model will be further described in detail below with reference to the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present utility model, rather than limiting the present utility model. In addition, it should be noted that for the convenience of description, only parts related to the present utility model are shown in the drawings, rather than all the structures.
[0076] In the description of the present utility model, unless otherwise clearly defined and limited, the terms "connected", "connected to", and "fixed" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0077] In the present utility model, unless otherwise clearly defined and limited, the first feature being "above" or "below" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through other features therebetween. Moreover, the first feature being "above", "over", and "on top of" the second feature includes that the first feature is directly above and obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "beneath", and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or merely indicates that the horizontal height of the first feature is lower than that of the second feature.
[0078] In the description of this embodiment, the orientation or positional relationships such as "above", "below", "left", and "right" are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of description and simplifying the operation, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0079] The term "and / or" in this embodiment is only a description of the association relationship of the associated objects, indicating that three relationships may exist. For example, A and / or B may represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in the present utility model generally represents an "or" relationship between the front and rear associated objects.
[0080] In the embodiments of the present utility model, the same reference numerals represent the same components, and for the sake of simplicity, in different embodiments, the detailed descriptions of the same components are omitted.
[0081] As Figure 1 、 Figure 2 and Figure 3 shown, this embodiment provides a shower pipeline, which can prevent the water flow from flowing out in an unusual mode when the user turns on the water, causing inconvenience to the user, while realizing the smooth switching between two water outlet modes, and improving the user experience.
[0082] Among them, refer toFigure 1 , Figure 2 and Figure 3 , the shower pipeline includes a pipeline component 1, a mode switching component 2 and an elastic reset component 3. The pipeline component 1 has a water inlet 111, a first water outlet 112 and a second water outlet 1230; specifically, after the shower pipe is installed, the first water outlet 112 is located at the top of the pipeline component 1, and the second water outlet 1230 is located at the side of the pipeline component 1. The mode switching component 2 is movably arranged on the pipeline component 1, which is located downstream of the water inlet 111 and upstream of both the first water outlet 112 and the second water outlet 1230; the water flow entering through the water inlet 111 will flow through the mode switching component 2 whether it flows to the first water outlet 112 or the second water outlet 1230. The mode switching component 2 has a first state in which the water inlet 111 is communicated with the first water outlet 112 and a second state in which the water inlet 111 is communicated with the second water outlet 1230; the elastic reset component 3 is connected between the pipeline component 1 and the mode switching component 2 and can be elastically deformed when the mode switching component 2 moves relative to the pipeline component 1. When the mode switching component 2 moves from the first state to the second state, it compresses the elastic reset component 3 and can be maintained in the second state under the action of water flow pressure; the mode switching component 2 can move from the second state to the first state under the elastic force of the elastic reset component 3.
[0083] In this embodiment, the first water outlet 112 is a top spray water outlet, which is arranged at the top of the pipeline component 1, and the second water outlet 1230 is a side spray water outlet, which is arranged at the side of the pipeline component 1, that is, the first state corresponds to the top spray mode, and the second state corresponds to the side spray mode. Of course, in other embodiments, the first water outlet 112 and the second water outlet 1230 can be arranged at other positions, such as both at the top of the pipeline component 1, or both at the side of the pipeline component 1, etc., as long as two different water outlets can discharge water.
[0084] The shower pipeline provided in this embodiment can move the mode switching component 2 to the first state or the second state by driving the mode switching component 2 to move relative to the pipeline component 1. When the mode switching component 2 moves to the first state, the water inlet 111 of the pipeline component 1 is communicated with the first water outlet 112, and the shower pipeline is switched to the top spray mode, and the water flow entering through the water inlet 111 is sprayed out through the first water outlet 112; when the mode switching component 2 moves to the second state, the water inlet 111 of the pipeline component 1 is communicated with the second water outlet 1230, and the shower pipeline is switched to the side spray mode, and the water flow entering through the water inlet 111 is sprayed out through the second water outlet 1230, which can wash the user's chest and back. That is, the shower pipeline only needs to drive the mode switching component 2 to move to freely switch between the top spray mode and the side spray mode, with diverse and rich functions and convenient switching operations.
[0085] By setting the elastic reset member 3, when the mode switching component 2 moves from the first state to the second state, the elastic reset member 3 is compressed, so that the elastic reset member 3 stores elastic potential energy. And when water flows through the mode switching component 2 in the second state, the pressure energy of the water flow on the mode switching component 2 can keep it in the second state, realizing the side spray function. When the user turns off the water, due to the disappearance of the water flow pressure, the elastic reset member 3 releases the elastic potential energy, so that the mode switching component 2 moves and resets from the second state to the first state under the elastic force of the elastic reset member 3. When the user turns on the water next time, the mode switching component 2 in the first state enables the shower pipeline to turn on the top spray function, preventing the second water outlet 1230 from suddenly discharging water directly at the user when the user turns on the water, improving the use safety and enhancing the user experience.
[0086] In this embodiment, referring to Figure 4 and Figure 5 , the pipeline component 1 is provided with a water distribution cavity 131, a water distribution inlet 132, a first water distribution outlet 133 and a second water distribution outlet 134; the water distribution inlet 132 is located upstream of both the first water distribution outlet 133 and the second water distribution outlet 134, and the water distribution inlet 132 is selectively communicated with the first water distribution outlet 133 or the second water distribution outlet 134. The water distribution cavity 131 is communicated with the water inlet 111 through the water distribution inlet 132, the first water distribution outlet 133 is communicated with the first water outlet 112, and the second water distribution outlet 134 is communicated with the second water outlet 1230. When the mode switching component 2 is in the first state, the water flow introduced from the water inlet 111 enters the water distribution cavity 131 through the water distribution inlet 132, and then flows to the first water outlet 112 through the first water distribution outlet 133, realizing the top spray function; when the mode switching component 2 is in the second state, the water flow introduced from the water inlet 111 enters the water distribution cavity 131 through the water distribution inlet 132, and then flows to the second water outlet 1230 through the second water distribution outlet 134, realizing the side spray function.
[0087] Referring to Figure 4 , Figure 5 , Figure 7 and Figure 8 , the mode switching component 2 includes a button 21 and a water distribution shaft 22. Among them, the button 21 is swingably arranged on the pipeline component 1 around a first rotation center, the water distribution shaft 22 is rotatably connected to the button 21 and movably arranged on the pipeline component 1, the rotation connection point between the water distribution shaft 22 and the button 21 is a second rotation center, and the first rotation center and the second rotation center are arranged at intervals, so that the button 21 can drive the water distribution shaft 22 to move when swinging around the first rotation center.
[0088] Specifically, when pressing both sides of the button 21 respectively, the water distribution shaft 22 can be switched between a first position and a second position under the drive of the button 21. As Figure 4 and Figure 5As shown, the water diversion shaft 22 at the first position opens the first water diversion outlet 133 and closes the second water diversion outlet 134, so that the water flow in the water diversion cavity 131 flows through the first water diversion outlet 133 to the first water outlet 112, and this is the top spray mode at this time; along Figure 7 When the button 21 is pressed in the direction of the arrow shown in Figure 8 As shown, the water diversion shaft 22 at the second position opens the second water diversion outlet 134 and closes the first water diversion outlet 133, so that the water flow in the water diversion cavity 131 flows through the second water diversion outlet 134 to the second water outlet 1230, and this is the side spray mode at this time.
[0089] Furthermore, the elastic reset member 3 is arranged between the cavity wall of the water diversion cavity 131 and the water diversion shaft 22. When the water diversion shaft 22 moves from Figure 5 the first position shown in Figure 8 to the second position shown in
[0090] the water diversion shaft 22 compresses the elastic reset member 3, and the water flow in the water diversion cavity 131 acts on the water diversion shaft 22, so that the water diversion shaft 22 is kept at the second position under the action of the water flow pressure. When the water is turned off, there is no longer water flow through the water diversion cavity 131, and the elastic reset member 3 releases the elastic potential energy, so that the water diversion shaft 22 moves and resets to the first position under the elastic force of the elastic reset member 3. The next time the user turns on the water, it is the top spray mode, avoiding sudden side spray of water when turning on the water and wetting the user.
[0091] Exemplarily, the moving direction of the water diversion shaft 22 is the radial direction of the pipeline assembly 1. In other embodiments, the moving direction of the water diversion shaft 22 may also form an angle with the radial direction of the pipeline assembly 1, which is not limited here.
[0091] In this embodiment, referring to Figure 3 、 Figure 4 and Figure 7 , the pipeline assembly 1 includes a pipe body 11, a side spray assembly 12, and a water diversion main body 13. Among them, the pipe body 11 has a hollow structure with openings at both ends. Combining Figure 1, the lower end opening of the pipe body 11 is the water inlet 111, the upper end opening is the first water outlet 112, and the side wall of the pipe body 11 is provided with a side spray opening 113. The side spray assembly 12 is installed inside the pipe body 11. The above-mentioned second water outlet 1230 is provided on the side spray assembly 12, and the second water outlet 1230 communicates with the outside through the side spray opening 113 on the pipe body 11, so that the second water outlet 1230 can smoothly spray the water flow to the outside. A top spray channel 1211 and a side spray channel 1212 are arranged inside the side spray assembly 12. The first water distribution outlet 133 communicates with the first water outlet 112 through the top spray channel 1211, and the second water distribution outlet 134 communicates with the second water outlet 1230 through the side spray channel 1212. The top spray channel 1211 and the side spray channel 1212 are independently arranged, which can guide the water flow of the top spray water path and the side spray water path. The water distribution main body 13 is installed inside the pipe body 11 and is hermetically inserted into the side spray assembly 12. The above-mentioned water distribution cavity 131, water distribution inlet 132, first water distribution outlet 133 and second water distribution outlet 134 are all arranged on the water distribution main body 13. The water distribution shaft 22 can move to the first position or the second position inside the water distribution main body 13.
[0092] When installing the pipeline assembly 1, place the water distribution main body 13 and the side spray assembly 12 inside the pipe body 11 and hermetically insert them, which can reduce the production difficulty and assembly difficulty of the pipeline assembly 1. The water distribution main body 13 and the side spray assembly 12 are processed separately and then assembled into the pipe body 11, which can reduce the manufacturing difficulty and shorten the part production time.
[0093] Further, referring to Figure 3 and Figure 4 , the pipeline assembly 1 further includes an upper water path joint 14 and a cover 15. The upper water path joint 14 is installed inside the pipe body 11 and is hermetically inserted into one end of the side spray assembly 12 away from the water distribution main body 13. The top spray channel 1211 communicates with the first water outlet 112 through the upper water path joint 14. That is, the water distribution main body 13 and the upper water path joint 14 are respectively arranged at both ends of the side spray assembly 12, and the water flowing out of the top spray channel 1211 flows to the first water outlet 112 through the inner cavity of the upper water path joint 14.
[0094] Referring to Figure 3 , Figure 9 and Figure 10 , the side wall of the pipe body 11 is provided with an installation opening 114 allowing the side spray assembly 12, the water distribution main body 13 and the upper water path joint 14 to pass through, and the cover 15 covers the installation opening 114. When installing the pipeline assembly 1, the side spray assembly 12, the water distribution main body 13 and the upper water path joint 14 can be put into the pipe body 11 and hermetically inserted, and then the cover 15 is buckled at the installation opening 114 to ensure the sealing performance of the pipeline assembly 1.
[0095] The cover 15 is provided with a receiving hole 154 for receiving the button 21. The button 21 is located within the receiving hole 154 and is swingably connected to the cover 15 or connected to the water distribution main body 13.
[0096] In this embodiment, referring to Figure 3 , a rotating groove 211 is provided on the button 21. Referring to Figure 9 , a mounting post 135 protrudes from the water distribution main body 13. The mounting post 135 is clamped and limited within the rotating groove 211 and is rotatably engaged with the rotating groove 211 to achieve the swinging of the button 21 around the first rotation center. Of course, in other embodiments, the button 21 can also be rotatably connected to the cover 15 as long as it can drive the water distribution shaft 22 to move.
[0097] More specifically, referring to Figure 3 and Figure 4 , the shower pipe further includes a first fastener 4 and a second fastener 5. The first fastener 4 passes through the cover 15 and is threadedly connected to the water distribution main body 13 to fix the position of the water distribution main body 13 within the pipe body 11 and prevent it from moving around. The second fastener 5 passes through the cover 15 and is threadedly connected to the upper water path joint 14 to fix the position of the upper water path joint 14 within the pipe body 11 and prevent it from moving around.
[0098] Exemplarily, both the first fastener 4 and the second fastener 5 are screws.
[0099] As Figure 4 and Figure 11 shown, the inner side of the cover 15 protrudes with a first positioning post 151 and a second positioning post 152. Through holes are provided on both the first positioning post 151 and the second positioning post 152. The first fastener 4 passes through the through hole of the first positioning post 151 and is threadedly screwed into the threaded hole of the water distribution main body 13. The second fastener 5 passes through the through hole of the second positioning post 152 and is threadedly screwed into the threaded hole of the upper water path joint 14. The provision of the first positioning post 151 and the second positioning post 152 can strengthen the penetration connection of the first fastener 4 and the second fastener 5, ensure the connection strength and reduce deformation and damage.
[0100] Combined with Figure 4 and Figure 11 , at least one limiting rib 153 protrudes from the inner wall of the cover 15. The limiting rib 153 can abut against the side spray assembly 12 to limit the position of the side spray assembly 12 and improve the installation stability of the side spray assembly 12 within the pipe body 11. Exemplarily, a plurality of limiting ribs 153 are provided along the length direction of the side spray assembly 12.
[0101] Optionally, as Figure 3 , Figure 5 as well as Figure 8As shown, a water dividing member 16 is disposed through the water dividing cavity 131 of the water dividing main body 13. The water dividing member 16 is provided with a guiding channel 161, and a part of the water dividing shaft 22 is disposed through the guiding channel 161. When the water dividing shaft 22 moves between the first position and the second position, it is in sealed and sliding contact with the inner wall of the guiding channel 161, ensuring that there is no water leakage from the gap between the water dividing shaft 22 and the water dividing member 16.
[0102] The water dividing member 16 is further provided with a first abutting surface 162, and the inner wall of the water dividing cavity 131 is provided with a second abutting surface 1311. The second abutting surface 1311 and the first abutting surface 162 are spaced apart in the moving direction of the water dividing shaft 22. Figure 6 Combined with Figure 6 , a first boss 221 is annularly provided on the outer wall of the water dividing shaft 22. A first groove 2211 is annularly provided along the circumference of the first boss 221, and a first sealing member 23 is installed in the first groove 2211. The first sealing member 23 can selectively abut against the first abutting surface 162 or the second abutting surface 1311 under the drive of the water dividing shaft 22, so that one of the first water dividing outlet 133 and the second water dividing outlet 134 is communicated.
[0103] See Figure 5 As shown in Figure 5 , the water dividing shaft 22 at the first position abuts against the first abutting surface 162 through the first sealing member 23. At this time, the water dividing shaft 22 opens the first water dividing outlet 133 and closes the second water dividing outlet 134, realizing the top spraying function of the shower pipeline. See Figure 8 As shown in Figure 8 , the water dividing shaft 22 at the second position abuts against the second abutting surface 1311 through the first sealing member 23; at this time, the water dividing shaft 22 opens the second water dividing outlet 134 and closes the first water dividing outlet 133, realizing the side spraying function of the shower pipeline.
[0104] By installing the first sealing member 23 in the first groove 2211, the installation stability of the first sealing member 23 on the water dividing shaft 22 can be improved. The setting of the first boss 221 can increase the strength of the water dividing shaft 22. Moreover, the upper surface of the first boss 221 can ensure that the water flow gives the water dividing shaft 22 sufficient axial pressure. The water flow pressure acts on the upper surface of the first boss 221, balancing with the elastic force of the elastic reset member 3, so that the water dividing shaft 22 is kept at the second position.
[0105] See Figure 5 and Figure 9 As shown in Figure 5 and Figure 9 , a limiting structure 17 is provided between the water dividing member 16 and the cavity wall of the water dividing cavity 131. The limiting structure 17 is used to limit the water dividing member 16 in the moving direction of the water dividing shaft 22. When the water dividing shaft 22 drives the first sealing member 23 to abut against the first abutting surface 162 of the water dividing member 16 under the drive of the elastic reset member 3, an axial force is applied to the water dividing member 16. The existence of the limiting structure 17 can prevent the water dividing member 16 from shifting.
[0106] Specifically, see Figure 9, the limiting structure 17 includes a locking portion 172 provided on the water distribution member 16 and a locking groove 171 provided on the water distribution main body 13. The locking portion 172 can be clamped in the locking groove 171 to realize the limitation of the water distribution member 16. Further, a strip-shaped block is provided on the water distribution member 16, and both ends of the strip-shaped block along the length direction are the locking portions 172. The water distribution main body 13 is provided with two opposite locking grooves 171. When the strip-shaped block rotates until the two locking portions 172 are correspondingly clamped with the two locking grooves 171, the water distribution member 16 is locked on the water distribution main body 13. When the strip-shaped block rotates until both ends along the width direction are aligned with the two locking grooves 171, the water distribution member 16 is unlocked from the water distribution main body 13.
[0107] See Figure 5 and Figure 6 , a second groove 222 is provided on the water distribution shaft 22, and a second seal 24 is provided in the second groove 222. The water distribution shaft 22 is in sealed sliding fit with the guiding channel 161 of the water distribution member 16 through the second seal 24.
[0108] Further, at least one annular clamping groove is provided on the water distribution member 16, and a third seal 163 is provided in the annular clamping groove. The water distribution member 16 is in sealed contact with the inner wall of the water distribution cavity 131 through the third seal 163.
[0109] Exemplarily, the first seal 23, the second seal 24, and the third seal 163 are all rubber rings.
[0110] See Figure 5 and Figure 8 , a positioning cylinder 1312 protrudes from the bottom wall of the water distribution cavity 131. The end of the water distribution shaft 22 away from the button 21 is slidably fitted with the inner cavity of the positioning cylinder 1312. The elastic reset member 3 is sleeved outside the positioning cylinder 1312 and abuts against the water distribution shaft 22. When the water distribution shaft 22 switches between the first position and the second position, the end of the water distribution shaft 22 away from the button 21 can slide in the positioning cylinder 1312 to further guide the movement of the water distribution shaft 22 and ensure that the movement of the water distribution shaft 22 is not offset. The elastic reset member 3 is sleeved outside the positioning cylinder 1312 and abuts against the lower surface of the first boss 221, which can improve the installation stability of the elastic reset member 3. Moreover, the elastic reset member 3 expands and contracts along the positioning cylinder 1312, which can guide its expansion and contraction and improve the stability during the expansion and contraction process.
[0111] In this embodiment, as Figure 12 , Figure 13 and Figure 14 shown, the side spray assembly 12 includes a mounting seat body 121, a fixing frame 122, and a side spray nozzle 123. The side spray nozzle 123 can be fixed between the mounting seat body 121 and the fixing frame 122.
[0112] Specifically, one end of the mounting base 121 is sealingly inserted into the water distribution main body 13, and the other end is sealingly inserted into the upper water path joint 14. The above-mentioned top spray channel 1211 and side spray channel 1212 are both provided on the mounting base 121, and the mounting base 121 is further provided with a first profiling groove 1213, and the first profiling groove 1213 communicates with the outlet of the side spray channel 1212. The fixing frame 122 is connected to the mounting base 121 and is provided with a second profiling groove 1221, and the second profiling groove 1221 is arranged opposite to the first profiling groove 1213 to form a limiting groove by splicing. The side spray nozzle 123 includes a mounting portion 1231 and a water outlet nozzle 1232. The mounting portion 1231 is clamped in the limiting groove and is in sealing contact with the inner wall of the limiting groove. The water outlet nozzle 1232 penetrates through the side spray opening 113 on the pipe body 11, and one end of the water outlet nozzle 1232 away from the mounting portion 1231 is an opening, which is the second water outlet 1230, that is, the water outlet nozzle 1232 penetrates through the pipe body 11 to achieve side spraying. Since the first profiling groove 1213 communicates with the outlet of the side spray channel 1212, the water flow output from the outlet of the side spray channel 1212 enters the first profiling groove 1213, and then enters the water outlet nozzle 1232 clamped in the first profiling groove 1213, and finally is sprayed out through the second water outlet 1230 of the water outlet nozzle 1232.
[0113] A plurality of side spray nozzles 123 are provided. Correspondingly, a corresponding number of first profiling grooves 1213 are provided on the mounting base 121, and a corresponding number of second profiling grooves 1221 are provided on the fixing frame 122 to enclose a plurality of limiting grooves for clamping and limiting the side spray nozzles 123.
[0114] Further, referring to Figure 14 and Figure 15 , a limiting cylinder 1222 protrudes from the fixing frame 122. The inner cavity of the limiting cylinder 1222 communicates with the second profiling groove 1221. The limiting cylinder 1222 passes through and is limited in the side spray opening 113 to realize the positioning of the entire side spray assembly 12 in the pipe body 11. During installation, the limiting cylinder 1222 is aligned and inserted into the side spray opening 113 on the pipe body 11. The water outlet nozzle 1232 passes through the limiting cylinder 1222, and there is a preset gap 120 between the water outlet nozzle 1232 and the inner wall of the limiting cylinder 1222. The limiting groove enclosed by the first profiling groove 1213 and the second profiling groove 1221 is a spherical groove, and the mounting portion 1231 is spherical. The spherical mounting portion 1231 is rotatably arranged in the spherical limiting groove so that the angle of the water outlet nozzle 1232 relative to the limiting cylinder 1222 is adjustable. In this embodiment, by manually adjusting the water outlet angle of the water outlet nozzle 1232 by the user, the side spray can adapt to users of different heights, and the flexibility is stronger.
[0115] Due to the existence of the above-mentioned preset gap 120, the limiting cylinder 1222 will not interfere with the rotation of the side spray nozzle 123, and can also limit the excessive rotation angle of the side spray nozzle 123, so that the side spray nozzle 123 rotates and adjusts within a certain angle range.
[0116] See Figure 3 and Figure 15 , a clamping groove is annularly provided on the inner wall of the first profiling groove 1213, a fourth sealing member 125 is arranged in the clamping groove, and the mounting portion 1231 of the side spray nozzle 123 is in sealing and rotational fit with the first profiling groove 1213 through the fourth sealing member 125. The fourth sealing member 125 is exemplarily a rubber ring.
[0117] See Figure 13 , Figure 14 and Figure 15 , on the side of the mounting seat body 121 facing the fixing frame 122, a plurality of first positioning bosses 1216 protrude, and on the side of the fixing frame 122 facing the mounting seat body 121, a plurality of second positioning bosses 1223 protrude. The plurality of first positioning bosses 1216 and the plurality of second positioning bosses 1223 correspond one by one and are inserted and matched. On the one hand, it realizes the positioning of the fixing member 124 and the mounting seat body 121 during installation, and on the other hand, it can improve the stability of the fixing member 124 and the mounting seat body 121 after installation. Exemplarily, the first positioning boss 1216 is inserted into the inner hole of the second positioning boss 1223.
[0118] Further, the first positioning boss 1216 is provided with a threaded hole. The side spray assembly 12 further includes a plurality of fixing members 124. The fixing members 124 pass through the fixing frame 122 and are screwed into the threaded holes of the first positioning bosses 1216, firmly connecting the fixing frame 122 to the mounting seat body 121, so that the side spray nozzle 123 is firmly limited between the fixing frame 122 and the mounting seat body 121.
[0119] See Figure 3 and Figure 14 , the first end of the mounting seat body 121 is provided with an annular clamping groove, a fifth sealing member 1214 is arranged in the annular clamping groove, the first end of the mounting seat body 121 is inserted into the water distribution main body 13, and is hermetically connected to the water distribution main body 13 through the fifth sealing member 1214; an annular clamping groove is provided at one end of the water distribution main body 13 away from the mounting seat body 121, a sixth sealing member 136 is arranged in the annular clamping groove, and the water distribution main body 13 is in sealing contact with the inner wall of the pipe body 11 through the sixth sealing member 136.
[0120] The second end of the mounting base 121 is also provided with an annular groove, and a seventh sealing member 1215 is arranged in the annular groove. The second end of the mounting base 121 is inserted into the upper water path joint 14 and is hermetically connected to the upper water path joint 14 through the seventh sealing member 1215. An annular groove is arranged at one end of the upper water path joint 14 away from the mounting base 121, and an eighth sealing member 141 is arranged in the annular groove. The upper water path joint 14 is in sealing contact with the inner wall of the pipe body 11 through the eighth sealing member 141.
[0121] Exemplarily, the fifth sealing member 1214, the sixth sealing member 136, the seventh sealing member 1215, and the eighth sealing member 141 are all rubber rings.
[0122] As Figure 16 shown, when installing the installation pipeline assembly 1, after sleeving the corresponding sealing members on the water distribution main body 13, the side spray assembly 12, and the upper water path joint 14, first place the water distribution main body 13 and the upper water path joint 14 into the pipe body 11 through the installation opening 114 on the pipe body 11 and slide the two to the corresponding installation positions. Subsequently, place the side spray assembly 12 into the pipe body 11 through the installation opening 114 on the pipe body 11 and locate it between the water distribution main body 13 and the upper water path joint 14. The side spray nozzles 123 of the side spray assembly 12 penetrate through the side spray openings 113 on the pipe body 11 one by one to realize the positioning of the side spray assembly 12 in the pipe body 11. Then slide the water distribution main body 13 and the upper water path joint 14 so that the two are hermetically inserted into the two ends of the mounting base 121 of the side spray assembly 12 respectively. Finally, install the cover 15 to cover the installation opening 114 and connect it to the water distribution main body 13 through the first fastener 4 and to the upper water path joint 14 through the second fastener 5.
[0123] The working principle of the shower pipeline provided in this embodiment is roughly as follows:
[0124] Rain shower mode: As Figure 4 and Figure 5 shown, the water distribution shaft 22 is in the first position. The first sealing member 23 on the water distribution shaft 22 opens the first water distribution outlet 133 by sealingly abutting against the first abutting surface 162 and closes the second water distribution outlet 134. The water flow entering from the water inlet 111 of the pipe body 11 enters the water distribution cavity 131 through the water distribution inlet 132, and then sequentially passes through the first water distribution outlet 133, the rain shower channel 1211, and the upper water path joint 14 and flows to the first water outlet 112 to realize the rain shower water outlet function. Figure 4 The dotted line in
[0125] Side spray mode: When along Figure 7When pressing down the button 21 in the direction of the arrow shown, the button 21 drives the water distribution shaft 22 to move from the first position to the second position. During this process, the elastic reset member 3 is compressed until the first seal 23 on the water distribution shaft 22 abuts against the second abutting surface 1311. At this time, the water distribution shaft 22 opens the second water distribution outlet 134 and closes the first water distribution outlet 133, that is, the function of the top spray to discharge water is closed. The water flow entering from the water inlet 111 of the pipe body 11 enters the water distribution cavity 131 through the water distribution inlet 132, and then sequentially passes through the second water distribution outlet 134, the side spray channel 1212, and the side spray nozzle 123, and finally sprays out through the second water outlet hole 1230 of the side spray nozzle 123 to realize the function of the side spray to discharge water. The pressure energy of the water flow acts on the water distribution shaft 22 to keep the water distribution shaft 22 in the second position to realize the side spray function. Figure 7 The dotted line shown in the figure is the flow direction of the water flow in the side spray mode.
[0126] During the shower, when the user wants to switch back to the top spray mode, just press down the end of the button 21 that is far away from the water distribution shaft 22. Specifically, in Figure 7 the figure, just press down the right end of the button 21.
[0127] When the user turns off the water, the pressure of the water flow on the water distribution shaft 22 disappears. The water distribution shaft 22 resets to the first position under the elastic force of the elastic reset member 3. The next time the user turns on the water, the top spray mode is the default, preventing the side spray assembly 12 from suddenly spraying water and wetting the user, thus improving the use safety.
[0128] This embodiment also provides a shower device, including a shower head and the shower pipeline as described above. The shower head is installed at the first water outlet 112 or the second water outlet 1230 of the shower pipeline. Exemplarily, taking the first water outlet 112 as the top spray water outlet and the second water outlet 1230 as the side spray water outlet as an example, the shower head is a top spray shower head and is installed at the first water outlet 112. The shower device with this shower pipeline can smoothly switch between the functions of the top spray to discharge water and the side spray to discharge water, and can prevent the side spray from suddenly discharging water directly towards the user when the user turns on the water, improving the use safety and enhancing the user experience.
[0129] Obviously, the above embodiments of the present invention are only examples for clearly explaining the present invention, rather than limiting the implementation manners of the present invention. For those of ordinary skill in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the protection scope of the present invention. It is not necessary and impossible to list all the implementation manners here. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the claims of the present invention.
Claims
1. A shower pipe, characterized in that: include: A pipeline assembly (1) having a water inlet (111), a first water outlet (112) and a second water outlet (1230); A mode switching component (2) is movably arranged on the pipeline component (1), the mode switching component (2) being located downstream of the water inlet (111) and upstream of both the first water outlet (112) and the second water outlet (1230); the mode switching component (2) has a first state in which the water inlet (111) is connected to the first water outlet (112) and a second state in which the water inlet (111) is connected to the second water outlet (1230); An elastic return member (3) connected between the pipeline assembly (1) and the mode switching assembly (2); The mode switching component (2) compresses the elastic reset component (3) when it moves from the first state to the second state, and can be maintained in the second state under the action of water flow pressure; The mode switching component (2) can be movably reset from the second state to the first state under the elastic force of the elastic reset component (3).
2. The shower pipe according to claim 1, characterized in that: The pipeline assembly (1) is provided with a water diversion chamber (131), a water diversion inlet (132), a first water diversion outlet (133) and a second water diversion outlet (134); the water diversion chamber (131) is connected to the water inlet (111) via the water diversion inlet (132), the first water diversion outlet (133) is connected to the first water outlet (112), and the second water diversion outlet (134) is connected to the second water outlet (1230); The mode switching component (2) comprises: A button (21) is swingably arranged on the pipeline assembly (1); A water-dividing shaft (22) is rotatably connected to the button (21) and movably arranged on the pipeline assembly (1); the water-dividing shaft (22) switches between a first position and a second position under the drive of the button (21); the water-dividing shaft (22) in the first position opens the first water-dividing outlet (133) and closes the second water-dividing outlet (134); the water-dividing shaft (22) in the second position opens the second water-dividing outlet (134) and closes the first water-dividing outlet (133); the elastic reset member (3) is arranged between the cavity wall of the water-dividing cavity (131) and the water-dividing shaft (22).
3. The shower pipe according to claim 2, characterized in that: A water distribution component (16) is provided in the water distribution chamber (131); The water-dividing member (16) is provided with a guide channel (161), and the water-dividing shaft (22) is partially disposed in the guide channel (161) and is sealed and in sliding contact with the inner wall of the guide channel (161); The water diversion element (16) is further provided with a first abutting surface (162); the inner wall of the water diversion chamber (131) is provided with a second abutting surface (1311); the second abutting surface (1311) and the first abutting surface (162) are arranged at intervals in the moving direction of the water diversion shaft (22); the outer wall of the water diversion shaft (22) is provided with a first boss (221); the first boss (221) is provided with a first groove (2211) along the circumferential direction; a first sealing element (23) is installed in the first groove (2211); the water diversion shaft (22) at the first position abuts against the first abutting surface (162) through the first sealing element (23); the water diversion shaft (22) at the second position abuts against the second abutting surface (1311) through the first sealing element (23); A limiting structure (17) is provided between the water diversion element (16) and the cavity wall of the water diversion cavity (131), and the limiting structure (17) is used to limit the water diversion element (16) along the moving direction of the water diversion axis (22).
4. The shower pipe according to claim 2, characterized in that: A positioning cylinder (1312) is protrudingly provided on the bottom wall of the water-dividing chamber (131); one end of the water-dividing shaft (22) away from the button (21) is slidably matched with the inner cavity of the positioning cylinder (1312); and the elastic reset member (3) is sleeved outside the positioning cylinder (1312) and abuts against the water-dividing shaft (22).
5. The shower pipe according to claim 2, characterized in that: The pipeline assembly (1) comprises: A tube body (11), wherein the lower end opening of the tube body (11) is the water inlet (111), the upper end opening is the first water outlet (112), and the side wall of the tube body (11) is provided with a side spray opening (113); A side spray assembly (12) is installed in the pipe body (11); the second water outlet (1230) is provided in the side spray assembly (12), and the second water outlet (1230) is connected to the outside through the side spray opening (113); a top spray channel (1211) and a side spray channel (1212) are provided in the side spray assembly (12); The water diversion body (13) is installed in the pipe body (11) and is sealed and plugged with the side spray assembly (12); the water diversion chamber (131), the water diversion inlet (132), the first water diversion outlet (133) and the second water diversion outlet (134) are all arranged on the water diversion body (13); the first water diversion outlet (133) is connected to the first water outlet (112) through the top spray channel (1211); the second water diversion outlet (134) is connected to the second water outlet (1230) through the side spray channel (1212).
6. The shower pipe according to claim 5, characterized in that: The side spray assembly (12) comprises: A mounting seat body (121) is sealed and plugged with the water-dividing body (13); the top spray channel (1211) and the side spray channel (1212) are both arranged on the mounting seat body (121); and the mounting seat body (121) is further provided with a first profiling groove (1213); the first profiling groove (1213) is in communication with the outlet of the side spray channel (1212); A fixing frame (122) is connected to the mounting seat body (121) and is provided with a second profiling groove (1221), wherein the second profiling groove (1221) is arranged opposite to the first profiling groove (1213) to form a limiting groove; The side spray nozzle (123) comprises a mounting portion (1231) and a water outlet nozzle (1232), wherein the mounting portion (1231) is clamped in the limiting groove and is in sealing contact with the inner wall of the limiting groove, and the water outlet nozzle (1232) passes through the side spray opening (113), and the end of the water outlet nozzle (1232) away from the mounting portion (1231) is opened as the second water outlet (1230).
7. The shower pipe according to claim 6, characterized in that: A limiting cylinder (1222) is protruding from the fixing frame (122), the inner cavity of the limiting cylinder (1222) is communicated with the second contoured groove (1221), the limiting cylinder (1222) is penetrated and limited to the side spray opening (113), the water outlet nozzle (1232) is penetrated in the limiting cylinder (1222), and a preset gap (120) exists between the limiting cylinder (1222) and the inner wall of the limiting cylinder (1222); The limiting groove is a spherical groove, the mounting portion (1231) is spherical, and the mounting portion (1231) is rotatably arranged in the limiting groove, so that the angle of the water outlet (1232) relative to the limiting cylinder (1222) is adjustable.
8. The shower pipe according to claim 5, characterized in that: The pipeline assembly (1) further comprises: An upper water channel connector (14) is installed in the pipe body (11) and is sealed and plugged with an end of the side spray assembly (12) away from the water distribution body (13); the top spray channel (1211) is connected to the first water outlet (112) through the upper water channel connector (14); The cover (15) is provided with a mounting opening (114) on the side wall of the tube body (11) for allowing the side spray assembly (12), the water distribution body (13) and the upper water channel joint (14) to pass through. The cover (15) is covered on the mounting opening (114), and the cover (15) is provided with a receiving hole (154) for receiving the button (21). The button (21) is swingably connected to the cover (15) or the water distribution body (13).
9. The shower pipe according to claim 8, characterized in that: The shower pipeline further comprises a first fastener (4) and a second fastener (5), wherein the first fastener (4) passes through the cover (15) and is threadedly connected to the water diversion body (13), and the second fastener (5) passes through the cover (15) and is threadedly connected to the upper waterway connector (14); And / or, the inner wall of the sealing cover (15) is provided with a limiting rib (153) protruding therefrom, and the limiting rib (153) can abut against the side spray assembly (12).
10. A shower device, characterized in that: It comprises a shower head and a shower pipe as claimed in any one of claims 1 to 9, wherein the shower head is installed at the first water outlet (112) or the second water outlet (1230) of the shower pipe.