Water outlet device

By designing two working modes for the water outlet module, the reverse water flow impacts the scale, solving the problem of clogged water outlet holes and achieving convenient descaling and unblocking effects.

CN223517734UActive Publication Date: 2025-11-07JOMOO KITCHEN & BATHROOM
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Patent Information

Application Number
CN202422567960.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-11-07
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

The water outlet of the water outlet device is prone to clogging, and existing descaling methods are complex and costly.

Method used

The water outlet module is designed with two working modes. It can remove scale and unclog the water outlet by flipping the installation. The first and second ends of the water outlet module are installed on the main body respectively. After flipping, the water outlet mode can be switched, and the water flow is used to clean the dirt by impacting it in the opposite direction.

Benefits of technology

It enables simple and convenient unclogging and descaling of the water outlet, reduces maintenance costs, and ensures the normal operation of the water outlet device.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a water outlet device which comprises an installation body with an installation hole and a water outlet module detachably installed in the installation hole, and a flow channel is formed in the installation body. The first end of the water outlet module is provided with a first water outlet, and the second end is provided with a second water outlet; a first installation structure is arranged at the position, close to the first end, of the water outlet module, a second installation structure is arranged at the position, close to the second end, of the water outlet module, and the first installation structure and the second installation structure are arranged to be installed in cooperation with the installation holes. The water outlet module is set to have a first working mode and a second working mode, in the first working mode, the second mounting structure of the water outlet module and the mounting hole are mounted in a matched mode, the first end of the water outlet module faces the outer side, and in the second working mode, the first mounting structure of the water outlet module and the mounting hole are mounted in a matched mode, and the second end of the water outlet module faces the outer side. According to the scheme, the water outlet module can have two water outlet modes, and dredging of the water outlet holes can be achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of bathroom, more particularly, to a water outlet device. BACKGROUND

[0002] In the water outlet device, for example, the shower, the water outlet hole is more, and the water outlet hole is smaller, dirt is easy to block the water outlet hole, causes the water splash to be oblique, and the water flow is small and so on problem.

[0003] The current scale removal mode usually adopts the needle plate scale removal, and the structure is complex, and the cost is high. UTILITY MODEL CONTENT

[0004] The utility model embodiment provides a water outlet device to solve the problem of water outlet hole blockage of the water outlet device.

[0005] The utility model embodiment further provides a water outlet device, which comprises: a mounting main body with a mounting hole and a water outlet module detachably mounted in the mounting hole, the mounting main body has a flow channel for supplying water to the water outlet module;

[0006] The first end of the water outlet module has a plurality of first water outlet holes, and the second end has a plurality of second water outlet holes communicated with the first water outlet holes; the water outlet module is provided with a first mounting structure at a position close to the first end and a second mounting structure at a position close to the second end, and the first mounting structure and the second mounting structure are respectively arranged to be mounted in cooperation with the mounting hole;

[0007] Among them, the water outlet module is arranged to have a first working mode and a second working mode, in the first working mode, the second mounting structure of the water outlet module is mounted in cooperation with the mounting hole, the first end faces the outside, so that the water in the mounting main body enters the second water outlet hole and is sprayed from the first water outlet hole; in the second working mode, the first mounting structure of the water outlet module is mounted in cooperation with the mounting hole, and the second end faces the outside, so that the water in the mounting main body enters the first water outlet hole and is sprayed from the second water outlet hole.

[0008] In an embodiment, the second water outlet hole is larger than the first water outlet hole.

[0009] In an embodiment, the water outlet module is provided with an internal water cavity, and the first water outlet hole and the second water outlet hole are communicated with the internal water cavity.

[0010] In one embodiment, the water outlet module comprises a cylinder, the cylinder comprises a barrel, a first end plate at one end of the barrel and a second end plate at the other end, the barrel, the first end plate and the second end plate form the internal water cavity; wherein the first end plate is provided with a plurality of first water outlet holes, the second end plate is provided with a plurality of second water outlet holes, and the outer peripheral surface of the barrel is provided with the first mounting structure and the second mounting structure.

[0011] In one embodiment, the mounting body comprises an annular water outlet element with the mounting hole, and the annular water outlet element is provided with a plurality of water outlet nozzles.

[0012] The mounting body is further provided with a first water supply channel for supplying water to the annular water outlet element and a second water supply channel for supplying water to the water outlet module.

[0013] In one embodiment, the first mounting structure and the second mounting structure are both arranged to be clamped in the mounting hole by pressing the water outlet module towards the mounting hole, and to be detached from the mounting hole by pressing the water outlet module.

[0014] In one embodiment, the mounting body comprises a mounting ring and an elastic component for applying elastic force to the water outlet module, the inner wall surface of the mounting ring is provided with a plurality of clamping structures spaced along the circumference, and a notch is formed between adjacent clamping structures; the first mounting structure and the second mounting structure are respectively a plurality of clamping blocks spaced along the circumference on the outer peripheral surface of the water outlet module.

[0015] The water outlet module and the mounting ring are further provided with a guide structure with an inclined surface, when the water outlet module is mounted, the first end or the second end of the water outlet module is pressed towards the mounting hole, the water outlet module moves axially along the pressing direction under the guidance of the guide structure while rotating relative to the mounting ring, so that the clamping blocks enter the notches and then rotate along the circumference to be misaligned with the notches, when the water outlet module is released, the water outlet module moves in the direction opposite to the pressing direction under the action of the elastic component so that the clamping blocks are clamped in the clamping structures.

[0016] When the water outlet module is detached, the water outlet module is pressed, the water outlet module moves axially along the pressing direction under the guidance of the guide structure while rotating relative to the mounting ring, so that the clamping blocks are aligned with the notches, when the water outlet module is released, the water outlet module moves in the direction opposite to the pressing direction under the action of the elastic component so that the clamping blocks are detached from the notches.

[0017] In one embodiment, the mounting body further comprises a rear cover at the rear end of the mounting hole and a splash cover plate capable of moving relative to the rear cover in the mounting hole and having a splash hole, the elastic component is a spring between the rear cover and the splash cover plate, the spring exerts elastic force on the water outlet module by pushing the splash cover plate, and the water outlet module is pressed to push the splash cover plate and compress the spring.

[0018] In one embodiment, the first mounting structure and the second mounting structure are respectively arranged to be mounted in the mounting hole by rotation and to be detached from the mounting hole by reverse rotation.

[0019] In one embodiment, the first mounting structure and the second mounting structure are respectively protrusions arranged on the outer circumferential surface of the water outlet module, the mounting hole is provided with a mounting ring, the inner wall surface of the mounting ring is provided with a limiting portion, and the water outlet module is arranged to be limited by the limiting portion by being rotated to the side of the limiting portion facing the mounting hole and to be detached from the limiting portion by reverse rotation.

[0020] In the technical scheme provided by the embodiment of the application, the first end and the second end of the water outlet module are arranged to be capable of being mounted in the mounting body, that is, the water outlet module can be mounted after being turned over, so that the water outlet device has two working modes, which not only enables the water outlet device to have two water outlet modes, but also enables the water outlet device to realize descaling and dredging of the first water outlet hole or the second water outlet hole by being turned over and mounted when the first water outlet hole or the second water outlet hole is blocked.

[0021] Other features and advantages of the present application will be set forth in the following description of the application, and in part will become apparent to those skilled in the art upon examination of the following or can be learned from practice of the present application. The objects and other advantages of the present application can be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings. BRIEF DESCRIPTION OF DRAWINGS

[0022] The accompanying drawings are included to provide a further understanding of the present application and are incorporated in and constitute a part of this specification, illustrate embodiments of the present application and serve to explain the principles of the present application, and do not limit the present application.

[0023] Figure 1 FIG. 1 is a structural schematic view of a water outlet device according to one embodiment of the present application;

[0024] Figure 2 FIG. 2 is a structural schematic view of a water outlet module according to one embodiment of the present application;

[0025] Figure 3 FIG. 3 is a structural schematic view of the water outlet module shown in FIG. 2 viewed from the other side; and Figure 2 FIG. 4 is a structural schematic view of the water outlet module shown in FIG. 3 viewed from the other side.

[0026] Figure 4 This is a schematic diagram showing the second end of the water outlet module being installed in the mounting hole according to one embodiment of this application;

[0027] Figure 5 This is a schematic diagram showing the first end of the water outlet module being installed with respect to the mounting hole according to one embodiment of this application;

[0028] Figure 6 for Figure 1 A schematic diagram of the water outlet device in a decomposed state.

[0029] Figure 7 for Figure 1 A schematic diagram of the longitudinal section of the water outlet device;

[0030] Figure 8 for Figure 7 A partially enlarged schematic diagram;

[0031] Figure 9 for Figure 1 A schematic diagram of the transverse cross-section of the water outlet device shown;

[0032] Figure 10 This shows the water output module spraying water in a pressurized water output mode during implementation;

[0033] Figure 11 This shows the state of a water outlet module spraying water in columnar water outlet mode during implementation;

[0034] Figure 12 This is a schematic diagram of a structure in which the water outlet module and the mounting ring are in a separated state according to one embodiment of this application;

[0035] Figure 13 for Figure 12 A schematic diagram of the structure of the water outlet module and mounting ring after installation;

[0036] Figure 14 This is a schematic diagram of the mounting ring according to one embodiment of the present application;

[0037] Figures 15(a)-15(j) are schematic diagrams of the disassembly and assembly of the water outlet module and the mounting ring according to one embodiment of the present application;

[0038] Figure 16 This is a schematic diagram of a structure in which the water outlet module and the mounting ring are in a separated state according to another embodiment of this application;

[0039] Figure 17 for Figure 16 A schematic diagram of the structure after the water outlet module and mounting ring are installed.

[0040] Reference signs:

[0041] 1 - mounting body; 11 - mounting seat; 12 - annular water outlet; 13 - mounting ring; 131 - clamping structure; 1311 - first inclined surface; 1312 - third inclined surface; 1313 - second inclined surface; 1314 - fourth inclined surface; 1315 - first guide inclined surface; 1316 - second guide inclined surface; 1317 - first thickness part; 1318 - second thickness part; 132 - notch; 14 - rear cover; 15 - spring; 16 - splash cover plate; 17 - O-ring; 18 - Y-shaped sealing ring; 2 - water outlet module; 21 - clamping block; 22 - guide block; 23 - cylinder; 231 - first water outlet hole; 232 - second water outlet hole; 3 - switching assembly; 31 - button; 32 - switching mechanism; 4 - water inlet pipe; 51 - first water supply channel; 52 - second water supply channel. DETAILED DESCRIPTION

[0042] To make the purpose, technical scheme and advantages of the present application clearer, the embodiments of the present application will be described in detail below with reference to the drawings. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other arbitrarily without conflict.

[0043] The embodiments of the present application provide a water outlet device, as shown in the drawings, the water outlet device comprises: a mounting body 1 having a mounting hole and a water outlet module 2 detachably mounted in the mounting hole, the mounting body 1 has a water supply channel for supplying water to the water outlet module; Figures 1-5

[0044] The first end of the water outlet module 2 has a plurality of first water outlet holes 231, and the second end has a plurality of second water outlet holes 232 in communication with the first water outlet holes 231; the water outlet module 2 is provided with a first mounting structure near the first end and a second mounting structure near the second end, and the first mounting structure and the second mounting structure are respectively arranged to be mounted in cooperation with the mounting hole;

[0045] The water outlet module 2 is arranged to have a first working mode and a second working mode, in the first working mode, the second mounting structure of the water outlet module 2 is mounted in cooperation with the mounting hole, the first end faces the outside, so that the water in the mounting body 1 enters the second water outlet hole 232 and is sprayed from the first water outlet hole 231, in the second working mode, the first mounting structure of the water outlet module 2 is mounted in cooperation with the mounting hole, the second end faces the outside, so that the water in the mounting body 1 enters the first water outlet hole 232 and is sprayed from the second water outlet hole 232.

[0046] ​The technical scheme provided by the embodiment of the application is characterized in that the first end and the second end of the water outlet module 2 are arranged to be capable of being mounted on the mounting body 1, that is, the water outlet module 2 can be mounted after being turned over, so that the water outlet device has two working modes, and the water outlet device 2 can have two water outlet modes, and when the first water outlet hole 231 or the second water outlet hole 232 is blocked, the first water outlet hole 231 or the second water outlet hole 232 can be descaled and dredged by being mounted after being turned over.

[0047] For example, when the water outlet module 2 is in the first working mode, if the first water outlet hole 231 is found to be blocked, the water outlet module 2 can be mounted after being turned over, and the water outlet module 2 is mounted in the second working mode, so that the water flow enters the water outlet module 2 from the first water outlet hole 231 and then flows out from the second water outlet hole 232, so that the water flow entering the water outlet device directly impacts the first water outlet hole 231, and because the first water outlet hole 231 is turned over, the water flow impacts the dirt of the first water outlet hole 231 from the opposite direction, so that the dirt can be easily washed away from the first water outlet hole 231 and flow out from the second water outlet hole 232, thereby achieving dredging of the first water outlet hole 231; similarly, when the second water outlet hole 232 is blocked, the water outlet module 2 can also be mounted after being turned over, and the dirt is impacted in the opposite direction, so that the dirt can be easily washed away, thereby achieving dredging of the second water outlet hole 232.

[0048] In one embodiment, as shown in Figure 2 and Figure 3 , the second water outlet hole 232 is larger than the first water outlet hole 231, the first water outlet mode of the water outlet module 2 is to spray water outwards through the first water outlet hole 231 with a smaller hole diameter, so that the first water outlet mode is a pressurized water outlet mode, and the pressure of the water sprayed outwards is relatively large, and the second water outlet mode is to spray water outwards through the second water outlet hole 232 with a larger hole diameter, so that the second water outlet mode is a columnar water outlet module.

[0049] Under normal circumstances, the water outlet module 2 works in the first working mode, and the first water outlet hole 231 is easily blocked, and after the water outlet module 2 is mounted after being turned over, the first water outlet hole 231 is impacted by the water flow in the opposite direction, and can be easily washed away from the second water outlet hole 232 with a larger hole diameter.

[0050] In an embodiment, the water outlet module 2 is provided with an internal water cavity, and the first water outlet hole 231 and the second water outlet hole 232 are both in communication with the internal water cavity. In this way, when the water outlet module 2 is installed upside down to flush away dirt, the dirt in the first water outlet hole 231 or the second water outlet hole 232 can be flushed into the internal cavity of the water outlet module 2. The dirt is flushed from the narrow first water outlet hole 231 or the second water outlet hole 232 to the larger internal cavity, which is relatively easy. Then, the water flow in the internal cavity carries the dirt out of the second water outlet hole 232 or the first water outlet hole 231 on the outside. Of course, the first water outlet hole 231 and the second water outlet hole 232 can also be respectively and correspondingly communicated through respective flow channels.

[0051] In Figure 2 and Figure 3 In an example, the water outlet module 2 includes a cylindrical body 23, which includes a barrel and a first end plate at one end of the barrel and a second end plate at the other end. The barrel, the first end plate, and the second end plate enclose the internal water cavity. The first end plate is provided with a plurality of first water outlet holes 231, and the second end plate is provided with a plurality of second water outlet holes 232. The outer peripheral surface of the barrel is provided with the first mounting structure and the second mounting structure.

[0052] In an embodiment, the first mounting structure and the second mounting structure on the water outlet module 2 are both configured to be clamped in the mounting hole of the mounting body 1 by pressing the water outlet module 2 into the mounting hole, and to be detached from the mounting hole by pressing the water outlet module 2. The water outlet module 2 can be disassembled and assembled by pressing, which is simple and convenient to operate.

[0053] Referring to Figures 6-8 and Figures 12-1 In an example of 5(j), the mounting body 1 includes a mounting ring 13 and an elastic component that exerts a force on the water outlet module 2. The inner wall surface of the mounting ring 13 is provided with a plurality of clamping structures 131 spaced apart in the circumferential direction, and a slot 132 is formed between adjacent clamping structures 131. The first mounting structure and the second mounting structure are respectively a plurality of clamping blocks 21 spaced apart in the circumferential direction on the outer peripheral surface of the water outlet module 2.

[0054] The water outlet module 2 and the mounting ring 13 are further provided with a guide structure having an inclined surface. When the first end or the second end of the water outlet module 2 is pressed into the mounting hole of the mounting body 1, the water outlet module 2 moves axially along the pressing direction under the guidance of the guide structure while rotating relative to the mounting ring 13, so that the clamping blocks 21 enter the slot 132 and then rotate in the circumferential direction to be offset from the slot 132. After the water outlet module 2 is released, the water outlet module 2 moves in the direction opposite to the pressing direction under the action of the elastic component, so that the clamping blocks 21 are clamped in the clamping structures 131.

[0055] When the water outlet module 2 is disassembled, the water outlet module 2 is pressed, and the water outlet module 2 rotates relative to the mounting ring 13 while moving axially along the pressing direction under the guidance of the guiding structure, so that the clamping block 21 is aligned with the slot 132. After the water outlet module 2 is released, the water outlet module 2 moves in the direction opposite to the pressing direction under the action of the elastic component, so that the clamping block 21 is released from the slot 132.

[0056] During the disassembly and assembly of the water outlet module 2, the mounting ring 13 can be arranged to rotate relative to the fixed component of the mounting body 1, or the water outlet module 2 can be arranged to rotate during assembly, or both the water outlet module 2 and the mounting ring 13 can be arranged to rotate.

[0057] In one embodiment, as shown in the example, Figures 6-8 The mounting body 1 further includes a rear cover 14 located at the rear end of the mounting hole and a water dispersion cover plate 16 capable of moving relative to the rear cover 14 in the mounting hole and having a water dispersion hole. The elastic component that exerts the elastic force on the water outlet module 2 is a spring 15 located between the rear cover 14 and the water dispersion cover plate 16. The spring 15 exerts the elastic force on the water outlet module 2 by pushing the water dispersion cover plate 16. When the water outlet module 2 is pressed, the water dispersion cover plate 16 is pushed to compress the spring 15. By arranging the water dispersion cover plate 8, the appearance of the water outlet device can be maintained after the water outlet module 2 is disassembled, without exposing the internal structure.

[0058] The water cavity is formed between the rear cover 14 and the water dispersion cover plate 16. The water flowing into the mounting body 1 enters the water cavity between the rear cover 14 and the water dispersion cover plate 16, then flows to the water outlet module 2 through the water hole of the water dispersion cover plate 16, and then flows out from the water outlet module 2. To seal the water cavity, an O-ring 17 is arranged between the rear cover 14 and the inner wall of the mounting hole, and a Y-shaped sealing ring 18 is arranged between the water dispersion cover plate 16 and the inner wall of the mounting hole.

[0059] In one embodiment, the guiding structure between the water outlet module 2 and the mounting ring 13 includes a guiding block 22 arranged on the outer peripheral surface of the water outlet module 2 and a first inclined surface 1311 and a second inclined surface 1313 arranged on the mounting ring 13. The guiding block 22 is located between the clamping block 21 close to the first end and the clamping block 21 close to the second end.

[0060] Reference Figures 12-14As shown in FIG. 15(a)-15(c), when the water outlet module 2 is installed, the first end or the second end of the water outlet module 2 is pressed towards the installation ring 13 in the installation hole, under the pressing force F1, the clamping block 21 of the water outlet module 2 enters the notch 132 of the installation ring 13, then the guide block 22 presses the first inclined surface 1311 and slides along the first inclined surface 1311 relative to the clamping structure, so that the water outlet module 2 moves axially relative to the installation ring 13 and rotates circumferentially to be staggered with the notch 132; as shown in FIG. 15(f)-15(g), when the water outlet module 2 is disassembled, the water outlet module 2 is pressed, under the pressing force F1, the guide block 22 presses the second inclined surface 1313 and slides along the second inclined surface 1313 relative to the clamping structure 131. In this embodiment, the first inclined surface 1311 and the second inclined surface 1313 have the same inclination direction, and the inclination angles can be the same or different.

[0061] In Figures 12-14 In the example shown, the first inclined surface 1311 and the second inclined surface 1313 are both arranged on the clamping structure 131, and the guide block 22 slides along the inclined surface on the clamping structure 131. It can be understood that the first inclined surface 1311 or the second inclined surface 1313 can also be arranged on other structures instead of the clamping structure 131, for example, a guide structure with the first inclined surface 1311 and the second inclined surface 1313 is arranged on the inner wall of the installation ring 13 and cooperates with the guide block 22. Alternatively, the first inclined surface 1311 or the second inclined surface 1313 is arranged on the guide block 22, and when the installation ring 13 is pressed, the installation ring 13 moves along the inclined surface on the guide block 22.

[0062] In one embodiment, as shown in FIG. 15(d)-15(e), when the water outlet module 2 moves in the direction opposite to the pressing direction under the elastic force F2 of the spring 15 to make the clamping block 21 clamped to the clamping structure 131, the clamping block 21 is arranged to slide along the third inclined surface 1312 relative to the clamping structure 131 to the clamping position; as shown in FIG. 15(h)-15(i), when the water outlet module 2 moves in the direction opposite to the pressing direction under the elastic force F2 of the spring 15 to make the clamping block 21 disengaged from the notch 132, the clamping block 21 is arranged to slide along the fourth inclined surface 1314 relative to the clamping structure 131 to the notch 132. In this embodiment, the third inclined surface 1312 and the fourth inclined surface 1314 have the same inclination direction, and the inclination angles can be the same or different, and the inclination direction of the third inclined surface 1312 and the fourth inclined surface 1314 is opposite to the inclination direction of the first inclined surface 1311 and the second inclined surface 1313.

[0063] In one embodiment, the first inclined surface 1311, the third inclined surface 1312, the second inclined surface 1313 and the fourth inclined surface 1314 are arranged on each clamping structure 131. As Figure 12 and Figure 14As shown, the first inclined surface 1311 and the second inclined surface 1313 are arranged on the side of the clamping structure 131 facing the guide block 22 to be able to cooperate with the guide block 22, and the third inclined surface 1312 and the fourth inclined surface 1314 are arranged on the side of the clamping structure 131 away from the guide block 22 to be able to cooperate with the clamping block 21.

[0064] In an embodiment, the first guide inclined surface 1315 and the second guide inclined surface 1316 are arranged on each clamping structure 131, the first guide inclined surface 1315 is close to the notch 132 on one side of the clamping structure 131, and the second guide inclined surface 1316 is close to the notch 132 on the other side of the clamping structure 131. As shown in FIG. 15(a), when the clamping block 21 moves in the pressing direction, it can enter the notch 132 on the corresponding side along the first guide inclined surface 1315 or the second guide inclined surface 1316.

[0065] In Figure 14 In an example, the clamping structure 131 includes a first thickness portion 1317 and a second thickness portion 1318 protruding inwardly from the inner wall of the mounting ring 13, the first thickness portion 1317 is greater than the second thickness portion 1318; wherein at least part of the first guide inclined surface 1315 and the second guide inclined surface 1316 are arranged on the second thickness portion 1318; wherein the thickness of the clamping block 21 is greater than the thickness of the guide block 22, and when the clamping block 21 moves into the notch 132 along the first guide inclined surface 1315 or the second guide inclined surface 1316, the guide block 22 can enter the space between the second thickness portion 1318 and the water outlet module 2, as shown in FIG. 15(b). That is, in the process of the clamping block 21 entering the notch 132, in order to avoid interference between the clamping structure 131 and the guide block 22, the guide block 22 is arranged to move into the space between the second thickness portion 1318 and the water outlet module 2, and the first inclined surface 1311 is located in the space between the second thickness portion 1318 and the water outlet module 2, so that the guide block 22 moves along the first inclined surface 1311 after entering the space.

[0066] The specific process of disassembling the first end of the water outlet module 2 from the mounting ring 13 in an embodiment is described below according to FIGS. 15(a)-15(j), and the disassembling process of the second end of the water outlet module 2 from the mounting ring 13 is the same.

[0067] The process of installing the water outlet module 2 is as follows (refer to FIGS. 15(a)-15(e)):

[0068] As shown in FIG. 15(a), the water outlet module 2 is pressed towards the mounting ring 13, and the water outlet module 2 moves relative to the mounting ring 13 under the action of the pressing force F1, and the clamping block 21 enters the notch 132 between the adjacent clamping structures 131 under the guidance of the first guide inclined surface 1315 (or the second guide inclined surface 1316).

[0069] As shown in FIG. 15(b)-15(c), after the clamping block 21 enters the slot 132, the guide block 22 on the water outlet module 2 cooperates with the first inclined surface 1311 on the clamping structure 131, and under the action of the pressing force F1, the guide block 22 presses and moves along the first inclined surface 1311, so that the water outlet module 2 moves axially in the pressing direction relative to the mounting ring 13 and rotates in the first direction (rotates to the right in the figure) relative to the mounting ring 13, and in the process of rotation, the clamping block 21 rotates to the side of the clamping structure 131 away from the guide block 22 and is misaligned with the slot 132.

[0070] As shown in FIG. 15(d)-15(e), the water outlet module 2 is released, i.e., the pressing on the water outlet module 2 is stopped, and the water outlet module 2 moves reversely under the action of the elastic force F2 of the spring 15, the clamping block 21 contacts the clamping structure 131 and moves along the third inclined surface 1312 to the clamping position, and in the clamping position, the third inclined surface 1312 and the stop surface at an angle with the third inclined surface 1312 jointly limit the clamping block 21, so that the clamping block 21 is clamped in the clamping position, and thus the water outlet module 2 is mounted on the mounting ring 13.

[0071] The process of dismounting the water outlet module 2 is as follows, referring to FIG. 15(f)-15(j):

[0072] As shown in FIG. 15(f)-15(g), the water outlet module 2 is pressed, and the water outlet module 2 moves under the action of the pressing force F1, and in the process, the clamping block 21 moves away from the clamping structure 131 in the pressing direction, and the guide block 22 contacts the second inclined surface 1313 and moves along the second inclined surface 1313, the water outlet module 2 rotates in the first direction relative to the mounting ring 13, so that the clamping block 21 deviates from the clamping position.

[0073] As shown in FIG. 15(h)-15(j), the water outlet module 2 is released, i.e., the pressing on the water outlet module 2 is stopped, and the water outlet module 2 moves reversely under the action of the elastic force F2 of the spring 15, the clamping block 21 contacts the clamping structure 131 and moves along the fourth inclined surface 1314 to the slot 132, and then moves out of the slot 132, so that the water outlet module 2 can be separated from the mounting ring 13.

[0074] It can be understood that the structure of the water outlet module 2 which can be mounted and dismounted is not limited to the structure as described above, but can also be other structure forms. For example, the first mounting structure and the second mounting structure of the water outlet module 2 are respectively provided to be mounted in the mounting hole of the mounting body 1 by rotating and dismounted from the mounting hole by reversing rotation.

[0075] As Figure 16 and Figure 17In the example, the first mounting structure and the second mounting structure are respectively a protrusion 24 provided on the outer peripheral surface of the water outlet module 2, a mounting ring 13 provided in the mounting hole, a limiting part 133 provided on the inner wall surface of the mounting ring 13, the water outlet module 2 is configured to be able to rotate to the side of the limiting part 133 facing the mounting hole and be limited by the limiting part 133, a stop part 134 provided on the limiting part 133, when rotated to a certain position, the protrusion 24 is stopped by the stop part 134, and by rotating the water outlet module 2 in the opposite direction, the protrusion 24 can be disengaged from the limiting part 133.

[0076] In another embodiment, the first mounting structure and the second mounting structure of the water outlet module 2 can also be threads, and the water outlet module 2 is mounted on the mounting hole by the threads.

[0077] In the solution provided in this application, the water outlet device can be a shower head, faucet, or overhead shower, etc. Figures 1-9 In one embodiment, the water outlet device is a shower head.

[0078] like Figures 1-9 As shown, the mounting body 1 also includes an annular water outlet component 12 with mounting holes. Multiple water outlet nozzles are provided on the annular water outlet component 12, and the water outlet module 2 is disposed within the mounting hole in the center of the annular water outlet component 12. The mounting body 1 is also provided with a first water supply channel 51 for supplying water to the annular water outlet component 12 and a second water supply channel 52 for supplying water to the water outlet module 2. Thus, the water outlet device can be configured to have both water outlet from the water outlet module 2 and water outlet from the annular water outlet component 12, and the two water outlet modes can be switched.

[0079] like Figure 6 and Figure 7 As shown, the main installation body 1 also includes a mounting base 11, and the annular water outlet 12 is installed on the mounting base 11. The mounting base 11 is provided with a water inlet pipe 4 and a switching component 3. The water inlet pipe 4 is used to supply water to the first water supply channel 51 and the second water supply channel 52. The switching component 3 is configured to control the on / off state of the first water supply channel 51 and the second water supply channel 52. The switching component 3 includes a button 31 and a switching mechanism 32 connected to the button 31. By pressing the button 31, the on / off state of the first water supply channel 51 and the second water supply channel 52 can be switched cyclically, thereby selecting whether the water outlet module 2 or the annular water outlet 12 is discharging water.

[0080] Figure 9 The display shows the state where the switching component 3 controls the opening of the first water supply channel 31, and water flows from the first water supply channel 31 to the water outlet module 2. Figure 10 This shows the state of the first water outlet 231 of the water outlet module 2 spraying water outwards, indicating that the water outlet module 2 is in pressurized water spraying mode. Figure 11 The image shows the second water outlet 232 of the water outlet module 2 spraying water outwards, indicating that the water outlet module 2 is in columnar spray mode.

[0081] In the description of the utility model, it needs to be explained that the terms "upper", "lower", "one side", "the other side", "one end", "the other end", "edge", "opposite", "four corners", "perimeter", "mouth" structure" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the structure indicated has a specific orientation, is constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model.

[0082] In the description of the utility model embodiment, unless otherwise explicitly specified and limited, the terms "connection", "direct connection", "indirect connection", "fixed connection", "installation", "assembly" should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integrally connected; the terms "installation", "connection", "fixed connection" can be directly connected, can also be indirectly connected through an intermediate medium, and can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.

[0083] Although the embodiments disclosed by the utility model are as above, the content described is only the embodiment adopted for the convenience of understanding the utility model, and is not used to limit the utility model. Any person skilled in the art of the utility model can make any modification and change in the implementation form and details without departing from the spirit and scope of the utility model disclosed, but the patent protection scope of the utility model still needs to be defined by the appended claims.

Claims

1. A water outlet device, characterized by, The application relates to a shower device, which comprises: a mounting body with a mounting hole and a detachable water outlet module mounted in the mounting hole, the mounting body being provided with a flow channel for supplying water to the water outlet module; the first end of the water outlet module is provided with a plurality of first water outlet holes, and the second end is provided with a plurality of second water outlet holes communicated with the first water outlet holes; the water outlet module is provided with a first mounting structure near the first end and a second mounting structure near the second end, and the first mounting structure and the second mounting structure are arranged to be mounted in the mounting hole; wherein the water outlet module is arranged to have a first working mode and a second working mode; in the first working mode, the second mounting structure of the water outlet module is mounted in the mounting hole, and the first end faces the outside, so that water in the mounting body enters the second water outlet hole and is sprayed from the first water outlet hole; in the second working mode, the first mounting structure of the water outlet module is mounted in the mounting hole, and the second end faces the outside, so that water in the mounting body enters the first water outlet hole and is sprayed from the second water outlet hole.

2. The water outlet device according to claim 1, characterized in that The second water outlet hole is larger than the first water outlet hole.

3. The water outlet device according to claim 1, characterized in that The water outlet module is provided with an internal water cavity, and the first water outlet hole and the second water outlet hole are communicated with the internal water cavity.

4. The water outlet device according to claim 3, characterized in that The water outlet module comprises a cylindrical body, the cylindrical body comprises a barrel, a cylindrical body, a first end plate located at one end of the barrel and a second end plate located at the other end, and the barrel, the first end plate and the second end plate form the internal water cavity; wherein a plurality of first water outlet holes are arranged on the first end plate, a plurality of second water outlet holes are arranged on the second end plate, and the first mounting structure and the second mounting structure are arranged on the outer peripheral surface of the barrel.

5. The water outlet device according to claim 1, characterized in that The mounting body comprises a ring-shaped water outlet element with the mounting hole, and a plurality of water outlet nozzles are arranged on the ring-shaped water outlet element; the mounting body is further provided with a first water supply flow channel for supplying water to the ring-shaped water outlet element and a second water supply flow channel for supplying water to the water outlet module.

6. The water outlet device according to any one of claims 1-5, characterized in that, The first mounting structure and the second mounting structure are arranged to be clamped in the mounting hole by pressing the water outlet module towards the mounting hole, and to be detached from the mounting hole by pressing the water outlet module.

7. The water outlet device according to claim 6, characterized in that The mounting body comprises a mounting ring and an elastic component for applying elastic force to the water outlet module, a plurality of clamping structures are arranged on the inner wall surface of the mounting ring in a circumferential direction, and a slot is formed between adjacent clamping structures; the first mounting structure and the second mounting structure are respectively a plurality of clamping blocks arranged on the outer peripheral surface of the water outlet module in a circumferential direction. The water outlet module and the mounting ring are further provided with a guide structure with an inclined surface. When the water outlet module is mounted, the first end or the second end of the water outlet module is pressed towards the mounting hole. The water outlet module moves axially along the pressing direction under the guidance of the guide structure while rotating relative to the mounting ring, so that the clamping block enters the slot and then rotates in the circumferential direction to be staggered with the slot. After the water outlet module is released, the water outlet module moves in the direction opposite to the pressing direction under the action of the elastic component to make the clamping block clamped in the clamping structure. When the water outlet module is disassembled, the water outlet module is pressed. The water outlet module moves axially along the pressing direction under the guidance of the guide structure while rotating relative to the mounting ring, so that the clamping block is aligned with the slot. After the water outlet module is released, the water outlet module moves in the direction opposite to the pressing direction under the action of the elastic component to make the clamping block escape from the slot.

8. The water outlet device according to claim 7, characterized in that The mounting body further comprises a rear cover located at the rear end of the mounting hole and a water dispersing cover plate capable of moving relative to the rear cover in the mounting hole and having a water dispersing hole. The elastic component is a spring located between the rear cover and the water dispersing cover plate. The spring applies elastic force to the water outlet module by pushing the water dispersing cover plate. When the water outlet module is pressed, the water dispersing cover plate is pushed to compress the spring.

9. The water outlet device according to any one of claims 1-5, characterized in that, The first mounting structure and the second mounting structure are respectively arranged to be mounted in the mounting hole by rotating and disassembled from the mounting hole by reverse rotation.

10. The water outlet device according to claim 9, characterized in that The first mounting structure and the second mounting structure are respectively protrusions arranged on the outer circumferential surface of the water outlet module. The mounting hole is provided with a mounting ring. The inner wall surface of the mounting ring is provided with a limiting portion. The water outlet module is arranged to be able to rotate to the side of the limiting portion facing the mounting hole to be limited by the limiting portion. Reverse rotation makes the protrusions escape from the limiting portion.