Base station

By designing detachable cleaning parts and movable connecting adapters, the problem of garbage residue after cleaning of the base station is solved, and convenient cleaning and efficient disassembly and assembly process is achieved.

CN222885347UActive Publication Date: 2025-05-20ANKER INNOVATIONS TECH CO LTD
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Patent Information

Application Number
CN202421623695.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-05-20
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

After cleaning the dirty parts of the smart cleaning equipment, garbage will remain on the base station, making it inconvenient to remove and affecting the normal use of the base station.

Method used

A base station including a base station main body, adapter and cleaning member is designed. The cleaning member is provided with a cleaning tank and a sewage outlet. The cleaning member is detachably arranged on the base and connected with the adapter to communicate with the sewage outlet and the receiving port, so as to facilitate removal of the cleaning member for cleaning.

Benefits of technology

By removing the cleaning parts from the base station, it is easy to clean and movably connects them to the base through the adapter, which reduces the obstacles to the disassembly and assembly of the cleaning parts and improves the disassembly and assembly efficiency of the cleaning parts.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222885347U_ABST
    Figure CN222885347U_ABST
Patent Text Reader

Abstract

The utility model discloses a base station. The base station comprises a base station body, an adapter and a cleaning part. The base station body has a base. And the adapter is movably connected with the base station main body. The adapter is provided with a receiving port. The cleaning part is provided with a cleaning tank and a drain outlet which are communicated, and the cleaning tank is used for containing cleaning liquid. The cleaning part is detachably arranged on the base, and when the cleaning part is installed on the base, the cleaning part is in butt joint with the adapter, so that the drain outlet is communicated with the receiving opening. In this way, the cleaning piece can be conveniently detached for cleaning.
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Description

Technical Field

[0001] This application relates to the technical field of household cleaning, and particularly to a base station. Background Art

[0002] With the development of computer technology, intelligent devices have emerged in all aspects of people's lives. In life, many people choose intelligent devices to provide convenience for their lives. Among them, in the field of household cleaning, intelligent cleaning devices can save people's time and energy and have entered thousands of households.

[0003] Intelligent cleaning devices often need to be used in cooperation with a base station. The base station can charge the intelligent cleaning device. In addition, the base station can also clean the dirty parts of the intelligent cleaning device. For example, the base station can also clean the mop of the intelligent cleaning device. Currently, after the base station cleans the dirty parts of the intelligent cleaning device, there will be garbage remaining on the base station, which is not easy to remove and is not conducive to the normal use of the base station. Summary of the Utility Model

[0004] This application provides a base station that can facilitate the removal of the cleaning part for cleaning.

[0005] To solve the above technical problems, the technical solution adopted in this application is: to provide a base station. The base station includes a base station main body, an adapter, and a cleaning part. The base station main body has a base. The adapter is movably connected to the base station main body. The adapter is provided with a receiving port. The cleaning part is provided with a cleaning tank and a sewage outlet that are connected and communicated. The cleaning tank is used to hold the cleaning liquid. The cleaning part is detachably arranged on the base, and when the cleaning part is installed on the base, it is docked with the adapter so that the sewage outlet is communicated with the receiving port.

[0006] The beneficial effect of this application is: Different from the prior art, by including a base station main body, an adapter, and a cleaning part, the base station main body has a base, the adapter is movably connected to the base station main body, the adapter is provided with a receiving port, the cleaning part is provided with a cleaning tank and a sewage outlet that are connected and communicated, the cleaning tank is used to hold the cleaning liquid, the cleaning part is detachably arranged on the base, and when the cleaning part is installed on the base, it is docked with the adapter so that the sewage outlet is communicated with the receiving port, removing the cleaning part from the base station can facilitate the cleaning of the cleaning part. By setting the adapter to be movably connected to the base, when removing the cleaning part from the base, the adapter can move relative to the base, reducing the obstruction to the cleaning part leaving the base. When installing the cleaning part back, the adapter can move relative to the base to facilitate the docking of the cleaning part with the adapter. In this way, it is possible to facilitate the removal and installation of the cleaning part for cleaning and facilitate the installation back into the base station, improving the disassembly and assembly efficiency of the cleaning part. Description of the Drawings

[0007] Figure 1 It is a schematic structural diagram of an embodiment of the base station of this application;

[0008] Figure 2 This is a schematic three-dimensional structure diagram of the base station embodiment of the present application and the cleaning device;

[0009] Figure 3 This is a schematic cross-sectional structure diagram of the base station embodiment of the present application in a disassembled state;

[0010] Figure 4 is Figure 3 a schematic structure diagram of part A shown;

[0011] Figure 5 This is a schematic partial structure diagram of the base station embodiment of the present application in a disassembled state;

[0012] Figure 6 is Figure 5 a schematic structure diagram of part B shown. Detailed implementation manners

[0013] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a 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 of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0014] After long-term research, the inventor of the present application found that intelligent cleaning devices often need to be used in cooperation with a base station. The base station can charge the intelligent cleaning device. In addition, the base station can also clean the dirty parts of the intelligent cleaning device. For example, the base station can also clean the mop of the intelligent cleaning device. Currently, after the base station cleans the dirty parts of the intelligent cleaning device, there will be garbage remaining on the base station, and this part of the garbage is not easy to remove, which is not conducive to the normal use of the base station. To solve this technical problem, the following embodiments are provided in the present application.

[0015] As Figure 1 and Figure 2 shown, the base station 1 described in the base station embodiment of the present application is used to dock with the cleaning device 2. The cleaning device 2 can have one or more functions such as sweeping, mopping, scrubbing, and vacuuming. For example, the cleaning device 2 can be a sweeping robot, a mopping robot, a scrubbing and mopping integrated robot, a sweeping, scrubbing and mopping integrated robot, a vacuum cleaner, etc. When the cleaning device 2 performs cleaning work, the cleaning device 2 can absorb various garbage objects in the outside world, such as dust particles, paper scraps, hair, etc.

[0016] The cleaning device 2 may include a device main body and a dust box. The dust box is detachably connected to the device main body. The device main body may include a main housing, a traveling assembly, and a cleaning assembly. The main housing can serve as the overall structural framework of the device main body and may include an outer shell and an inner shell, etc. The inside of the main housing can be used to accommodate multiple functional components, electrical devices, and other components to protect the internal components and structures of the cleaning device 2, etc. A receiving area can be partially surrounded on the peripheral side of the main housing. The receiving area is used to accommodate the dust box so that the dust box can be assembled with the device main body. A dust suction port can be provided on the bottom of the main housing facing the working surface (such as the ground) of the cleaning device 2. The dust suction port communicates with the inside of the dust box, and garbage on the ground can be sucked through the dust suction port.

[0017] The traveling assembly can be mainly arranged on the main housing. The traveling assembly can enable the cleaning device 2 to have a movable function. The traveling assembly includes driving wheels and universal wheels, and the universal wheels are driven by the driving wheels to move. The cleaning assembly may include a rotary brush. The rotary brush can be arranged at the bottom of the main housing and is used to provide a cleaning function when the cleaning device 2 is working to clean the working surface of the cleaning device 2. The device main body may include a dust suction fan. The dust suction fan can be arranged inside the main housing and is used to suck dust, debris, and other garbage objects on the working surface into the dust box. The cleaning assembly and the dust suction fan can cooperate with each other and act together. For example, the dust suction port can be arranged adjacent to the rotary brush so that the garbage or dust swept out during the rotation of the rotary brush can be sucked into the dust box by the dust suction fan.

[0018] The structure of the above-mentioned cleaning device 2 is only for exemplary illustration and is not limited to the above example structure.

[0019] As Figures 1 to 3 shown, the base station 1 described in the base station embodiment of the present application includes a base station main body 200 and a cleaning member 100. The base station main body 200 can be docked with the cleaning device 2. The cleaning member 100 is provided with a cleaning tank 101. The opening of the cleaning tank 101 faces upward, and the cleaning tank 101 is used to hold a cleaning liquid. The cleaning liquid can be clean water or can be composed of a mixture of clean water and detergent. When the base station main body 200 is docked with the cleaning device 2, the cleaning liquid in the cleaning member 100 can clean the dirty parts of the cleaning device 2. For example, the cleaning device 2 includes a mopping cloth 20. When the base station main body 200 is docked with the cleaning device 2, the mopping cloth 20 falls into the cleaning tank 101 and rotates, so that it can be washed by the cleaning liquid. Another example is that when the base station main body 200 is docked with the cleaning device 2, the base station main body 200 or the cleaning member 100 can spray the cleaning liquid onto the mopping cloth 20, and the cleaning liquid can fall into the cleaning tank 101 after flushing the mopping cloth 20.

[0020] Optionally, the cleaning member 100 is integrally formed. For example, the cleaning member 100 is integrally formed by an injection molding method.

[0021] Optionally, as Figures 1 to 3As shown, the base station main body 200 may include a main body part a20 and a base a10. The main body part a20 and the base a10 are connected. For example, the main body part a20 may be disposed on one side of the base a10, or the main body part a20 may be disposed above the base a10. The base a10 can be used to carry the cleaning device 2. For example, the cleaning device 2 can move to the base a10 and stay on the base a10. The main body part a20 can suck the garbage objects in the cleaning device 2 carried on the base a10. The cleaning member 100 may be disposed on the base a10. The cleaning liquid is used to clean the cleaning device 2 carried on the base a10.

[0022] Optionally, as Figures 1 to 3 shown, the main body part a20 may have a clean water tank a21, a dust collection container a23, a sewage tank a24, a dust collection fan a25, a pumping mechanism a26, a liquid supply mechanism a27, and a gas supply mechanism a28. The dust collection fan a25 is used to suck the garbage objects in the cleaning device 2 into the dust collection container a23. The dust collection container a23 is used to retain the garbage objects sucked from the cleaning device 2. The clean water tank a21 can supply water to the cleaning device 2 for the cleaning device 2 to consume and utilize. The sewage tank a24 is used to hold the sewage or waste liquid generated after cleaning the cleaning device 2. The clean water tank a21 can also supply water to the cleaning member 100 to clean the cleaning device 2. The pumping mechanism a26 is used to pump the sewage generated after cleaning the cleaning device 2 into the sewage tank a24. The liquid supply mechanism a27 is used to transport or pump the cleaning liquid containing clean water into the cleaning member 100. The gas supply mechanism a28 is used to provide dry gas, and thus can dry the corresponding area after the cleaning device 2 is cleaned.

[0023] In some embodiments, the base station 1 does not have a sewage tank a24, and the pumping mechanism a26 can be connected to the sewage pipeline in the scene to be cleaned to automatically pump the sewage to the external sewage pipeline.

[0024] As Figures 2 to 5 shown, the base station main body 200 described in the base station embodiment of the present application has a base a10. The adapter 300 is movably connected to the base station main body 200. The adapter 300 is provided with a receiving port 301. The cleaning member 100 is provided with a communicating cleaning tank 101 and a sewage discharge port 104. The cleaning tank 101 is used to hold the cleaning liquid. The cleaning member 100 is detachably disposed on the base a10, and when the cleaning member 100 is installed on the base a10, it is docked with the adapter 300 so that the sewage discharge port 104 communicates with the receiving port 301.

[0025] After the cleaning equipment 2 is washed with the cleaning liquid, garbage objects will be mixed in. The garbage objects include sediment, cotton wool, hair, etc. The cleaning liquid mixed with the garbage objects needs to be discharged from the sewage outlet 102 out of the cleaning tank 101. The cleaning liquid mixed with the garbage objects can enter the adapter 300 through the sewage outlet 102 and the receiving port 301, and then be discharged into the sewage tank a24 of the base station 1 or into the external sewage pipeline through the adapter 300.

[0026] For example, the adapter 300 is also provided with an adapter port 305, and the adapter port 305 is connected to the pumping mechanism a26 and the sewage tank a24 through a hose. Under the suction of the pumping mechanism a26, the cleaning liquid in the cleaning tank 101 can flow into the adapter 300 through the sewage outlet 102 and the receiving port 301, and then flow into the sewage tank a24 through the adapter port 305 and the hose.

[0027] When the cleaning part 100 is removed from the base a10, the adapter 300 can move relative to the base a10 to reduce the obstruction to the cleaning part 100 leaving the base a10. When the cleaning part 100 is reinstalled on the base a10, the adapter 300 can move relative to the base a10 to facilitate the docking of the cleaning part 100 with the adapter 300. In this way, it is convenient to remove the cleaning part 100 for cleaning and to reinstall it on the base station 1, improving the disassembly and assembly efficiency of the cleaning part 100.

[0028] Specifically, the cleaning part 100 is detachably docked with the adapter 300. The base a10 has an installation groove 211, and the cleaning part 100 is detachably arranged in the installation groove 211. The base a10 is used to prevent the cleaning part 100 in the installation groove 211 from detaching from the adapter 300. The cleaning part 100 moves relative to the base a10 together with the adapter 300 to leave the installation groove 211.

[0029] Optionally, the adapter 300 can be movably connected to the base a10, or the adapter 300 can be movably connected to the main body part a20.

[0030] Optionally, as Figures 2 to 5 shown, the adapter 300 is configured to move relative to the base station main body 200 together with the cleaning part 100 during the installation and disassembly of the cleaning part 100.

[0031] Specifically, after the cleaning liquid in the cleaning tank 101 is drained, there will be garbage objects remaining in the cleaning tank 101. Removing the cleaning part 100 from the base station 1 facilitates cleaning of the cleaning part 100. When removing the cleaning part 100 from the base station 1, on the one hand, it is necessary to disconnect the cleaning part 100 from the adapter 300, and on the other hand, it is necessary to remove the cleaning part 100 from the base a10. By arranging the adapter 300 to be movably connected to the base a10, in the first half of the process of removing the cleaning part 100 from the base a10, when the cleaning part 100 leaves the installation groove 211, the adapter 300 and the cleaning part 100 can remain connected, and the adapter 300 and the cleaning part 100 can move synchronously relative to the base a10, so that the adapter 300 does not hinder the cleaning part 100 from leaving the installation groove 211. After the cleaning part 100 leaves the installation groove 211, the base a10 allows the cleaning part 100 to disengage from the adapter 300. Under the pulling action of an external force on the cleaning part 100, the cleaning part 100 can be disconnected from the adapter 300, and thus the cleaning part 100 can be removed from the base station 1. In this way, it is possible to facilitate the removal of the cleaning part 100 and improve the disassembly efficiency of the cleaning part 100.

[0032] If the adapter 300 is arranged to be fixedly connected to the base a10, the adapter 300 will hinder the cleaning part 100 from leaving the installation groove 211, and at the same time, the base a10 will restrict the cleaning part 100 in the installation groove 211 from disengaging from the adapter 300, making it difficult to remove the cleaning part 100 from the base station 1.

[0033] When the removed cleaning part 100 is assembled and connected to the base a10 and the adapter 300 again, the cleaning part 100 can first be connected to the adapter 300, and then the cleaning part 100 and the adapter 300 move relative to the base a10 to the installation groove 211 to achieve the assembly and connection of the cleaning part 100 with the base a10 and the adapter 300. For other implementation manners of the assembly and connection of the cleaning part 100 with the base a10 and the adapter 300, the reverse process of other implementation manners of removing the cleaning part 100 from the base station 1 can be referred to.

[0034] Optionally, as Figure 2 shown, the cleaning part 100 is arranged to move together with the adapter 300 relative to the base a10 in the first direction D1 to leave the installation groove 211. The cleaning part 100 is arranged to disengage from the adapter 300 in the second direction D2, and the first direction D1 and the second direction D2 are arranged at an angle.

[0035] For example, the adapter 300 is rotatably connected to the base a10, and the rotation trajectories of the cleaning part 100 and the adapter 300 relative to the base a10 are circular arcs. The first direction D1 can be the circumferential direction of the circular arc trajectory, and the second direction D2 can be the radial direction of the circular arc trajectory.

[0036] For another example, the first direction D1 is parallel to the height direction D3 of the base station 1, and the second direction D2 is perpendicular to the height direction D3 of the base station 1. The cleaning member 100 slides upward relative to the base a10 together with the adapter 300 to leave the installation groove 211. Further, the first direction D1 can be perpendicular to the second direction D2.

[0037] After the cleaning member 100 leaves the installation groove 211, the base a10 allows the cleaning member 100 to move in the second direction D2. By moving in the second direction D2, the cleaning member 100 can be detached from the adapter 300, thus realizing disassembly.

[0038] Optionally, as Figure 2 shown, the adapter 300 is rotatably connected to the base station main body 200. The cleaning member 100 rotates relative to the base a10 together with the adapter 300 to leave the installation groove 211.

[0039] After the cleaning member 100 rotates relative to the base a10, the attitude of the cleaning member 100 can change, causing the cleaning member 100 to leave the installation groove 211. For example, the cleaning member 100 can be converted from a flat state to an inclined state, and then the cleaning member 100 can move along the inclined direction to disengage from the adapter.

[0040] Specifically, one end of the cleaning member 100 is connected to the adapter 300 and can rotate relative to the base a10 through the adapter 300. The other end of the cleaning member 100 can be used to receive the user's hand-held and pulling actions. Under the user's hand-held action, the cleaning member 100 rotates relative to the base a10 together with the adapter 300 to leave the installation groove 211. Then, under the user's pulling action, the cleaning member 100 is disconnected from the adapter 300. By setting the adapter 300 to be rotatably connected to the base a10, the lever principle can be utilized to save the user's effort and facilitate the user to remove the cleaning member 100 from the base station 1.

[0041] Optionally, the adapter 300 is configured to be able to rotate and slide relative to the base a10.

[0042] Optionally, as Figures 2 to 5 shown, the extending direction D4 of the rotation axis of the adapter 300 rotating relative to the base station main body 200 is arranged at an angle with the height direction D3 of the base station 1.

[0043] That is to say, the extending direction D4 of the rotation axis of the adapter 300 rotating relative to the base a10 is arranged at an angle with the height direction D3 of the base station 1. Further, the extending direction D4 of the rotation axis of the adapter 300 rotating relative to the base a10 is perpendicular to the height direction D3 of the base station 1.

[0044] The cleaning member 100 rotates upward relative to the base a10 together with the adapter 300 to leave the installation groove 211. The base a10 can be set on the base a10, and the space above the base a10 is large, which can facilitate the removal of the cleaning member 100 from the base station 1.

[0045] In some other embodiments, the extension direction D4 of the rotation axis of the adapter 300 relative to the base a10 is parallel to the height direction D3 of the base station 1.

[0046] Optionally, the base a10 is provided with a limiting structure, and the limiting structure is used to limit the pitch angle range of the adapter 300 relative to the base a10 to 5° to 20°. For example, the limiting structure is used to limit the pitch angle range of the adapter 300 relative to the base a10 to 5° to 10°. In this way, the adapter 300 can be maintained in a posture that is convenient for assembly and connection with the cleaning part 100, which can improve assembly efficiency.

[0047] Optionally, such as Figures 3 to 6 As shown in FIG. 1 , the adapter 300 is plugged into the cleaning part 100, and at least one of the adapter 300 and the cleaning part 100 is provided with a guide slope 302, and the guide slope 302 is used to guide the adapter 300 and the cleaning part 100 to be plugged into each other. For example, both the adapter 300 and the cleaning part 100 are provided with a guide slope 302, and the guide slope 302 of the adapter 300 and the guide slope 302 of the cleaning part 100 may have the same or different shapes.

[0048] The adapter 300 and the cleaning part 100 are connected by plugging, which is convenient for assembly, connection and disassembly, and is conducive to maintaining the connection stability between the adapter 300 and the cleaning part 100 during use. By providing the guide slope 302, the adapter 300 and the cleaning part 100 can be plugged together to improve the assembly efficiency.

[0049] Optionally, such as Figures 3 to 6 As shown in FIG. 1 , the cleaning part 100 is provided with a drainage channel 103 . The cleaning part 100 is provided with a drainage channel 103 . One end of the drainage channel 103 is connected to the drainage port 104 , and the other end is used for sealing and docking with the adapter 300 .

[0050] Specifically, the cleaning part 100 is provided with a sewage extraction port 102, which is connected to the cleaning tank 101 through a sewage discharge channel 103. The adapter 300 is sealed and docked with the sewage discharge channel 103 through the sewage extraction port 102. Further, the adapter 300 includes an adapter part 303 inserted in the sewage discharge channel 103 and a sealing member 304. The sealing member 304 abuts between the adapter part 303 and the inner wall surface of the sewage discharge channel 103. The sealing member 304 can be arranged on the outer periphery of the adapter part 303.

[0051] ​​​​The adapter portion 303 and the seal 304 can be inserted into the sewage discharge channel 103 through the sewage extraction port 102. The seal 304 can be tightly abutted against the inner wall surface of the sewage discharge channel 103 through elastic deformation. On the one hand, it can play a sealing role to limit the leakage of the cleaning liquid, and on the other hand, it can promote the stable connection between the adapter portion 303 and the cleaning member 100. For example, the seal 304 can be set as a silica gel ring, a rubber ring, etc.

[0052] Optionally, a part of the guiding inclined surface 302 of the adapter 300 can be located on the outer periphery of the adapter portion 303, and another part can be located on the outer periphery of the seal 304. The guiding inclined surface 302 of the cleaning member 100 is located at the sewage extraction port 102, so as to facilitate the insertion of the adapter portion 303 and the seal 304 into the sewage discharge channel 103 through the sewage extraction port 102.

[0053] Optionally, as Figures 3 to 6 shown, the base a10 has a side wall portion 212 and a bottom wall portion 213 that enclose and form an installation groove 211, and a connection space 214 communicating with the installation groove 211 is provided on the side wall portion 212. The adapter 300 includes a connection portion 310 spaced apart from the receiving port 301, and the connection portion 310 is movably connected to the inner wall of the connection space 214. The sewage extraction port 102 is provided on the circumferential side of the cleaning member 100.

[0054] When the cleaning member 100 is in the connected position, the side wall portion 212 can limit the cleaning member 100 from detaching from the adapter 300 by restricting the circumferential side of the cleaning member 100. The side wall portion 212 and the bottom wall portion 213 can leave an opening above the installation groove 211, so that the cleaning member 100 can move upward above the installation groove 211 to detach from the installation groove 211.

[0055] Optionally, as Figures 3 to 6 shown, the connection portion 310 is rotatably connected to the side wall of the connection space 214. Further, both ends of the connection portion 310 are respectively rotatably connected to the opposite side walls of the connection space 214. The adapter 300 includes a plug-in portion 306, and the plug-in portion 306 is connected between both ends of the connection portion 310. The receiving port 301 is opened on the plug-in portion 306, so that the plug-in portion 306 is spaced apart from the opposite side walls of the connection space 214, thereby reducing the risk of interference between the adapter 300 and the opposite side walls of the connection space 214 during rotation.

[0056] Optionally, as Figures 3 to 6 shown, the cleaning member 100 includes an intercepting member 105, and the intercepting member 105 is provided at the sewage discharge port 104.

[0057] Specifically, the cleaning tank 101 can be connected to the sewage suction port 102 through the sewage discharge port 104, and the cleaning liquid in the cleaning tank 101 can be discharged to the sewage suction port 102 through the sewage discharge port 104. The intercepting member 105 can play a filtering role. By setting the intercepting member 105, large-sized garbage objects in the cleaning tank 101 can be blocked from causing blockage in the discharge path of the cleaning liquid.

[0058] Optionally, as Figures 3 to 6 shown, the bottom wall of the cleaning tank 101 can be inclined. The sewage discharge port 104 is arranged at the lowest point of the bottom wall of the cleaning tank 101 to facilitate the cleaning liquid in the cleaning tank 101 to flow into the sewage discharge port 104.

[0059] Optionally, as Figures 3 to 6 shown, the sewage discharge channel 103 can be arranged below the cleaning tank 101. The sewage discharge channel 103 is connected to the cleaning tank 101 through the sewage discharge port 104. The cleaning liquid in the cleaning tank 101 can be discharged to the sewage discharge channel 103 through the sewage discharge port 104, and then can enter the adapter 300 through the sewage suction port 102 and the receiving port 301, and then be discharged from the adapter 300 to the sewage tank a24 or the external sewage pipeline. The sewage discharge channel 103 is long and narrow, and it is easier to suck the cleaning liquid clean after it enters the sewage discharge channel 103.

[0060] Optionally, the sewage discharge port 104 is closer to the outside of the base a10 than the adapter 300. Here, the outside of the base a10 refers to the side of the base a10 facing the cleaning device 2 when the cleaning device 2 plans to dock with the base station 1 and moves towards the base station 1. In this way, the sewage discharge port 104 and the adapter 300 can be spaced apart in the docking direction of the cleaning device 2 and the base station 1 to form the sewage discharge channel 103.

[0061] Optionally, as Figure 1 and Figure 2 shown, the base station 1 further includes a pumping mechanism a26. The pumping mechanism a26 is installed on the base station main body 200. The base station 1 further includes a sewage tank a24. The sewage tank a24 is detachably connected to the base station main body 200. The sewage tank a24 is connected to the receiving port 301. The pumping mechanism a26 is used to suck the cleaning liquid in the cleaning tank 101 into the sewage tank a24 through the sewage discharge port 104 and the receiving port 301.

[0062] The sewage tank a24 can receive the cleaning liquid mixed with garbage objects. By setting the sewage tank a24, the application scenario range of the base station 1 can be improved.

[0063] Optionally, the pumping mechanism a26 is a water pump, such as a vacuum pump.

[0064] Optionally, the base station main body 200 is provided with a sewage extraction pipeline for communicating with an external sewage pipeline. The sewage extraction pipeline is communicated with the receiving port 301, and the pumping mechanism a26 is used to discharge the cleaning liquid in the cleaning tank 101 to the external sewage pipeline through the sewage discharge port 104, the receiving port 301 and the sewage extraction pipeline. Such a setting is beneficial to timely discharge the cleaning liquid mixed with garbage objects to the outside, and the base station 1 does not need to be provided with a sewage tank a24, which can reduce or avoid the cleaning work of the sewage tank a24.

[0065] Optionally, as Figure 5 shown, a detection electrode 106 is arranged in the cleaning member 100 for detecting the liquid level of the cleaning liquid in the cleaning tank 101.

[0066] When the liquid level of the cleaning liquid in the cleaning tank 101 exceeds a preset threshold value, the detection electrode 106 can be triggered to generate an electrical signal response. When the pumping mechanism a26 is working, if the liquid level of the cleaning liquid in the cleaning tank 101 remains in a state exceeding the preset threshold value, it indicates that there is a blockage in the discharge path of the cleaning liquid. Thus, it is beneficial to control the liquid level of the cleaning liquid in the cleaning tank 101 and reduce the risk of insufficient or overflow of the cleaning liquid volume.

[0067] Optionally, as Figure 5 shown, a plurality of bump portions 107 are convexly arranged on the bottom wall of the cleaning member 100. Further, a boss is convexly arranged on the bottom wall of the cleaning member 100, and the bump portions 107 are convexly arranged on the surface of the boss.

[0068] The bump portions 107 can be used to clean the mop 20. When the mop 20 rotates relative to the cleaning member 100, the bump portions 107 can apply a force to the mop 20, increasing the friction between the mop 20 and the cleaning member 100 and improving the cleaning effect on the mop 20.

[0069] Optionally, as Figure 5 shown, a water diversion tank 108 communicated with the cleaning tank 101 is arranged on the cleaning member 100. Clear water can flow into the cleaning tank 101 through the water diversion tank 108 to form a cleaning liquid.

[0070] Optionally, as Figure 5 shown, a handle portion 109 is convexly arranged on the cleaning member 100. The user applies a force to the cleaning member 100 through the handle portion 109.

[0071] In summary, in this embodiment, the cleaning part 100 can be detached from the base station 1, which facilitates the cleaning of the cleaning part 100. By arranging the adapter 300 to be movably connected to the base a10, in the first half of the process of detaching the cleaning part 100 from the base a10, the adapter 300 and the cleaning part 100 can remain connected, and the adapter 300 can move synchronously with the cleaning part 100 relative to the base a10, so that the adapter 300 does not hinder the cleaning part 100 from leaving the installation groove 211. After the cleaning part 100 leaves the installation groove 211, the base a10 allows the cleaning part 100 to be detached from the adapter 300. Under the pulling action of an external force on the cleaning part 100, the cleaning part 100 can be disconnected from the adapter 300, thereby the cleaning part 100 can be detached from the base station 1. In this way, it is convenient to detach the cleaning part 100 and improve the disassembly efficiency of the cleaning part 100.

[0072] The above are only the embodiments of the present application, and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.

Claims

1. A base station, characterized in that: include: The base station body has a base; An adapter, movably connected to the base station body; the adapter is provided with a receiving port; The cleaning component is provided with a connected cleaning groove and a sewage outlet, wherein the cleaning groove is used to contain cleaning liquid; the cleaning component is detachably arranged on the base, and when the cleaning component is installed on the base, it is docked with the adapter to connect the sewage outlet with the receiving port.

2. The base station according to claim 1, characterized in that The adapter is configured to move with the cleaning component relative to the base station body during installation and removal of the cleaning component.

3. The base station according to claim 2, characterized in that The adapter is rotatably connected to the base station body; The extending direction of the rotation axis of the adapter relative to the base station body is arranged at an angle with the height direction of the base station.

4. The base station according to any one of claims 1 to 3, characterized in that: The cleaning component is provided with a sewage discharge channel, one end of which is communicated with the sewage discharge port, and the other end of which is used for sealing and docking with the adapter.

5. The base station according to claim 4, characterized in that The sewage discharge channel is arranged below the cleaning tank.

6. The base station according to claim 4, characterized in that The sewage outlet is closer to the outer side of the base than the adapter.

7. The base station according to any one of claims 1 to 3, characterized in that: The cleaning component includes an intercepting component, and the intercepting component is arranged at the sewage outlet.

8. The base station according to any one of claims 1 to 3, characterized in that: The sewage outlet is arranged on the bottom wall of the cleaning tank.

9. The base station according to claim 8, characterized in that The sewage outlet is arranged at the lowest point of the bottom wall of the cleaning tank.

10. The base station according to any one of claims 1 to 3, characterized in that: The base station further comprises a pumping mechanism, which is installed on the base station body; The base station further includes a sewage tank, which is detachably connected to the base station body, the sewage tank is in communication with the receiving port, and the pumping mechanism is used to pump the cleaning liquid in the cleaning tank into the sewage tank through the sewage outlet and the receiving port; or The base station body is provided with a sewage pumping pipe, which is used to connect to an external sewage pipe. The sewage pumping pipe is connected to the receiving port, and the pumping mechanism is used to discharge the cleaning liquid in the cleaning tank to the external sewage pipe through the sewage outlet, the receiving port and the sewage pumping pipe.