Multi-mode switching water outlet shower head
By designing a switching mechanism for movable catheter, slide chute and connecting rod in the shower, combined with the ballpoint pen-type pressing switching structure, switching of multiple water outlet modes is achieved, solving the problem of insufficient aesthetics of the existing shower and the inability to meet multiple water outlet modes, and achieving compact shape and multi-functional design.
Patent Information
- Application Number
- CN202421683830.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-16
AI Technical Summary
Due to the limitation of the rotational structure, the showers in the existing switchable modes have large overall shapes, insufficient aesthetics, and cannot meet the needs of multiple water outlet modes.
A multi-mode switch water out shower is designed, using the coordination method of the movable conduit, the chute and connecting rod. The position of the movable conduit is changed to realize the switching of the water path. Combined with the ballpoint pen-type pressing switching structure, the switching of multiple water path modes is achieved.
The switch of multiple water outlet modes is achieved, the overall structure is compact, the shape is simple and beautiful, and it is convenient to use, meeting the needs of various water outlet modes.
Smart Images

Figure CN222855701U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shower heads, and in particular to a shower head with multi-mode switchable water outlet. Background Art
[0002] Shower heads, also known as shower heads, are common shower appliances in bathrooms. Existing switchable shower heads mostly use a rotating structure to switch the water channel, but the limitation of the rotating structure forces the overall shape of the shower head to be designed to be larger, and the shape is also relatively simple and lacks aesthetics. With the improvement of people's living standards, the water outlet mode of the shower head not only meets the needs of shower water with different numbers of nozzles, but also has other water outlet modes. Therefore, a new shower head design that can switch multiple modes, is easy to use, and has a simple and beautiful shape is needed. Utility Model Content
[0003] In order to overcome the deficiencies in the prior art, the utility model provides a multi-mode switchable water shower head with multiple water outlet modes, a compact structure, a simple and beautiful shape.
[0004] In order to achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0005] A shower head with multi-mode switching water outlet, comprising:
[0006] A shell, one end of which is provided with a water inlet channel, a first channel and a second channel are provided in the shell, the first channel is communicated with the water inlet channel, and the second channel is communicated with the first channel;
[0007] The first switching mechanism comprises a movable conduit, wherein a third channel is arranged in the movable conduit, the movable conduit is arranged in the first channel and can move along the axis direction of the first channel, a water gap is formed between a section of the outer wall of the movable conduit and the inner wall of the first channel, and the movable conduit has a closing portion, and the position of the movable conduit is changed by the first switching mechanism to switch the flow direction of the waterway, when the movable conduit is located at the first position, the water inlet channel is connected to the second channel through the water gap; when the movable conduit is located at the second position, the water inlet channel is connected to the second channel through the first channel.
[0008] Furthermore, the first switching mechanism also includes a first spring and a limiting mechanism, the first spring applies an elastic force to the movable conduit to pop outward; when the movable conduit is in the first position, the first spring is in a compressed state; when the movable conduit is in the second position, the movable conduit partially protrudes from the first channel, and the limiting mechanism limits the movable conduit from detaching; the end of the movable conduit away from the water inlet channel is the water outlet end.
[0009] Furthermore, the limiting mechanism includes a slide groove and a connecting rod, the first spring is arranged in the first channel, the slide groove is fixed on the shell, a sliding track is arranged in the slide groove, and the sliding track has a locking portion; a first hook portion and a second hook portion are respectively provided at both ends of the connecting rod, the first hook portion is hooked and connected with the movable conduit, and the second hook portion is arranged in the slide groove and can move along the sliding track; the second hook portion of the connecting rod is hooked on the locking portion of the sliding track to form a contracted state in which the movable conduit is in the first position; the second hook portion of the connecting rod is hooked on the end position of the sliding track to form a pop-up state in which the movable conduit is in the second position.
[0010] Furthermore, the sliding track is an M-shaped sliding track, and the engaging portion is located in the middle of the track.
[0011] Furthermore, the water inlet channel is connected to the first channel via a first water outlet, the first channel is connected to the second channel via a second water outlet, the movable conduit is provided with two groups of closing parts for forming a closure between the movable conduit and the first channel, the movable conduit forms a reduced diameter section between the two groups of closing parts, the water flow gap is between the outer wall of the reduced diameter section and the inner wall of the first channel, when the movable conduit is in a contracted state, the first water outlet and the second water outlet are correspondingly connected at the reduced diameter section; when the movable conduit is in a pop-up state, the first water outlet is outside the end of the movable conduit, forming a connection from the first water outlet to the third channel.
[0012] Furthermore, it also includes a movable water outlet head, which is arranged at the end of the movable conduit and connected to the third channel. A mouthwash nozzle is opened on the side wall of the movable water outlet head. When the movable conduit is in a retracted state, the mouthwash nozzle is stored inside the shell; when the movable conduit is in an extended state, the mouthwash nozzle is moved out of the shell.
[0013] Furthermore, a rectifier is provided in the movable water outlet head, and the water flows through the rectifier before reaching the mouthwash nozzle.
[0014] Furthermore, it also includes a guide box and a second switching mechanism, wherein the guide box is installed in the shell, and a fourth channel and a fifth channel are provided in the guide box; the second switching mechanism is installed in the guide box, and the guide box is connected to the second channel through the second switching mechanism, and the second channel is connected to the fourth channel or the second channel is connected to the fifth channel through switching and changing of the second switching mechanism.
[0015] Furthermore, the guide box is provided with a third water outlet and a fourth water outlet, the third water outlet is connected to the fourth channel, and the fourth water outlet is connected to the fifth channel; the second switching mechanism is used to switch and change the water path connection state, switching the second channel to be connected with the third water outlet, or the second channel to be connected with the fourth water outlet.
[0016] Furthermore, the second switching mechanism has a ballpoint pen-type press-to-switch structure, including a guide cylinder, a turntable, a rotating shaft, a second spring, and a button. The guide cylinder is arranged on the guide box, and the turntable is provided with a water through hole running through the upper and lower parts. A first latch tooth is provided under the turntable, and the rotating shaft is arranged through the guide cylinder. A second latch tooth is provided on the rotating shaft. The second spring has an elastic force that applies downward pressure to the turntable. By pressing the button, the second latch tooth and the first latch tooth of the rotating shaft are switched to change the rotation angle of the turntable, thereby changing the state of connection between the water through hole and the third water through port, or forming the state of connection between the water through hole and the fourth water through port.
[0017] Furthermore, a sealing gasket is provided under the rotating disk. When the water hole is connected to the third water outlet, the sealing gasket closes the fourth water outlet; when the water hole is connected to the fourth water outlet, the sealing gasket closes the third water outlet.
[0018] Furthermore, it also includes a water outlet box, on which a bubble water area and a shower water area are separated and arranged. The water outlet box is connected to the guide box, and the fourth channel is connected to the bubble water area, and the fifth channel is connected to the shower water area.
[0019] From the above description of the utility model, it can be seen that compared with the prior art, the multi-mode switchable water shower provided by the utility model has the following advantages:
[0020] 1. The shower head is designed with multiple switchable water path modes. A water gap is set on the outer wall of the movable conduit. By changing the position of the movable conduit, the water inlet channel is connected with the second channel through the water gap, or the water inlet channel is connected with the third channel through the first channel, thereby realizing the switching of multiple water path working modes.
[0021] 2. The first switching structure adopts the cooperation mode of the slide groove and the connecting rod. The linkage of the connecting rod is realized by pressing and pushing the movable guide tube. The first hook of the connecting rod moves along the M-shaped sliding track and forms a limit at the embedded part, so as to realize the switching and limit of the movable guide tube between the first position and the second position. The structure is reliable and easy to use.
[0022] 3. The second switching mechanism has a ballpoint pen-type pressing switching structure, which can realize the switching of the connection state between the water hole and the third water outlet or the fourth water outlet by pressing, and is convenient to use.
[0023] 4. The first switching mechanism and the second switching mechanism realize switching action by pressing, and the designed first switching mechanism and the second switching mechanism make the overall structure of the shower head compact and the shape simple and beautiful.
[0024] 5. Based on the multi-water channel switching mode structure design, the shower head has an integrated design with multiple functions including mouthwash working mode, bubble water working mode and shower water working mode.
[0025] Other features and advantages of the present application will be described in the following description, and partly become apparent from the description, or be understood by implementing the present application. Other advantages of the present application can be realized and obtained by the schemes described in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 The utility model is a schematic diagram of a shower head with multi-mode switching water outlet.
[0027] Figure 2 The utility model is a schematic cross-sectional view of a shower head with multi-mode switchable water outlet.
[0028] Figure 3 The utility model is a schematic diagram of a shower head with multi-mode switchable water outlet.
[0029] Figure 4 It is a schematic diagram of the decomposition of the movable water outlet head of the utility model.
[0030] Figure 5 This is a schematic diagram of the decomposition of the second switching mechanism of the utility model.
[0031] Figure 6 This is a schematic diagram of the structure of the guide box of the utility model
[0032] Figure 7 This is a cross-sectional view of the guide box of the utility model.
[0033] Figure 8 This is an exploded schematic diagram of the first switching mechanism of the utility model.
[0034] Fig. 9 The figure is a schematic diagram of the water path of the mouthwash mode of the utility model.
[0035] Fig.10 This is a schematic diagram of the working state of the first switching mechanism of the utility model
[0036] Fig.11 This is a schematic diagram of the second working state of the first switching mechanism of the utility model
[0037] Fig.12 It is a schematic diagram of the water connection between the guide box and the water outlet box of the utility model.
[0038] Fig.13 This is a schematic diagram of the water path of the bubble water mode of the utility model.
[0039] Fig.14 It is a schematic diagram of the water path of the shower water mode of the utility model.
[0040] The symbols in the figure correspond to the following: 1-shell, 11-water inlet channel, 12-first channel, 13-second channel, 14-first water outlet, 15-second water outlet, 2-first switching mechanism, 21-movable conduit, 211-third channel, 212-reduced diameter section, 213-closing portion, 22-first spring, 23-sliding groove, 231-M-shaped sliding track, 232-embedded portion, 24-connecting rod, 241-first hook, 242-second hook, 3-guide Flow box, 31-fourth channel, 32-fifth channel, 33-third water outlet, 34-fourth water outlet, 4-second switching mechanism, 41-guide cylinder, 42-turntable, 421-water hole, 422-first latch tooth, 423-sealing pad, 43-rotating shaft, 431-second latch tooth, 44-second spring, 45-button, 5-movable water head, 51-mouthwash nozzle, 52-rectifier, 6-water outlet box, 61-bubble water area, 62-shower water area. DETAILED DESCRIPTION
[0041] The present invention is further described below through specific implementation methods.
[0042] Reference Figures 1 to 14 As shown, a shower head with multi-mode switchable water outlet includes a shell 1, a first switch mechanism 2, a guide box 3, a second switch mechanism 4, a movable water outlet head 5, and a water outlet box 6.
[0043] A water inlet channel 11 is provided at one end of the shell 1. A first channel 12 and a second channel 13 are provided inside the shell 1. The first channel 12 is connected to the water inlet channel 11, and the second channel 13 is connected to the first channel 12. The shell 1 has a columnar structure.
[0044] The first switching mechanism 2 includes a movable conduit 21, in which a third channel 211 is provided. The movable conduit 21 is provided in the first channel 12 and can move along the axis direction of the first channel. Specifically, the first channel 12 is in the shape of a circular tube, and the movable conduit 21 is in the shape of a circular tube. The movable conduit 21 is telescopically provided in the first channel 12. The movable tube 21 is provided with a reduced diameter section 212, and a water gap is formed between the outer wall of the reduced diameter section 212 and the inner wall of the first channel 12. By switching the moving position of the movable conduit 21, the water inlet channel 11 is connected to the third channel 211 through the first channel 12, or the water inlet channel 11 is connected to the second channel 13 through the water gap. The first switching mechanism 2 also includes a first spring 22, a slide groove 23, and a connecting rod 24. The first spring 22 is arranged in the first channel 12, and the first spring 22 applies an elastic force to the movable conduit 21 to pop outward; the slide groove 23 is fixedly arranged on the housing 1, and an M-shaped sliding track 231 is arranged in the slide groove 23, and a locking portion 232 is arranged in the middle of the M-shaped sliding track 231; the two ends of the connecting rod 24 are respectively provided with a first hook 241 and a second hook 242, the first hook 241 is hooked and connected with the movable conduit 21, and the second hook 242 is arranged in the slide groove 23; specifically, the first hook 241 and the second hook 242 are formed by bending the two ends of a long round rod, and the side of the movable conduit 21 has a hook for hooking The hooking structure of the first hook 241 is inserted into the hooking structure, so that the first hook 241 is linked with the movable conduit 21, thereby driving the connecting rod 24 to move; the second hook 242 is hooked in the M-shaped sliding track, and during the movement of the connecting rod 24, the second hook 242 moves along the direction of the M-shaped sliding track; the second hook 242 of the connecting rod 24 is hooked in the locking portion 232 of the M-shaped sliding track 231 to form a contracted state of the movable conduit 21 in the first position; the second hook 242 of the connecting rod 24 is hooked in the end position of the M-shaped sliding track 231 to form a pop-up state of the movable conduit 21 in the second position, and the movable conduit 21 protrudes from the first channel 12 in the pop-up state. Specifically, the first spring 22 located in the first channel 12 is in a compressed state, and the first spring 22 applies an outward elastic force to the movable conduit 21.Specific working action example: the user applies external force to push the movable conduit 21 inward to overcome the elastic force, and this action causes the second hook 242 of the connecting rod 24 to move along the M-shaped sliding track 231 to the middle position. After releasing the external force, the elastic force pushes the movable conduit outward for a short distance, so that the second hook 242 is restricted at the locking portion 232, thereby hindering the movable conduit 21 from moving outward, that is, keeping the movable conduit 21 in the contracted state of the first position; the user applies external force again to push the movable conduit 21 inward for a short distance to overcome the elastic force, so that the second hook 242 is moved out of the locking portion 232. After releasing the external force, the elastic force pushes the movable conduit 21 outward, and this action causes the second hook 242 of the connecting rod 24 to move along the M-shaped sliding track 231 to the end position of the M-shaped sliding track 231, which is the position where the movable conduit 21 is in the first position, and at the same time, the connecting rod 24 forms a pull on the movable conduit 21 to prevent it from completely popping out, that is, keeping the movable conduit 21 in the popping-out state of the second position.
[0045] The water inlet channel 11 is connected to the first channel 12 via the first water outlet 14, and the first channel 12 is connected to the second channel 13 via the second water outlet 15. The movable conduit 21 is provided with two groups of closing portions 213 for forming a seal between the movable conduit 21 and the first channel 12, and the reduced diameter section 212 is located between the two groups of closing portions 213. When the movable conduit 21 is in a contracted state, the first water outlet 14 and the second water outlet 15 are correspondingly located at the reduced diameter section 212 to form a connection; when the movable conduit 21 is in a popped-out state, the first water outlet 14 is located outside the end of the movable conduit 21, forming a connection from the first water outlet 14 to the third channel 211.
[0046] The movable water outlet 5 is arranged at the end of the movable conduit 21 and communicated with the third channel 211. A mouthwash nozzle 51 is provided on the side wall of the movable water outlet 5. When the movable conduit 21 is in a retracted state at the first position, the mouthwash nozzle 51 is stored inside the housing 1; when the movable conduit 21 is in a popped-up state at the second position, the mouthwash nozzle 51 moves out of the housing 1. A rectifier 52 is provided inside the movable water outlet 5, and water flows through the rectifier 52 before reaching the mouthwash nozzle 51.
[0047] The guide box 3 is installed in the housing 1, and the guide box 3 is provided with a fourth channel 31 and a fifth channel 32; the second switching mechanism 4 is installed in the guide box 3, and the guide box 3 is connected to the second channel 13 through the second switching mechanism 4, and the second channel 13 is switched and changed by the second switching mechanism 4, so that the second channel 13 is connected to the fourth channel 31, or the second channel 13 is connected to the fifth channel 32. The guide box 3 is provided with a third water outlet 33 and a fourth water outlet 34, the third water outlet 33 is connected to the fourth channel 31, and the fourth water outlet 34 is connected to the fifth channel 32; the second switching mechanism 4 is used to switch and change the water channel connection state, switching the second channel 13 to be connected to the third water outlet 33, or the second channel 13 to be connected to the fourth water outlet 34. In a specific embodiment: the second switching mechanism 4 has a ballpoint pen type push-to-switch structure, including a guide cylinder 41, a turntable 42, a rotating shaft 43, a second spring 44, and a button 45. The guide cylinder 41 is arranged on the guide box 3, and a water through hole 421 is opened on the turntable 42, which runs through the top and bottom. A first latch tooth 422 is provided under the turntable 42, and the rotating shaft 43 is arranged through the guide cylinder 41. A second latch tooth 431 is provided on the rotating shaft 43. The second spring 44 has an elastic force that applies downward pressure to the turntable 42. By pressing the button 45, the second latch tooth 431 of the rotating shaft 43 switches with the first latch tooth 422 to change the rotation angle of the turntable 43, thereby changing the state of communication between the water through hole 421 and the third water through port 33, or forming a state of communication between the water through hole 421 and the fourth water through port 34. The principle of the switching action of the latch teeth is consistent with the existing push-to-ballpoint pen structure, and will not be elaborated on here. A sealing gasket 423 is further provided under the rotating disk 42 . When the water hole 421 is connected to the third water outlet 33 , the sealing gasket 423 seals the fourth water outlet 34 ; when the water hole 421 is connected to the fourth water outlet 34 , the sealing gasket 423 seals the third water outlet 33 .
[0048] The water outlet box 6 is provided with a bubble water area 61 and a shower water area 62 which are separated and arranged. The water outlet box 6 is connected to the guide box 3 , and the fourth channel 31 is connected to the bubble water area 61 , and the fifth channel 32 is connected to the shower water area 62 .
[0049] The following is a further explanation of the principle of this case through a specific usage state process.
[0050] The shower head of the present application has three mode switches: mouthwash, shower water, and bubble water.
[0051] Mouthwash working mode: When in use, the movable water outlet 5 is stored in the housing 1 as the initial state, that is, the movable conduit 21 is in the contracted state. In this state, the second hook portion 242 of the connecting rod 24 is at the locking portion 232 of the M-shaped sliding track 231. The movable water outlet 5 is pressed inward once. During this pressing process (refer to Fig.10As shown in the figure, the second hook 242 of the connecting rod 24 moves backward along the M-shaped sliding track 231, and then slides forward along an outer track of the M-shaped sliding track 231 under the elastic force of the first spring 22 until it stops at the end. At this time, the movable water outlet 5 pops out, that is, the movable conduit 21 is in the pop-up state, and the mouthwash nozzle 51 moves to the extended state outside the housing 1. In the extended state, the water path conduction relationship is: water inlet channel 11--first water outlet 14--first channel 12--third channel 211--rectifier 52--mouthwash nozzle 51. (Refer to Fig. 9 After use, press the movable water outlet head 5 inwards again. Fig.11 As shown in the figure, the second hook portion 242 of the connecting rod 24 moves backward along the M-shaped sliding track 231, and then slides forward along the M-shaped sliding track 231 under the elastic force of the first spring 22 until it is locked by the locking portion 232. At this time, the movable water outlet head 5 is in a retracted state, that is, the movable conduit 21 is in a retracted state, and the mouthwash nozzle 51 is hidden inside the shell 1.
[0052] Bubble water working mode: In this mode, the movable conduit 21 remains in the storage state; by pressing the button 45 of the second switching mechanism 4, the water hole 421 of the rotating disk 42 is switched to the corresponding third water outlet 33, and the fourth water outlet 34 is sealed by the sealing gasket 423. The water path conduction relationship is: water inlet channel 11--first water outlet 14-first channel 12 (water gap)-second water outlet 15-second channel 13-water hole 421-third water outlet 33-fourth channel 31-bubble water area 61. (Refer to Fig.13 shown).
[0053] Shower water working mode: In this mode, the movable conduit 21 remains in the storage state; by pressing the button 45 of the second switching mechanism 4, the water hole 421 of the rotating disk 42 is switched to the corresponding fourth water outlet 34, and the third water outlet 33 is sealed by the sealing gasket 423. The water path conduction relationship is: water inlet channel 11--first water outlet 14--first channel 12 (water gap)--second water outlet 15--second channel 13-water hole 421--fourth water outlet 34--fifth channel 32-shower water area 62. (Refer to Fig.14 shown).
[0054] The above is only a specific implementation of the present utility model, but the design concept of the present utility model is not limited to this. Any non-substantial changes to the present utility model using this concept shall be deemed as an infringement of the protection scope of the present utility model.
Claims
1. A shower head with multi-mode switching water outlet, characterized in that: include: A shell, one end of which is provided with a water inlet channel, a first channel and a second channel are provided in the shell, the first channel is communicated with the water inlet channel, and the second channel is communicated with the first channel; The first switching mechanism comprises a movable conduit, wherein a third channel is arranged in the movable conduit, the movable conduit is arranged in the first channel and can move along the axis direction of the first channel, a water gap is formed between a section of the outer wall of the movable conduit and the inner wall of the first channel, and the movable conduit has a closing portion, and the position of the movable conduit is changed by the first switching mechanism to switch the flow direction of the waterway, when the movable conduit is located at the first position, the water inlet channel is connected to the second channel through the water gap; when the movable conduit is located at the second position, the water inlet channel is connected to the second channel through the first channel.
2. A multi-mode switchable water shower according to claim 1, characterized in that: The first switching mechanism also includes a first spring and a limiting mechanism. The first spring applies an elastic force to the movable conduit to pop outward. When the movable conduit is in the first position, the first spring is in a compressed state. When the movable conduit is in the second position, part of the movable conduit protrudes from the first channel, and the limiting mechanism limits the movable conduit from detaching. The end of the movable conduit away from the water inlet channel is the water outlet end.
3. A multi-mode switchable shower head according to claim 2, characterized in that: The limiting mechanism includes a slide groove and a connecting rod. The first spring is arranged in the first channel. The slide groove is fixed on the shell. A sliding track is arranged in the slide groove. The sliding track has an embedded portion. A first hook and a second hook are respectively arranged at both ends of the connecting rod. The first hook is hooked and connected with the movable conduit. The second hook is arranged in the slide groove and can move along the sliding track. The second hook of the connecting rod is hooked on the embedded portion of the sliding track to form a contracted state of the movable conduit in the first position. The second hook of the connecting rod is hooked on the end position of the sliding track to form a pop-up state of the movable conduit in the second position.
4. A multi-mode switchable shower head according to claim 3, characterized in that: The sliding track is an M-shaped sliding track, and the locking portion is located in the middle of the track.
5. A shower head with multi-mode switching water outlet according to claim 3, characterized in that: The water inlet channel is connected to the first channel via a first water outlet, and the first channel is connected to the second channel via a second water outlet. The movable conduit is provided with two groups of sealing parts for forming a seal between the movable conduit and the first channel. The movable conduit forms a reduced diameter section between the two groups of sealing parts, and the water flow gap is located between the outer wall of the reduced diameter section and the inner wall of the first channel. When the movable conduit is in a contracted state, the first water outlet and the second water outlet are correspondingly located at the reduced diameter section to form a connection; when the movable conduit is in a pop-up state, the first water outlet is located outside the end of the movable conduit, forming a connection from the first water outlet to the third channel.
6. A shower head with multi-mode switching water outlet according to claim 3, characterized in that: It also includes a movable water outlet head, which is arranged at the end of the movable conduit and connected to the third channel. A mouthwash nozzle is opened on the side wall of the movable water outlet head. When the movable conduit is in a retracted state, the mouthwash nozzle is stored inside the shell; when the movable conduit is in an extended state, the mouthwash nozzle is moved out of the shell.
7. A shower head with multi-mode switching of water outlet according to claim 6, characterized in that: A rectifier is arranged in the movable water outlet head, and the water flows through the rectifier and reaches the mouthwash nozzle.
8. A multi-mode switchable shower head according to claim 1, characterized in that: It also includes a guide box and a second switching mechanism, wherein the guide box is installed in the shell, and a fourth channel and a fifth channel are provided in the guide box; the second switching mechanism is installed in the guide box, and the guide box is connected to the second channel through the second switching mechanism, and the second channel is connected to the fourth channel or the second channel is connected to the fifth channel through switching and changing of the second switching mechanism.
9. A shower head with multi-mode switching water outlet according to claim 8, characterized in that: The guide box is provided with a third water outlet and a fourth water outlet, the third water outlet is connected to the fourth channel, and the fourth water outlet is connected to the fifth channel; the second switching mechanism is used to switch and change the water path connection state, switching the second channel to connect with the third water outlet, or the second channel to connect with the fourth water outlet.
10. A shower head with multi-mode switching of water outlet according to claim 9, characterized in that: The second switching mechanism has a ballpoint pen-type press-to-switch structure, including a guide cylinder, a turntable, a rotating shaft, a second spring, and a button. The guide cylinder is arranged on the guide box, and the turntable is provided with a water through hole running through from top to bottom. A first latch tooth is provided under the turntable, and the rotating shaft is arranged through the guide cylinder. A second latch tooth is provided on the rotating shaft. The second spring has an elastic force that applies downward pressure to the turntable. By pressing the button, the second latch tooth and the first latch tooth of the rotating shaft are switched to change the rotation angle of the turntable, thereby changing the state of connection between the water through hole and the third water through port, or forming the state of connection between the water through hole and the fourth water through port.
11. A shower head with multi-mode switching of water outlet according to claim 10, characterized in that: A sealing gasket is also provided under the rotating disk. When the water hole is connected to the third water outlet, the sealing gasket closes the fourth water outlet; when the water hole is connected to the fourth water outlet, the sealing gasket closes the third water outlet.
12. A shower head with multi-mode switching of water outlet according to claim 8, characterized in that: It also includes a water outlet box, on which a bubble water area and a shower water area are separated and arranged. The water outlet box is connected to the guide box, and the fourth channel is connected to the bubble water area, and the fifth channel is connected to the shower water area.