A detergent dispensing mechanism and a shoe washing machine

By designing an automated detergent dispensing mechanism, the problem of manually adding defoaming agents and sterilizing agents to shoe washing machines has been solved. This enables automatic dispensing of treatment agents at different stages, improving user experience and washing results.

CN116289113BActive Publication Date: 2025-12-05CHONGQING HAIER WASHING MASCH CO LTD
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Patent Information

Application Number
CN202111569467.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-21
Publication Date
2025-12-05
Estimated Expiration
2041-12-21

AI Technical Summary

Technical Problem

Existing shoe washing machines require manual addition of defoaming and sterilizing agents after the washing stage, which makes the timing unpredictable and affects the user experience.

Method used

Design a detergent dispensing mechanism that controls the switching of the flow channel through a reversing component and a linear drive to automatically dispense detergent, defoamer, or sterilizing agent into the washing water at different stages.

Benefits of technology

It enables automatic dispensing of treatment agents at different washing stages, improving user experience, reducing foam overflow and bacterial residue, and enhancing the safety and hygiene of the washing effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a detergent feeding mechanism and a shoe washing machine, and belongs to the technical field of washing equipment. The detergent feeding mechanism comprises a switching box, a first treating agent box, a second treating agent box and a reversing assembly. The reversing assembly comprises a linear driving part, a push rod, a first reversing paddle and a second reversing paddle. The linear driving part drives the push rod to move in a first direction. The push rod can drive the first reversing paddle and the second reversing paddle to rotate in the moving process, so that a switching flow channel formed between the first reversing paddle and the second reversing paddle selectively communicates one of a washing water inlet and a first washing water outlet, a washing water inlet and a second washing water outlet, and blocks the other, and then washing water flowing through a washing water chamber can selectively enter the first treating agent box or the second treating agent box. The detergent feeding mechanism can automatically add different treating agents according to requirements, and users do not need to manually pause the equipment and add treating agents, so that the use experience is good.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of washing equipment, in particular to a washing agent feeding mechanism and a shoe washing machine. BACKGROUND

[0002] With the improvement of people's living standards, the use frequency of shoe washing machines is increasing. The process of washing shoes by a shoe washing machine includes a washing stage and a rinsing stage. When the shoe washing machine ends the washing stage and starts the rinsing stage, foam overflow is likely to occur due to a large amount of washing agent residue in the washing barrel. The conventional operation is to add a defoaming agent in this stage to reduce the generation of foam, so as to avoid the occurrence of foam overflow. In addition, a sterilizing agent can also be added in this stage. The use of the sterilizing agent can reduce the residue of microorganisms and bacteria, so that the washed shoes are safer and healthier.

[0003] Most of the existing shoe washing machines use manual feeding to feed the washing agent before the washing starts. When the user needs to feed a defoaming agent, a sterilizing agent or a treatment agent with other functions, the user needs to wait until the washing stage ends, then pause the machine, and manually feed the treatment agent. This method is uncontrollable in time, occupies a lot of time and energy of the user, and seriously affects the user experience. SUMMARY

[0004] The first object of the present application is to provide a washing agent feeding mechanism which can automatically switch the flow path of washing water in different stages to realize the feeding of liquid agents with different functions, has high automation degree, is convenient to use, and has high user experience.

[0005] To achieve this object, the present application adopts the following technical solutions:

[0006] The detergent dispensing mechanism comprises a switching box, a washing water chamber is arranged inside the switching box, a washing water inlet, a first washing water outlet and a second washing water outlet are arranged on the switching box and communicate with the washing water chamber; a first treatment agent box and a second treatment agent box, the first treatment agent box is arranged with a first treatment agent and communicates at the first washing water outlet, the second treatment agent box is arranged with a second treatment agent and communicates at the second washing water outlet; a reversing assembly is arranged in the washing water chamber, the reversing assembly comprises a linear drive, a push rod, a first reversing paddle and a second reversing paddle, the first reversing paddle is rotatably connected in the washing water chamber along a first axis, the second reversing paddle is rotatably connected in the washing water chamber along a second axis, a switching flow channel is formed between the first reversing paddle and the second reversing paddle, the push rod is connected above the first reversing paddle and the second reversing paddle, the output end of the linear drive is connected with the middle part of the push rod and can drive the push rod to move in a first direction; the push rod is configured to push the first reversing paddle and the second reversing paddle to rotate when moving in the first direction, so that the switching flow channel is rotated to a first position which communicates the washing water inlet and the first washing water outlet and blocks the washing water inlet and the second washing water outlet, or a second position which communicates the washing water inlet and the second washing water outlet and blocks the washing water inlet and the first washing water outlet.

[0007] Preferably, the detergent dispensing mechanism further comprises a reset elastic body, one end of the reset elastic body is fixed, and the other end is connected to the push rod, the push rod is configured to compress the reset elastic body when moving in the first direction.

[0008] Preferably, the push rod is provided with a first push groove and a second push groove at intervals; the reversing assembly further comprises a first spherical connector and a second spherical connector, the first spherical connector is arranged above the first reversing paddle and is arranged offset to the first axis, one end of the first spherical connector away from the first reversing paddle is movably connected in the first push groove, the second spherical connector is arranged above the second reversing paddle and is arranged offset to the second axis, one end of the second spherical connector away from the second reversing paddle is movably connected in the second push groove.

[0009] As preferred, the first spherical connector comprises a first connecting rod and a first connecting ball connected with each other, one end of the first connecting rod away from the first connecting ball is connected with the first reversing paddle, the side of the first connecting ball is provided with a first connecting piece, the first connecting piece is placed in the first pushing groove, and the first connecting piece can move in the first pushing groove when the first reversing paddle rotates; and / or the second spherical connector comprises a second connecting rod and a second connecting ball connected with each other, one end of the second connecting rod away from the second connecting ball is connected with the second reversing paddle, the side of the second connecting ball is provided with a second connecting piece, the second connecting piece is placed in the second pushing groove, and the second connecting piece can move in the second pushing groove when the second reversing paddle rotates.

[0010] As preferred, the detergent feeding mechanism further comprises a first limiting baffle and a second limiting baffle, the first limiting baffle and the second limiting baffle are both arranged in the washing water chamber, the first limiting baffle can abut against the first reversing paddle or the second reversing paddle to limit the switching flow channel in the first position, and the second limiting baffle can abut against the first reversing paddle or the second reversing paddle to limit the switching flow channel in the second position.

[0011] As preferred, a sliding groove is arranged on the inner wall surface of the switching box, the sliding groove is arranged in extension along the first direction, and the end of the push rod is placed in the sliding groove and can move in the sliding groove.

[0012] As preferred, a first sliding groove and a second sliding groove are arranged on the switching box, a first sliding block is arranged on the first treatment agent box and is slidingly connected in the first sliding groove, and a second sliding block is arranged on the second treatment agent box and is slidingly connected in the second sliding groove.

[0013] As preferred, a buckle is arranged on the outer wall surface of the switching box, and the buckle can be buckled into a clamping groove of an external mechanism.

[0014] As preferred, the first treatment agent box is a detergent box, and the first treatment agent is a detergent;The second treatment agent box is a sterilization box or a defoaming box, and the second treatment agent is a sterilizing agent or a defoaming agent.

[0015] The second object of the present application is to provide a shoe washing machine with high automation, strong functionality, convenient use and high user experience.

[0016] To achieve the above object, the present application adopts the following technical solutions.

[0017] A shoe washing machine comprises the above-mentioned detergent feeding mechanism.

[0018] Advantages of the present application:

[0019] The present application provides a detergent dispensing mechanism, which comprises a switching box, a first treatment agent box, a second treatment agent box and a reversing assembly, the reversing assembly being in the washing water chamber of the switching box and comprising a linear drive, a push rod, a first reversing paddle and a second reversing paddle. The detergent dispensing mechanism can drive the push rod to move in a first direction by using the linear drive, the push rod can push the first reversing paddle and the second reversing paddle to rotate in the moving process, so that the switching flow channel formed between the first reversing paddle and the second reversing paddle selectively communicates one of the washing water inlet and the first washing water outlet, the washing water inlet and the second washing water outlet, and blocks the other, and then the washing water flowing through the washing water chamber enters the first treatment agent box or the second treatment agent box. The detergent dispensing mechanism can add different treatment agents in different washing stages according to user needs, and the user does not have to manually pause the equipment and add treatment agents, and the use experience is good. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a schematic view of the detergent dispensing mechanism provided by the embodiment of the present application;

[0021] Figure 2 is an exploded view of the detergent dispensing mechanism provided by the embodiment of the present application;

[0022] Figure 3 is a structural schematic view of the reversing assembly of the detergent dispensing mechanism provided by the embodiment of the present application;

[0023] Figure 4 is a front view of the reversing assembly and the switching box of the detergent dispensing mechanism provided by the embodiment of the present application;

[0024] Figure 5 is Figure 4 a sectional view in the A-A direction in figure;

[0025] Figure 6 is Figure 4 a sectional view in the B-B direction in figure.

[0026] in the figure:

[0027] 100, switching box; 101, washing water inlet; 102, first washing water outlet; 103, second washing water outlet; 104, buckle; 105, first sliding channel; 106, second sliding channel; 107, first clamping block;

[0028] 200, first treatment agent box; 201, first clamping hook;

[0029] 300, second treatment agent box; 301, second sliding block;

[0030] 400, reversing assembly; 401, straight driving piece; 402, push rod; 4021, first push groove; 4022, second push groove; 403, first reversing paddle; 4031, first rotating shaft hole; 404, second reversing paddle; 4041, second rotating shaft hole; 405, first spherical connecting piece; 406, second spherical connecting piece; 407, reset elastic body; 408, first limiting baffle; 409, second limiting baffle. DETAILED DESCRIPTION

[0031] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0032] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions.

[0033] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or it can be detachable connection; it can be mechanical connection, or it can be electrical connection; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0034] The present embodiment provides a detergent dispensing mechanism which can be used in a washing device such as a shoe washing machine, a washing machine, etc. to automatically add different treating agents according to the needs when the washing device is in different washing stages. The treating agents here can be detergents, fragrances, defoamers or sterilizing agents, etc. as long as they are substances that can be used for washing, which all belong to the protection scope of the treating agents in the present embodiment. In the present embodiment, the washing device is introduced as a shoe washing machine.

[0035] As Figures 1 to 2As shown, the detergent feeding mechanism comprises a switching box 100, a first treating agent box 200, a second treating agent box 300 and a reversing assembly 400. The switching box 100 has a washing water chamber inside, and the switching box 100 is provided with a washing water inlet 101, a first washing water outlet 102 and a second washing water outlet 103 which communicate with the washing water chamber. The washing water entering the washing water chamber from the washing water inlet 101 can flow out from the first washing water outlet 102 or the second washing water outlet 103. Optionally, the switching box 100 is L-shaped, comprising a vertical box and a horizontal box which communicate with each other and are formed by a plurality of plate members respectively, wherein the washing water inlet 101 is arranged on the back side plate of the vertical box, and the first washing water outlet 102 and the second washing water outlet 103 are arranged on the front side plate of the horizontal box in a spaced manner, and the washing water entering the washing water inlet 101 first flows vertically downward and then flows horizontally forward. The shapes of the washing water inlet 101, the first washing water outlet 102 and the second washing water outlet 103 are not limited, and can be circular, square or other shapes.

[0036] The first treating agent box 200 is connected at the first washing water outlet 102, and the first treating agent box 200 is provided with a first treating agent, which is a detergent in this embodiment. The detergent is mainly used to be added into the cleaning box of the shoe washing machine in the washing stage of the shoe washing machine, so as to clean the shoes in the cleaning box. The second treating agent box 300 is connected at the second washing water outlet 103, and the second treating agent box 300 is provided with a second treating agent. In this embodiment, the second treating agent can be a defoaming agent, which is mainly used to be added into the cleaning box of the shoe washing machine in the rinsing stage of the shoe washing machine, so as to avoid the foam overflow caused by a large amount of detergent residues; of course, the second treating agent can also be a sterilizing agent, which is mainly used to be added into the cleaning box of the shoe washing machine in the rinsing stage of the shoe washing machine, so as to achieve sterilization and disinfection of the cleaned shoes; in addition, the second treating agent can also be a mixture of the defoaming agent and the sterilizing agent, so as to simultaneously achieve the effects of defoaming and sterilization.

[0037] In this embodiment, the first treating agent box 200 and the second treating agent box 300 are both cubic boxes. In order to fix the first treating agent box 200 and the second treating agent box 300 with the switching box 100, the switching box 100 is provided with a first fixing hole 104 and a second fixing hole 105 which are arranged on the front side plate and the back side plate of the vertical box respectively, and the first treating agent box 200 and the second treating agent box 300 are provided with a first fixing rod 201 and a second fixing rod 301 which are arranged on the front side plate and the back side plate respectively, and the first fixing rod 201 and the second fixing rod 301 are respectively inserted into the first fixing hole 104 and the second fixing hole 105. Figure 2As shown, two slide plates are further arranged on the front side plate of the switching box 100 provided with the first and second washing water outlets 102 and 103, and the first and second slide channels 105 and 106 are arranged on the two slide plates respectively. Correspondingly, the first slide block is arranged on the side wall of the first treatment agent box 200 and is slidingly connected in the first slide channel 105, so that the detachable connection of the first treatment agent box 200 and the switching box 100 can be realized, which not only has high connection stability, but also is convenient to disassemble and assemble. Moreover, the second slide block 301 is arranged on the side wall of the second treatment agent box 300 and is slidingly connected in the second slide channel 106, so that the detachable connection of the second treatment agent box 300 and the switching box 100 can be realized, which not only has high connection stability, but also is convenient to disassemble and assemble.

[0038] Further, the two slide plates are arranged between the first and second washing water outlets 102 and 103. In order to further improve the connection stability of the first and second treatment agent boxes 200 and 300 and the switching box 100, the first and second slide blocks are arranged on the side walls of the first and second treatment agent boxes 200 and 300 respectively, and the first and second slide channels are arranged on the side plates of the switching box 100 respectively. Figure 2 As shown, the first clamping hook 201 is arranged on the other side wall of the first treatment agent box 200 opposite to the first slide block, and the first clamping block 107 is arranged on one side plate of the switching box 100, so that the first clamping hook 201 can be clamped on the first clamping block 107. Moreover, the second clamping hook is arranged on the other side wall of the second treatment agent box 300 opposite to the second slide block 301, and the second clamping block is arranged on the other side plate of the switching box 100, so that the second clamping hook can be clamped on the second clamping block.

[0039] As shown in FIG. 1, the first and second treatment agent boxes 200 and 300 are arranged on the switching box 100, and the first and second washing water outlets 102 and 103 are arranged on the switching box 100. Figures 3 to 6As shown, the reversing assembly 400 is arranged in the washing water chamber, and the reversing assembly 400 comprises a linear drive 401, a push rod 402, a first reversing tab 403 and a second reversing tab 404. The first reversing tab 403 and the second reversing tab 404 are both rectangular plates, the first reversing tab 403 is rotatably connected to the washing water chamber along a first axis, and the second reversing tab 404 is rotatably connected to the washing water chamber along a second axis. Specifically, a first rotating shaft hole 4031 is vertically arranged in the middle of the first reversing tab 403, a first rotating shaft is vertically protruded on the inner bottom surface of the switching box 100, and the first rotating shaft is inserted into the first rotating shaft hole 4031, and the central axis of the first rotating shaft is the first axis. A second rotating shaft hole 4041 is vertically arranged in the middle of the second reversing tab 404, a second rotating shaft is vertically protruded on the inner bottom surface of the switching box 100, and the second rotating shaft is inserted into the second rotating shaft hole 4041, and the central axis of the second rotating shaft is the second axis. The first rotating shaft and the second rotating shaft are arranged in a spaced manner, and the line connecting the two is a horizontal line. A switching flow channel is formed between the first reversing tab 403 and the second reversing tab 404, the inlet of the switching flow channel is always in communication with the detergent inlet, when the first reversing tab 403 and the second reversing tab 404 rotate, the direction of the switching flow channel changes, and the direction of the outlet of the switching flow channel changes.

[0040] The push rod 402 is connected above the first reversing tab 403 and the second reversing tab 404, the output end of the linear drive 401 is connected to the middle part of the push rod 402, and the linear drive 401 can drive the push rod 402 to move in a first direction. In this embodiment, the linear drive 401 is an electromagnetic switch assembly, which comprises an electromagnetic switch and a telescopic rod. When the electromagnetic switch is powered on, the telescopic rod can be extended to drive the push rod 402 to move in the first direction. The first direction is perpendicular to the second direction in which the length of the push rod 402 is located. Of course, in other embodiments, the linear drive 401 can also be a cylinder, a linear motor or other driving elements.

[0041] When the push rod 402 moves in the first direction under the drive of the linear drive 401, the push rod 402 can simultaneously push the first reversing tab 403 and the second reversing tab 404 to rotate. In the rotating process of the first reversing tab 403 and the second reversing tab 404, the switching flow channel can be rotated to a first position in which the washing water inlet 101 and the first washing water outlet 102 are communicated and the washing water inlet 101 and the second washing water outlet 103 are blocked, or a second position in which the washing water inlet 101 and the second washing water outlet 103 are communicated and the washing water inlet 101 and the first washing water outlet 102 are blocked.

[0042] When the switching flow channel is in the first position, the outlet of the switching flow channel is just opposite to the first washing water outlet 102, and the washing water entering the washing water chamber from the washing water inlet 101 can pass through the switching flow channel and enter the first treatment agent box 200 only from the first washing water outlet 102, and then enter the cleaning tank of the shoe washing machine after mixing the detergent; when the switching flow channel is in the second position, the outlet of the switching flow channel is just opposite to the second washing water outlet 103, and the washing water entering the washing water chamber from the washing water inlet 101 can pass through the switching flow channel and enter the second treatment agent box 300 only from the second washing water outlet 103, and then enter the cleaning tank of the shoe washing machine after mixing the defoaming agent or the sterilizing agent.

[0043] The detergent feeding mechanism can automatically change the direction of the switching flow channel by controlling the linear driving member 401, so as to change the flow direction of the washing water, so that the washing water can selectively flow out from the first washing water outlet 102 or the second washing water outlet 103, so as to flow into the first treatment agent box 200 or the second treatment agent box 300, so that the washing water mixed with the detergent, the defoaming agent or the sterilizing agent enters the cleaning tank. The whole process does not need manual intervention, which greatly improves the user experience. And automatically adding the defoaming agent and the sterilizing agent into the cleaning tank, the defoaming agent can reduce the bubbles in the washing water, avoid the foam overflow phenomenon, and reduce the foam residue on the shoes after cleaning. At the same time, the sterilizing agent can reduce the bacteria breeding in the shoes and the barrel, so that the cleaning effect is safer and more sanitary.

[0044] In the embodiment, the initial position of the switching flow channel is the first position of communicating the washing water inlet 101 and the first washing water outlet 102 and blocking the washing water inlet 101 and the second washing water outlet 103, when the shoe washing machine ends the washing stage and starts to enter the rinsing stage, the linear driving member 401 is powered on and drives the switching flow channel to switch from the first position to the second position. Of course, in other embodiments, if the treatment agents in the first treatment agent box 200 and the second treatment agent box 300 change, the initial position of the switching flow channel can also be the second position, and then switch from the second position to the first position during the working process.

[0045] Optionally, in order to realize the connection between the push rod 402 and the first reversing paddle 403 and the second reversing paddle 404, the first push groove 4021 and the second push groove 4022 are arranged on the push rod 402 at intervals, and the reversing assembly 400 further comprises a first spherical connecting piece 405 and a second spherical connecting piece 406. The first spherical connecting piece 405 is arranged above the first reversing paddle 403 and is arranged in a staggered manner with the first axis, and the end of the first spherical connecting piece 405 away from the first reversing paddle 403 is movably connected in the first push groove 4021. The second spherical connecting piece 406 is arranged above the second reversing paddle 404 and is arranged in a staggered manner with the second axis, and the end of the second spherical connecting piece 406 away from the second reversing paddle 404 is movably connected in the second push groove 4022.

[0046] Specifically, in the present embodiment, the first spherical connecting piece 405 comprises a first connecting rod and a first connecting ball connected with each other. The end of the first connecting rod away from the first connecting ball is connected with the first reversing paddle 403, and the side of the first connecting ball is provided with a first connecting piece which is arranged in the first push groove 4021 and can move in the first push groove 4021 when the first reversing paddle 403 rotates.

[0047] The second spherical connecting piece 406 comprises a second connecting rod and a second connecting ball connected with each other, the end of the second connecting rod away from the second connecting ball is connected with the second reversing paddle 404, and the side of the second connecting ball is provided with a second connecting piece which is arranged in the second push groove 4022 and can move in the second push groove 4022 when the second reversing paddle 404 rotates.

[0048] Further, in order to realize the automatic reset of the push rod 402, the detergent dispensing mechanism further comprises a reset elastic body 407, one end of the reset elastic body 407 is fixed, and the other end is connected to the push rod 402, and the push rod 402 is configured to compress the reset elastic body 407 when moving in the first direction. Specifically, the reset elastic body 407 is a spiral spring, one end of the spiral spring is fixed on the front inner wall surface of the switching box 100, and the other end is fixed on the push rod 402. Optionally, the number of spiral springs is two, and the two spiral springs are arranged at intervals between the push rod 402 and the front inner wall surface of the switching box 100.

[0049] Further, continuing to refer to Figure 6As shown, in order to limit the first reversing paddle 403 and the second reversing paddle 404, the detergent feeding mechanism further comprises a first limiting baffle 408 and a second limiting baffle 409. The first limiting baffle 408 and the second limiting baffle 409 are both arranged in the washing water chamber, and the first limiting baffle 408 can abut against the first reversing paddle 403 or the second reversing paddle 404 to limit the switching flow channel at the first position, and the second limiting baffle 409 can abut against the first reversing paddle 403 or the second reversing paddle 404 to limit the switching flow channel at the second position.

[0050] In the embodiment, the second limiting baffle 409 is arranged on the inner left side wall of the switching box 100, and is used for limiting the first reversing paddle 403. When the first reversing paddle 403 rotates to abut against the second limiting baffle 409, the switching flow channel is just at the second position, and at this time, the first reversing paddle 403 and the second reversing paddle 404 cannot continue to rotate. The first limiting baffle 408 is arranged on the inner right side wall of the switching box 100, and is used for limiting the second reversing paddle 404. When the second reversing paddle 404 rotates to abut against the first limiting baffle 408, the switching flow channel is just at the first position, and at this time, the first reversing paddle 403 and the second reversing paddle 404 cannot continue to rotate.

[0051] Further, in order to improve the moving precision of the push rod 402, a sliding groove is arranged on the inner wall surface of the switching box 100, specifically, one sliding groove is arranged on each of the inner left side wall and the inner right side wall of the switching box 100, and the sliding grooves are arranged in the first direction. The two ends of the push rod 402 are respectively arranged in the two sliding grooves and can move in the corresponding sliding grooves. Optionally, in order to improve the sliding stability, a sliding piece is arranged at each of the two ends of the push rod 402, and the two sliding pieces are respectively slidably connected in the two sliding grooves. Optionally, the cross-sectional shape of the sliding groove is rectangular, and the sliding piece is a rectangular piece.

[0052] Further, in order to realize the connection between the detergent feeding mechanism and the external mechanism, a buckle 104 is arranged on the outer wall surface of the switching box 100, and the buckle 104 can be clamped into the clamping groove of the external mechanism. In the embodiment, the external mechanism can be a cleaning box of a shoe washing machine or a shell of a shoe washing machine, etc. Optionally, the number of buckles 104 is two, and the buckles 104 are arranged on the left outer side wall and the right outer side wall of the switching box 100, respectively. Further optionally, the buckle 104 is a wedge-shaped block.

[0053] The embodiment also provides a shoe washing machine, which comprises the above-mentioned detergent feeding mechanism and a cleaning tank, the outlet of the first treatment agent box 200 and the outlet of the second treatment agent box 300 are both communicated with the inlet of the cleaning tank, and the shoes are put into the cleaning tank to perform cleaning, sterilization and the like. The shoe washing machine can automatically add the detergent, the defoaming agent or the sterilization agent into the cleaning tank according to the requirement by using the above-mentioned detergent feeding mechanism, the detergent is used to clean the shoes in the washing stage, the defoaming agent can reduce the bubbles in the washing water in the rinsing stage, avoid the foam overflow, reduce the foam residue on the shoes after the cleaning, meanwhile, the sterilization agent can reduce the bacteria breeding in the shoes and the tank, so that the cleaning effect is safer and more sanitary.

[0054] In the embodiment, the shoe washing machine further comprises a control mechanism, which can be a centralized or distributed controller, for example, the controller can be a single microcontroller or be composed of multiple distributed microcontrollers, the microcontroller can run a control program to control the linear driving member 401 to realize the functions.

[0055] Obviously, the above-mentioned embodiments of the present application are only examples for clearly explaining the present application, and are not intended to limit the embodiments of the present application. Any other different forms of changes or variations can be made on the basis of the above-mentioned description by those skilled in the art. Here, all the embodiments are not required to be exhausted. Any modification, equivalent replacement and improvement made in the spirit and principle of the present application should be included in the protection scope of the claims of the present application.

Claims

1. A detergent dispensing mechanism characterized by, The utility model relates to a switching box (100) inside having washing water chamber, be provided with washing water import (101) with washing water chamber communication, first washing water export (102) and second washing water export (103) on the switching box (100), first processing agent box (200) and second processing agent box (300), first processing agent box (200) is provided with first processing agent in, and is communicated at first washing water export (102), second processing agent box (300) is provided with second processing agent in, and is communicated at second washing water export (103), reversing assembly (400) is arranged in the washing water chamber, reversing assembly (400) includes straight line drive (401), push rod (402), first reversing paddle (403) and second reversing paddle (404), first reversing paddle (403) is rotatably connected in the washing water chamber along first axis, second reversing paddle (404) is rotatably connected in the washing water chamber along second axis, first reversing paddle (403) and second reversing paddle (404) form switching flow channel between, push rod (402) is connected in the upper of first reversing paddle (403) and second reversing paddle (404), the output of straight line drive (401) is connected with the middle part of push rod (402), and straight line drive (401) can drive push rod (402) moves along first direction, The push rod (402) is configured to rotate the first reversing paddle (403) and the second reversing paddle (404) when moving in the first direction, so that the switching flow channel is rotated to the first position of communicating the washing water inlet (101) and the first washing water outlet (102), and blocking the washing water inlet (101) and the second washing water outlet (103), or the second position of communicating the washing water inlet (101) and the second washing water outlet (103), and blocking the washing water inlet (101) and the first washing water outlet (102); The push rod (402) is provided with a first push groove (4021) and a second push groove (4022) at intervals; The reversing assembly (400) further includes a first spherical connector (405) and a second spherical connector (406), the first spherical connector (405) is arranged above the first reversing paddle (403) and is arranged offset to the first axis, one end of the first spherical connector (405) away from the first reversing paddle (403) is movably connected in the first push groove (4021), the second spherical connector (406) is arranged above the second reversing paddle (404) and is arranged offset to the second axis, one end of the second spherical connector (406) away from the second reversing paddle (404) is movably connected in the second push groove (4022). ​ ​ ​ 2. The detergent dispensing mechanism according to claim 1, characterized in that, the detergent dispensing mechanism further comprises a reset elastic body (407), one end of the reset elastic body (407) is fixed, the other end is connected to the push rod (402), and the push rod (402) is configured to compress the reset elastic body (407) when moving in the first direction.

3. The detergent dispensing mechanism according to claim 1, characterized in that, the first spherical connector (405) comprises a first connecting rod and a first connecting ball connected to each other, one end of the first connecting rod away from the first connecting ball is connected to the first reversing paddle (403), and a first connecting piece is arranged on the side of the first connecting ball, the first connecting piece is arranged in the first push groove (4021), and the first connecting piece can move in the first push groove (4021) when the first reversing paddle (403) rotates; and / or the second spherical connector (406) comprises a second connecting rod and a second connecting ball connected to each other, one end of the second connecting rod away from the second connecting ball is connected to the second reversing paddle (404), and a second connecting piece is arranged on the side of the second connecting ball, the second connecting piece is arranged in the second push groove (4022), and the second connecting piece can move in the second push groove (4022) when the second reversing paddle (404) rotates.

4. The detergent dispensing mechanism according to claim 1, characterized in that, the detergent dispensing mechanism further comprises a first limiting baffle (408) and a second limiting baffle (409), the first limiting baffle (408) and the second limiting baffle (409) are arranged in the washing water chamber, the first limiting baffle (408) can abut against the first reversing paddle (403) or the second reversing paddle (404) to limit the switching flow channel in the first position, and the second limiting baffle (409) can abut against the first reversing paddle (403) or the second reversing paddle (404) to limit the switching flow channel in the second position.

5. The detergent dispensing mechanism according to claim 1, characterized in that, a sliding groove is arranged on the inner wall surface of the switching box (100), the sliding groove is arranged in the first direction, and the end of the push rod (402) is arranged in the sliding groove and can move in the sliding groove.

6. The detergent dispensing mechanism according to claim 1, characterized in that, the switching box (100) is provided with a first sliding groove (105) and a second sliding groove (106), the first treatment agent box (200) is provided with a first sliding block, the first sliding block is slidingly connected in the first sliding groove (105), and the second treatment agent box (300) is provided with a second sliding block (301), the second sliding block (301) is slidingly connected in the second sliding groove (106).

7. The detergent dispensing mechanism according to claim 1, characterized in that, The switching box (100) is provided with a buckle (104) on the outer wall surface, which can be buckled into the buckle slot of an external mechanism.

8. The detergent dispensing mechanism according to any one of claims 1-7, characterized in that, The first treatment agent box (200) is a detergent box, and the first treatment agent is a detergent. The second treatment agent box (300) is a sterilization box or a defoaming box, and the second treatment agent is a sterilization agent or a defoaming agent.

9. A shoe washing machine characterized by A detergent dispensing mechanism according to any one of claims 1-8.

Citation Information

Patent Citations

  • Automatic dispensing system and multiple laundry machine having same

    WO2017107360A1