Multifunctional top shower
The water inlet assembly is driven to rotate through the knob, so that the water outlet and the water outlet are selectively connected, solving the problem of large structure, complex structure and inconvenient operation of the top spray shower switching structure, and realizing the switching of various water outlet forms and rich functions.
Patent Information
- Application Number
- CN202421610823.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing top spray shower switching structure has problems such as large size, complex structure and inconvenient operation.
The knob is used to drive the water inlet assembly to selectively connect the water outlet and the water outlet, and realize the switching of various water outlet forms, which is small in size, simple in structure and convenient in operation.
It realizes flexible switching of water effluent form, has rich functions, meets the needs of different users, and reduces production costs and operation difficulties.
Smart Images

Figure CN222829856U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bathroom products, in particular to a multifunctional overhead shower. Background Art
[0002] Traditional overhead showers can generally only spray a single form of water, with monotonous functions and unable to provide users with a comfortable shower experience. Therefore, more and more multifunctional overhead showers have appeared on the market. By setting a switching mechanism on the overhead shower, the overhead shower can produce at least two different forms of water. Common overhead shower switching mechanisms include induction switching and button switching. The water circuit is switched by setting an induction switching valve in the overhead shower or pressing the switching valve. However, this type of switching valve is large in size, and the structure of the switching valve is complex and costly. Therefore, there is also a method of rotating the water outlet panel to a certain angle to achieve water circuit switching. This switching method is inconvenient to operate. At the same time, due to the high installation position of the overhead shower, it is difficult for people to directly grasp the main body of the overhead shower to rotate the water outlet panel. In summary, the existing overhead shower switching structure has the problems of large size, complex structure and inconvenient operation. Utility Model Content
[0003] The utility model discloses a multifunctional overhead shower head with a simple structure and convenient operation, and aims to improve the problems of large size, complex structure and inconvenient operation of the switching structure of the existing overhead shower head.
[0004] The utility model adopts the following scheme:
[0005] A multifunctional overhead shower comprises a main body and a water inlet assembly, a water distribution assembly, a face cover and a knob installed on the main body, the water inlet assembly comprising a water inlet chamber and a water inlet channel and a water outlet connected to the water inlet chamber, the water inlet channel being connected to a water inlet joint, the water distribution assembly comprising at least two water distribution ports and water distribution channels connected to each water distribution port in a one-to-one correspondence, the face cover being provided with different water outlet nozzles corresponding to each water distribution channel, thereby forming water splashes of different forms; wherein the knob is configured in linkage with the water inlet assembly, and the knob exposed on the face cover is rotated in an operable manner to drive the water inlet assembly to rotate synchronously, so that the water outlet is selectively connected to each of the water distribution ports, thereby realizing switching of a plurality of water outlet forms.
[0006] As a further improvement, the water inlet assembly is symmetrically provided with two water outlets, and the water distribution assembly is symmetrically provided with two groups of water outlets along its center, and each group of water outlets includes at least two water distribution outlets.
[0007] As a further improvement, the water inlet assembly includes a water inlet upper cover and a water outlet lower cover fixedly connected, the water inlet upper cover and the water outlet lower cover are recessed inside to form the water inlet cavity, the water inlet upper cover is provided with a rotating shaft extending upward along the rotation axis of the knob, the rotating shaft is sleeved on the water inlet joint and abuts against the water inlet joint along its axial direction, the water outlet lower cover extends downward along the rotation axis of the knob to form a positioning column, and the positioning column is inserted into the positioning hole of the knob to limit the two ends of the water inlet assembly along the axial direction.
[0008] As a further improvement, the water inlet channel passes through the rotating shaft and is connected to the water inlet cavity, and the bottom of the water outlet lower cover is symmetrically recessed to form two water outlets.
[0009] As a further improvement, an elastic member and a cat's eye pad are arranged in the water outlet, and the cat's eye pad is provided with a water outlet hole arranged in the same shape as the water diversion port, and the elastic member enables the cat's eye pad to abut and seal against the water diversion component.
[0010] As a further improvement, the water diversion assembly includes a water diversion seat and a water flow seat, the water diversion seat is provided with the water diversion port, the water flow seat is fixedly connected to the water diversion seat to form the water diversion channel, the surface cover is fixedly connected to the water flow seat to form the water flow channel, the water flow seat is provided with water flow holes corresponding to each water diversion channel, the water flow holes are connected to the water flow channels, and each water flow channel is connected to a corresponding water outlet.
[0011] As a further improvement, a mounting groove is provided along the middle of the surface cover, and a clamping portion is provided on the knob side facing the surface cover, and the clamping portion passes through the mounting groove to engage with the inner wall of the surface cover for limiting position.
[0012] As a further improvement, the surface cover is provided with a plurality of shift holes, each shift hole corresponds to a water outlet form, and the knob is provided with a shift piece, which is movably engaged with each of the shift holes.
[0013] As a further improvement, a mounting hole is provided on the knob, and the shifting member includes a spring and an elastic column arranged in the mounting hole, one end of the elastic column is connected to the spring, and the other end is used to movably engage with each shifting hole.
[0014] As a further improvement, one end of the water inlet joint is connected to the ball head, and the other end is fixed to the water distribution assembly by a fastener, so that the water inlet assembly is limited in its axial direction.
[0015] By adopting the above technical solution, the utility model can achieve the following technical effects:
[0016] 1. The water inlet assembly is driven to rotate by the knob, so that the water outlet on the water inlet assembly is selectively connected with the water outlet on the water distribution assembly. There is no need to use a complex valve core to switch the water outlet. It is small in size and can be adapted to top spray showers with different appearances. At the same time, the operation is simple, and the water outlet form can be switched by rotating the knob. The setting of multiple water nozzles can form different forms of water splashes, and it is rich in functions to meet the needs of different users.
[0017] 2. The water inlet assembly is symmetrically provided with two water outlets, and the water distribution assembly is symmetrically provided with two groups of water outlets along its center, and each group of water outlets includes at least two water distribution outlets, thereby increasing the water flow rate of the water outlet.
[0018] 3. The two ends of the water inlet assembly are axially positioned. Compared with the switch disk with only one end axially positioned in the prior art, the water inlet assembly of the present application rotates more smoothly and is less affected by water pressure. At the same time, the rotating shaft and the positioning column are coaxially arranged with the rotating axis of the knob, which can reduce torque and reduce the operating force of the user during the rotation process.
[0019] 4. The water inlet upper cover and the water outlet lower cover are fixedly connected by ultrasonic welding to prevent water leakage in the water inlet cavity. The water inlet pressure is mainly concentrated in the water inlet cavity, thereby reducing the water flow pressure of the peripheral structure of the water inlet cavity and reducing the requirements for the sealing strength of the peripheral structure of the water inlet cavity. In addition, the fixed connection between the water inlet upper cover and the water outlet lower cover can prevent the water outlet lower cover from warping and deformation due to water pressure.
[0020] 5. The water outlet is provided with elastic parts and cat's eye pads. The elastic parts enable the cat's eye pads to abut and seal against the water distribution assembly, which can ensure the reliability of the seal and avoid the problem of poor sealing caused by assembly tolerance. In other words, the precision requirements for parts can be reduced, thereby reducing mold and production costs.
[0021] 6. One end of the water inlet joint is connected to the ball head, and the other end is fixed to the water distribution component through a fastener, so that the water inlet component is limited along its axial direction, which can further ensure the sealing effect of the cat's eye pad.
[0022] 7. Two groups of water inlets are arranged on the water distribution seat, and the water distribution channels connected with the two groups of water inlets are symmetrically arranged along the center of the water distribution seat, so as to ensure uniform water discharge.
[0023] 8. A mounting groove is provided along the middle of the face cover, and a clamping part is provided on the side of the knob facing the face cover, and the clamping part passes through the mounting groove to engage with the inner wall of the face cover for limiting position. The clamping part is configured as a buckle, and the knob can be pressed into the mounting groove during installation, which is convenient and quick.
[0024] 9. The cover is provided with a plurality of shift holes, each of which corresponds to a water outlet form. The knob is provided with a shift piece, which is movably engaged with each shift hole. When the shift piece is aligned with the shift hole, a shift sound is emitted, which can enhance the switching feel and facilitate the user to know the shift status. In addition, a mark can be set on the knob to facilitate the user to observe the current gear position. Anti-slip patterns can also be set on the knob to facilitate the user to turn. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solution of the implementation mode of the utility model, the drawings required for use in the implementation mode will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the utility model and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying creative work.
[0026] Figure 1 and Figure 2 It is a schematic diagram of the structure of one embodiment of the utility model at different viewing angles;
[0027] Figures 3 to 5 It is a cross-sectional view of one embodiment of the utility model along different cross sections;
[0028] Figure 6 This is a schematic diagram of the structure of one embodiment of the utility model after the main body is hidden;
[0029] Figure 7 and Figure 8 This is a schematic diagram of the structure of a water inlet assembly in one embodiment of the utility model at different viewing angles;
[0030] Fig. 9 and Fig.10 This is a schematic diagram of the structure of a water diversion seat in one embodiment of the utility model at different viewing angles;
[0031] Fig.11 and Fig.12 It is a schematic diagram of the structure of a water filter seat in one embodiment of the utility model at different viewing angles;
[0032] Fig.13 and Fig.14 This is a schematic diagram of the structure of a cover of one embodiment of the utility model at different viewing angles;
[0033] Fig.15 and Fig.16 This is a schematic diagram of the structure of a knob in one embodiment of the utility model at different viewing angles;
[0034] Fig.17 It is a schematic structural diagram of a cat's eye pad according to one embodiment of the present invention at different viewing angles.
[0035] icon:
[0036] 1-Ontology;
[0037] 2-water inlet assembly; 21-water inlet cavity; 22-water inlet channel; 23-water outlet; 24-water inlet upper cover; 241-rotating shaft; 242-limiting step; 25-water outlet lower cover; 26-elastic member; 27-cat's eye pad; 271-water outlet hole; 28-positioning column;
[0038] 3-water distribution assembly; 31-first water distribution port; 32-second water distribution port; 33-third water distribution port; 34-first water distribution channel; 35-second water distribution channel; 36-third water distribution channel; 37-fourth water distribution port; 38-fifth water distribution port; 39-sixth water distribution port; 3A-blocking part; 3B-water distribution seat; 3C-water passing seat; 3C1-first water passing hole; 3C2-second water passing hole; 3C3-third water passing hole; 3D-first water passing channel; 3E-second water passing channel; 3F-third water passing channel;
[0039] 4-face cover; 41-first water outlet; 42-second water outlet; 43-third water outlet; 44-installation slot; 45-gear hole; 46-baffle;
[0040] 5-knob; 51-clamping part; 52-positioning hole; 53-mounting hole; 54-spring; 55-elastic column;
[0041] 6-water inlet connector; 61-fastener;
[0042] 7-Ball head. DETAILED DESCRIPTION
[0043] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work belong to the scope of protection of the utility model. Therefore, the following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the utility model for which protection is sought, but merely represents the selected embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work belong to the scope of protection of the utility model. Example
[0044] Combination Figures 1 to 17The present embodiment provides a multifunctional top shower, comprising a body 1 and a water inlet assembly 2, a water distribution assembly 3, a surface cover 4 and a knob 5 installed on the body 1, wherein the water inlet assembly 2 comprises a water inlet chamber 21 and a water inlet channel 22 and a water outlet 23 connected to the water inlet chamber 21, and the water inlet channel 22 is connected to the water inlet joint 6; the water distribution assembly 3 comprises at least two water distribution ports and water distribution channels connected to each water distribution port in a one-to-one correspondence; the surface cover 4 is provided with different water outlet nozzles corresponding to each water distribution channel, thereby forming water splashes of different forms; the knob 5 is configured in linkage with the water inlet assembly 2, and the knob 5 exposed on the surface cover 4 is rotated in an operable manner to drive the water inlet assembly 2 to rotate synchronously, so that the water outlet 23 is selectively connected to each water distribution port, thereby realizing the switching of multiple water outlet forms.
[0045] Exemplarily, the face cover 4 is provided with three types of water outlets, namely, the first water outlet 41, the second water outlet 42 and the third water outlet 43. The first water outlet 41 is arranged near the center of the face cover 4 and is arranged in two circles in an array along the circumferential direction, with six in each circle, for spraying massage water; the second water outlet 42 is evenly arranged along the circumferential direction of the face cover 4, covering the largest area, for spraying flowers and flowers; the third water outlet 43 is arranged closest to the center of the face cover 4 and is arranged in an array along the circumferential direction with six, and each third water outlet 43 is arranged in an offset arrangement with the first water outlet 41, and each third water outlet 43 includes a plurality of small holes for spraying spray water. The water distribution component 3 is provided with three corresponding water outlets, namely, the first water outlet 31, the second water outlet 32 and the third water outlet 33, and each water outlet is connected to the first water distribution channel 34, the second water distribution channel 35 and the third water distribution channel 36 respectively. By turning the knob 5 to drive the water inlet assembly 2 to rotate, the desired water outlet form is selected. When the water outlet 23 is connected to the first water outlet 31, the first water outlet 41 outlets water, when the water outlet 23 is connected to the second water outlet 32, the second water outlet 42 outlets water, and when the water outlet 23 is connected to the third water outlet 33, the third water outlet 43 outlets water. Of course, when the water outlet 23 is connected to the first water outlet 31 and the second water outlet 32 at the same time, the first water outlet 41 and the second water outlet 42 outlet water at the same time, or when the water outlet 23 is connected to the second water outlet 32 and the third water outlet 33 at the same time, the second water outlet 42 and the third water outlet 43 outlet water at the same time, it is not limited to this and is not specifically limited.
[0046] It should be noted that, in this embodiment, the water inlet assembly 2 is driven to rotate by the knob 5 so that the water outlet 23 on the water inlet assembly 2 is selectively connected with the water outlet on the water outlet assembly 3, and there is no need to use a complex valve core for water outlet switching. The volume is small and can be adapted to top showers with different appearances. At the same time, the operation is simple, and the water outlet form can be switched by rotating the knob 5. In addition, a variety of water nozzle settings can form water splashes in different forms, and the functions are rich, which can meet the needs of different users.
[0047] In a preferred embodiment, two water outlets 23 are symmetrically arranged on the water inlet component 2, and two groups of water outlets are symmetrically arranged along the center of the water distribution component 3, and each group of water outlets includes at least two water outlets. In this embodiment, by setting two water outlets 23, the flow rate of the water outlet can be increased. Specifically, the two water outlets 23 are respectively the first water outlet 23 and the second water outlet 23, and the two groups of water outlets can be arranged in such a way that the first group of water outlets are the first water outlet 31, the second water outlet 23 and the third water outlet 23, respectively, and the second group of water outlets are the fourth water outlet 37, the fifth water outlet 38 and the sixth water outlet 39, and when the first water outlet is connected to the first water outlet 31, the second water outlet is connected to the fourth water outlet 37, and so on, when the first water outlet is connected to the second water outlet 32, the second water outlet is connected to the fifth water outlet 38, and when the first water outlet is connected to the third water outlet 33, the second water outlet 23 is connected to the sixth water outlet 39. The two water diversion ports that are simultaneously connected to the water outlet 23 may be arranged to be connected to the same water diversion channel, or to be connected to different water diversion channels, without any specific limitation.
[0048] On the basis of the above-mentioned embodiment, in an optional embodiment of the utility model, the water inlet assembly 2 comprises a fixedly connected water inlet upper cover 24 and a water outlet lower cover 25, the water inlet upper cover 24 and the water outlet lower cover 25 are internally recessed to form a water inlet cavity 21, the water inlet upper cover 24 is provided with a rotating shaft 241 extending upward along the rotation axis of the knob 5, the rotating shaft 241 is sleeved on the water inlet joint 6, and abuts against the water inlet joint 6 along its axial direction, the water outlet lower cover 25 is extended downward along the rotation axis of the knob 5 to form a positioning column 28, the positioning column 28 is inserted into the positioning hole 52 of the knob 5, so that the two ends of the water inlet assembly 2 are axially limited. Further, the cross section of the positioning column 28 is square or runway-shaped, and the positioning hole 52 is arranged in the same shape as the positioning column 28, so that the knob 5 can drive the water inlet assembly 2 to rotate. Exemplarily, a limit step 242 is provided on the rotating shaft 241, and the limit step 242 is limited by contacting the water inlet joint 6 via an O-ring. One end of the water inlet assembly 2 is sleeved in the water inlet joint 6 for limitation, and the other end passes through the water distribution assembly 3 to be connected with the knob 5, so that both ends of the water inlet assembly 2 are positioned axially. Compared with the switching disk with only one end axially positioned in the prior art, the rotation process of the water inlet assembly of this embodiment is smoother and less affected by water pressure. At the same time, the rotating shaft 241 and the positioning column 28 are coaxially arranged with the rotation axis of the knob 5, which can reduce torque and reduce the operating force of the user during the rotation process.
[0049] Furthermore, the water inlet channel 22 passes through the rotating shaft 241 and is connected to the water inlet chamber 21, and the bottom of the water outlet lower cover 25 is symmetrically recessed to form two water outlets 23. Among them, the water inlet upper cover 24 and the water outlet lower cover 25 can be fixedly connected by ultrasonic welding to avoid water leakage in the water inlet chamber 21. In this embodiment, the water inlet pressure is mainly concentrated in the water inlet chamber 21, thereby reducing the water flow pressure of the peripheral structure of the water inlet chamber 21, and at the same time reducing the requirements for the sealing strength of the peripheral structure of the water inlet chamber 21. In addition, the fixed connection between the water inlet upper cover 24 and the water outlet lower cover 25 can prevent the water outlet lower cover 25 from warping and deformation due to water pressure. Preferably, an elastic member 26 and a cat's eye pad 27 are arranged in the water outlet 23, and a water outlet hole 271 arranged in the same shape as the water diversion port is provided on the cat's eye pad 27, and the cat's eye pad 27 is sealed against the water diversion component 3 through the elastic member 26. It should be mentioned that the elastic member 26 can be a spring, and the reliability of the seal can be ensured by the spring abutment, avoiding the problem of poor sealing caused by assembly tolerance and poor flatness of parts. In other words, in this embodiment, the precision requirements for parts can be reduced, thereby reducing mold and production costs. Preferably, a barrier portion 3A is placed horizontally along the middle of the water diversion port to prevent the cat's eye pad 27 from being pressed into the water diversion port under the action of the spring, causing difficulty in rotation.
[0050] In one embodiment, one end of the water inlet connector 6 is connected to the ball head 7, and the other end is fixed to the water diversion assembly 3 by a fastener 61, so that the water inlet assembly 2 is limited in its axial direction. The fastener 61 can be a screw. When the water inlet assembly 2 is installed, the water inlet connector 6 and the water diversion assembly 3 are locked by the screw, so that the water inlet assembly 2 can be limited in its axial direction, thereby further ensuring the sealing effect of the cat's eye pad 27. In this embodiment, water flows in from the water inlet pipe connected to the ball head 7, flows to the water inlet connector 6 through the ball head 7, and enters the water inlet channel 22 along the water inlet connector 6, and then merges into the water inlet cavity 21, passes through the water outlet 23, and then flows from the water diversion port connected to the water outlet 23 to the water diversion channel, and finally sprays out from the corresponding water outlet.
[0051] In another embodiment, the water distribution assembly 3 includes a water distribution seat 3B and a water flow seat 3C, the water distribution seat 3B is provided with a water distribution port, the water flow seat 3C is fixedly connected with the water distribution seat 3B to form a water distribution channel, the surface cover 4 is fixedly connected with the water flow seat 3C to form a water flow channel, and the water flow seat 3C is provided with a water flow hole corresponding to each water distribution channel, the water flow hole is connected with the water flow channel, and each water flow channel is connected with the corresponding water outlet. For example, the water flow seat 3C is provided with a first water flow hole 3C1, a second water flow hole 3C2 and a third water flow hole 3C3, which are respectively used to connect the first water distribution channel 34 and the first water flow channel 3D, the second water distribution channel 35 and the second water flow channel 3E, and the third water distribution channel 36 and the third water flow channel 3F. Among them, the water diversion seat 3B, the water flow seat 3C and the surface cover 4 are all provided with welding ribs, and the water diversion seat 3B and the water flow seat 3C are ultrasonically welded to form a partition at the welding ribs, thereby forming each water diversion flow channel. Similarly, the water flow seat 3C and the surface cover 4 are ultrasonically welded to form a water flow channel. Preferably, two groups of water inlets are provided on the water diversion seat 3B, and the water diversion flow channels connected with the two groups of water inlets are symmetrically arranged along the center of the water diversion seat 3B, thereby ensuring uniform water discharge.
[0052] On the basis of the above embodiment, in an optional embodiment of the utility model, a mounting groove 44 is provided along the middle of the face cover 4, and a clamping portion 51 is provided on the side of the knob 5 facing the face cover 4, and the clamping portion 51 passes through the mounting groove 44 to be clamped and limited with the inner wall of the face cover 4. Preferably, the clamping portion 51 is configured as a buckle, and during installation, the knob 5 is pressed into the mounting groove 44 so that the buckle is clamped with the face cover 4, which is convenient and quick.
[0053] In other embodiments, the face cover 4 is provided with a plurality of shift holes 45, each of which corresponds to a water outlet form, and the knob 5 is provided with a shift member, which is movably engaged with each shift hole 45. Specifically, the knob 5 is provided with a mounting hole 53, and the shift member includes a spring 54 and a spring column 55 disposed in the mounting hole 53, one end of the spring column 55 is connected to the spring 54, and the other end is used to movably engage with each shift hole 45. When the knob 5 is rotated, the spring column 55 is aligned with the shift hole 45 or dislocated and disengaged, and a shift sound is emitted when the spring column 55 is aligned with the shift hole 45, thereby enhancing the switching feel and facilitating the user to know the switching state of the gear. In other embodiments, baffles 46 are provided at the head and tail ends of the shift hole 45 on the face cover 4, thereby limiting the rotation angle of the knob 5, so that the knob 5 can only switch between the shift holes 45. In addition, a mark can be provided on the knob 5 to facilitate the user to observe the current gear position. Anti-slip grooves may also be provided on the knob 5 to facilitate the user's rotation. For example, the cover 4 is provided with five shift holes 45, and the water outlet states when the spring column 55 on the knob 5 is sequentially engaged with the five shift holes 45 in a clockwise manner are: water outlet from the first water outlet 41, water outlet from the first water outlet 41 and the second water outlet 42 at the same time, water outlet from the second water outlet 42, water outlet from the second water outlet 42 and the third water outlet 43 at the same time, and water outlet from the third water outlet 43, are not limited thereto and are not specifically limited thereto.
[0054] The above are only preferred implementations of the present utility model. The protection scope of the present utility model is not limited to the above embodiments. All technical solutions under the concept of the present utility model belong to the protection scope of the present utility model.
Claims
1. A multifunctional top shower, characterized in that: It includes a main body and a water inlet component, a water distribution component, a surface cover and a knob installed on the main body, the water inlet component includes a water inlet cavity and a water inlet channel and a water outlet connected to the water inlet cavity, the water inlet channel is connected to the water inlet joint, the water distribution component includes at least two water distribution ports and water distribution channels connected to each water distribution port in a one-to-one correspondence, the surface cover is provided with different water outlet nozzles corresponding to each water distribution channel, so as to form water splashes of different forms; wherein the knob is configured in linkage with the water inlet component, and the knob exposed on the surface cover is rotated in an operable manner to drive the water inlet component to rotate synchronously, so that the water outlet is selectively connected to each water distribution port, so as to realize the switching of multiple water outlet forms.
2. The multifunctional top showerhead according to claim 1, characterized in that: The water inlet assembly is symmetrically provided with two water outlets, and the water distribution assembly is symmetrically provided with two groups of water outlets along its center, and each group of water outlets includes at least two water distribution outlets.
3. The multifunctional top showerhead according to claim 1, characterized in that: The water inlet assembly includes an inlet upper cover and a water outlet lower cover that are fixedly connected. The inlet upper cover and the water outlet lower cover are recessed inside to form the water inlet cavity. The inlet upper cover is provided with a rotating shaft extending upward along the rotation axis of the knob. The rotating shaft is sleeved on the water inlet joint and abuts against the water inlet joint along its axial direction. The water outlet lower cover is extended downward along the rotation axis of the knob to form a positioning column. The positioning column is inserted into the positioning hole of the knob to limit the two ends of the water inlet assembly along the axial direction.
4. The multifunctional top showerhead according to claim 3, characterized in that: The water inlet channel passes through the rotating shaft and is communicated with the water inlet cavity, and the bottom of the water outlet lower cover is symmetrically recessed to form two water outlets.
5. The multifunctional top showerhead according to claim 1, characterized in that: An elastic member and a cat's eye pad are arranged in the water outlet, and a water outlet hole arranged in the same shape as the water diversion port is arranged on the cat's eye pad. The elastic member enables the cat's eye pad to abut and seal against the water diversion component.
6. The multifunctional top showerhead according to claim 1, characterized in that: The water diversion assembly includes a water diversion seat and a water flow seat, the water diversion seat is provided with the water diversion port, the water flow seat is fixedly connected with the water diversion seat to form the water diversion channel, the surface cover is fixedly connected with the water flow seat to form the water flow channel, the water flow seat is provided with water flow holes corresponding to each water diversion channel, the water flow holes are connected with the water flow channels, and each water flow channel is connected with a corresponding water outlet.
7. The multifunctional top showerhead according to claim 1, characterized in that: A mounting groove is arranged along the middle part of the surface cover, and a clamping portion is arranged on the side of the knob facing the surface cover, and the clamping portion passes through the mounting groove to be clamped and limited with the inner wall of the surface cover.
8. The multifunctional top showerhead according to claim 1, characterized in that: The surface cover is provided with a plurality of shift holes, each of which corresponds to a water outlet form. The knob is provided with a shift piece, and the shift piece is movably engaged with each of the shift holes.
9. The multifunctional top showerhead according to claim 8, characterized in that: The knob is provided with a mounting hole, and the shifting member comprises a spring and an elastic column arranged in the mounting hole, one end of the elastic column is connected to the spring, and the other end is used for movably engaging with each shifting hole.
10. The multifunctional top showerhead according to claim 1, characterized in that: One end of the water inlet joint is connected to the ball head, and the other end is fixed to the water distribution component through a fastener, so that the water inlet component is limited in position along its axial direction.