Cleaning base station and cleaning device

By implementing a synchronized control design for the inlet and outlet valves, the problem of complex operation of existing cleaning base stations has been solved, improving user experience and control efficiency.

CN115299822BActive Publication Date: 2025-11-04ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202210429682.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-22
Publication Date
2025-11-04
Estimated Expiration
2042-04-22

AI Technical Summary

Technical Problem

In existing cleaning base stations, the inlet and outlet valves need to be controlled separately, which is complicated to operate and results in a poor user experience.

Method used

The design adopts synchronous control of the inlet and outlet valves, and realizes the linkage operation of the inlet and outlet valves through linkage components, simplifying it to open or close simultaneously.

Benefits of technology

It improves the ease of operation and user experience of the clean base station, and enhances control efficiency and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a cleaning base station and a cleaning device. The cleaning base station comprises a base (100), a cleaning disc assembly (200), a water inlet valve (300) and a water outlet valve (400), the base (100) has a cleaning tank (110), the cleaning disc assembly (200) comprises at least one cleaning disc (210), the cleaning disc (210) is located in the cleaning tank (110), and the water inlet valve (300) and the water outlet valve (400) are both located on the base (100). The water inlet valve (300) and the water outlet valve (400) are synchronously controlled so that the water inlet valve (300) is opened and the water outlet valve (400) is closed, or the water inlet valve (300) is closed and the water outlet valve (400) is opened, and the water inlet valve (300) and the water outlet valve (400) are used for jointly controlling the liquid level in the cleaning tank (110). The cleaning base station provided by the application is simple to operate and improves user experience.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning supplies, in particular to a cleaning base station and a cleaning device. BACKGROUND

[0002] At present, with the improvement of living quality, people's demand for floor cleaning is more and more extensive, and floor cleaning equipment is more and more widely used because it can liberate physical labor. At present, various cleaning equipment has been developed on the market to meet the needs of users, such as intelligent products such as sweeping robots and mopping machines.

[0003] In order to clean these cleaning equipment, a cleaning base station is provided, which can clean the floor brush in the cleaning equipment to remove dirt and impurities on the floor brush, thereby facilitating the next cleaning. In the prior art, the cleaning base station comprises a base and a cleaning disc assembly, wherein the base has a cleaning groove, the cleaning groove has a water inlet valve and a water outlet valve, the water outlet valve is opened or closed by manually pressing the water outlet valve, and the water inlet valve is opened or closed by manually pressing the water inlet valve.

[0004] However, in this cleaning base station, the water inlet valve and the water outlet valve need to be controlled separately, the operation of the cleaning base station is complex, and the user experience is poor. SUMMARY

[0005] The present application provides a cleaning base station and a cleaning device, which is simple to operate and improves the user experience.

[0006] In a first aspect, the present application provides a cleaning base station, comprising a base, a cleaning disc assembly, and a water inlet valve and a water outlet valve, the base having a cleaning groove, the cleaning disc assembly comprising at least one cleaning disc, the cleaning disc being located in the cleaning groove, the water inlet valve and the water outlet valve being located on the base; the water inlet valve and the water outlet valve are synchronously controlled to open the water inlet valve and close the water outlet valve, or to close the water inlet valve and open the water outlet valve, the water inlet valve and the water outlet valve being used to jointly control the liquid level in the cleaning groove.

[0007] In this way, the operation of the cleaning base station is simple, and the user experience is improved.

[0008] As an optional embodiment, the cleaning base station provided by the present application further comprises a linkage assembly, the linkage assembly being movable relative to the cleaning groove to synchronously control the water inlet valve and the water outlet valve.

[0009] In this way, the linkage assembly is used to synchronously control the water inlet valve and the water outlet valve, which can improve the accuracy of synchronous control.

[0010] As an optional embodiment, the linkage assembly of the cleaning base station provided by the present application is a lever assembly, the lever assembly being rotatable relative to the cleaning groove.

[0011] The lever assembly rotates to contact the water inlet valve and to be separated from the water outlet valve, so that the water inlet valve is opened and the water outlet valve is closed.

[0012] Alternatively, the lever assembly rotates to contact the water outlet valve and to be separated from the water inlet valve, so that the water inlet valve is closed and the water outlet valve is opened.

[0013] The lever assembly contacts one of the water inlet valve and the water outlet valve and is separated from the other, so that the linkage assembly is facilitated to be realized, and the accuracy requirement of the installation position of the water inlet valve and the water outlet valve is low.

[0014] As an optional implementation, the cleaning base station provided by the present application can simultaneously trigger the water inlet valve and the water outlet valve to open the water inlet valve and close the water outlet valve, and can simultaneously release the trigger of the water inlet valve and the water outlet valve to close the water inlet valve and open the water outlet valve.

[0015] In this way, the control efficiency of the water inlet valve and the water outlet valve can be improved.

[0016] As an optional implementation, the cleaning base station provided by the present application is provided, the linkage assembly is a connecting rod assembly, the water inlet valve and the water outlet valve are in contact with the connecting rod assembly, the connecting rod assembly moves towards the bottom of the cleaning tank to simultaneously trigger the water inlet valve and the water outlet valve, or the connecting rod assembly moves towards the side away from the bottom of the cleaning tank to simultaneously release the trigger of the water inlet valve and the water outlet valve.

[0017] In this way, the linkage assembly occupies a small space range and is not easy to interfere with the cleaning equipment.

[0018] As an optional implementation, the cleaning base station provided by the present application is provided, the cleaning disc assembly can be lifted relative to the cleaning tank.

[0019] The cleaning disc assembly is lowered, the water inlet valve is opened, and the water outlet valve is closed; the cleaning disc assembly is raised, the water inlet valve is closed, and the water outlet valve is opened.

[0020] In this way, the water inlet valve and the water outlet valve are simultaneously controlled by the lowering and raising of the cleaning disc assembly, which is facilitated to be realized and has high reliability.

[0021] As an optional implementation, the cleaning base station provided by the present application is provided, the cleaning disc assembly can be rotated relative to the cleaning tank to lift the cleaning disc assembly relative to the cleaning tank.

[0022] In this way, the cleaning disc assembly can be rotated relative to the cleaning tank by the cleaning element, without the need to set an additional driving device, so that the automatic control of the water inlet valve and the water outlet valve can be realized.

[0023] As an optional implementation, the cleaning base station provided by the application has the following technical scheme: the cleaning disc assembly comprises at least one rotating lock, the cleaning disc is connected to the rotating lock one by one, the rotating lock is arranged on the cleaning groove, and the cleaning disc rotates relative to the rotating lock to lift the cleaning disc relative to the rotating lock.

[0024] In this way, the cleaning disc is arranged relative to the rotating lock, and the cleaning disc is lifted relative to the rotating lock, so that the structure is simple and easy to realize.

[0025] As an optional implementation, the cleaning base station provided by the application has the following technical scheme: the cleaning groove has a recessed part at the bottom of the cleaning groove, and the recessed part is used for accommodating the cleaning disc.

[0026] The recessed part has a water outlet, and a water outlet valve is used for closing or opening the water outlet.

[0027] In this way, the water outlet is arranged on the recessed part, which is conducive to the collection of the cleaning liquid and facilitates the discharge of the cleaning liquid.

[0028] As an optional implementation, the cleaning base station provided by the application has the following technical scheme: the cleaning disc comprises a cleaning disc body and a connecting part, the cleaning disc body is coaxially connected to the connecting part, the connecting part has a connecting hole, the rotating lock is inserted into the connecting hole and is connected to the connecting hole through threads.

[0029] In this way, the rotating lock and the cleaning disc are connected through threads to realize the lifting of the cleaning disc relative to the rotating lock, and the structure has high reliability.

[0030] As an optional implementation, the cleaning base station provided by the application has the following technical scheme: the connecting hole has an internal thread, and the outer side surface of the rotating lock has an external thread matched with the internal thread.

[0031] The rotating lock has a first limiting part, the first limiting part is in contact with the top thread tail end of the internal thread, and the cleaning disc body stops rotating.

[0032] In this way, the first limiting part is arranged to avoid the cleaning disc body from being separated from the rotating lock when the cleaning disc body rotates upward relative to the rotating lock, and the cleaning disc body is prevented from being thrown out of the cleaning groove.

[0033] As an optional implementation, the cleaning base station provided by the application has the following technical scheme: the cleaning groove is provided with at least one mounting groove and at least one mounting column, and the mounting groove and the mounting column are located in the recessed part.

[0034] The rotating lock and the connecting part are located in the mounting groove, the mounting column is located in the mounting groove, and the mounting column and the mounting groove are arranged one by one.

[0035] At least one of the mounting column and the mounting groove has a rotation stopping part, the rotating lock has at least one second limiting part, the second limiting part is in contact with the rotation stopping part one by one to fix the rotating lock on the mounting column.

[0036] Thus, the rotation lock can be fixed on the mounting column by setting the rotation stopping part and the second limiting part, and rotation of the rotation lock is avoided, so that rotation of the cleaning disc body relative to the rotation lock is ensured.

[0037] As an optional implementation, the cleaning base provided by the present application has the rotation stopping part being a limiting rib, the limiting rib being located at the bottom wall of the mounting groove, and the second limiting part being the bottom thread starting end of the external thread;

[0038] And / or, the rotation stopping part is a limiting groove, the limiting groove being located at the top end of the mounting column, and the second limiting part is an insertion block of the inner side wall of the rotation lock, the insertion block being inserted into the limiting groove.

[0039] Thus, the rotation stopping part and the second limiting part have simple structure, are convenient to install, and have high reliability.

[0040] As an optional implementation, the cleaning base provided by the present application has the number of cleaning discs and the number of rotation locks both being two, and the rotation directions of the two cleaning discs being opposite.

[0041] Thus, the two cleaning discs can simultaneously clean two cleaning pieces, and the cleaning efficiency is improved.

[0042] As an optional implementation, the cleaning base provided by the present application has the base including a base support and a base base, the base support covering the base base, and the base support and the base base being connected, the base support and the base base jointly forming a containing cavity;

[0043] The cleaning groove is located at the upper surface of the base support, and the water inlet valve is located in the containing cavity.

[0044] Thus, the base is provided in a split manner, which is beneficial to installation and later maintenance of the parts in the base.

[0045] As an optional implementation, the cleaning base provided by the present application has the water inlet valve including a water inlet valve seat and a water inlet valve core, and the groove bottom of the cleaning groove has a water inlet hole;

[0046] The water inlet valve seat is connected with the inner surface of the base support, the water inlet valve seat has a mounting cavity and a water inlet opening in communication with the mounting cavity, and the water inlet valve core is sleeved in the mounting cavity;

[0047] The water inlet valve core enters the cleaning groove through the water inlet hole, the water inlet valve core is triggered, the water inlet valve core opens the water inlet opening, so that the water inlet opening is in communication with the water inlet hole, the water inlet valve core is untriggered, and the water inlet valve core closes the water inlet opening.

[0048] Thus, the water inlet valve core opens or closes the water inlet opening through up-and-down movement, and the water inlet valve has simple structure and is convenient to operate.

[0049] As an optional implementation, the water inlet valve of the cleaning base station further comprises a first elastic member, the installation cavity has an installation portion, one side of the water inlet valve core facing the installation portion has a receiving groove, one end of the first elastic member in the elastic direction is sleeved on the installation portion, and the other end of the first elastic member in the elastic direction is inserted into the receiving groove.

[0050] In this way, when the cleaning device is separated from the abutment, the water inlet valve core of the water inlet valve can move upward under the action of the elastic force of the first elastic member, and return to the untriggered state.

[0051] As an optional implementation, the water inlet valve of the cleaning base station further comprises a first elastic member, the installation cavity has an installation portion, one side of the water inlet valve core facing the installation portion has a receiving groove, one end of the first elastic member in the elastic direction is sleeved on the installation portion, and the other end of the first elastic member in the elastic direction is inserted into the receiving groove.

[0052] In this way, the sealing performance of the water inlet valve can be improved.

[0053] As an optional implementation, the water outlet valve of the cleaning base station comprises a water outlet valve body and a water outlet sealing member, the water outlet sealing member is connected to one side of the water outlet valve body facing the recessed portion, and the water outlet valve body is connected to the recessed portion; the water outlet valve body is triggered, the water outlet valve body moves toward the recessed portion to drive the water outlet sealing member to close the water outlet; and the water outlet valve body is untriggered, the water outlet sealing member moves toward the cleaning tank to drive the water outlet sealing member to open the water outlet.

[0054] In this way, the water outlet valve adopts a mechanical valve, which is cheaper and has a longer service life than an electronic valve.

[0055] As an optional implementation, at least one side of the water outlet valve body has a plug buckle, a side wall of the recessed portion has a sliding groove, the sliding direction of the sliding groove is consistent with the moving direction of the water outlet valve body, the plug buckle is inserted into the sliding groove and slides along the extension direction of the sliding groove.

[0056] In this way, the water outlet valve can be prevented from being separated from the recessed portion.

[0057] As an optional implementation, the water outlet valve of the cleaning base station further comprises at least one second elastic member, and the water outlet valve body is connected to the recessed portion through the second elastic member.

[0058] In this way, when the cleaning device is separated from the abutment, the water outlet valve body of the water inlet valve can move upward under the action of the elastic force of the second elastic member, and return to the untriggered state.

[0059] In a second aspect, the present application provides a cleaning device, comprising a cleaning base station and a cleaning device, the cleaning device is parked on the cleaning base station, and the cleaning device can synchronously control the water inlet valve and the water outlet valve of the cleaning base station.

[0060] In this way, the user experience of the cleaning device as a whole can be improved.

[0061] As an optional implementation, the present application provides a cleaning device, the cleaning device comprises a cleaning device body and a cleaning piece, the cleaning piece is connected to the cleaning device body, and the cleaning piece rotates relative to the cleaning device body.

[0062] The cleaning piece contacts the cleaning disc assembly of the cleaning base station, drives the cleaning disc assembly to rotate, and the cleaning device body moves towards the cleaning groove of the cleaning base station, so that the cleaning device body simultaneously triggers the water inlet valve and the water outlet valve; or the cleaning device body moves away from the cleaning groove of the cleaning base station, so that the cleaning device body simultaneously releases the triggering of the water inlet valve and the water outlet valve.

[0063] In this way, the cleaning device has simple structure, strong reliability, and convenient cleaning operation, and does not need to manually control water inlet, and automatic water inlet and drainage can be completed through programs and mechanical structures.

[0064] The configuration of the present application and other inventive purposes and benefits will be more obvious and easy to understand through the description of the preferred embodiments in combination with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0065] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0066] Figure 1 The structural schematic diagram of the cleaning base station provided by the embodiment of the present application;

[0067] Figure 2 The schematic diagram when the water inlet valve and the water outlet valve in the cleaning base station provided by the embodiment of the present application are simultaneously triggered;

[0068] Figure 3 The schematic diagram when the water inlet valve and the water outlet valve in the cleaning base station provided by the embodiment of the present application are simultaneously triggered; Figure 2 The local enlarged view of A in FIG. 8;

[0069] Figure 4 The schematic diagram when the water inlet valve and the water outlet valve in the cleaning base station provided by the embodiment of the present application are simultaneously triggered;

[0070] Figure 5 The schematic diagram when the water inlet valve and the water outlet valve in the cleaning base station provided by the embodiment of the present application are simultaneously triggered; Figure 4A local enlarged view at middle B;

[0071] Figure 6 A structural schematic view of a linkage assembly in a cleaning base station according to an embodiment of the present application;

[0072] Figure 7 Another structural schematic view of a linkage assembly in a cleaning base station according to an embodiment of the present application;

[0073] Figure 8 A schematic view of a cleaning disc assembly in a low position in a cleaning base station according to an embodiment of the present application;

[0074] Figure 9 A schematic view of a cleaning disc assembly in a high position in a cleaning base station according to an embodiment of the present application;

[0075] Figure 10 A structural schematic view of a base in a cleaning base station according to an embodiment of the present application;

[0076] Figure 11 A structural schematic view of a cleaning disc and a rotation lock in a cleaning base station according to an embodiment of the present application; Figure 10 A local enlarged view at middle C;

[0077] Figure 12 A structural schematic view of a cleaning disc and a rotation lock in a cleaning base station according to an embodiment of the present application;

[0078] Figure 13 An exploded view of a cleaning base station according to an embodiment of the present application;

[0079] Figure 14 Another exploded view of a cleaning base station according to an embodiment of the present application from another angle;

[0080] Figure 15 A structural schematic view of a cleaning disc and a rotation lock in a cleaning base station according to an embodiment of the present application; Figure 8 A local enlarged view at middle D;

[0081] Figure 16 A structural schematic view of a base support and a water outlet valve in a cleaning base station according to an embodiment of the present application;

[0082] Figure 17 A structural schematic view of a cleaning disc and a rotation lock in a cleaning base station according to an embodiment of the present application; Figure 16 A local enlarged view at middle E;

[0083] Figure 18 A structural schematic view of a cleaning device according to an embodiment of the present application.

[0084] Explanation of reference numerals:

[0085] 100 - base;

[0086] 110 - cleaning tank; 111 - recess; 1111 - water outlet; 1112 - chute; 112 - mounting groove; 113 - mounting column; 1131 - rotation-stopping part; 114 - water inlet hole; 120 - base support; 130 - base pedestal; 140 - accommodating cavity; 150 - screw column;

[0087] 200 - cleaning disc assembly;

[0088] 210 - cleaning disc; 211 - cleaning disc body; 2111 - dirt scraping strip; 2112 - through hole; 212 - connecting part; 2121 - connecting hole; 220 - rotation lock; 221 - first limiting part; 222 - second limiting part;

[0089] 300 - water inlet valve;

[0090] 310 - water inlet valve seat; 311 - mounting cavity; 3111 - mounting part; 312 - water inlet hole; 320 - water inlet valve core; 321 - accommodating groove; 330 - first elastic member; 340 - water inlet sealing ring; 350 - water inlet valve cover;

[0091] 400 - water outlet valve;

[0092] 410 - water outlet valve body; 411 - insertion buckle; 420 - water outlet sealing member; 430 - second elastic member;

[0093] 500 - linkage assembly;

[0094] 600 - cleaning device;

[0095] 610 - cleaning device body; 611 - first abutting part; 612 - second abutting part; 620 - cleaning member;

[0096] 700 - cleaning base station;

[0097] 800 - clean water tank water outlet. DETAILED DESCRIPTION

[0098] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood in a broad sense, for example, it can be fixedly connected, or indirectly connected through an intermediate medium, or the internal communication of two elements or the interaction relationship between 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.

[0099] In the description of the present application, it needs to be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" 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 present application and simplifying the description, and do not indicate or imply 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 a limitation on the present application.

[0100] The terms "first", "second", "third" (if any) in the description and claims of the present application and the above drawings are used to distinguish similar objects, and do not necessarily describe a particular order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the application described herein can be implemented in an order other than that illustrated or described herein.

[0101] In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or maintenance tool including a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or maintenance tools.

[0102] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. 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.

[0103] In the prior art, the cleaning base station includes a base and a cleaning disc assembly, wherein the base has a cleaning tank with a water inlet valve and a water outlet valve, the water outlet valve is opened or closed by manually pressing the water outlet valve, and the water inlet valve is opened or closed by manually pressing the water inlet valve. Therefore, when the brush is soaked and washed, the water outlet valve is manually pressed to close the water outlet valve, and then the water inlet valve is manually pressed to open the water inlet valve, so that the cleaning liquid enters the cleaning tank and remains in the cleaning tank. When the brush is dehydrated, the water outlet valve is manually pressed to open the water outlet valve, and then the water inlet valve is manually pressed to close the water inlet valve, so that the cleaning liquid is discharged from the cleaning tank. In this cleaning base station, the water inlet valve and the water outlet valve need to be controlled separately, the operation of the cleaning base station is complex, and the user experience is poor.

[0104] In order to solve the above technical problems, the application provides a cleaning base station and a cleaning device. The water inlet valve and the water outlet valve of the cleaning base station can be triggered at the same time, so that the water inlet valve is opened and the water outlet valve is closed. The water inlet valve and the water outlet valve are simultaneously triggered, the water inlet valve is closed, and the water outlet valve is opened. In this way, the operation of the cleaning base station is simple, and the user experience is improved.

[0105] Figure 1 The structure schematic diagram of the cleaning base station provided by the embodiment of the application, Figure 2 The schematic diagram of the cleaning base station provided by the embodiment of the application when the water inlet valve and the water outlet valve are triggered at the same time, Figure 3 The Figure 2 The local enlarged view of A in the figure, Figure 4 The schematic diagram of the cleaning base station provided by the embodiment of the application when the water inlet valve and the water outlet valve are simultaneously triggered, Figure 5 The Figure 4 The local enlarged view of B in the figure.

[0106] Referring to Figures 1 to 5 The cleaning device provided by the application includes a cleaning device 600 and a cleaning base station 700. The cleaning device 600 includes a cleaning device body 610 and a cleaning part 620.

[0107] The cleaning base station 700 includes a base 100, a cleaning disc assembly 200, a water inlet valve 300 and a water outlet valve 400. The base 100 has a cleaning groove 110, and the cleaning disc assembly 200, the water inlet valve 300 and the water outlet valve 400 are all located on the base 100. The water inlet valve 300 and the water outlet valve 400 are synchronously controlled to make the water inlet valve 300 open and the water outlet valve 400 close, or to make the water inlet valve 300 close and the water outlet valve 400 open. The water inlet valve 300 and the water outlet valve 400 are used to jointly control the liquid level in the cleaning groove 110.

[0108] In the application, the base 100 is used to install the cleaning disc assembly 200, the water inlet valve 300 and the water outlet valve 400, and the base 100 has a cleaning groove 110 inside which can be used to contain cleaning liquid and the cleaning part 620. The cleaning liquid and the cleaning disc assembly 200 are used to clean the cleaning part 620. When the water inlet valve 300 is closed and the water outlet valve 400 is opened, the sewage after cleaning the cleaning part 620 is discharged from the cleaning groove 110, so that the liquid level in the cleaning groove 110 is lowered. When the water inlet valve 300 is opened and the water outlet valve 400 is closed, the cleaning liquid in the water tank is transported to the cleaning groove 110, so that the liquid level in the cleaning groove 110 is raised, and the cleaning part 620 is soaked or cleaned.

[0109] As an optional embodiment, the cleaning base station 700 further comprises a linkage assembly 500, which is movable relative to the cleaning tank 110 to synchronously control the water inlet valve 300 and the water outlet valve 400. By providing the linkage assembly 500 to achieve synchronous control of the water inlet valve 300 and the water outlet valve 400, the accuracy of synchronous control can be improved.

[0110] Figure 6 A structural schematic diagram of the linkage assembly in the cleaning base station provided by the embodiment of the present application is shown in FIG. 5. As shown in FIG. 5, the linkage assembly 500 is a lever assembly, which rotates relative to the cleaning tank 110. The lever assembly rotates to contact the water inlet valve 300 and to be out of contact with the water outlet valve 400, so as to open the water inlet valve 300 and close the water outlet valve 400. Alternatively, the lever assembly rotates to contact the water outlet valve 400 and to be out of contact with the water inlet valve 300, so as to close the water inlet valve 300 and open the water outlet valve 400. Figure 6

[0111] Specifically, the lever assembly comprises a lever and a driving member. The lever is hinged to a connecting seat provided on the cleaning tank 110, and the connecting seat is located between the water inlet valve 300 and the water outlet valve 400. The driving member is located on a side of the connecting seat facing the water inlet valve 300. The bottom of the driving member is fixed to the tank bottom of the cleaning tank 110, and the piston rod of the driving member is connected to the lever. When the piston rod is completely retracted, the lever contacts the water inlet valve 300 and is out of contact with the water outlet valve 400, so as to open the water inlet valve 300 and close the water outlet valve 400. When the piston rod is extended, the lever rotates. When the piston rod is completely extended, the lever contacts the water outlet valve 400 and is out of contact with the water inlet valve 300, so as to close the water inlet valve 300 and open the water outlet valve 400. The driving member can be an electric push rod. It can be understood that the linkage assembly 500 has low accuracy requirements for the installation positions of the water inlet valve 300 and the water outlet valve 400, and does not need to ensure that the triggering heights of the water inlet valve 300 and the water outlet valve 400 are the same.

[0112] The cleaning base station 700 provided by the embodiment comprises a base 100, a cleaning disc assembly 200, a water inlet valve 300 and a water outlet valve 400. The base 100 has a cleaning tank 110, and the water inlet valve 300 and the water outlet valve 400 are located on the cleaning tank 110. The water inlet valve 300 and the water outlet valve 400 are synchronously controlled to open the water inlet valve 300 and close the water outlet valve 400, or to close the water inlet valve 300 and open the water outlet valve 400, so as to jointly control the liquid level in the cleaning tank 110. Compared with the prior art, the water inlet valve 300 and the water outlet valve 400 are separately controlled by manually pressing the water outlet valve 400 to control the opening or closing of the water outlet valve 400, and manually pressing the water inlet valve 300 to control the opening or closing of the water inlet valve 300. The cleaning base station 700 provided by the embodiment is simple to operate and improves the user experience.

[0113] ​In some embodiments, the water inlet valve 300 and the water outlet valve 400 can be triggered simultaneously to open the water inlet valve 300 and close the water outlet valve 400, and the water inlet valve 300 and the water outlet valve 400 can be untriggered simultaneously to close the water inlet valve 300 and open the water outlet valve 400. In this way, the control efficiency of the water inlet valve 300 and the water outlet valve 400 can be improved.

[0114] Figure 7 Another structure of the linkage assembly in the cleaning base station is provided in the embodiments of the present application. Referring to Figure 7 As shown, the linkage assembly 500 is a linkage assembly, the water inlet valve 300 and the water outlet valve 400 are in contact with the linkage assembly, and the linkage assembly moves towards the bottom of the cleaning tank 110 to trigger the water inlet valve 300 and the water outlet valve 400 simultaneously. Alternatively, the linkage assembly moves towards the side away from the bottom of the cleaning tank 110 to untrigger the water inlet valve 300 and the water outlet valve 400 simultaneously.

[0115] Specifically, the linkage assembly includes a linkage and a driving member, the driving member is located between the water inlet valve 300 and the water outlet valve 400, the bottom of the driving member is fixedly connected to the bottom of the cleaning tank 110, the piston rod of the driving member is connected to the linkage, and when the piston rod is completely retracted, the linkage triggers the water inlet valve 300 and the water outlet valve 400 simultaneously, the water inlet valve 300 is opened, and the water outlet valve 400 is closed. When the piston rod is extended, the linkage moves towards the side away from the bottom of the cleaning tank 110 to untrigger the water inlet valve 300 and the water outlet valve 400 simultaneously, the water inlet valve 300 is closed, and the water outlet valve 400 is opened. The driving member can be an electric push rod. It can be understood that the movement range of this linkage assembly is small, so the space range occupied by it is small, and it is not easy to interfere with the cleaning device 600.

[0116] In the above embodiments, the water inlet valve 300 and the water outlet valve 400 are synchronously controlled by the linkage assembly 500, and in some embodiments, the water inlet valve 300 and the water outlet valve 400 can also be synchronously controlled by the rotation of the cleaning member 620.

[0117] Referring to Figures 1 to 5 As shown, the cleaning device 600 includes a cleaning device body 610 and a cleaning member 620, the cleaning member 620 is connected to the cleaning device body 610, and the cleaning member 620 rotates relative to the cleaning device body 610. The cleaning device 600 is docked on the cleaning base station 700, and the cleaning device 600 can synchronously control the water inlet valve 300 and the water outlet valve 400 of the cleaning base station 700.

[0118] When the cleaning element 620 rotates under the drive of the drive element of the cleaning device body 610, the dewatering of the cleaning element can be achieved. The cleaning element 620 is in an interference state with the cleaning disc assembly 200, and the cleaning element 620 can drive the cleaning disc assembly 200 to rotate together, and the cleaning disc assembly 200 can be lifted relative to the cleaning tank 110. Since the cleaning element 620 maintains contact with the cleaning disc assembly 200, and the cleaning element 620 is connected with the cleaning device body 610, the cleaning device body 610 can be lifted relative to the cleaning tank 110.

[0119] When the cleaning element 620 drives the cleaning disc assembly 200 to rotate to the low position, the cleaning device body 610 triggers the water inlet valve 300 and the water outlet valve 400 of the cleaning base station 700 at the same time, so that the water outlet valve 400 is closed and the water inlet valve 300 is opened, so that the cleaning liquid in the water tank enters the cleaning tank 110 to wash the cleaning element 620. When the cleaning element 620 drives the cleaning disc assembly 200 to rotate to the high position, the cleaning device body 610 simultaneously releases the water inlet valve 300 and the water outlet valve 400 of the cleaning base station 700, so that the water outlet valve 400 is opened and the water inlet valve 300 is closed, so that the sewage after washing the cleaning element 620 is discharged from the cleaning tank 110.

[0120] By driving the cleaning disc assembly 200 to rotate by the cleaning element 620, the cleaning device body 610 moves relative to the cleaning tank 110 of the cleaning base station 700, so as to trigger the water inlet valve 300 and the water outlet valve 400 at the same time, or simultaneously release the water inlet valve 300 and the water outlet valve 400. In this way, the water inlet valve 300 and the water outlet valve 400 do not need to be manually operated, and automatic water inlet and drainage can be achieved through programs and mechanical structures.

[0121] In some embodiments, the cleaning disc assembly 200 includes at least one cleaning disc 210, and the cleaning disc 210 is located in the cleaning tank 110. The cleaning disc 210 moves relative to the cleaning tank 110 of the cleaning base station 700, so as to trigger the water inlet valve 300 and the water outlet valve 400 at the same time, or simultaneously release the water inlet valve 300 and the water outlet valve 400.

[0122] In a possible implementation, the shape of the cleaning disc 210 matches the shape of the cleaning element 620, and the cleaning element 620 drives the cleaning disc 210 to rotate, so as to achieve the movement of the cleaning disc 210 relative to the cleaning tank 110 of the cleaning base station 700.

[0123] In another possible implementation, the lifting of the cleaning disc 210 can be controlled by the cleaning base station 700.

[0124] The cleaning base station 700 is provided with a drive assembly in the cleaning tank 110, the drive assembly is connected with the cleaning disc 210, the drive assembly rotates to drive the cleaning disc 210 to rotate, or the drive assembly moves linearly to push the cleaning disc 210 to move linearly relative to the cleaning tank 110 of the cleaning base station 700.

[0125] The cleaning base station 700 further comprises a water receiving element, which is located in the base 100 and detachably connected with the base 100, and is in communication with the water outlet valve 400, and is used for receiving the sewage discharged from the water outlet valve 400. The sewage in the water receiving element can be poured out by detaching the water receiving element from the base 100.

[0126] Figure 8 A schematic view of the cleaning disc assembly in the cleaning base station provided by the embodiment of the present application when the cleaning disc assembly is in a low position, Figure 9 A schematic view of the cleaning disc assembly in the cleaning base station provided by the embodiment of the present application when the cleaning disc assembly is in a high position.

[0127] Referring to Figure 8 and Figure 9 The cleaning disc assembly 200 can be lifted and lowered relative to the cleaning tank 110. When the cleaning disc assembly 200 is lowered, the water inlet valve 300 is opened and the water outlet valve 400 is closed. When the cleaning disc assembly 200 is lifted, the water inlet valve 300 is closed and the water outlet valve 400 is opened.

[0128] Specifically, when the cleaning element 620 drives the cleaning disc assembly 200 to rotate to a low position, the water inlet valve 300 and the water outlet valve 400 of the cleaning base station 700 are triggered at the same time, so that the water outlet valve 400 is closed and the water inlet valve 300 is opened, so that the cleaning liquid in the water tank enters the cleaning tank 110 to clean the cleaning element 620. When the cleaning element 620 drives the cleaning disc assembly 200 to rotate to a high position, the water inlet valve 300 and the water outlet valve 400 of the cleaning base station 700 are triggered at the same time, so that the water outlet valve 400 is opened and the water inlet valve 300 is closed, so that the sewage after cleaning the cleaning element 620 is discharged from the cleaning tank 110.

[0129] It can be understood that when the cleaning equipment needs to be soaked and washed, the cleaning disc assembly 200 is lowered, the water inlet valve 300 is opened, and the water outlet valve 400 is closed, and the cleaning liquid enters the cleaning tank 110. When the cleaning equipment needs to be spun dry, the cleaning disc assembly 200 is lifted, the water inlet valve 300 is closed, and the water outlet valve 400 is opened, so that the sewage after cleaning the cleaning element 620 is discharged from the cleaning tank 110. By simultaneously controlling the water inlet valve 300 and the water outlet valve 400 through the lowering and lifting of the cleaning disc assembly 200, it is convenient to realize and has high reliability.

[0130] In a possible implementation, the cleaning disc assembly 200 can rotate relative to the cleaning tank 110 to lift the cleaning disc assembly 200 relative to the cleaning tank 110.

[0131] In this way, the cleaning disc assembly 200 can be rotated relative to the cleaning tank 110 by the cleaning member, and the automatic control of the water inlet valve 300 and the water outlet valve 400 can be realized without setting an additional driving device.

[0132] Specifically, the cleaning disc assembly 200 includes at least one cleaning disc 210 and at least one rotation lock 220, the cleaning disc 210 is connected to the rotation lock 220 one by one, the rotation lock 220 is arranged on the cleaning tank 110, and the cleaning disc 210 rotates relative to the rotation lock 220 to lift the cleaning disc 210 relative to the rotation lock 220.

[0133] For example, the cleaning disc assembly 200 includes two cleaning discs 210 and two rotation locks 220.

[0134] It can be understood that, by setting the cleaning disc 210 and the rotation lock 220, the cleaning disc 210 is lifted relative to the rotation lock 220, which is simple in structure and convenient to realize.

[0135] In another possible implementation, the cleaning disc assembly 200 can move linearly along the vertical direction relative to the cleaning tank 110. For example, a lifting spring is arranged between the cleaning disc assembly 200 and the cleaning tank 110, the cleaning disc assembly 200 compresses the spring, and thus the cleaning disc assembly 200 moves linearly along the vertical direction relative to the cleaning tank 110.

[0136] Figure 10 A structural schematic diagram of a base of a cleaning base station provided by an embodiment of the present application is shown in FIG. 1. Figure 10 As shown in the figure, the bottom of the cleaning tank 110 has a recessed part 111, and the recessed part 111 is used to accommodate the cleaning disc 210. The recessed part 111 has a water outlet 1111, and the water outlet valve 400 is used to close or open the water outlet 1111. The water outlet 1111 is arranged on the recessed part 111, which is conducive to the collection of the cleaning liquid and facilitates the discharge of the cleaning liquid.

[0137] Figure 11 A structural schematic diagram of a cleaning disc and a rotation lock in a cleaning base station provided by an embodiment of the present application is shown in FIG. 2. Figure 10 A local enlarged view of part C in FIG. 2 is shown in FIG. 3. Figure 12 A position relationship schematic diagram of a cleaning disc and a rotation lock in a cleaning base station provided by an embodiment of the present application is shown in FIG. 4. Figure 13 An exploded view of a cleaning base station provided by an embodiment of the present application is shown in FIG. 5. Figure 14 Another angle exploded view of a cleaning base station provided by an embodiment of the present application is shown in FIG. 6. Figure 15 A local enlarged view of part D in FIG. 6 is shown in FIG. 7. Figure 8 A local enlarged view of part D in FIG. 6 is shown in FIG. 7.

[0138] A structural schematic diagram of a cleaning base station provided by an embodiment of the present application is shown in FIG. 1.Figures 11 to 15 As shown, the cleaning disc 210 comprises a cleaning disc body 211 and a connecting portion 212, the cleaning disc body 211 is coaxially connected with the connecting portion 212, the connecting portion 212 has a connecting hole 2121, the rotating lock 220 is inserted into the connecting hole 2121 and is connected with the connecting hole 2121 through threads.

[0139] The rotating lock 220 and the cleaning disc 210 are connected through threads to realize the lifting of the cleaning disc 210 relative to the rotating lock 220, and the structure has high reliability.

[0140] The cleaning disc body 211 has at least one dirt scraping strip 2111 on the side away from the connecting portion 212, and the cleaning disc body 211 has a plurality of through holes 2112. The dirt scraping strip 2111 is used to clean the cleaning element, which can scrape off the attached dirt on the cleaning element, thereby improving the cleaning effect of the cleaning element. The plurality of through holes 2112 on the cleaning disc body 211 facilitate the flow of cleaning liquid and improve the cleaning effect of the cleaning element.

[0141] Referring to Figure 12 and 15 As shown, the connecting hole 2121 has an internal thread, and the outer side of the rotating lock 220 has an external thread matched with the internal thread.

[0142] The rotating lock 220 has a first limiting portion 221, the first limiting portion 221 is in contact with the top thread tail end of the internal thread, and the cleaning disc body 211 stops rotating. The first limiting portion 221 can prevent the cleaning disc body 211 from being separated from the rotating lock 220 when the cleaning disc body 211 rotates upward relative to the rotating lock 220, and can prevent the cleaning disc body 211 from being thrown out of the cleaning groove 110.

[0143] Referring to Figure 10 and 11 As shown, the cleaning groove 110 is provided with at least one mounting groove 112 and at least one mounting column 113, and the mounting groove 112 and the mounting column 113 are located in the recessed portion 111.

[0144] The rotating lock 220 and the connecting portion 212 are located in the mounting groove 112, the mounting column 113 is located in the mounting groove 112, and the mounting column 113 and the mounting groove 112 are one-to-one correspondingly arranged.

[0145] The mounting column 113 and the mounting groove 112 have at least one rotation stopping portion 1131, and the rotating lock 220 has at least one second limiting portion 222, the second limiting portion 222 is in one-to-one contact with the rotation stopping portion 1131 to fix the rotating lock 220 on the mounting column 113.

[0146] It can be understood that the rotation lock 220 can be fixed on the mounting column 113 by setting the rotation stopping part 1131 and the second limiting part 222, and rotation of the rotation lock 220 is avoided, so that rotation of the cleaning disc body 211 relative to the rotation lock 220 is ensured.

[0147] In a possible implementation, the rotation stopping part 1131 is a limiting rib, and the limiting rib is located on a bottom wall of the mounting groove 112. The second limiting part 222 is a bottom thread start end of an external thread.

[0148] Please continue to refer to Figure 15 In another possible implementation, the rotation stopping part 1131 is a limiting groove, and the limiting groove is located on a top end of the mounting column 113. The second limiting part 222 is an insertion block of an inner side wall of the rotation lock 220, and the insertion block is inserted into the limiting groove.

[0149] It should be noted that, in order to improve the fixing effect of the rotation lock 220, the structures of the rotation stopping part 1131 and the second limiting part 222 described above can be simultaneously provided. The rotation stopping part 1131 and the second limiting part 222 provided in the embodiment have simple structures, are convenient to install, and have high reliability.

[0150] During installation, first, the rotation lock 220 is installed in the connecting hole 2121 of the cleaning disc 210, and then the rotation lock 220 is sleeved on the mounting column 113.

[0151] In some embodiments, the number of the cleaning disc 210 and the number of the rotation lock 220 are both two, and the rotation directions of the two cleaning discs 210 are opposite.

[0152] Specifically, when the cleaning disc 210 rotates inward relative to the cleaning tank 110, the cleaning disc 210 descends, the water inlet valve 300 is opened, the water outlet valve 400 is closed, and the cleaning liquid enters the cleaning tank 110. When the cleaning disc 210 rotates outward relative to the cleaning tank 110, the cleaning disc 210 rises, the water inlet valve 300 is closed, and the water outlet valve 400 is opened, so that the cleaned cleaning liquid is discharged from the cleaning tank 110.

[0153] It can be understood that the cleaning disc 210 is arranged in one-to-one correspondence with the cleaning member 620, and the two cleaning discs 210 can simultaneously clean two cleaning members, so that the cleaning efficiency is improved.

[0154] Please continue to refer to Figure 8 and Figure 9 As shown in the figures, the base 100 includes a base support 120 and a base base 130. The base support 120 covers the base base 130, and the base support 120 and the base base 130 are connected. The base support 120 and the base base 130 jointly form a containing cavity 140.

[0155] The cleaning tank 110 is located on the upper surface of the base support 120, and the water inlet valve 300 is located in the containing cavity 140. In this way, the base 100 is divided into two parts, which facilitates the installation and later maintenance of the components in the base 100.

[0156] Next, the structure of the water inlet valve 300 will be described.

[0157] Please continue to see Figures 2 to 5 As shown in the figure, the water inlet valve 300 includes a water inlet valve seat 310 and a water inlet valve core 320, and the bottom of the cleaning tank 110 has a water inlet hole 114. A plurality of auxiliary water inlet holes can be arranged on the circumferential side of the water inlet hole 114, and the auxiliary water inlet holes are uniformly distributed around the axis of the water inlet hole 114.

[0158] The water inlet valve seat 310 is connected with the inner surface of the base support 120, and the water inlet valve seat 310 has a mounting cavity 311 and a water inlet 312 communicating with the mounting cavity 311, and the water inlet valve core 320 is sleeved in the mounting cavity 311. The water inlet valve core 320 enters the cleaning tank 110 through the water inlet hole 114, the water inlet valve core 320 is triggered, the water inlet valve core 320 opens the water inlet 312, so that the water inlet 312 communicates with the water inlet hole 114. The water inlet valve core 320 is triggered, and the water inlet valve core 320 closes the water inlet 312.

[0159] Specifically, the cleaning base station 700 further includes a clean water tank, and the clean water tank has a clean water tank water outlet 800 for discharging the cleaning liquid in the clean water tank. The clean water tank water outlet 800 is connected with the water inlet 312 through a pipeline, so as to convey the cleaning liquid in the clean water tank to the cleaning tank 110 through the water inlet 312.

[0160] It can be understood that the water inlet valve core 320 opens the water inlet 312 or the water inlet valve core 320 closes the water inlet 312 by moving up and down, so that the water inlet valve structure is simple and convenient to operate.

[0161] In order to make the water inlet valve 300 automatically rebound when the trigger is released, the water inlet valve 300 further includes a first elastic member 330, the mounting cavity 311 has a mounting portion 3111, one side of the water inlet valve core 320 towards the mounting portion 3111 has a containing groove 321, one end of the first elastic member 330 in the elastic direction is sleeved on the mounting portion 3111, and the other end of the first elastic member 330 in the elastic direction is inserted into the containing groove 321. In this way, when the cleaning device body 610 is separated from the water inlet valve core 320 of the water inlet valve 300, the water inlet valve core 320 of the water inlet valve 300 can move upward under the action of the elastic force of the first elastic member 330, and return to the untriggered state.

[0162] In use, the water inlet valve core 320 is triggered by the cleaning device body 610, the first elastic member 330 is compressed, and the water inlet valve core 320 moves towards the mounting portion 3111. The water inlet valve core 320 is triggered, the first elastic member 330 is stretched, and the water inlet valve core 320 moves towards the cleaning groove 110.

[0163] In some embodiments, the water inlet valve 300 further comprises a water inlet sealing ring 340 and a water inlet valve cover 350, the water inlet sealing ring 340 is arranged on the water inlet valve cover 350, the water inlet sealing ring 340 and the water inlet valve cover 350 are sleeved on the water inlet valve core 320, and the water inlet valve cover 350 is connected with the water inlet valve seat 310. The water inlet sealing ring 340 is abutted between the upper end of the water inlet valve seat 310 and the inner side wall of the water inlet valve cover 350.

[0164] It can be understood that by arranging the water inlet sealing ring 340 and the water inlet valve cover 350, the sealing performance of the water inlet valve 300 can be improved.

[0165] It should be noted that when the water inlet valve 300 is installed, first, the water inlet sealing ring 340 is installed on the water valve cover 350, the water inlet valve core 320 and the first elastic member 330 are installed on the water inlet valve seat 310, and then the two parts are installed in one body. Finally, the water inlet valve seat 310 and the screw column 150 on the base 100 are fixed by screws.

[0166] Next, the structure of the water outlet valve 400 will be described.

[0167] Figure 16 The position relationship diagram of the base support and the water outlet valve in the cleaning base station provided by the embodiments of the present application is shown in Figure 17 The Figure 16 The local enlarged view at E in the middle.

[0168] Referring to Figure 16 and Figure 17 As shown, the water outlet valve 400 comprises a water outlet valve body 410 and a water outlet sealing member 420, the water outlet sealing member 420 is connected with one side of the water outlet valve body 410 facing the recessed portion 111, and the water outlet valve body 410 is connected with the recessed portion 111. The water outlet valve 400 adopts a mechanical valve, which is cheaper and has a longer service life compared with an electronic valve.

[0169] In use, the water outlet valve body 410 is triggered by the cleaning device body 610, the water outlet valve body 410 moves towards the recessed portion 111 to drive the water outlet sealing member 420 to close the water outlet 1111. The water outlet valve body 410 is triggered, and the water outlet sealing member 420 moves towards the cleaning groove 110 to drive the water outlet sealing member 420 to open the water outlet 1111.

[0170] To avoid the water outlet valve 400 from being separated from the recess 111, at least one side of the water outlet valve body 410 is provided with a plug buckle 411, the side wall of the recess 111 is provided with a sliding groove 1112, the extending direction of the sliding groove 1112 is consistent with the moving direction of the water outlet valve body 410, the plug buckle 411 is inserted into the sliding groove 1112 and slides along the extending direction of the sliding groove 1112.

[0171] To make the water outlet valve 400 can automatically rebound, the water outlet valve 400 further comprises at least one second elastic member 430, and the water outlet valve body 410 is connected with the recess 111 through the second elastic member 430. In this way, when the cleaning device is separated from the water outlet valve 400, the water outlet valve body 410 of the water inlet valve 300 can move upward under the elastic force of the second elastic member 430 and return to the untriggered state.

[0172] For example, the number of the second elastic members 430 is two, and the second elastic members 430 are symmetrically arranged, so that the water outlet valve body 410 can be stably moved.

[0173] It should be noted that the water outlet valve body 410 is further provided with a fixing rib and two spring ribs, the two spring ribs are located on the opposite sides of the fixing rib, the fixing rib is used for fixing the water outlet sealing member 420, and the spring ribs are used for limiting the positions of the second elastic members 430. When the water outlet valve 400 is installed, the water outlet sealing member 420 is installed at the fixing rib of the water outlet valve body 410, and the second elastic members 430 are sleeved on the spring ribs of the water outlet valve body 410. Then the water outlet valve 400 is installed at the sliding groove 1112 of the base 100.

[0174] Figure 18 A structure diagram of a cleaning device in a cleaning apparatus provided by an embodiment of the present application is provided. Referring to Figure 18 As shown, the driving member of the cleaning device body 610 is controlled to rotate forward or reverse, so that the cleaning member 620 rotates forward or reverse relative to the cleaning device body 610. The cleaning member 620 is in an interference state with the cleaning disc 210, and the cleaning member 620 drives the cleaning disc assembly 200 to rotate, so that the cleaning disc assembly 200 moves up or down relative to the cleaning tank 110, and the cleaning device body 610 can move towards the cleaning tank 110 of the cleaning base 700. The cleaning device body 610 comprises a first abutting portion 611 and a second abutting portion 612, the first abutting portion 611 and the second abutting portion 612 are located between the two cleaning members 620 and are located on the opposite sides of the cleaning member 620. The first abutting portion 611 moves relative to the cleaning tank 110, and the first abutting portion 611 abuts or separates from the water outlet valve 400, so as to trigger or release the water outlet valve 400. The second abutting portion 612 moves relative to the cleaning tank 110, and the second abutting portion 612 abuts or separates from the water inlet valve 300, so as to trigger or release the water inlet valve 300.

[0175] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the above embodiments, those skilled in the art should understand that the technical solutions recorded in the above embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A cleaning base station, characterized by, The base (100) has a cleaning tank (110), the cleaning disc assembly (200) includes at least one cleaning disc (210) located in the cleaning tank (110), the water inlet valve (300) and the water outlet valve (400) are located on the base (100); The water inlet valve (300) and the water outlet valve (400) are synchronously controlled to open the water inlet valve (300) and close the water outlet valve (400), or to close the water inlet valve (300) and open the water outlet valve (400), and the water inlet valve (300) and the water outlet valve (400) are used to jointly control the liquid level in the cleaning tank (110); The linkage assembly (500) can move relative to the cleaning tank (110) to synchronously control the water inlet valve (300) and the water outlet valve (400); The linkage assembly (500) is a lever assembly which rotates relative to the cleaning tank (110); The lever assembly rotates to contact the water inlet valve (300) and disengage from the water outlet valve (400) to open the water inlet valve (300) and close the water outlet valve (400); Or, the lever assembly rotates to contact the water outlet valve (400) and disengage from the water inlet valve (300) to close the water inlet valve (300) and open the water outlet valve (400).

2. The cleaning dock of claim 1, wherein, The water inlet valve (300) and the water outlet valve (400) can be triggered at the same time to open the water inlet valve (300) and close the water outlet valve (400); the water inlet valve (300) and the water outlet valve (400) can be simultaneously untriggered to close the water inlet valve (300) and open the water outlet valve (400).

3. The cleaning dock of claim 2, wherein, The linkage assembly (500) is a connecting rod assembly, the water inlet valve (300) and the water outlet valve (400) are in contact with the connecting rod assembly, the connecting rod assembly moves towards the bottom of the cleaning tank (110) to trigger the water inlet valve (300) and the water outlet valve (400) at the same time; or, the connecting rod assembly moves towards the side away from the bottom of the cleaning tank (110) to untrigger the water inlet valve (300) and the water outlet valve (400) at the same time.

4. The cleaning dock of claim 2, wherein, The cleaning disc assembly (200) can be lifted and lowered relative to the cleaning tank (110); The cleaning disc assembly (200) is lowered, the water inlet valve (300) is opened, and the water outlet valve (400) is closed; the cleaning disc assembly (200) is raised, the water inlet valve (300) is closed, and the water outlet valve (400) is opened.

5. The cleaning dock of claim 4, wherein, The cleaning disc assembly (200) can rotate relative to the cleaning tank (110) to lift and lower the cleaning disc assembly (200) relative to the cleaning tank (110).

6. The cleaning station of claim 5, wherein, The cleaning disc assembly (200) comprises at least one rotating lock (220), the cleaning disc (210) is connected to the rotating lock (220) one by one, and the cleaning disc (210) is threadedly connected to the corresponding rotating lock (220), the rotating lock (220) is arranged on the cleaning tank (110), and the cleaning disc (210) rotates relative to the rotating lock (220) to lift the cleaning disc (210) relative to the rotating lock (220).

7. The cleaning station of claim 6, wherein, The bottom of the cleaning tank (110) has a recess (111) for accommodating the cleaning disc (210). The recess (111) has a water outlet (1111), and the water outlet valve (400) is used for closing or opening the water outlet (1111).

8. The cleaning station of claim 7, wherein, The cleaning disc (210) comprises a cleaning disc body (211) and a connecting portion (212), the cleaning disc body (211) is coaxially connected to the connecting portion (212), the connecting portion (212) has a connecting hole (2121), the rotating lock (220) is inserted into the connecting hole (2121) and is threadedly connected with the connecting hole (2121).

9. The cleaning station of claim 8, wherein, The connecting hole (2121) has an internal thread, and the outer side surface of the rotating lock (220) has an external thread matched with the internal thread. The rotating lock (220) has a first limiting portion (221), the first limiting portion (221) is in contact with the top thread tail end of the internal thread, and the cleaning disc body (211) stops rotating.

10. The cleaning station of claim 9, wherein, The cleaning tank (110) is provided with at least one mounting groove (112) and at least one mounting column (113), and the mounting groove (112) and the mounting column (113) are located in the recess (111); The rotating lock (220) and the connecting portion (212) are located in the mounting groove (112), and the mounting column (113) is located in the mounting groove (112), and the mounting column (113) and the mounting groove (112) are arranged one by one; At least one of the mounting column (113) and the mounting groove (112) has a rotation stopping portion (1131), the rotating lock (220) has at least one second limiting portion (222), the second limiting portion (222) is in one-to-one contact with the rotation stopping portion (1131) to fix the rotating lock (220) on the mounting column (113).

11. The cleaning station of claim 10, wherein, The rotation stopping portion (1131) is a limiting rib located on the bottom wall of the mounting groove (112), and the second limiting portion (222) is a bottom thread starting end of the external thread; And / or, the rotation stopping portion (1131) is a limiting groove located at the top end of the mounting column (113), and the second limiting portion (222) is an insertion block of the inner side wall of the rotating lock (220), which is inserted into the limiting groove.

12. The cleaning dock of any one of claims 6 to 11, wherein, The number of the cleaning disc (210) and the rotating lock (220) is two, and the rotating directions of the two cleaning discs (210) are opposite.

13. The cleaning station of any one of claims 6 to 11, wherein, The base (100) comprises a base support (120) and a base base (130), the base support (120) covers the base base (130), and the base support (120) and the base base (130) are connected, the base support (120) and the base base (130) form a containing cavity (140) together; The cleaning tank (110) is located on the upper surface of the base support (120), and the water inlet valve (300) is located in the containing cavity (140).

14. The cleaning station of claim 13, wherein, The water inlet valve (300) comprises a water inlet valve seat (310) and a water inlet valve core (320), and the bottom of the cleaning tank (110) has a water inlet hole (114); The water inlet valve seat (310) is connected with the inner surface of the base support (120), the water inlet valve seat (310) has a mounting cavity (311) and a water inlet opening (312) communicating with the mounting cavity (311), and the water inlet valve core (320) is sleeved in the mounting cavity (311); The water inlet valve core (320) enters the cleaning tank (110) through the water inlet hole (114), the water inlet valve core (320) is triggered, the water inlet valve core (320) opens the water inlet opening (312), so that the water inlet opening (312) communicates with the water inlet hole (114); the water inlet valve core (320) is triggered, and the water inlet valve core (320) closes the water inlet opening (312).

15. The cleaning dock of claim 14, wherein, The water inlet valve (300) further comprises a first elastic member (330), the mounting cavity (311) has a mounting portion (3111), one side of the water inlet valve core (320) towards the mounting portion (3111) has a containing groove (321), one end of the first elastic member (330) in the elastic direction is sleeved on the mounting portion (3111), and the other end of the first elastic member (330) in the elastic direction is inserted into the containing groove (321).

16. The cleaning dock of claim 14, wherein, The water inlet valve (300) further comprises a water inlet sealing ring (340) and a water inlet valve cover (350), the water inlet sealing ring (340) is arranged on the water inlet valve cover (350), the water inlet sealing ring (340) and the water inlet valve cover (350) are sleeved on the water inlet valve core (320), and the water inlet valve cover (350) is connected with the water inlet valve seat (310), the water inlet sealing ring (340) is abutted between the upper end of the water inlet valve seat (310) and the inner side wall of the water inlet valve cover (350).

17. The cleaning dock of any one of claims 7 to 11, wherein, The water outlet valve (400) comprises a water outlet valve body (410) and a water outlet sealing element (420), the water outlet sealing element (420) is connected to one side of the water outlet valve body (410) facing the recess (111), and the water outlet valve body (410) is connected to the recess (111); the water outlet valve body (410) is triggered, the water outlet valve body (410) moves towards the recess (111) to drive the water outlet sealing element (420) to close the water outlet (1111); the water outlet valve body (410) is untriggered, the water outlet sealing element (420) moves towards the cleaning tank (110) to drive the water outlet sealing element (420) to open the water outlet (1111).

18. The cleaning dock of claim 17, wherein, At least one side of the water outlet valve body (410) is provided with a plug buckle (411), the side wall of the recess (111) is provided with a sliding groove (1112), the extension direction of the sliding groove (1112) is consistent with the moving direction of the water outlet valve body (410), the plug buckle (411) is inserted into the sliding groove (1112) and slides along the extension direction of the sliding groove (1112).

19. The cleaning dock of claim 17, wherein, The water outlet valve (400) further comprises at least one second elastic element (430), and the water outlet valve body (410) is connected to the recess (111) through the second elastic element (430).

20. A cleaning device, characterized by The cleaning device (600) and the cleaning base station (700) according to any one of claims 1 to 19 are included, the cleaning device (600) is docked on the cleaning base station (700), and the cleaning device (600) can synchronously control the water inlet valve (300) and the water outlet valve (400) of the cleaning base station (700).

21. The cleaning device of claim 20, wherein, The cleaning device (600) comprises a cleaning device body (610) and a cleaning element (620), the cleaning element (620) is connected to the cleaning device body (610), and the cleaning element (620) rotates relative to the cleaning device body (610); The cleaning element (620) is in contact with the cleaning disc assembly (200) of the cleaning base station (700), drives the cleaning disc assembly (200) to rotate, the cleaning device body (610) moves towards the cleaning tank (110) of the cleaning base station (700) to make the cleaning device body (610) trigger the water inlet valve (300) and the water outlet valve (400) at the same time; or the cleaning device body (610) moves away from the cleaning tank (110) of the cleaning base station (700) to make the cleaning device body (610) untrigger the water inlet valve (300) and the water outlet valve (400) at the same time.

Citation Information

Patent Citations

  • Automatic cleaning system

    CN213696748U

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    CN217244178U