Water outlet device

By designing a water outlet device with a reset valve and a regulating valve, the problem of misspelling caused by changes in water outlet on the faucet device is solved, and flexible control of water outlet flow and convenient operation are achieved.

CN222864208UActive Publication Date: 2025-05-13FOSHAN FAENZA SANITARY WARE +1
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Patent Information

Application Number
CN202421670151.3
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

Technical Problem

When the existing faucet device has a water outlet function, water is sprayed instantly due to changes in water pressure, which is easy to spray on the user accidentally, making it inconvenient to operate.

Method used

A water outlet device is designed, including waterway parts, reset valves and regulating valves. The reset valves are automatically switched according to the water pressure changes in the water inlet channel. The regulating valves are adjusted steplessly through the linkage seats to ensure the minimization of the water outlet flow and flexible control.

Benefits of technology

The minimum water outlet flow during use is achieved. Users can adjust the water outlet according to their needs to avoid missed spraying, and the operation is smooth and convenient.

✦ 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 is characterized in that a water channel piece is provided with a water inlet channel, and the water inlet channel is provided with a first water outlet; the reset valve is installed on the water channel piece and can be automatically switched between a first position and a second position according to the water pressure change of the water inlet channel. The regulating valve is installed on the water channel piece and used for controlling the water outlet flow of the first water outlet, the regulating valve can move between a third position and a fourth position, and the water outlet flow is gradually increased when the regulating valve moves from the third position to the fourth position; the linkage seat is connected between the reset valve and the adjusting valve; every time a user uses the first water outlet to use water, water can be discharged at the minimum water outlet flow, then the user adjusts the water outlet flow according to needs, and the situation that water is sprayed to the user by mistake due to the too large displacement at the moment of water passing is avoided; stepless regulation is also convenient for users to control water quantity, and the operation process is smooth.
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Description

Technical Field

[0001] The utility model relates to water-using equipment, in particular to a water outlet device. Background Art

[0002] In order to provide users with comfortable water needs, some faucets currently on the market have an upper water outlet function, which is mainly used for gargling, making it more convenient for users to gargle. Because the water pressure in the environment is different, many faucets will instantly spray out water when they switch to the upper water outlet function. Many consumers have no time to react before the water sprays outside the basin, and sometimes even sprays consumers by mistake. In order to adjust the flow, many consumers have to control the switch of the faucet, which is extremely inconvenient. Utility Model Content

[0003] The utility model aims to solve one of the above-mentioned technical problems in the related art at least to a certain extent. To this end, the utility model provides a water outlet device.

[0004] To achieve the above purpose, the technical solution of the utility model is as follows:

[0005] According to the first aspect of the present invention, the water outlet device comprises:

[0006] A water channel member, wherein the water channel member is provided with a water inlet channel, and the water inlet channel is provided with a first water outlet;

[0007] A reset valve, the reset valve being mounted on the water channel member and being able to automatically switch between a first position and a second position in response to a change in water pressure in the water inlet channel;

[0008] a regulating valve, the regulating valve being mounted on the water channel member and being used to control the water flow rate of the first water outlet, the regulating valve being movable between a third position and a fourth position, and the water flow rate gradually increasing when the regulating valve moves from the third position to the fourth position;

[0009] A linkage seat, wherein the linkage seat is connected between the reset valve and the regulating valve;

[0010] When water flows through the water inlet channel, the reset valve automatically switches to the second position, and the reset valve can drive the regulating valve to move to and be restricted to the third position through the linkage seat;

[0011] When the water inlet channel is cut off, the reset valve automatically switches to the first position, the reset valve cancels the resistance effect on the linkage seat, and the linkage seat can drive the regulating valve to move between the third position and the fourth position.

[0012] The water outlet device according to the embodiment of the utility model has at least the following beneficial effects: each time the user uses the first water outlet to drink water, water can be discharged at the minimum water flow rate, and the user can then adjust the water output according to demand to avoid water being accidentally sprayed on the user due to excessive discharge volume at the moment of water flow; stepless adjustment also makes it easy for the user to control the water volume, and the operation process is smooth.

[0013] According to some embodiments of the utility model, the reset valve includes a first valve body, a float core and a first elastic member, the first valve body is fixed on the water channel member, one end of the float core faces the water inlet channel, the other end of the float core is connected to the linkage seat, the float core can move between the first position and the second position relative to the first valve body, and the first elastic member has an elastic force on the float core to move it to the second position.

[0014] According to some embodiments of the utility model, the regulating valve includes a second valve body and a valve core, the second valve body is fixed on the water channel component, one end of the valve core is used to control the water outlet flow rate, the other end of the valve core is connected to the linkage seat, and the valve core can move between the third position and the fourth position relative to the second valve body.

[0015] According to some embodiments of the utility model, the water inlet channel is provided with a flow chamber, one end of the valve core is telescopically moved in the flow chamber and there is a clearance fit between the two, a water hole connected to the first water outlet is opened on the side wall of the flow chamber, and when the valve core moves, the water outlet flow rate is changed by changing the offset area with the water hole.

[0016] According to some embodiments of the utility model, the end of the valve core extending into the flow chamber is a flow control section, the interior of the flow control section is hollow to form a flow channel, a plurality of water inlet holes connected to the flow channel are opened on the side wall of the flow control section, the flow chamber has a first opening end and a closed end, one end of the flow channel is opened to form a second opening end, the flow control section extends into the flow chamber from the first opening end, the second opening end faces the closed end, the outer wall of the flow control section and the inner wall of the flow chamber are gap-matched, and the water inlet hole is connected to the first opening end.

[0017] According to some embodiments of the present invention, the first opening end is in a tapered shape that gradually narrows toward the closed end.

[0018] According to some embodiments of the present invention, the moving direction of the regulating valve and the reset valve is a first direction, the linkage seat can move in a second direction relative to the water channel member, and the first direction and the second direction are perpendicular to or intersect each other.

[0019] According to some embodiments of the utility model, the linkage seat is provided with a first groove and a second groove, the first groove is triangular in shape, the first groove has a wide side and a narrow side in the first direction, the second groove is linearly inclined in the first direction, the second groove has a first end and a second end, the reset valve is slidably connected to the first groove via a first shaft, and the regulating valve is slidably connected to the second groove via a second shaft;

[0020] When the reset valve moves to the second position, the first shaft is located at the narrow side to limit the linkage seat from moving along the second direction, and the regulating valve is limited to the third position;

[0021] When the reset valve moves to the first position, the first shaft is located on the wide side, the linkage seat can move along the second direction, and the second groove can drive the second shaft (334) to slide between the first end and the second end to drive the regulating valve to move between the third position and the fourth position.

[0022] According to some embodiments of the utility model, the water inlet channel is further provided with a second water outlet, and a switching valve is provided between the first water outlet and the second water outlet.

[0023] According to some embodiments of the present invention, a housing is further included, the water channel member is installed in the housing, the first water outlet is led out of the housing and faces upward.

[0024] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0026] Figure 1 It is a schematic diagram of the structural breakdown of the water outlet device;

[0027] Figure 2 It is a schematic diagram of the internal structure of the waterway component;

[0028] Figure 3 It is a schematic diagram showing a state in which the reset valve in the water outlet assembly is in the second position and the regulating valve is in the third position;

[0029] Figure 4 It is a schematic diagram showing a state in which the reset valve in the water outlet assembly is in the first position and the regulating valve is in the third position;

[0030] Figure 5is a schematic diagram of a state in which the reset valve in the water outlet assembly is in the first position and the regulating valve is in the fourth position;

[0031] Figure 6 It is a structural schematic diagram of the reset valve;

[0032] Figure 7 yes Figure 6 Schematic diagram of the internal structure;

[0033] Figure 8 It is a structural diagram of a regulating valve;

[0034] Fig. 9 yes Figure 8 Schematic diagram of the internal structure;

[0035] Fig.10 It is a structural diagram of the linkage seat;

[0036] Fig.11 is a structural schematic diagram of the reset valve being in the second position relative to the linkage seat;

[0037] Fig.12 It is a structural schematic diagram of the reset valve being in the first position relative to the linkage seat.

[0038] Figure numerals: water channel component 100; water inlet channel 110; first water outlet 120; flow chamber 130; first open end 131; closed end 132; water hole 140; second water outlet 150; reset valve 200; first valve body 210; float core 220; first elastic member 230; first shaft 240; regulating valve 300; second valve body 310; valve core 320; flow control section 330; flow channel 331; water inlet hole 332; second open end 333; second shaft 334; linkage seat 400; first groove 410; wide side 411; narrow side 412; second groove 420; first end 421; second end 422; switching valve 500; housing 600. DETAILED DESCRIPTION

[0039] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention.

[0040] The utility model relates to a water outlet device, comprising a water channel component 100, a reset valve 200, a regulating valve 300 and a linkage seat 400.

[0041] like Figure 1 , Figure 2 and Figure 3As shown, a water inlet channel 110 is provided on the water channel component 100, and a first water outlet 120 is provided on the water inlet channel 110. One end of the water inlet channel 110 is used to connect to an external water supply system, which may be a water pipe, a water dispenser, etc. The first water outlet 120 may be provided at the other end of the water inlet channel 110, or may be provided at the middle position of the water inlet channel 110. The reset valve 200 and the regulating valve 300 are both installed on the water channel component 100, and the reset valve 200 and the regulating valve 300 extend into the water inlet channel 110. The reset valve 200 automatically switches between the first position and the second position according to the water flow condition of the water inlet channel 110. As shown in FIG. Figure 4 As shown, when water flows through the water inlet channel 110, the reset valve 200 automatically switches to the first position under the water pressure of the water inlet channel 110. Figure 3 As shown, when the water inlet channel 110 is cut off, the reset valve 200 loses the water pressure of the water inlet channel 110 and automatically switches to the second position. The regulating valve 300 is used to control the water flow rate of the first water outlet 120. The regulating valve 300 can be located on the water flow path from the water inlet channel 110 to the first water outlet 120, or it can be close to or directly set at the first water outlet 120. The regulating valve 300 can move between the third position and the fourth position. The movement of the regulating valve 300 is manually controlled by the linkage seat 400. Figure 4 As shown in FIG. 1 , when the regulating valve 300 moves to the third position, the water flow rate of the first water outlet 120 reaches a minimum. Figure 5 As shown, when the regulating valve 300 moves from the third position to the fourth position, the water flow rate of the first water outlet 120 gradually increases. When the regulating valve 300 moves to the fourth position, the water flow rate of the first water outlet 120 reaches the maximum. The linkage seat 400 is connected between the reset valve 200 and the regulating valve 300, and the three are linked. The linkage seat 400 is located in its entirety or at least in part outside the water channel component 100, and the user can operate the linkage seat 400 directly or indirectly through accessories such as buttons. The action logic between the reset valve 200, the regulating valve 300 and the linkage seat 400 is as follows: Figure 3 and Fig.11 As shown, when there is no water entering the water inlet channel 110, the reset valve 200 automatically moves to the second position. At this time, no matter where the regulating valve 300 is between the third position and the fourth position, the reset valve 200 will move the regulating seat to the third position through the linkage seat 400 during the process of moving to the second position. When the reset valve 200 reaches the second position, the regulating valve 300 reaches the third position. At this time, the reset valve 200 remains in the second position, and the reset valve 200 generates resistance to the linkage seat 400, restricting the movement of the linkage seat 400, thereby blocking the regulating valve 300 from leaving the third position, that is, the regulating valve 300 is restricted and locked in the third position, and the first water outlet 120 remains in the minimum water outlet flow state. As shown Figure 4 and Fig.12As shown, when water flows through the water inlet channel 110, the reset valve 200 automatically switches from the second position to the first position under the action of water pressure, and the reset valve 200 releases the blocking of the linkage seat 400. Figure 5 As shown, at this time, the user can move the linkage seat 400, and the linkage seat 400 drives the regulating valve 300 to move between the third position and the fourth position, and the linkage seat 400 can be stopped at any position between the third position and the fourth position according to the required water flow rate of the first water outlet 120. When the regulating valve 300 moves between the third position and the fourth position, the action flow of the linkage seat 400 is coherent and smooth, thereby realizing unobstructed stepless regulation. After the water inlet channel 110 is cut off, the reset valve 200 automatically resets to the second position, and then resets the regulating valve 300 to the third position. In this way, every time the user uses the first water outlet 120 to use water, water can be discharged at the minimum water flow rate, and the user can adjust the water output according to demand to avoid accidental spraying on the user due to excessive displacement at the moment of water flow. Stepless regulation also makes it easy for users to control the amount of water, and the operation process is smooth.

[0042] In some embodiments of the present invention, the reset valve 200 can use a mechanical valve, a solenoid valve, etc. When a solenoid valve is selected, the solenoid valve can cooperate with an external controller to achieve position switching according to the water switch signal. Figure 6 and Figure 7 As shown, the reset valve 200 includes a first valve body 210, a floating core 220 and a first elastic member 230. The floating core 220 is mounted on the first valve body 210. The first elastic member 230 is connected between the floating core 220 and the first valve body 210. The first elastic member 230 can be a member with a certain elastic deformation ability such as a spring or a spring sheet. The first valve body 210 is mounted on the waterway member 100, and the first valve body 210 extends from the outside of the waterway member 100 into the waterway member 100. One end of the floating core 220 faces the water inlet channel 110, and the water pressure can directly act on the end of the floating core 220 when the water inlet channel 110 passes water. The other end of the floating core 220 extends to the outside of the waterway member 100 and is connected to the linkage seat 400. The floating core 220 can switch between the first position and the second position relative to the first valve body 210. When the floating core 220 moves, it is linked with the linkage seat 400. When the water inlet channel 110 is cut off from water, the floating core 220 moves and remains in the second position under the elastic force of the first elastic member 230. When the water inlet channel 110 is flowing with water, the floating core 220 overcomes the elastic force of the first elastic member 230 under the thrust of the water pressure and its own buoyancy and moves the floating core 220 to the first position. The floating core 220 can be made of a material with a density less than that of water so that it has buoyancy when water flows. Alternatively, the floating core 220 does not need to have buoyancy, and the floating core 220 is pushed to move only by the water pressure formed by the contact between the water pressure and the end surface of the floating core 220.

[0043] In some specific embodiments of the present invention, Figure 8 and Fig. 9 As shown, the regulating valve 300 includes a second valve body 310 and a valve core 320. The valve core 320 is movably mounted on the second valve body 310. The second valve body 310 is fixedly mounted on the water channel member 100. One end of the valve core 320 extends through the second valve body 310 into the water inlet channel 110, and the other end extends to the outside of the water channel member 100 and is connected to the linkage seat 400. The valve core 320 can move between a third position and a fourth position relative to the second valve body 310. The linkage seat 400 is linked with the valve core 320. When the valve core 320 moves, the end thereof extending into the water inlet channel 110 can control the water outflow of the first water outlet 120 by controlling the opening and closing amount of the first water outlet 120 or controlling the opening and closing amount of the water inlet channel 110 to the first water outlet 120.

[0044] Specifically, it can be, for example Figure 2 and Figure 3 As shown, a flow chamber 130 is provided in the water inlet channel 110. The flow chamber 130 can be arranged near the first water outlet 120. One end of the valve core 320 passes through the second valve body 310 and telescopically moves in the flow chamber 130. The end of the valve core 320 is adapted to the shape of the flow chamber 130, and both can be set to a cylindrical shape or other shapes. There is a clearance fit between the circumferential outer wall of the end of the valve core 320 and the circumferential inner wall of the flow chamber 130. A water hole 140 connected to the first water outlet 120 is opened on the side wall of the flow chamber 130. After water enters the water inlet channel 110, it flows through the flow chamber 130, the water hole 140, and the first water outlet 120 and is discharged. The gap between the end of the valve core 320 and the flow chamber 130 allows at least part of the water to be transported to the first water outlet 120 through the flow chamber 130 and the water hole 140 when the valve core 320 is in the third position. The water hole 140 is located on the moving path of the valve core 320. When the valve core 320 moves, the end of the valve core 320 is misaligned with the water hole 140. Figure 4 As shown, when the valve core 320 is in the third position, the misalignment area between the valve core 320 and the water hole 140 is the largest, that is, the blocking range of the valve core 320 on the water hole 140 is the largest, and the flow rate of water to the water hole 140 is the smallest. Figure 5 As shown, when the valve core 320 moves from the third position to the fourth position, the misalignment area between the valve core 320 and the water hole 140 gradually decreases, that is, the blocking range of the valve core 320 on the water hole 140 gradually becomes smaller, and the flow rate of water from the flow chamber 130 to the water hole 140 gradually increases.

[0045] Specifically, Figure 3 , Figure 8 and Fig. 9As shown, the end of the valve core 320 extending into the flow chamber 130 is defined as the flow control section 330. The valve core 320 can be set to a cylindrical shape, and the interior of the flow control section 330 is set to be hollow to form a flow passage 331. A plurality of water inlet holes 332 are opened on the side wall of the flow control section 330. Each water inlet hole 332 is distributed along the circumference of the flow control section 330. The water inlet hole 332 is connected to the flow passage 331. The flow chamber 130 has a first open end 131 and a closed end 132. In the direction shown in the figure, the movement direction of the valve core 320 is up and down movement. The lower end of the valve core 320 is the flow control section 330. Correspondingly, the flow chamber 130 is vertically arranged. The upper end of the flow chamber 130 is the first open end 131, and the lower end is the closed end 132. The lower end of the flow passage 331 is open, and a second open end 333 is formed at the bottom of the flow control section 330. The flow control end extends from top to bottom through the first open end 131 into the flow chamber 130. The second open end 333 faces the closed end 132. The water hole 140 is located on the side wall of the flow chamber 130 between the first open end 131 and the closed end 132. The flow control section 330 extends into the flow chamber 130, and the gap between the two is matched. The water in the water inlet channel 110 mainly enters the flow channel 331 through each water inlet hole 332, and then enters the flow chamber 130 from the flow channel 331. The water then flows to the water hole 140 according to the position of the flow control section 330. The flow control section 330 cooperates with the flow chamber 130 to guide the movement of the valve core 320. The cooperation of the water inlet hole 332 and the flow channel 331 ensures that water enters the flow chamber 130, and when the valve core 320 is in the third position, it ensures that water is transported to the first water outlet 120 through the water hole 140. Furthermore, the first opening end 131 may be configured to be tapered, and the tapered shape of the first opening end 131 gradually decreases toward the closed end 132. The first opening end 131 can play a role in guiding flow.

[0046] In some specific embodiments of the present invention, Figure 3 , Fig.11 and Fig.12 As shown, the moving directions of the regulating valve 300 and the reset valve 200 are in the same direction. The moving directions of the regulating valve 300 and the reset valve 200 are defined as the first direction. The linkage seat 400 can move in the second direction relative to the waterway component 100. The first direction and the second direction are perpendicular to or intersect each other. Preferably, the first direction is perpendicular to the first direction. In this embodiment, in the direction shown in the figure, the first direction is the up and down direction, and the second direction is the left and right direction. The linkage seat 400 can be guided by the outside of the waterway component 100. Alternatively, the linkage seat 400 and the waterway component 100 are installed in the housing 600, and the waterway component 100 is fixed relative to the housing 600. The housing 600 is grooved to guide the movement of the linkage seat 400.

[0047] The linkage seat 400, the reset valve 200, and the regulating valve 300 can be linked to each other through a limit groove structure or the like. Fig.10 , Fig.11 and Fig.12 As shown, the linkage seat 400 is provided with a first groove 410 and a second groove 420. The first groove 410 is triangular, and may be a right triangle or the like. The first groove 410 has a wide side 411 and a narrow side 412 in the first direction. In the direction shown in the figure, the wide side 411 is located above the narrow side 412. The second groove 420 is in the shape of a linear oblique groove in the first direction. The linear oblique groove is preferably a linear oblique groove, and may also be an arc groove. The two ends of the second groove 420 are respectively a first end 421 and a second end 422. The first shaft 240 is installed on the end of the floating core 220 on the reset valve 200 extending out of the waterway component 100, and the first shaft 240 is slidably connected to the first groove 410. The second shaft 334 is installed on the end of the valve core 320 of the regulating valve 300 extending out of the waterway component 100, and the second shaft 334 is slidably connected to the second groove 420. Among them, when the reset valve 200 moves to the second position, the first shaft 240 is located at the narrow side 412, and the width of the narrow side 412 is adapted to the shaft diameter of the first shaft 240. At this time, the first shaft 240 cooperates with the narrow side 412 to limit the linkage seat 400 from moving in the second direction, and the regulating valve 300 is limited to the third position. It is difficult for the external force to push the linkage seat 400. When the reset valve 200 moves to the first position, the first shaft 240 moves to the wide side 411. The width of the wide side 411 is greater than the shaft diameter of the first shaft 240. The linkage seat 400 can move in the second direction at this time, which is equivalent to the wide side 411 avoiding the first shaft 240. When the linkage seat 400 moves in the second direction, the second shaft 334 is driven by the second groove 420 to slide along the second groove 420 slide groove between the first end 421 and the second end 422. Through the linkage of the second groove 420 and the second shaft 334 , the second direction movement of the linkage seat 400 is converted into a movement of the valve core 320 of the regulating valve 300 between the third position and the fourth position along the first direction.

[0048] In some embodiments of the present invention, Figure 1 , Figure 2 and Figure 3As shown, the water inlet channel 110 is also provided with a second water outlet 150. A switching valve 500 is provided between the first water outlet 120 and the second water outlet 150. The water inlet channel 110 is divided into two paths, one path is connected to the first water outlet 120, and the other path is connected to the second water outlet 150. The switching valve 500 is used by the user to control the water inlet channel 110 to deliver water to the first water outlet 120 or to the second water outlet 150. The flow rate is not limited at the second water outlet 150, and it is used as a direct water outlet to increase the water outlet function of the water outlet device. Among them, the first water outlet 120 is led out of the housing 600, and the first water outlet 120 can be integrally formed on the waterway component 100, or it can be connected to the waterway component 100 through a water nozzle to form the first water outlet 120. The first water outlet 120 is set upward, and when spraying water, a water column spraying upward is formed for the user to use.

[0049] In the description of this specification, the description of reference terms such as "some specific embodiments" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0050] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A water outlet device, characterized in that: include: A water channel member (100), wherein the water channel member (100) is provided with a water inlet channel (110), and the water inlet channel (110) is provided with a first water outlet (120); a reset valve (200), the reset valve (200) being mounted on the water channel member (100), the reset valve (200) being able to automatically switch between a first position and a second position in response to a change in water pressure in the water inlet channel (110); a regulating valve (300), the regulating valve (300) being mounted on the water channel member (100) and being used to control the water outflow rate of the first water outlet (120), the regulating valve (300) being movable between a third position and a fourth position, and the water outflow rate gradually increasing when the regulating valve (300) moves from the third position to the fourth position; A linkage seat (400), the linkage seat (400) being connected between the reset valve (200) and the regulating valve (300); When water flows through the water inlet channel (110), the reset valve (200) automatically switches to the second position, and the reset valve (200) can drive the regulating valve (300) to move to and be restricted to the third position via the linkage seat (400); When the water supply to the water inlet channel (110) is cut off, the reset valve (200) automatically switches to the first position, the reset valve (200) cancels the resistance effect on the linkage seat (400), and the linkage seat (400) can drive the regulating valve (300) to move between the third position and the fourth position.

2. The water outlet device according to claim 1, characterized in that: The reset valve (200) comprises a first valve body (210), a floating core (220) and a first elastic member (230); the first valve body (210) is fixed on the water channel member (100); one end of the floating core (220) faces the water inlet channel (110); the other end of the floating core (220) is connected to the linkage seat (400); the floating core (220) can move between the first position and the second position relative to the first valve body (210); and the first elastic member (230) exerts an elastic force on the floating core (220) to move it toward the second position.

3. The water outlet device according to claim 1, characterized in that: The regulating valve (300) comprises a second valve body (310) and a valve core (320); the second valve body (310) is fixed on the water channel component (100); one end of the valve core (320) is used to control the water outflow rate; the other end of the valve core (320) is connected to the linkage seat (400); and the valve core (320) can move between the third position and the fourth position relative to the second valve body (310).

4. The water outlet device according to claim 3, characterized in that: The water inlet channel (110) is provided with a flow chamber (130), one end of the valve core (320) is telescopically movable in the flow chamber (130) and a clearance fit is formed between the two, a water hole (140) is provided on the side wall of the flow chamber (130) and is connected to the first water outlet (120), and when the valve core (320) moves, the water outlet flow rate is changed by changing the offset area with the water hole (140).

5. The water outlet device according to claim 4, characterized in that: The end of the valve core (320) extending into the flow chamber (130) is a flow control section (330); the interior of the flow control section (330) is hollow to form a flow passage (331); a plurality of water inlet holes (332) in communication with the flow passage (331) are provided on the side wall of the flow control section (330); the flow chamber (130) has a first open end (131) and a closed end (132); one end of the flow passage (331) is open to form a second open end (333); the flow control section (330) extends from the first open end (131) into the flow chamber (130); the second open end (333) faces the closed end (132); a clearance fit is formed between the outer wall of the flow control section (330) and the inner wall of the flow chamber (130); and the water inlet holes (332) are in communication with the first open end (131).

6. The water outlet device according to claim 5, characterized in that: The first opening end (131) is in the shape of a cone that gradually narrows towards the closed end (132).

7. The water outlet device according to claim 1, characterized in that: The moving direction of the regulating valve (300) and the reset valve (200) is a first direction, and the linkage seat (400) can move relative to the water channel component (100) along a second direction, and the first direction and the second direction are perpendicular to or intersect each other.

8. The water outlet device according to claim 7, characterized in that: The linkage seat (400) is provided with a first groove (410) and a second groove (420); the first groove (410) is triangular in shape; the first groove (410) has a wide side (411) and a narrow side (412) in the first direction; the second groove (420) is linearly inclined in the first direction; the second groove (420) has a first end (421) and a second end (422); the reset valve (200) is slidably connected to the first groove (410) via a first shaft (240); and the regulating valve (300) is slidably connected to the second groove (420) via a second shaft (334); When the reset valve (200) moves to the second position, the first shaft (240) is located on the narrow side (412) to limit the linkage seat (400) from moving along the second direction, and the regulating valve (300) is limited to the third position; When the reset valve (200) moves to the first position, the first shaft (240) is located on the wide side (411), the linkage seat (400) is able to move along the second direction, and the second groove (420) is able to drive the second shaft (334) to slide between the first end (421) and the second end (422), so as to drive the regulating valve (300) to move between the third position and the fourth position.

9. The water outlet device according to claim 1, characterized in that: The water inlet channel (110) is also provided with a second water outlet (150), and a switching valve (500) is provided between the first water outlet (120) and the second water outlet (150).

10. The water outlet device according to claim 1 or 9, characterized in that: It also comprises a housing (600), the water channel member (100) being installed in the housing (600), the first water outlet (120) being led out of the housing (600) and the first water outlet (120) facing upwards.