Water outlet slide and shower set
By designing a water-spraying slide that combines placement and water output functions, the problems of non-adjustable water spray height and falling of handheld showerheads are solved, achieving safe and reliable dual rinsing and diverse water output effects, thus enhancing the user's showering experience.
Patent Information
- Application Number
- CN202310464996.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-26
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2043-04-26
AI Technical Summary
In existing shower sets, the water flow height of the handheld shower head cannot be adjusted, and it is prone to falling off when the water pressure is unstable, posing a safety hazard.
Design a water outlet slide, including a sliding component and a water outlet component. The sliding component and the water outlet component are inseparable and connected. It serves as both a holder for a handheld shower head and a water outlet. The rod is stably fixed by locking and clamping components. The water outlet component and the sliding component move synchronously to ensure the safety of the water outlet component.
It enables safe and reliable use of the handheld shower head, provides dual rinsing functions, enhances the showering experience, enriches the water flow effects, and improves the user's bathing comfort.
Smart Images

Figure CN116446497B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a water outlet device, in particular to a water outlet slide and a shower set. BACKGROUND
[0002] In the related art, the shower set includes a top spray shower and a handheld shower. The handheld shower is usually inserted into the slide. The slide is sleeved on the water passing pipe of the top spray shower. The slide can move along the axial direction of the water passing pipe, thereby adjusting the placement height of the handheld shower. When the user is taking a shower, the top spray shower is usually used to realize the showering of the head. However, the setting height of the top spray shower is fixed, and the water outlet height cannot be adjusted according to the user's needs. The user can also insert the handheld shower into the slide and move it above the head to shower the head. However, the head of the handheld shower used for water outlet has a large weight, the tail used for handheld or insertion has a small weight, the center of the handheld shower is in front, and when the water pressure is unstable, the high-pressure water flow suddenly rushes into the handheld shower, which can easily cause the handheld shower to fall off the slide and cause potential risks of hitting the user's head. SUMMARY
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a water outlet slide which can have the functions of placing a handheld shower and water outlet, and has good safety of the water outlet assembly.
[0004] The present application also provides a shower set having the above water outlet slide.
[0005] According to the water outlet slide of the first aspect of the present application, the water outlet slide comprises:
[0006] The sliding assembly comprises a main body, a locking piece and a clamping piece. The main body defines a sliding guide hole penetrating in a first direction and a first mounting hole extending in a second direction and communicating with the sliding guide hole. The sliding guide hole can accommodate the rod to allow the main body to be sleeved on the rod and to be movable relative to the rod. The locking piece is arranged in the first mounting hole and can extend into the sliding guide hole to connect with the rod to limit the relative displacement of the rod and the main body. The clamping piece defines a slot for inserting the handheld shower.
[0007] The water outlet assembly is connected with the sliding assembly and is movable with the sliding assembly relative to the rod. The water outlet assembly defines a water passing cavity and a water outlet opening communicating with the water passing cavity.
[0008] The main body further defines a water inlet opening and a water inlet cavity which respectively communicate with the water inlet opening and the water passing cavity.
[0009] According to the water outlet sliding seat provided by the embodiment of the present application, the water outlet sliding seat has the functions of placing the handheld shower and water outlet. When the user wants to wash the head, the water outlet assembly of the water outlet sliding seat can be used to water. Since the water outlet assembly and the sliding assembly are connected in a non-detachable manner during use, the water outlet assembly will not fall off, and the safety is good. In addition, the handheld shower can be placed on the water outlet sliding seat, and the handheld shower is convenient to store. Furthermore, when the user uses the handheld shower to take a shower, the water outlet assembly can water at the same time, so that the handheld shower and the water outlet assembly can be used to take a shower at the same time, for example, the handheld shower is used to take a shower on the front side of the body, and the water outlet assembly is used to take a shower on the back side of the body, so that a new shower experience is brought to the user.
[0010] According to some embodiments of the present application, the main body includes a sliding guide part defining the sliding guide hole, a first mounting part for connecting with the locking part, a second mounting part for connecting with the clamping part, a third mounting part provided with the water inlet, and a fourth mounting part for connecting with the water outlet assembly, and the first mounting part, the second mounting part, the third mounting part and the fourth mounting part are respectively arranged on different sides of the sliding guide part.
[0011] According to some embodiments of the present application, the third mounting part and the fourth mounting part are arranged on opposite sides of the sliding guide part, the sliding guide part is arranged in the water inlet cavity, and both ends of the sliding guide part extend to the inner wall of the water inlet cavity in the first direction. The sliding guide part separates the water inlet cavity into a first channel and a second channel. The first channel is located in the third mounting part and communicates with the water inlet. The second channel is located in the fourth mounting part and communicates with the water passage cavity.
[0012] The first mounting part defines a first annular cavity, and the first annular cavity respectively communicates with the first channel and the second channel.
[0013] The second mounting part defines a second annular cavity, and the second annular cavity respectively communicates with the first channel and the second channel.
[0014] According to some embodiments of the present application, the sliding assembly further includes a valve cover, the valve cover is detachably connected with the third mounting part, the third mounting part is provided with a third mounting hole penetrating the sliding guide hole, the fourth mounting part is provided with a fourth mounting hole penetrating the sliding guide hole, and the third mounting hole, the sliding guide hole and the fourth mounting hole are sequentially communicated.
[0015] According to some embodiments of the present application, the sliding assembly further comprises a rotation stopper connected with the main body, the rotation stopper comprising a first elastic stopper part, the clamping member being rotationally connected with the main body, the clamping member comprising a stop gear, the first elastic stopper part being inserted into a tooth groove of the stop gear to limit relative rotation of the clamping member and the main body, the first elastic stopper part being elastically deformed and inserted into another tooth groove in response to rotation of the clamping member.
[0016] According to some embodiments of the present application, the rotation stopper comprises a ring-shaped main body, the stop gear being arranged in the ring-shaped main body, the first elastic stopper part further comprising two elastic arms and a stop protrusion, one end of each of the elastic arms being connected with the ring-shaped main body and the other end of each of the elastic arms extending radially to form a free end, the stop protrusion being connected with the free end of each of the elastic arms.
[0017] According to some embodiments of the present application, the locking member comprises a friction stopper and a knob, the knob being threadedly connected with the friction stopper, the friction stopper being movable in the second direction in response to rotation of the knob, the friction stopper having a friction sheet, the friction sheet being movable to abut against the rod.
[0018] According to some embodiments of the present application, the water outlet assembly comprises a connecting member inserted into the main body and rotationally connected with the main body, the connecting member defining a connecting passage for connecting the water inlet cavity and the water passing cavity, the connecting member further comprising a partition plate, the partition plate sequentially dividing the connecting passage into a third passage and a fourth passage along a flow direction of the water flow, the water outlet assembly further comprising an impeller arranged in the fourth passage, the partition plate comprising a flow guide groove extending circumferentially and penetrating through the partition plate to enable the water flow to drive the impeller to rotate.
[0019] According to some embodiments of the present application, the connecting member comprises a second elastic stopper part, the third passage comprising a receiving cavity for receiving the second elastic stopper part, the receiving cavity defining a stop opening on an outer circumferential surface of the connecting member, an inner wall of the main body circumferentially comprising a limiting groove, the second elastic stopper part comprising an elastic member and a limiting block, the elastic member being capable of driving the limiting block to move radially to protrude out of the stop opening and to be inserted into the limiting groove to limit relative rotation of the water outlet assembly and the sliding assembly, the elastic member being elastically deformed to enable the limiting block to move into another limiting groove in response to rotation of the water outlet assembly.
[0020] According to some embodiments of the present application, the water outlet assembly comprises an impeller, a transmission member, a crankshaft and a plurality of spray heads, the impeller is capable of driving the transmission member to rotate, the transmission member is capable of driving the crankshaft to rotate, the crankshaft is in slidable connection with the plurality of spray heads respectively, the spray heads swing reciprocatingly in response to the rotation of the crankshaft, and the water outlet directions of adjacent spray heads are staggered.
[0021] According to some embodiments of the present application, the crankshaft comprises a main journal and a connecting rod journal, the main journal and the connecting rod journal are arranged alternately, the rotation axis of the crankshaft is coaxially arranged with the rotation axis of the main journal, the connecting rod journal is arranged in parallel with the main journal and is capable of rotating around the rotation axis of the main journal, and each of the spray heads is movably connected with the connecting rod journal, the rotation of the connecting rod journal is capable of driving the spray heads to swing.
[0022] According to the shower set of the second aspect of the present application, comprising:
[0023] a rod member extending in a vertical direction;
[0024] a water outlet slide set on the rod member and capable of moving in the vertical direction relative to the rod member;
[0025] a handheld shower capable of being inserted into the clamping member;
[0026] wherein the water outlet slide and the handheld shower are capable of water outlet alternatively or simultaneously.
[0027] According to the shower set of the present application, at least the following beneficial effects are achieved: in the shower set of the present application, the water flow of the handheld shower and the water outlet slide can be set to different effects, for example, the water outlet slide is set to wave water flow and the handheld shower is set to pulse water flow, thereby the water outlet effect of the shower set can be enriched and the user can choose at will. In addition, when the user uses the handheld shower for showering, the water outlet slide can also be moved to the position of the user's waist or neck to realize massage, thereby cleaning the body while realizing massage and relaxation. In general, the water outlet slide of the shower set has multiple functions, and multiple bathing experiences can be obtained by matching the handheld shower, and the user's experience is better.
[0028] Additional aspects and advantages of the present application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0029] The present application will be further described below in conjunction with the drawings and embodiments, wherein:
[0030] Figure 1 Structure diagram of the water outlet slide of the embodiment of the present application;
[0031] Figure 2 Explosive diagram of the water outlet slide of the embodiment of the present application;
[0032] Figure 3 Explosive diagram of the sliding assembly of the embodiment of the present application;
[0033] Figure 4 Horizontal section diagram of the water outlet slide of the embodiment of the present application;
[0034] Figure 5 Vertical section diagram of the water outlet slide of the embodiment of the present application;
[0035] Figure 6 Explosive diagram of the clamping member and the rotation stop member of the embodiment of the present application;
[0036] Figure 7 Explosive diagram of the connecting member of the embodiment of the present application;
[0037] Figure 8 Explosive diagram of the water outlet assembly of the embodiment of the present application;
[0038] Figure 9 Transmission relationship diagram of the impeller, the transmission member, the crankshaft and the spray head of the embodiment of the present application.
[0039] Reference signs:
[0040] Sliding assembly 100;
[0041] Main body member 110, first mounting portion 111, first mounting hole 1111, first annular cavity 1112, second mounting portion 112, third mounting portion 113, third mounting hole 1131, third opening 1132, fourth mounting portion 114, fourth mounting hole 1141, limiting groove 1142, sliding guide portion 115, sliding guide hole 1151, water inlet cavity 116, first channel 1161, second channel 1162, water inlet 117;
[0042] Locking member 120, knob 121, friction stop portion 122, friction plate 1221;
[0043] Clamping member 130, insertion slot 131, stop gear 132;
[0044] Valve cover 140;
[0045] Rotation stop member 150, annular main body 151, first elastic stop portion 152, elastic arm 1521, stop protrusion 1522;
[0046] Water outlet assembly 200, water passing cavity 210, water outlet 220;
[0047] Connecting piece 230, partition plate 231, flow guide groove 2311, connecting channel 232, accommodating cavity 233, stop opening 2331, second elastic stop portion 234, elastic piece 2341, limiting block 2342, threaded connecting piece 235;
[0048] Impeller 240, first transmission gear 241; transmission piece 250, second transmission gear 251, worm structure 252; crankshaft 260, worm wheel 261, main journal 262, connecting rod journal 263; nozzle 270;
[0049] Rod piece 300. DETAILED DESCRIPTION
[0050] The embodiments of the present application will be described in detail below with reference to the drawings, in which the same or similar components have the same reference numerals throughout the several views. The embodiments described below are exemplary only, and are not intended to be limiting of the present application.
[0051] In the description of the present application, it should be understood that the orientation description, such as the orientation or position relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0052] In the description of the present application, if the meaning of several is more than one, the meaning of multiple is more than two, greater than, less than, more than, etc. are understood as not including the number, above, below, etc. are understood as including the number. If it is described as first, second, it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the order of indicated technical features.
[0053] In the description of the present application, unless otherwise explicitly limited, the words such as setting, installing, connecting, etc. should be broadly understood, and the person skilled in the art can reasonably determine the specific meaning of the above words in the present application in combination with the specific content of the technical solution.
[0054] In the description of this invention, the terms "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0055] An embodiment of the first aspect of this application provides a water outlet slide, such as... Figures 1 to 3 As shown, this type of water outlet slide is fitted onto the rod 300. The rod 300 is generally the water inlet pipe of the overhead shower in a shower set, or it can be a separately installed rod extending vertically, used to install the water outlet slide. The rod 300 can be circular or square in shape. The water outlet slide includes a sliding assembly 100 and a water outlet assembly 200. The sliding assembly 100 includes a main body 110, a locking member 120, and a clamping member 130. The main body 110 defines a guide hole 1151 and a first mounting hole 1111. The guide hole 1151 extends along a first direction, such as... Figure 1 As shown, the first direction is generally vertical. The guide hole 1151 can accommodate the rod 300 through which it passes, allowing the main body 110 to be fitted onto the rod 300 and move relative to it. Since both the locking member 120 and the clamping member 130 are connected to the main body 110, the sliding assembly 100 can also move relative to the rod 300. The shape of the guide hole 1151 corresponds to the shape of the rod 300; it can be a circular or square through hole.
[0056] like Figure 3 As shown, the first mounting hole 1111 extends along the second direction and penetrates into the guide hole 1151, thus communicating with the guide hole 1151. The first mounting hole 1111 can accommodate the passage of the locking member 120, allowing the locking member 120 to extend into the guide hole 1151 and connect with the rod 300 to limit the relative displacement between the rod 300 and the main body 110. Specifically, the locking member 120 passes through the first mounting hole 1111 and can move relative to the main body 110 along the second direction. In some embodiments (not shown in the figure), the rod 300 has a plurality of insertion slots along its length direction (i.e., the first direction), allowing the locking member 120 to extend into the guide hole 1151 and engage with the rod 300, thereby limiting the relative displacement between the rod 300 and the main body 110. In other embodiments, such as... Figure 3As shown, the locking member 120 can also extend into the guide hole 1151 and abut against the rod member 300, and the relative displacement between the rod member 300 and the main body member 110 is limited by the friction between the locking member 120 and the rod member 300.
[0057] The clamping member 130 defines a slot 131, as Figures 1 to 3 As shown, the tail of the handheld shower used for handheld can be inserted into the slot 131 to achieve the placement of the handheld shower. When the user needs to use the handheld shower to freely adjust the water outlet angle and position, the handheld shower is taken off from the clamping member 130, and when the user finishes bathing or does not need to use the handheld shower to shower, the handheld shower is placed on the clamping member 130 for storage.
[0058] As shown in Figure 3 and Figure 4 As shown, the water outlet assembly 200 is connected with the sliding assembly 100 and can move relative to the rod member 300 with the sliding assembly 100. It should be noted that the main body member 110 defines a water inlet 117 and a water inlet cavity 116, the water inlet 117 can be connected with an external water pipe, the water outlet assembly 200 defines a water passing cavity 210 and a water outlet 220, the water inlet 117, the water inlet cavity 116, the water passing cavity 210 and the water outlet 220 are sequentially communicated to enable the water outlet 220 to outlet water. It should be explained that, as shown in Figure 1 As shown, the water outlet assembly 200 and the sliding assembly 100 of the present application have a certain distance in the horizontal plane, that is, the water outlet assembly 200 and the sliding assembly 100 cannot be separated during use by the user, thereby ensuring that the connection between the water outlet assembly 200 and the sliding assembly 100 has high reliability and there is no risk of the water outlet assembly 200 falling from the sliding assembly 100. Correspondingly, the handheld shower, the water outlet angle and position of the handheld shower can be adjusted in real time according to the user's needs, thereby having high water outlet freedom, but it is easy to fall when placed on the clamping member 130, and the safety is poor.
[0059] Therefore, the water outlet sliding seat of the present application has the functions of placing the handheld shower and water outlet, when the user wants to wash the head, the water outlet assembly 200 of the water outlet sliding seat can be used for water outlet, since the water outlet assembly 200 and the sliding assembly 100 are not separable during use, there is no risk of the water outlet assembly 200 falling, and the safety is good. In addition, the handheld shower can also be placed on the water outlet sliding seat, which is convenient for storage of the handheld shower. Further, when the user uses the handheld shower to shower, the water outlet assembly 200 can also outlet water, thereby realizing double showering of the handheld shower and the water outlet assembly 200, for example, the handheld shower is used for showering the front side of the body, and the water outlet assembly 200 is used for showering the back side of the body, thereby bringing a new showering experience to the user.
[0060] The sliding assembly 100 and the water outlet assembly 200 can be fixedly connected, and the shell part of the water outlet assembly 200 can be integrally formed with the main body 110 of the sliding assembly 100. The sliding assembly 100 and the water outlet assembly 200 can also be rotatably connected as shown in Figure 2 and Figure 4 The setting angle of the water outlet assembly 200 relative to the sliding assembly 100 can be adjusted. The water outlet assembly 200 is in a long tube shape, and the water outlets 220 are arranged along the length direction of the water outlet assembly 200. The water outlet assembly 200 can be rotated to be arranged in a vertical direction, and thus a layer of water curtain extending along the vertical direction is sprayed. The water outlet assembly 200 can also be rotated to be arranged in a horizontal direction, and thus a water curtain extending along the horizontal direction is sprayed.
[0061] In some embodiments, the main body 110 includes a guide sliding part 115, a first mounting part 111, a second mounting part 112, a third mounting part 113, and a fourth mounting part 114, as shown in Figure 3 The guide sliding part 115 defines a guide sliding hole 1151 and is arranged to extend in a vertical plane. The first mounting part 111, the second mounting part 112, the third mounting part 113, and the fourth mounting part 114 are arranged to extend in a horizontal plane. The first mounting part 111 is used to be connected with the locking part 120 and defines a first mounting hole 1111 for the locking part 120 to pass through. The second mounting part 112 is used to be connected with the clamping part 130. The third mounting part 113 is provided with a water inlet 117. The fourth mounting part 114 is used to be connected with the water outlet assembly 200. The first mounting part 111, the second mounting part 112, the third mounting part 113, and the fourth mounting part 114 are respectively located at different sides of the guide sliding part 115 and respectively serve different functions.
[0062] For example, in the embodiment shown in Figure 3 , the first mounting part 111 extends along the right side shown in the figure, the second mounting part 112 extends along the left side shown in the figure, the third mounting part 113 extends along the back side shown in the figure, and the fourth mounting part 114 extends along the front side shown in the figure. The first mounting part 111 and the second mounting part 112 are oppositely arranged at two sides of the guide sliding part 115, the third mounting part 113 and the fourth mounting part 114 are oppositely arranged at two sides of the guide sliding part 115, and two adjacent mounting parts in the circumferential direction are perpendicular to each other. In addition, the water outlet assembly 200 is arranged at the front side of the entire sliding assembly 100 to facilitate water outlet. The locking part 120 and the clamping part 130 are respectively arranged at two sides of the sliding assembly 100 to respectively realize the functions of locking and placing the handheld shower. The water inlet pipe is connected with the sliding assembly 100 from the back and is shielded by the rod 300, so it is not easy to be found by the user, and it is more beautiful. This kind of layout is simple and clear, and each side has a single and clear function.
[0063] Further, as shown in Figure 4 and Figure 5As shown, the guide sliding part 115 is arranged in the water inlet cavity 116 of the main body 110, and the guide sliding part 115 is arranged along the first direction. Both ends of the guide sliding part 115 extend along the first direction and are connected with the inner wall of the water inlet cavity 116. One end of the first mounting part 111, the second mounting part 112 and the third mounting part 113 is connected with the guide sliding part 115, and the other end extends towards different directions. In order to reduce the volume of the main body 110 as much as possible, when the guide sliding part 115 is arranged in the water inlet cavity 116, the water inlet cavity 116 is divided into a first channel 1161 and a second channel 1162. The first channel 1161 is located in the third mounting part 113 and communicates with the water inlet 117. The second channel 1162 is located in the fourth mounting part 114 and communicates with the water passing cavity 210. The first channel 1161 and the second channel 1162 are blocked by the guide sliding part 115 and cannot directly communicate. Therefore, as shown in Figure 4 and Figure 5 shown, the first mounting part 111 defines a first annular cavity 1112, and the first annular cavity 1112 respectively communicates with the first channel 1161 and the second channel 1162. Alternatively, the second mounting part 112 defines a second annular cavity, and the second annular cavity respectively communicates with the first channel 1161 and the second channel 1162. In addition, the first mounting part 111 can define a first annular inner cavity, and the second mounting part 112 can define a second annular inner cavity, and the first channel 1161 and the second channel 1162 are communicated through the first annular inner cavity and the second annular inner cavity.
[0064] It should be noted that, as shown in Figure 3 and Figure 4 shown, the first mounting part 111, the second mounting part 112 and the fourth mounting part 114 respectively form an opening on the main body 110. For the convenience of description, the opening formed by the first mounting part 111 is named as the first opening, the opening formed by the second mounting part 112 is named as the second opening, and the opening formed by the fourth mounting part 114 is named as the fourth opening. After the locking part 120 is connected with the first mounting part 111, the locking part 120 can close the first opening. After the clamping part 130 is connected with the second mounting part 112, the clamping part 130 can close the second opening. After the water outlet assembly 200 is connected with the sliding assembly 100, the water outlet assembly 200 is butted with the fourth opening to guide the water flow in the water inlet cavity 116 into the water passing cavity 210. In some embodiments, the third mounting part 113 is a closed shell without an opening to prevent water leakage. In other embodiments, in order to facilitate the connection between the water outlet assembly 200 and the sliding assembly 100, as shown in Figure 4 shown, the third mounting part 113 is also provided with a third opening 1132.
[0065] Specifically, as shown in Figure 3 and Figure 4The fourth mounting hole 1141 is defined in the fourth mounting portion 114, and the connecting piece 230 of the water outlet assembly 200 is arranged in the fourth mounting hole 1141. The water outlet slide further comprises a threaded connecting piece 235. In the embodiment shown, the threaded connecting piece 235 is screwed with the connecting piece 230, and the water outlet assembly 200 and the sliding assembly 100 are connected through the gasket. Figure 4 In the embodiment shown, the threaded connecting piece 235 is screwed with the connecting piece 230, and the water outlet assembly 200 and the sliding assembly 100 are connected through the gasket. In other embodiments, the outer diameter of the threaded connecting piece 235 can be greater than the inner diameter of the fourth mounting hole 1141, and the water outlet assembly 200 and the sliding assembly 100 can be directly connected through the threaded connecting piece 235. However, due to the limited space, it is difficult to transport the threaded connecting piece 235 to the position of the fourth mounting hole 1141 and to rotate the threaded connecting piece 235 for tightening.
[0066] Therefore, the third mounting portion 113 is provided with a third opening 1132, and the third mounting portion 113 is provided with a third mounting hole 1131 penetrating the guide sliding hole 1151. The sliding assembly 100 further comprises a valve cover 140, which can be detachably connected with the third mounting portion 113. The valve cover 140 can close the third opening 1132 to prevent water in the water inlet cavity 116 from leaking out of the third opening 1132. During the assembly of the water outlet slide, the rod 300 has not been arranged in the guide sliding hole 1151. Therefore, the third mounting hole 1131, the guide sliding hole 1151 and the fourth mounting hole 1141 are sequentially communicated. After the valve cover 140 is removed, the threaded connecting piece 235 can be inserted into the main body 110 through the third opening 1132, and sequentially pass through the third mounting hole 1131 and the guide sliding hole 1151 to be connected with the connecting piece 230 of the water outlet assembly 200 at the fourth mounting hole 1141. Similarly, the force applying tool for tightening the threaded connecting piece 235 can also be connected with the threaded connecting piece 235 through the third mounting hole 1131 and the guide sliding hole 1151, so as to connect the water outlet assembly 200 and the sliding assembly 100. When the water outlet assembly 200 needs to be separated from the sliding assembly 100, the valve cover 140 is removed first, and then the threaded connecting piece 235 is loosened by using the force applying tool, so that the water outlet assembly 200 and the sliding assembly 100 can be separated.
[0067] In some embodiments, the clamping piece 130 can rotate relative to the main body 110, so that the handheld shower placed on the clamping piece 130 can adjust the water outlet angle when water is outletted. Specifically, as shown in Figure 6As shown. The sliding assembly 100 also includes a rotation stop 150, which is connected to the main body 110. The rotation stop 150 includes a first elastic stop portion 152. The clamping member 130 is rotatably connected to the main body 110 and includes a stop gear 132. The first elastic stop portion 152 engages with the tooth groove of the stop gear 132 to restrict the relative rotation of the clamping member 130 and the main body 110. In response to the rotation of the clamping member 130, the first elastic stop portion 152 can elastically deform and disengage from the tooth groove of the stop gear 132. Thus, the rotation restriction between the clamping member 130 and the main body 110 is released. The clamping member 130 stops after rotating at any angle, and the first elastic stop portion 152 returns to its elastic deformation and engages with the other tooth groove. In other embodiments, the clamping member 130 may also be integrally formed with the main body 110, and the relative angular relationship between the clamping member 130 and the main body 110 is fixed.
[0068] Furthermore, the rotation stop 150 includes an annular body 151, and the stop gear 132 passes through the annular body 151, as shown in the figure. Figure 6 In the illustrated embodiment, to improve the reliability of the stopping effect, two first elastic stopping portions 152 are provided on the annular body 151, located on opposite sides of the stopping gear 132. Each first elastic stopping portion 152 further includes two elastic arms 1521 and a stopping protrusion 1522. One end of the elastic arm 1521 is connected to the annular body 151, and the other end extends radially to form a free end. The stopping protrusion 1522 is connected to the free ends of the two elastic arms 1521 respectively. Furthermore, an arch-shaped structure is formed between the stopping protrusion 1522 and the elastic arms 1521. The elastic arms 1521 have a certain elasticity. When the stopping protrusion 1522 is abutted by the groove wall of the tooth groove, the elastic arms 1521 on both sides are recessed inward to retract the stopping protrusion 1522. When the stopping protrusion 1522 is not under external pressure, the elastic arms 1521 are reset through elastic deformation.
[0069] In some embodiments, such as Figure 3 As shown, the locking member 120 includes a friction stop 122 and a knob 121. The knob 121 is threadedly connected to the friction stop 122. In response to the rotation of the knob 121, the friction stop 122 can move in a second direction. The friction stop 122 has a friction plate 1221, as shown... Figure 3 In the illustrated embodiment, since the rod 300 is cylindrical, the friction plate 1221 is arc-shaped, allowing it to tightly adhere to and abut against the outer circumferential surface of the rod 300. The friction plate 1221 has a high coefficient of friction, resulting in significant friction between the rod 300 and the friction plate 1221 to achieve positioning of the sliding assembly 100 on the rod 300. When the rod 300 is square, the friction plate 1221 can also be planar.
[0070] In some embodiments, as shown in Figure 4 and Figure 7 The water outlet assembly 200 includes a connecting piece 230 which is inserted into the main body piece 110 and rotationally connected with the main body piece 110. The connecting piece 230 defines a connecting passage 232 for connecting the water inlet cavity 116 and the water passing cavity 210. The connecting piece 230 is provided with a partition plate 231 which sequentially divides the connecting passage 232 into a third passage and a fourth passage along the flow direction of the water flow. The water outlet assembly 200 further includes an impeller 240 which is arranged in the fourth passage. The partition plate 231 is provided with a flow guide groove 2311 which extends in the circumferential direction and penetrates the partition plate 231 so that the water flow can drive the impeller 240 to rotate.
[0071] Further, the connecting piece 230 includes a second elastic stop portion 234. The third passage is provided with a receiving cavity 233 for accommodating the second elastic stop portion 234. It is to be noted that although the receiving cavity 233 is located in the third passage, it is not connected with the third passage. The receiving cavity 233 forms a stop opening 2331 on the outer circumferential surface of the connecting piece 230 for extending the limiting block 2342 to limit. The impeller 240 and the second elastic stop portion 234 are respectively located in the fourth passage and the third passage, which improves the space utilization of the connecting piece 230. The inner wall of the main body piece 110 is circumferentially provided with a limiting groove 1142 (refer to Figure 3 The second elastic stop portion 234 includes an elastic member 2341 and a limiting block 2342. The elastic member 2341 can drive the limiting block 2342 to move radially to extend out of the stop opening 2331 and be inserted into the limiting groove 1142 to limit the relative rotation of the water outlet assembly 200 and the sliding assembly 100. In response to the rotation of the water outlet assembly 200, the elastic member 2341 can be elastically deformed, and the limiting block 2342 is retracted into the receiving cavity 233 under pressure, so that the water outlet assembly 200 can rotate relative to the sliding assembly 100. When rotated to another angle, the elastic member 2341 restores the elastic deformation due to the fact that the limiting block 2342 is not under pressure, so that the limiting block 2342 is inserted into another limiting groove 1142.
[0072] In some embodiments, as shown in Figure 8 and Figure 9 The water outlet assembly 200 further includes a transmission piece 250, a crankshaft 260 and a plurality of spray heads 270. As shown in Figure 9 The rotating shaft of the impeller 240 is sleeved with a first transmission gear 241. One end of the transmission piece 250 is correspondingly provided with a second transmission gear 251. The first transmission gear 241 and the second transmission gear 251 are engaged to enable the impeller 240 to drive the transmission piece 250 to rotate. As shown in Figure 8 orFigure 9 As shown, the number of teeth of the first transmission gear 241 is less than the number of teeth of the second transmission gear 251, so the rotation speed of the transmission member 250 is less than the rotation speed of the impeller 240, achieving the first-stage speed reduction. The other end of the transmission member 250 is a worm structure 252, and the crankshaft 260 is provided with a worm wheel 261, which is matched with the worm structure 252 to enable the transmission member 250 to drive the crankshaft 260 to rotate, achieving the second-stage speed reduction, and further, the swinging speed of the spray head 270 can be relatively moderate. The crankshaft 260 is slidably connected with the plurality of spray heads 270, respectively, and in response to the rotation of the crankshaft 260, the spray heads 270 can swing back and forth, and the water outlet directions of adjacent spray heads 270 are staggered in sequence, thereby forming a wave-shaped water outlet effect. The wave-shaped water splash has a better massage effect and is more beautiful.
[0073] Further, as shown in Figure 9 The crankshaft 260 includes a main shaft neck 262 and a connecting rod shaft neck 263, which are arranged alternately, and the rotation axis of the crankshaft 260 is coaxially arranged with the rotation axis of the main shaft neck 262, and the worm wheel 261 is arranged on the main shaft neck 262 of the crankshaft 260. The connecting rod shaft neck 263 is arranged in parallel with the main shaft neck 262 and can rotate around the rotation axis of the main shaft neck 262, and each spray head 270 is movably connected with the connecting rod shaft neck 263, and the rotation of the connecting rod shaft neck 263 can drive the spray head 270 to swing.
[0074] The second aspect of the present application proposes a shower set, which includes a rod member 300, the water outlet slide mentioned in any of the above embodiments, and a handheld shower. The rod member 300 extends in the vertical direction and is fixed to a wall, and the water outlet slide is sleeved on the rod member 300 and can move in the vertical direction relative to the rod member 300. The handheld shower can be inserted into the clamping member 130 and can be removed from the clamping member 130. The water outlet slide and the handheld shower can select one to outlet water, or the water outlet slide and the handheld shower can outlet water at the same time. In the shower set of the present application, the water splashes of the handheld shower and the water outlet slide can be set to different effects, for example, the water outlet slide is set to a wave-shaped water splash, and the handheld shower is set to a pulse water splash, thereby enriching the water outlet effect of the shower set and allowing the user to choose. In addition, when the user uses the handheld shower for showering, the water outlet slide can also be moved to the user's waist or neck position to realize massage, thereby realizing massage and relaxation while cleaning the body. In general, the water outlet slide of the shower set has multiple functions, and the combination of the handheld shower can obtain multiple bathing experiences, and the user's experience is better.
[0075] The embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present application. Furthermore, the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
Claims
1. A water outlet slide, which is arranged on a rod, characterized in that, The utility model relates to a shower head, comprising: a sliding assembly including a main body, a locking member and a clamping member, the main body defines a sliding guide hole extending through in a first direction and a first mounting hole extending in a second direction and communicating with the sliding guide hole, the sliding guide hole is capable of accommodating the rod member to pass through so that the main body is sleeved on the rod member and is capable of moving relative to the rod member, the locking member is threaded in the first mounting hole and is capable of extending into the sliding guide hole to connect with the rod member to limit the relative displacement of the rod member and the main body, the clamping member defines a slot for plugging with a handheld shower; a water outlet assembly connected with the sliding assembly and capable of moving relative to the rod member, the water outlet assembly defines a water passing cavity and a water outlet communicating with the water passing cavity; wherein the main body further defines a water inlet and a water inlet cavity, the water inlet cavity respectively communicates with the water inlet and the water passing cavity; the water outlet assembly includes a connecting member inserted into the main body and rotationally connected with the main body, the connecting member defines a connecting channel for communicating the water inlet cavity and the water passing cavity; the locking member includes a friction stop and a knob, the knob is threadedly connected with the friction stop, the friction stop is capable of moving in the second direction in response to the rotation of the knob, the friction stop has a friction sheet capable of moving to abut against the rod member.
2. The water outlet slide as claimed in claim 1, wherein the main body includes a sliding guide portion defining the sliding guide hole, a first mounting portion for connecting with the locking member, a second mounting portion for connecting with the clamping member, a third mounting portion provided with the water inlet and a fourth mounting portion for connecting with the water outlet assembly, the first mounting portion, the second mounting portion, the third mounting portion and the fourth mounting portion are respectively arranged at different sides of the sliding guide portion.
3. The water outlet slide as claimed in claim 2, wherein the third mounting portion and the fourth mounting portion are oppositely arranged at two sides of the sliding guide portion, the sliding guide portion is arranged in the water inlet cavity, two ends of the sliding guide portion extend to connect with the inner wall of the water inlet cavity in the first direction, the sliding guide portion divides the water inlet cavity into a first channel and a second channel, the first channel is located in the third mounting portion and communicates with the water inlet, the second channel is located in the fourth mounting portion and communicates with the water passing cavity; wherein the first mounting portion defines a first annular cavity, the first annular cavity respectively communicates with the first channel and the second channel; and / or, the second mounting portion defines a second annular cavity, the second annular cavity respectively communicates with the first channel and the second channel.
4. The water outlet slide as claimed in claim 3, wherein the sliding assembly further includes a valve cover, the valve cover is detachably connected with the third mounting portion, the third mounting portion is provided with a third mounting hole penetrating to the sliding guide hole, the fourth mounting portion is provided with a fourth mounting hole penetrating to the sliding guide hole, the third mounting hole, the sliding guide hole and the fourth mounting hole are sequentially communicated.
5. The water outlet slide as claimed in claim 1, wherein The sliding assembly further comprises a rotation stopper connected with the main body, the clamping member is rotationally connected with the main body, the clamping member comprises a stop gear, the first elastic stopper is inserted into a tooth groove of the stop gear to limit the relative rotation of the clamping member and the main body, and the first elastic stopper can be elastically deformed and inserted into another tooth groove in response to the rotation of the clamping member.
6. The water outlet slide as claimed in claim 5, wherein The rotation stopper comprises a ring-shaped main body, the stop gear is arranged in the ring-shaped main body, the first elastic stopper further comprises two elastic arms and a stop protrusion, one end of each elastic arm is connected to the ring-shaped main body, and the other end of each elastic arm extends radially to form a free end, and the stop protrusion is connected to the free end of each elastic arm.
7. The water outlet slide as claimed in claim 1, wherein The connecting member is further provided with a partition plate, and the connecting channel is sequentially divided into a third channel and a fourth channel along the flow direction of the water flow. The water outlet assembly further comprises an impeller arranged in the fourth channel. The partition plate is provided with a flow guide groove extending circumferentially and penetrating through the partition plate, so that the water flow can drive the impeller to rotate.
8. The water outlet slide as claimed in claim 7, wherein The connecting member comprises a second elastic stopper, and the third channel is provided with a receiving cavity for accommodating the second elastic stopper. The receiving cavity forms a stop opening on the outer circumferential surface of the connecting member. A limiting groove is circumferentially arranged on the inner wall of the main body. The second elastic stopper comprises an elastic member and a limiting block. The elastic member can drive the limiting block to move radially to protrude out of the stop opening and be inserted into the limiting groove to limit the relative rotation of the water outlet assembly and the sliding assembly. In response to the rotation of the water outlet assembly, the elastic member can be elastically deformed to move the limiting block into another limiting groove.
9. The water outlet slide as claimed in claim 1, wherein, The water outlet assembly comprises an impeller, a transmission member, a crankshaft, and a plurality of spray heads. The impeller can drive the transmission member to rotate. The transmission member can drive the crankshaft to rotate. The crankshaft is slidably connected with the plurality of spray heads. In response to the rotation of the crankshaft, the spray heads swing back and forth, and the water outlet directions of adjacent spray heads are sequentially staggered.
10. The water outlet slide as claimed in claim 9, wherein, The crankshaft comprises a main journal and a connecting rod journal. The main journal and the connecting rod journal are arranged alternately. The rotation axis of the crankshaft is coaxially arranged with the rotation axis of the main journal. The connecting rod journal is arranged in parallel with the main journal and can rotate around the rotation axis of the main journal. Each spray head is movably connected with the connecting rod journal. The rotation of the connecting rod journal can drive the spray head to swing.
11. A shower set, characterized by It comprises: a rod member extending in a vertical direction; a water outlet sliding seat according to any one of claims 1 to 10, which is sleeved on the rod member and can move in the vertical direction relative to the rod member; a handheld shower head which can be inserted into the clamping member; wherein the water outlet sliding seat and the handheld shower head can select one to outlet water, or the water outlet sliding seat and the handheld shower head can outlet water at the same time.
Citation Information
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