Shower combination

CN224792217UActive Publication Date: 2026-09-25XIAMEN RUNNER IND CORP
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Patent Information

Application Number
CN202522350296.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-09-25
Estimated Expiration
2035-11-05

AI Technical Summary

Technical Problem

[0004]然而,上述花洒中的固定式莲蓬头的淋浴位置和淋浴面积相对固定,难以满足不同用户对于淋浴覆盖范围和身体不同部位进行针对性冲洗的个性化需求,导致用户的使用体验较差

Benefits of technology

提供了一种包括进水座、第一出水体和至少一个第二出水体的花洒组合,第一出水体与进水座可拆卸连接,第二出水体与进水座转动连接,且能够绕与进水座的配合面垂直的第一轴线转动。通过将第二出水体的转动轴线设置为与进水座的配合面相垂直,使得第二出水体在转动过程中整体位置呈平行移动,从而在不改变整体出水面积的前提下,仅通过调节各出水体的空间布局,即可灵活实现顶喷、肩喷、合拢喷等多种淋浴模式。淋浴覆盖区域可在多个独立小区域与一个合并大区域之间无缝切换,从而提升出水形态的多样性与适应性,可以提升用户的使用体验。并且,花洒组合在使用过程中用户操作简单直观,仅需转动第二出水体即可完成出水模式切换,能够进一步提升用户体验。

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Abstract

The utility model discloses a shower combination belongs to bathroom device technical field. The shower combination includes: water inlet seat, first water outlet body and at least one second water outlet body, and first water outlet body and water inlet seat are detachably connected, and second water outlet body and water inlet seat are rotatably connected, and can rotate around the first axis of cooperation surface vertical with water inlet seat. Through setting the rotation axis of second water outlet body as vertical with the cooperation surface of water inlet seat, make the overall position of second water outlet body parallel movement in the rotating process, thereby under the prerequisite of not changing overall water outlet area, only through adjusting the space layout of each water outlet body, can flexible realization top spray, shoulder spray, folding spray multiple shower mode. The shower coverage area can be seamlessly switched between multiple independent small areas and a merged large area, thereby improving the diversity and adaptability of water outlet form, can improve the use experience of user.
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Description

Technical Field

[0001] This utility model relates to the field of bathroom fixtures technology, and in particular to a shower head assembly. Background Technology

[0002] A shower head is a water-distributing device that disperses water flow through a spray nozzle. It is a common shower equipment in bathrooms. A shower head allows water to be evenly distributed across the body, providing users with a comfortable and even showering experience. The user experience of shower heads is increasingly valued by users.

[0003] Currently, shower heads are usually combination shower heads (also known as couple shower heads). Because combination shower heads can provide a variety of shower experiences, they are widely used in modern family bathrooms. Combination shower heads usually include a fixed shower head (overhead spray) and a handheld shower head, which are connected by a water inlet.

[0004] However, the fixed shower heads mentioned above have relatively fixed shower positions and shower areas, making it difficult to meet the personalized needs of different users for targeted rinsing of different parts of the body and the coverage of the shower, resulting in a poor user experience. Utility Model Content

[0005] This utility model embodiment provides a shower head assembly. The technical solution is as follows: The shower assembly includes: Water inlet seat, the water inlet seat having a mating surface; The first water outlet is detachably connected to the water inlet seat; At least one second water outlet is rotatably connected to the water inlet seat. The second water outlet is rotatable about a first axis, which is perpendicular to the mating surface, to adjust the shape of the water outlet surface of the shower assembly.

[0006] Optionally, the water inlet seat includes a water inlet seat body and at least one first rotating shaft structure, the first rotating shaft structure being rotatably connected to at least one of the second water outlet body and the water inlet seat body, and the axis of the first rotating shaft structure being the first axis.

[0007] Optionally, the first rotating shaft structure includes a first rotating connector and a first damping structure; One end of the first rotating connector is fixedly connected to the water inlet seat body, and the other end of the first rotating connector is rotatably connected to the second water outlet body. The first damping structure is located between the first rotating connector and the second water outlet body. Alternatively, one end of the first rotating connector is fixedly connected to the second water outlet body, and the other end of the first rotating connector is rotatably connected to the water inlet seat body, with the first damping structure located between the first rotating connector and the water inlet seat body.

[0008] Optionally, the second water outlet includes a connecting part, a second rotating shaft structure, and a water outlet part; The connecting part is rotatably connected to the first rotating shaft structure, the second rotating shaft structure is fixedly connected to the connecting part, and the water outlet part is rotatably connected to the second rotating shaft structure; The axis of the second rotating shaft structure is perpendicular to the axis of the first rotating shaft structure.

[0009] Optionally, the first rotating shaft structure includes a first ball head structure, which is fixedly connected to the water inlet seat body and movably connected to the second water outlet body.

[0010] Optionally, the first rotating shaft structure includes a second rotating connector and a first water distribution mechanism; The first end of the second rotating connector is fixedly connected to the water inlet seat body; The second end of the second rotating connector is rotatably connected to the second water outlet body; The second water outlet body has a first water channel and a second water channel that are isolated from each other. The water outlet surface of the second water outlet body is provided with a first water outlet that communicates with the first water channel and a second water outlet that communicates with the second water channel. The first water distribution mechanism is fixedly connected to the second end of the second rotating connector. The first water distribution mechanism is configured to switch the on / off state of the first water path and the second water path when the second water outlet rotates around the first axis.

[0011] Optionally, the second water outlet has a first sealing gasket and a second sealing gasket, and the first water distribution mechanism includes a water-blocking component; The first sealing gasket and the second sealing gasket are respectively installed at the inlet of the first water passage and the inlet of the second water passage; The water-blocking component is fixedly installed on the side of the second rotating connector. The water-blocking component is configured to form a sealing fit with the first sealing gasket or the second sealing gasket when the second water outlet body rotates to different angles, so as to block the first water passage or the second water passage.

[0012] Optionally, the second rotating shaft structure is a concentric tube structure, including an inner flow channel and an outer flow channel that are isolated from each other; The water outlet section has a third water channel and a fourth water channel that are isolated from each other. The water outlet surface of the water outlet section is provided with a first water outlet that communicates with the third water channel and a second water outlet that communicates with the fourth water channel. The inner flow channel communicates with the third water channel, and the outer flow channel communicates with the fourth water channel. The first rotating shaft structure has a first water-dividing mechanism. When the second water outlet rotates around the first axis, the first water-dividing mechanism switches the on / off state of the inner flow channel and the outer flow channel.

[0013] Optionally, the shower assembly further includes a water distribution component, which is installed inside the water inlet seat; The water inlet seat has a first water outlet channel connected to the first water outlet body and a second water outlet channel connected to the second water outlet body; The water distribution component is used to switch the on / off state of the first water outlet path and the second water outlet path, so as to realize the individual or mixed water outlet of the first water outlet body and the second water outlet body.

[0014] Optionally, the first water outlet body and the water inlet seat are detachably connected by a magnetic attraction structure; There are two second water outlets, and the two second water outlets are arranged symmetrically.

[0015] The beneficial effects of the technical solution provided by this utility model embodiment include at least the following: A shower head assembly is provided, comprising an inlet base, a first outlet body, and at least one second outlet body. The first outlet body is detachably connected to the inlet base, and the second outlet body is rotatably connected to the inlet base and can rotate about a first axis perpendicular to the mating surface of the inlet base. By setting the rotation axis of the second outlet body perpendicular to the mating surface of the inlet base, the overall position of the second outlet body moves parallel during rotation. Therefore, without changing the overall water outlet area, multiple shower modes such as overhead spray, shoulder spray, and combined spray can be flexibly achieved simply by adjusting the spatial layout of each outlet body. The shower coverage area can seamlessly switch between multiple independent small areas and a combined large area, thereby improving the diversity and adaptability of water outlet patterns and enhancing the user experience. Furthermore, the shower head assembly is simple and intuitive to operate; users only need to rotate the second outlet body to switch water outlet modes, further enhancing the user experience. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of a shower head assembly provided in an embodiment of this utility model; Figure 2 yes Figure 1A schematic diagram of another form of the shower head assembly shown; Figure 3 yes Figure 1 A schematic diagram of another form of the shower head assembly shown; Figure 4 yes Figure 1 A schematic diagram of a partial cross-sectional structure of the shower assembly shown; Figure 5 yes Figure 1 The diagram shows the exploded structure of the shower assembly. Figure 6 yes Figure 4 The diagram shows a cross-sectional structure of the shower assembly along the A1-A2 position; Figure 7 This is a schematic diagram of another shower head assembly provided in an embodiment of this application; Figure 8 yes Figure 7 A schematic diagram of another form of the shower head assembly shown; Figure 9 yes Figure 7 A schematic diagram of a partial cross-sectional structure of the shower assembly shown; Figure 10 This is a schematic diagram of another shower head assembly provided in an embodiment of this application; Figure 11 yes Figure 10 A schematic diagram of a cross-sectional structure of the second water outlet in the shower assembly shown; Figure 12 yes Figure 10 The diagram shows another configuration of the shower assembly. Figure 13 yes Figure 12 A schematic diagram of a cross-sectional structure of the second water outlet in the shower assembly shown; Figure 14 This is a schematic diagram of the structure of a first sealing gasket and a water-blocking component provided in an embodiment of this application; Figure 15 This is a schematic diagram of another shower head assembly provided in an embodiment of this application; Figure 16 This is a schematic diagram of another shower head assembly provided in an embodiment of this application; Figure 17 yes Figure 15 The diagram shows the cross-sectional structure of the second water outlet in the shower assembly shown. Figure 18 This is a schematic diagram of the water flow path of a shower head assembly shown in an embodiment of this application; Figure 19 This is a schematic diagram of the water flow path of another shower head assembly provided in an embodiment of this application; Figure 20 This is a schematic diagram of another shower head assembly provided in an embodiment of this application.

[0018] Explanation of reference numerals in the attached figures: Water inlet seat 11, water inlet seat body 111, mating surface m1, side surface m4; first water outlet body 12, first water outlet surface m2, first axis s1; second water outlet body 13, second water outlet surface m3, connecting part 1311, second rotating shaft structure 1312, first axis, third rotating connector z1, second damping structure z2, C-clamp z3, water outlet part 1313, first rotating shaft structure 112, first rotating connector 1121, first damping structure 1122, connecting bolt 1123, gasket 1124, decorative cover 133; second rotating connector 1125, first water distribution mechanism 1126; first water channel b1, second water channel b2, first outlet k1, second outlet k2, first sealing gasket 134, second sealing gasket 135, inner flow channel b3, outer flow channel b4, third water channel b5, fourth water channel b6, water distribution component 14, first water outlet channel c1, second water outlet channel c2, water distribution switching handle 15, fixed base 17, second ball head structure 113, magnetic suction structure 16. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0020] Although the present invention can be readily embodied in various forms, only some specific embodiments are shown in the accompanying drawings and will be described in detail in this specification. It is understood that this specification should be regarded as an exemplary illustration of the principles of the present invention and is not intended to limit the present invention to what is described herein.

[0021] Therefore, a feature pointed out in this specification is used to describe one feature of one embodiment of the present invention, and does not imply that every embodiment of the present invention must have the described feature. Furthermore, it should be noted that this specification describes many features. Although certain features may be combined to illustrate possible system designs, these features may also be used in other combinations not explicitly stated. Therefore, unless otherwise stated, the described combinations are not intended to be limiting.

[0022] In the embodiments shown in the accompanying drawings, the directional indications (such as up, down, left, right, front, and back) used to explain the structure and movement of the various elements of this invention are relative rather than absolute. These descriptions are appropriate when these elements are in the positions shown in the drawings. If the descriptions of the positions of these elements change, these directional indications also change accordingly.

[0023] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , Figure 1 This is a schematic diagram of the structure of a shower head assembly provided in an embodiment of this utility model. Figure 2 yes Figure 1 The diagram shows another structural form of the shower head assembly. Figure 3 yes Figure 1 The diagram shows another structural form of the shower head assembly. Figure 4 yes Figure 1 The diagram shows a partial cross-sectional structure of the shower assembly. Figure 5 yes Figure 1 The diagram shows an exploded view of the shower assembly. The shower assembly may include: a water inlet seat 11, a first water outlet 12, and at least one second water outlet 13.

[0024] The water inlet seat 11 has a mounting surface m1. The water inlet seat 11 may also have a connected water inlet channel and multiple water outlet channels. The water inlet channel can be connected to a water source, and the multiple water outlet channels can be connected to a first water outlet body 12 and at least one second water outlet body 13, respectively. For example, the shower head assembly includes two second water outlet bodies 13, and the two second water outlet bodies 13 are symmetrically arranged. The two second water outlet bodies 13 can be connected to the water inlet channel through independent water outlet channels, or the water outlet channels corresponding to the two second water outlet bodies 13 can be merged into a single water outlet channel connected to the water inlet channel.

[0025] The first water outlet 12 can be detachably connected to the inlet seat 11. The first water outlet 12 can be a handheld shower head assembly. It can be magnetically or snap-fitted to the inlet seat 11, allowing it to have two usage states: a detached usage state and a fixed usage state. When using the first water outlet 12, the user can remove it from the inlet seat 11 for detached use, facilitating handheld operation; or, the user can fix it to the inlet seat 11 for fixed use. The shower head assembly may also include a connecting hose, through which the first water outlet 12 can connect to the inlet seat 11.

[0026] At least one second water outlet 13 is rotatably connected to the water inlet seat 11. The water inlet seat 11 may have a mating surface m1. The second water outlet 13 may have a strip-shaped water outlet surface. The second water outlet 13 is rotatable around a first axis s1, which is perpendicular to the mating surface m1, to adjust the shape of the water outlet surface of the shower head assembly. The second water outlet 13 may be entirely strip-shaped, and one end of the strip-shaped second water outlet 13 may be rotatably connected to the water inlet seat 11.

[0027] The mating surface m1 of the water inlet seat 11 can be the front of the water inlet seat 11, that is, the mating surface m1 is the side of the water inlet seat 11 facing the user. The back of the water inlet seat 11 can be connected to a fixed surface, which can be a wall. The first water outlet body 12 has a first water outlet surface m2, and the second water outlet body 13 has a second water outlet surface m3. The first water outlet surface m2 of the first water outlet body 12 and the second water outlet surface m3 of the second water outlet body 13 can both face the user. For example, the second water outlet surface m3 can be parallel to the mating surface m1, and the first water outlet surface m1 can be parallel to the mating surface m1.

[0028] In one exemplary embodiment, the water inlet seat 11 may also have a side m4 and a rear end. The second water outlet 12 may be installed at the mating surface m1 of the water inlet seat 11, or the second water outlet 12 may be installed at the side m4 of the water inlet seat 11, or the second water outlet 12 may be installed at the rear end of the water inlet seat 11. In all of the above installation positions, the second water outlet 12 can rotate around the first axis s1.

[0029] like Figure 1 , Figure 2 and Figure 3 As shown, the user can manually rotate the second water outlet 13 according to their showering needs. Since the second water outlet 13 rotates around a first axis s1 perpendicular to the mating surface m1, its trajectory is an arc parallel to the mating surface m1. During the use of the shower assembly, at least three modes are possible. The first mode, as shown... Figure 1 As shown, the combined top spray mode: when the two second water outlets 13 are joined together in the middle, they can be spliced ​​together to form a wider overall top spray, and together with the first water outlet 12 below, they can form a concentrated water outlet area distributed vertically, providing users with an immersive rain shower experience; the second mode, as... Figure 2 As shown, shoulder spray mode: When the second water outlet 13 rotates from the middle position to both sides and reaches a specific angle (such as 90 degrees), the two second water outlets 13 point towards the user's left and right shoulder areas respectively, forming a T-shaped water outlet combination with the first water outlet 12, which can provide concentrated rinsing of the shoulders while also covering the whole body; the third mode, as... Figure 3 As shown, in the closing mode: when the second water outlet 13 continues to rotate downwards and rotates to the position of contacting the first water outlet 12, the two second water outlets 13 are respectively located on both sides of the first water outlet 12, and the three water outlets close together can achieve a large-area, covering shower.

[0030] In this embodiment, since the rotation axis of the second water outlet 13 is perpendicular to the mating surface m1 of the water inlet seat 11, the movement of the second water outlet 13 during its rotation is a parallel movement of its overall position. During this process, the overall water outlet area of ​​the shower assembly can be adjusted without changing the overall water outlet area of ​​the shower assembly. This allows for the adjustment of the spatial layout of the multiple water outlets in the shower assembly, thereby enabling various shower modes such as overhead spray, shoulder spray, and combined spray. The shower area can be seamlessly switched from two independent small areas to a combined large area.

[0031] In summary, this application provides a shower head assembly including a water inlet seat 11, a first water outlet 12, and at least one second water outlet 13. The first water outlet 12 is detachably connected to the water inlet seat 11, and the second water outlet 13 is rotatably connected to the water inlet seat 11 and can rotate about a first axis s1 perpendicular to the mating surface m1 of the water inlet seat 11. By setting the rotation axis of the second water outlet 13 to be perpendicular to the mating surface m1 of the water inlet seat 11, the overall position of the second water outlet 13 moves parallel during rotation. Thus, without changing the overall water outlet area, multiple shower modes such as overhead spray, shoulder spray, and combined spray can be flexibly achieved simply by adjusting the spatial layout of each water outlet. The shower coverage area can seamlessly switch between multiple independent small areas and a combined large area, thereby improving the diversity and adaptability of water outlet patterns and enhancing the user experience. Furthermore, the shower head assembly is simple and intuitive to operate during use; users only need to rotate the second water outlet 13 to switch water outlet modes, further enhancing the user experience.

[0032] In one optional embodiment, the water inlet seat 11 may include a water inlet seat body 111 and at least one first rotating shaft structure 112. The at least one first rotating shaft structure 112 may be connected one-to-one with at least one second water outlet body 13. The first rotating shaft structure 112 is rotatably connected to at least one of the second water outlet body 13 and the water inlet seat body 111, and the axis of the first rotating shaft structure 112 is a first axis s1. The first rotating shaft structure 112 may be fixedly connected to the second water outlet body 13 and rotatably connected to the water inlet seat body 111; alternatively, the first rotating shaft structure 112 may be rotatably connected to the second water outlet body 13 and fixedly connected to the water inlet seat body 111. This fixed connection may include a bolt connection or a snap-fit ​​connection.

[0033] Please refer to Figure 5 and Figure 6 , Figure 6 yes Figure 4The diagram shows a cross-sectional structure of the shower assembly along position A1-A2. In an optional embodiment, the first rotating shaft structure 112 may include a first rotating connector 1121 and a first damping structure 1122. One end of the first rotating connector 1121 is fixedly connected to the inlet seat body 111; the other end of the first rotating connector 1121 is rotatably connected to the second water outlet body 13. The damping structure is located between the first rotating connector 1121 and the second water outlet body 13 to achieve an interference fit.

[0034] The first rotating shaft structure 112 may also include a connecting bolt 1123 and a washer 1124. The connecting bolt 1123 is bolted to the first rotating connector 1121 to press the second water outlet 13 against one end of the first rotating connector 1121. The washer 1124 is located between the head of the connecting bolt 1123 and the second water outlet 13. The second water outlet 13 may also include a decorative cover 133 to improve the aesthetics of the second water outlet 13.

[0035] The second water outlet 13 has a water passage and an inlet and an outlet connected to the water passage. The first rotating shaft structure 112 may have a water passage and a water hole connected to it. The water hole may be located on one side of the water passage or at one end of the water passage. The water passage may be connected to the water outlet passage on the inlet seat. The inlet of the second water outlet 13 may be connected to the water hole on the first rotating shaft structure 112. For example, when the water hole is located on one side of the water passage, the inlet on the second water outlet 13 may be an annular inlet or multiple inlets arranged around the first rotating shaft structure, so that the water passage in the second water outlet 13 at multiple positions can be connected to the water passage.

[0036] The damping structure can be a sealing ring, enabling stepless adjustment of the second water outlet 13 while achieving an interference fit. That is, within the entire rotation range, the second water outlet 13 can remain at any angle, thus allowing for stepless adjustment of the shower's coverage area and rinsing position. Compared to related technologies that use complex transmission structures such as gears and racks to achieve rotation, the rotation structure in this embodiment is simpler and more reliable, reducing the manufacturing and maintenance difficulty of the shower assembly and lowering the failure rate.

[0037] In one exemplary embodiment, one end of the first rotating connector is fixedly connected to the second water outlet body, the other end of the first rotating connector is rotatably connected to the water inlet seat body, and the first damping structure is located between the first rotating connector and the water inlet seat body.

[0038] Please refer to Figure 7 , Figure 8 and Figure 9 , Figure 7 This is a schematic diagram of another shower head assembly provided in an embodiment of this application. Figure 8 yes Figure 7 The diagram shows another structural form of the shower head assembly. Figure 9 yes Figure 7 The schematic diagram of a partial cross-sectional structure of the shower assembly shown illustrates, in one optional embodiment, that the second water outlet 13 may include a connecting portion 1311, a second rotating shaft structure 1312, and a water outlet portion 1313; the connecting portion 1311 is connected to the first rotating shaft structure 112; in one embodiment, the first rotating shaft structure 112 is fixedly connected to the water inlet seat 11, and the connecting portion 1311 is rotatably connected to the first rotating shaft structure 112. In another embodiment, the first rotating shaft structure 112 is rotatably connected to the water inlet seat 11, and the connecting portion 1311 is fixedly connected to the first rotating shaft structure 112.

[0039] The second rotating shaft structure 1312 is fixedly connected to the connecting part 1311, and the water outlet part 1313 is rotatably connected to the second rotating shaft structure 1312. The second water outlet surface m3 can be set on the water outlet part 1313, and the water outlet part 1313 can rotate relative to the connecting part 1311 along the axis of the second rotating shaft. The axis of the second rotating shaft structure 1312 is perpendicular to the axis of the first rotating shaft structure 112. The axis of the second rotating shaft structure 1312 can be a second axis s2, which can be perpendicular to the first axis s1 and parallel to the water outlet surface of the water outlet part 1313. Thus, by rotating the water outlet part 1313, the water outlet angle of the second water outlet body 13 can be adjusted. For multiple second water outlet bodies 13, their water outlet angles can be adjusted independently, further improving the applicability of the shower head assembly.

[0040] In one exemplary embodiment, the second rotating shaft structure 1312 includes a third rotating connector z1, a second damping structure z2, and a C-clamp z3. The third rotating connector z1 is fixedly connected to the water outlet 1313, or is an integral structure with the water outlet 1313. The third rotating connector z1 is provided with a water passage to ensure unobstructed water flow while achieving a rotating connection. The second damping structure z2 can be located between the water outlet 1313 and the third rotating connector z1 to achieve an interference fit, thereby realizing stepless adjustment of the water outlet direction of the second water outlet 13.

[0041] C-card z3 can be set at the connection between the water outlet 1313 and the third rotating connector z1. C-card z3 can limit the axial movement of the water outlet 1313, so that the water outlet 1313 can rotate smoothly around the axis of the second rotating shaft structure 1312. At the same time, it prevents the water outlet from being dislodged from the axis due to water pressure when subjected to water flow impact, thus ensuring the structural integrity and reliability of the second water outlet 13 under dynamic working conditions.

[0042] In one optional embodiment, the first rotating shaft structure 112 includes a first ball joint structure, which is fixedly connected to the water inlet seat body 11 and movably connected to the second water outlet body 13. The first ball joint structure allows the second water outlet body 13 to adjust its angle in multiple degrees of freedom.

[0043] Please refer to Figure 10 , Figure 11 , Figure 12 and Figure 13 , Figure 10 This is a schematic diagram of another shower head assembly provided in an embodiment of this application. Figure 11 yes Figure 10 A schematic diagram of a cross-sectional structure of the second water outlet 13 in the shower assembly shown. Figure 12 yes Figure 10 The diagram shows another configuration of the shower head assembly. Figure 13 yes Figure 12 The diagram shows a cross-sectional structure of the second water outlet body 13 in the shower assembly. In an optional embodiment, the first rotating shaft structure 112 may include a second rotating connector 1125 and a first water distribution mechanism 1126. The first end of the second rotating connector 1125 is fixedly connected to the inlet seat body 111; the second end of the second rotating connector 1125 is rotatably connected to the second water outlet body 13. The second water outlet body 13 has a first water path b1 and a second water path b2 that are isolated from each other. The water outlet surface of the second water outlet body 13 is provided with a first water outlet k1 that communicates with the first water path b1 and a second water outlet k2 that communicates with the second water path b2. The first water distribution mechanism 1126 is fixedly connected to the second end of the second rotating connector 1125. The first water distribution mechanism 1126 is configured to switch the on / off state of the first water path b1 and the second water path b2 when the second water outlet body 13 rotates around the first axis s1. The size of the first outlet k1 can be larger than the size of the second outlet k2, so that the second water outlet 13 can spray water of different shapes through the first outlet k1 and the second outlet k2 respectively. In this way, the second water outlet 13 can be rotated relative to the second rotating connector 1125 to switch the on / off state of the first water passage b1 and the second water passage b2, thereby switching the water spray of the second water outlet 13.

[0044] Please refer to Figure 11 , Figure 13 and Figure 14 , Figure 14 This is a schematic diagram of the structure of a first sealing gasket 134 and a water-blocking component provided in an embodiment of this application. In an optional embodiment, the second water outlet 13 may have a first sealing gasket 134 and a second sealing gasket 135, and the first water-dividing mechanism 1126 includes a water-blocking component; the first sealing gasket 134 and the second sealing gasket 135 may have the same shape.

[0045] The first sealing gasket 134 and the second sealing gasket 135 are respectively installed at the inlet of the first water passage b1 and the inlet of the second water passage b2. A water-blocking component is fixedly installed on the side of the second rotating connector 1125. The water-blocking component is configured to form a sealing fit with the first sealing gasket 134 or the second sealing gasket 135 when the second water outlet body 13 rotates to different angles, thereby blocking the first water passage b1 or the second water passage b2. The water-blocking component may have a sealing surface, which can seal with the first sealing gasket 134 and the second sealing surface. Thus, by rotating the second water outlet body 13, the relative positions between the inlet of the first water passage b1 and the inlet of the second water passage b2 and the water-blocking component can be changed, thereby switching the on / off state of the first water passage b1 and the second water passage b2.

[0046] Please refer to Figure 15 , Figure 16 and Figure 17 , Figure 15 This is a schematic diagram of another shower head assembly provided in an embodiment of this application. Figure 16 This is a schematic diagram of another shower head assembly provided in an embodiment of this application. Figure 17 yes Figure 15 The schematic diagram shows the cross-sectional structure of the second water outlet body 13 in the shower assembly. In one optional embodiment, the second rotating shaft structure 1312 is a concentric tube structure, including an inner flow channel b3 and an outer flow channel b4 that are isolated from each other. The water outlet 1313 has a third water passage b5 and a fourth water passage b6 that are isolated from each other. The water outlet surface of the water outlet 1313 is provided with a first water outlet k1 that communicates with the third water passage b5 and a second water outlet k2 that communicates with the fourth water passage b6. The inner flow channel b3 is connected to the third water passage b5. The outer flow channel b4 is connected to the fourth water passage b6; the first rotating shaft structure 112 has a first water-dividing mechanism 1126, which switches the on / off state of the inner flow channel b3 and the outer flow channel b4 when the second water outlet body 13 rotates around the first axis s1; the second rotating shaft structure 1312 is configured to continuously transport water from the inner flow channel b3 to the first water outlet k1 and transport water from the outer flow channel b4 to the second water outlet k2 when the water outlet part 1313 rotates around the second axis s2.

[0047] During the use of the shower assembly, the user can rotate the second water outlet 13 around the first axis s1 to distribute the water flow to the inner channel b3 or outer channel b4 of the concentric tube structure via the first water distribution mechanism 1126 on the first rotating shaft structure 112. When the first water distribution mechanism 1126 guides water into the inner channel b3, the water flows through the third water path b5 and finally exits from the first outlet k1, forming a water spray (e.g., a powerful massage jet); when the first water distribution mechanism 1126 guides water into the outer channel b4, the water flows through the fourth water path b6 and finally exits from the second outlet k2, forming another type of water spray (e.g., a gentle rain mist). In subsequent use, the user can rotate the water outlet 1313 around the second axis s2 to adjust the water outlet direction of the water outlet 1313 (that is, the water outlet direction of the second water outlet 13). During this process, the concentric tube structure ensures the independence and sealing of the two water paths, preventing interference between them.

[0048] Thus, the shower head assembly in this embodiment decouples the mode switching and angle adjustment functions and assigns them to two separate rotating shaft structures, facilitating user operation. Furthermore, the concentric tube structure ensures independent sealing of the two water paths while allowing for flexible oscillation, preventing water leakage.

[0049] Please refer to Figure 4 , Figure 6 , Figure 18 and Figure 19 , Figure 18 This is a schematic diagram of the water flow path of a shower head assembly as shown in an embodiment of this application. Figure 19 This is a schematic diagram of the water flow path of another shower head assembly provided in this application embodiment. The black arrows indicate the water flow direction in the shower head assembly. In an optional embodiment, the shower head assembly may further include a water distribution component 14, which is installed within the inlet seat 11. The inlet seat 11 has a first water outlet path c1 connected to the first water outlet body 12 and a second water outlet path c2 connected to the second water outlet body 13. The water distribution component 14 is used to switch the on / off state of the first water outlet path c1 and the second water outlet path c2 to achieve individual or mixed water output from the first water outlet body 12 and the second water outlet body 13. The water distribution component 14 may include a switching valve. The shower head assembly may also have a water distribution switching handle 15, which can be connected to the water distribution component 14. The user can select whether to use the first water outlet body 12 and the second water outlet body 13 simultaneously by rotating the water distribution switching handle 15. Thus, the first water outlet body 12 and the second water outlet body 13 in different positions can form various vertically and horizontally distributed shower combinations.

[0050] Please refer to Figure 19 and Figure 20 , Figure 20This is a schematic diagram of another shower head assembly provided in an embodiment of this application. In an exemplary embodiment, the shower head assembly may further include a fixing seat 17, which can be fixedly installed on the wall and connected to the water inlet in the wall. The water inlet seat 11 may include a water inlet seat body 111 and a second ball head structure 113. The seat body can be connected to the fixing seat 17 through the second ball head structure 113. In this way, the initial water outlet angle of the shower head assembly can be changed by adjusting the angle of the water inlet seat 11, so that the shower head assembly can be suitable for users of different heights.

[0051] Please refer to Figure 4 In one optional embodiment, the first water outlet 12 and the water inlet seat 11 are detachably connected by a magnetic structure 16. This makes the connection and separation of the first water outlet 12 and the water inlet seat 11 easier. At the same time, the uniform adsorption and automatic alignment achieved by the magnetic force can ensure that the installation position is accurate and reliable, which can improve the user's experience.

[0052] It should be noted that the dimensions of the areas may have been exaggerated in the accompanying drawings for clarity. Furthermore, it is understood that when an element is referred to as "on top of" another element, it can be directly on the other element, or there may be intermediate elements. Additionally, it is understood that when an element is referred to as "below" another element, it can be directly below the other element, or there may be more than one intermediate element. Furthermore, it is also understood that when an element is referred to as "between" two elements, it can be the only layer between the two elements, or there may be more than one intermediate element. Similar reference numerals throughout indicate similar elements.

[0053] In this invention, the terms "first," "second," "third," "fourth," "fifth," and "sixth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.

[0054] The above description is only an optional embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A shower head assembly, characterized in that, include: Water inlet seat, the water inlet seat having a mating surface; The first water outlet is detachably connected to the water inlet seat; At least one second water outlet is rotatably connected to the water inlet seat. The second water outlet is rotatable about a first axis, which is perpendicular to the mating surface, to adjust the shape of the water outlet surface of the shower assembly.

2. The shower assembly according to claim 1, characterized in that, The water inlet seat includes a water inlet seat body and at least one first rotating shaft structure. The first rotating shaft structure is rotatably connected to at least one of the second water outlet body and the water inlet seat body. The axis of the first rotating shaft structure is the first axis.

3. The shower assembly according to claim 2, characterized in that, The first rotating shaft structure includes a first rotating connector and a first damping structure; One end of the first rotating connector is fixedly connected to the water inlet seat body, and the other end of the first rotating connector is rotatably connected to the second water outlet body. The first damping structure is located between the first rotating connector and the second water outlet body. Alternatively, one end of the first rotating connector is fixedly connected to the second water outlet body, and the other end of the first rotating connector is rotatably connected to the water inlet seat body, with the first damping structure located between the first rotating connector and the water inlet seat body.

4. The shower assembly according to claim 2, characterized in that, The second water outlet includes a connecting part, a second rotating shaft structure, and a water outlet part; The connecting part is rotatably connected to the first rotating shaft structure, the second rotating shaft structure is fixedly connected to the connecting part, and the water outlet part is rotatably connected to the second rotating shaft structure; The axis of the second rotating shaft structure is perpendicular to the axis of the first rotating shaft structure.

5. The shower assembly according to claim 2, characterized in that, The first rotating shaft structure includes a first ball head structure, which is fixedly connected to the water inlet seat body and movably connected to the second water outlet body.

6. The shower assembly according to claim 2, characterized in that, The first rotating shaft structure includes a second rotating connector and a first water distribution mechanism; The first end of the second rotating connector is fixedly connected to the water inlet seat body; The second end of the second rotating connector is rotatably connected to the second water outlet body; The second water outlet body has a first water channel and a second water channel that are isolated from each other. The water outlet surface of the second water outlet body is provided with a first water outlet that communicates with the first water channel and a second water outlet that communicates with the second water channel. The first water distribution mechanism is fixedly connected to the second end of the second rotating connector. The first water distribution mechanism is configured to switch the on / off state of the first water path and the second water path when the second water outlet rotates around the first axis.

7. The shower assembly according to claim 6, characterized in that, The second water outlet has a first sealing gasket and a second sealing gasket, and the first water distribution mechanism includes a water-blocking component; The first sealing gasket and the second sealing gasket are respectively installed at the inlet of the first water passage and the inlet of the second water passage; The water-blocking component is fixedly installed on the side of the second rotating connector. The water-blocking component is configured to form a sealing fit with the first sealing gasket or the second sealing gasket when the second water outlet body rotates to different angles, so as to block the first water passage or the second water passage.

8. The shower assembly according to claim 4, characterized in that, The second rotating shaft structure is a concentric tube structure, including an inner flow channel and an outer flow channel that are isolated from each other; The water outlet section has a third water channel and a fourth water channel that are isolated from each other. The water outlet surface of the water outlet section is provided with a first water outlet that communicates with the third water channel and a second water outlet that communicates with the fourth water channel. The inner flow channel communicates with the third water channel, and the outer flow channel communicates with the fourth water channel. The first rotating shaft structure has a first water-dividing mechanism. When the second water outlet rotates around the first axis, the first water-dividing mechanism switches the on / off state of the inner flow channel and the outer flow channel.

9. The shower assembly according to claim 1, characterized in that, The shower assembly also includes a water distribution component, which is installed inside the water inlet seat; The water inlet seat has a first water outlet channel connected to the first water outlet body and a second water outlet channel connected to the second water outlet body; The water distribution component is used to switch the on / off state of the first water outlet path and the second water outlet path, so as to realize the individual or mixed water outlet of the first water outlet body and the second water outlet body.

10. The shower assembly according to claim 1, characterized in that, The first water outlet body and the water inlet seat are detachably connected by a magnetic attraction structure; There are two second water outlets, and the two second water outlets are arranged symmetrically.