Cleaning base station and cleaning system

By raising the height of the cleaning tank and setting up a collection tank and a wiper structure, the wiper structure scrapes off dirt when the cleaning element rotates in the cleaning tank, solving the problem of residual dirt in the cleaning base station, achieving efficient cleaning and simplifying user operation.

WO2025195507A1PCT designated stage Publication Date: 2025-09-25DREAM INNOVATION TECH (SUZHOU) CO LTD
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Patent Information

Application Number
PCT/CN2025/084124
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-03-22
Filing Date
2025-03-21
Publication Date
2025-09-25

AI Technical Summary

Technical Problem

After cleaning the cleaning parts of the cleaning base station, dirt is likely to remain in the cleaning tank, which increases the user's subsequent cleaning workload and affects the user experience.

Method used

By raising the overall height of the cleaning tank in the base, the bottom wall of the cleaning tank is brought into contact with the cleaning member, and a collecting tank and a wiper structure are provided. When the cleaning member rotates in the cleaning tank, the wiper structure scrapes the dirt into the collecting tank.

Benefits of technology

This reduces the amount of dirt remaining on the surface of the cleaning tank after the cleaning base station cleans the cleaning parts, reduces the user's subsequent cleaning workload, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided are a cleaning base station (1000) and a cleaning system. The cleaning base station (1000) is configured to clean cleaning members of a cleaning device. The cleaning base station (1000) comprises a base (100), a cleaning tank (200), a collection tank (400), and a water scraping structure (300), wherein the cleaning tank (200) is arranged on the base (100) and is configured to at least partially accommodate the cleaning members; when the cleaning members are cleaned, a bottom wall (210) of the cleaning tank (200) comes into contact with the cleaning members; the collection tank (400) is in communication with the cleaning tank (200); the water scraping structure (300) is arranged in the cleaning tank (200) or the collection tank (400); and the collection tank (400) is configured to accommodate dirt scraped off by the water scraping structure (300).
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Description

Cleaning base stations and cleaning systems

[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on March 22, 2024, with application number 202420577637.6 and application name “Cleaning Base Station and Cleaning System”, the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application relates to the technical field of cleaning equipment, and in particular to a cleaning base station and a cleaning system. Background Art

[0003] With economic development and continuous social progress, smart home products have gradually become part of people's lives, providing numerous conveniences. Among them, cleaning devices offer numerous advantages for household cleaning, significantly reducing the labor intensity of cleaning. During operation, a cleaning device uses a cleaning tool such as a rag to clean the floor. After a period of use, the cleaning device needs to be moved to a cleaning base station, where the dirty cleaning tool is cleaned using a cleaning tank within the cleaning base station.

[0004] In the solutions of related technologies, dirt is likely to remain in the cleaning tank after the cleaning base station cleans the cleaning parts. The dirt remaining in the cleaning tank needs to be cleaned manually by the user, which increases the user's workload and affects the user experience. Summary of the Invention

[0005] In order to overcome the above-mentioned defects under the relevant technology, the purpose of this application is to provide a cleaning base station and a cleaning system. This application is conducive to reducing the dirt remaining in the cleaning tank after the cleaning base station cleans the cleaning parts, thereby reducing the user's subsequent workload and improving the user's experience.

[0006] The present application provides a cleaning base station for cleaning a cleaning member of a cleaning device, comprising:

[0007] base;

[0008] a cleaning tank, the cleaning tank being disposed on the base and being configured to at least partially accommodate the cleaning member, wherein a bottom wall of the cleaning tank contacts the cleaning member when cleaning the cleaning member;

[0009] a collecting tank, the collecting tank being connected to the cleaning tank;

[0010] The wiper structure is arranged in the cleaning tank or the collecting tank, and the collecting tank is used to receive the dirt scraped by the wiper structure.

[0011] Compared with the solutions of related technologies, the present application increases the overall height of the cleaning tank in the base, so that the bottom wall of the cleaning tank is in contact with the cleaning member when cleaning the cleaning member, and the cleaning member can clean the cleaning tank at the same time during the process of rotating and cleaning in the cleaning tank; by setting a collection tank and a wiper structure, the wiper structure can scrape the dirt on the cleaning member into the collection tank during the process of rotating and cleaning in the cleaning tank, thereby reducing the dirt remaining on the surface of the cleaning tank after the cleaning base station cleans the cleaning member, which is beneficial to reducing the user's subsequent workload and improving the user's experience.

[0012] In a possible implementation, the cleaning member can rotate relative to the cleaning tank. When the cleaning member and the cleaning tank rotate relative to each other, at least one of the cleaning member and the cleaning tank can be cleaned, and the sewage on the cleaning member can be scraped off by the wiper structure.

[0013] In a possible implementation, the wiper structure includes a wiper plate, which is protruding from the bottom wall of the cleaning tank and is adjacent to the collecting tank.

[0014] By arranging the scraper protruding from the bottom wall of the cleaning tank, it is ensured that the scraper can scrape off the dirty water on the cleaning member during the cleaning process of the cleaning member rotating in the cleaning tank; and the scraper is arranged close to the collecting tank, so that the scraped dirty water can be collected into the collecting tank. The structure is simple and easy to implement; the dirty water on the cleaning member can be scraped off in time, and the cleaning member can be cleaned again with clean water, thereby improving the cleaning efficiency of the cleaning member.

[0015] In a possible implementation, the wiper is arranged on a side of the collecting trough away from the rotation direction of the cleaning member, and in a plane parallel to the bottom wall of the cleaning trough, at least part of the projection of the wiper coincides with the projection of the collecting trough.

[0016] By arranging the wiper blade on the side of the collection trough facing away from the rotation direction of the cleaning member, the wiper blade, upon contact with the rotating cleaning member, can scrape the dirty water from the cleaning member to the side of the collection trough, thereby facilitating the collection of the dirty water into the collection trough. By arranging at least a portion of the wiper blade within the projection of the collection trough, the wiper blade and the collection trough overlap, so that the dirty water scraped by the wiper blade can fall directly into the collection trough.

[0017] In a possible implementation, the wiper is connected to the wall of the collecting tank and forms an integral body.

[0018] Integrating the wiper blade with the wall of the collecting trough is beneficial to reducing manufacturing processes and improving production efficiency.

[0019] In a possible implementation, the extension direction of the wiper blade and the bottom wall of the cleaning tank are perpendicular to each other.

[0020] The wiper is arranged perpendicularly to the bottom wall of the cleaning tank to ensure that the wiper has good wiping efficiency.

[0021] In a possible implementation, the cleaning tank includes a first tank body and a second tank body arranged in parallel, the collecting tank is arranged between the first tank body and the second tank body, and the collecting tank is communicated with both the first tank body and the second tank body.

[0022] The collecting tank is arranged between the first tank body and the second tank body, so that the collecting tank can collect sewage from the cleaning parts in the first tank body and the cleaning parts in the second tank body.

[0023] In one possible implementation, the wiper includes a first wiper located on the first trough body and a second wiper located on the second trough body, the collecting trough includes a first trough wall and a second trough wall on the side away from the rotation direction of the cleaning member, the first wiper is flush with the first trough wall, and the second wiper is flush with the second trough wall.

[0024] The first wiper can scrape the sewage on the cleaning element in the first tank body into the collecting tank, and the second wiper can scrape the sewage on the cleaning element in the second tank body into the collecting tank.

[0025] In one possible implementation, the cleaning member includes a first cleaning member and a second cleaning member. When cleaning the cleaning member, the first cleaning member rotates clockwise and the second cleaning member rotates counterclockwise. The first wiper and the second wiper are formed on the side wall of the collection tank near the entrance of the cleaning base station.

[0026] In one possible implementation, in a plane parallel to the bottom wall of the cleaning tank, the projection of the first tank body and the projection of the second tank body are both fan-shaped or circular, and at least part of the collection tank is located within the radius of the first tank body and the radius of the second tank body.

[0027] In a possible implementation, a friction member is further provided on the bottom wall of the cleaning tank, and the cleaning member can contact the bottom wall of the cleaning tank and the friction member when rotating relative to the cleaning tank.

[0028] By providing the friction member, the friction rate between the cleaning member and the bottom wall of the cleaning tank can be increased, thereby improving the cleaning efficiency of the cleaning member.

[0029] In a possible implementation, the friction member includes a plurality of protrusions protruding from the bottom wall of the cleaning tank.

[0030] By evenly arranging a plurality of protrusions on the bottom wall of the cleaning tank, the protrusions can be used to scrub the rotating cleaning member, thereby improving the cleaning efficiency of the cleaning member.

[0031] In a possible implementation, the plurality of protrusions include a plurality of convex points formed on the bottom wall of the cleaning tank, and the plurality of convex points are at least partially evenly distributed on the bottom wall of the cleaning tank.

[0032] In one possible implementation, it also includes a water channel assembly, which includes a water inlet pipeline, and the water inlet pipeline includes a water inlet and a water inlet pipe. The water inlet pipe is used to connect to a water source, and the water inlet is formed at one end of the water inlet pipe, and the water inlet is connected to the cleaning tank or the collection tank.

[0033] A water inlet pipe is provided to introduce clean water from a water source into the cleaning tank, thereby achieving cleaning of the cleaning parts.

[0034] In a possible implementation, the water inlet is located in the collecting trough, and a rotatable scooping wheel is provided in the collecting trough, and the scooping wheel is configured to scoop up water in the collecting trough onto the cleaning member above the cleaning trough.

[0035] By providing a rotatable scooping wheel, the water in the collection tank can be scooped up onto the cleaning element by the scooping wheel, thereby improving the utilization rate of water, being beneficial to reducing the water consumption when washing the cleaning element and saving water resources.

[0036] In a possible implementation, the scooping wheel includes a rotatable wheel body having a plurality of blades on its circumference, and the blades are configured to rotate driven by the rotational motion of the cleaning member to scoop up water in the collection tank.

[0037] When the cleaning element rotates in the cleaning tank, it can drive the scooping wheel to rotate synchronously in the collecting tank. A recessed structure is formed between two adjacent blades on the scooping wheel, so that water can be scooped up to the cleaning element by utilizing the recessed structure between the two adjacent blades to improve water utilization.

[0038] In a possible implementation, the water scooping wheel is detachably disposed in the collecting tank;

[0039] The scooping wheel further includes connecting columns arranged at both axial ends of the wheel body. Two connecting grooves arranged opposite to each other are provided in the collecting groove, and the connecting columns are mounted in the corresponding connecting grooves.

[0040] The scoop wheel is detachably arranged in the collection tank, which is convenient for subsequent maintenance and replacement, and also convenient for users to clean the scoop wheel daily.

[0041] In one possible implementation, the water channel assembly further includes a drainage pipeline, which includes a drain outlet and a drain pipe. The drain pipe is used to connect to a sewage discharge device, and the drain outlet is formed at one end of the drain pipe, and the drain outlet is connected to the collection tank.

[0042] A drainage pipeline is provided to discharge the sewage from the collection tank, thereby realizing water circulation in combination with the water inlet pipeline.

[0043] In a possible implementation, a filter is further provided in the collection tank, and the filter is used to block the drain outlet.

[0044] By setting up a filter, larger dirt particles in sewage can be intercepted to avoid clogging of the drainage pipes.

[0045] In a possible implementation, the water inlet is provided between the first wiper blade and the second wiper blade;

[0046] The drain outlet is located in the collecting tank at a side away from the water inlet.

[0047] The cleaning base station is equipped with a clean water tank and a sewage tank, so that water can be circulated within the cleaning base station without the need for external equipment.

[0048] In a possible implementation, a guide plate is further provided on the base, and the guide plate is used to guide the cleaning member into the base;

[0049] The water inlet is arranged toward a side away from the guide plate.

[0050] In a possible implementation, in a plane parallel to the bottom wall of the cleaning tank, the projection of the water inlet is fan-shaped.

[0051] Setting the water inlet to have a fan-shaped cross-section allows the water inlet to spray a wider water surface, thereby flushing more locations in the collection tank; when the sewage in the collection tank is drained, the water inlet can be opened to flush the collection tank to clean the remaining dirt in the collection tank.

[0052] In a possible implementation, the drain outlet is provided on the bottom wall of the collecting trough, and the bottom wall of the collecting trough is inclined from the water inlet toward the drain outlet.

[0053] The bottom wall of the collecting tank is arranged to be inclined from the water inlet to the drain outlet, so that the sewage flows toward the drain outlet under the action of gravity, making it easier to discharge the sewage in the collecting tank.

[0054] In a possible implementation, the first groove wall and the second groove wall are arranged obliquely, and the distance between the first groove wall and the second groove wall gradually increases from the water inlet to the drain outlet.

[0055] The first groove wall and the second groove wall are set at an angle, and the distance between the first groove wall and the second groove wall is gradually increased in the direction away from the water inlet, so that the water pressure sprayed into the collection groove can be further increased in combination with the water inlet with a fan-shaped cross-section, which is conducive to better cleaning of the residual dirt in the collection groove.

[0056] In a possible implementation, the drain pipe is further connected to a control valve, and the control valve is used to control the on / off state of the drain pipe.

[0057] When cleaning the cleaning parts, the control valve is used to disconnect the drain pipe from the sewage discharge device, so that the water in the collection tank will not be discharged; combined with the scoop wheel, water resources can be fully utilized, which is conducive to saving water.

[0058] In a possible implementation, the water inlet is located in the cleaning tank, and the drain outlet is located in the collecting tank.

[0059] The water inlet pipe and drainage pipe of the cleaning base station can be connected to external equipment to achieve water circulation.

[0060] In a possible implementation, the friction member further includes a plurality of ribs, the ribs protruding from the bottom wall of the cleaning tank, and the water inlet is located on a side of the ribs away from the rotation direction of the cleaning member.

[0061] The water inlet is arranged on the side of the rib away from the rotation direction of the cleaning member, which can effectively prevent the water inlet from being blocked and ensure that the water inlet has a good water inlet capacity.

[0062] In a possible implementation, the water inlet is in the form of a long hole and is arranged on the rib.

[0063] Providing the water inlet in the shape of a long hole can increase the water inlet area of ​​the water inlet, thereby facilitating wetting a larger area of ​​the cleaning element and improving cleaning efficiency.

[0064] In one possible implementation, a water diversion portion is further provided on the rib, and the water diversion portion includes a water diversion bottom wall, a first water diversion side wall and a second water diversion side wall, the first water diversion side wall and the second water diversion side wall are both located on the water diversion bottom wall, and the first end of the first water diversion side wall and the first end of the second water diversion side wall are close to each other, the water inlet is located between the first end of the first water diversion side wall and the first end of the second water diversion side wall, and the distance between the first water diversion side wall and the second water diversion side wall gradually increases in the direction away from the water inlet.

[0065] By arranging a water inlet part on the rib, and the distance between the first water inlet side wall and the second water inlet side wall of the water inlet part gradually increases in the direction away from the water inlet, the water outflowing from the water inlet can be evenly diffused by the water inlet part, and then contact the cleaning part to wet the cleaning part more evenly, which is beneficial to improve the cleaning efficiency.

[0066] In a possible implementation, the plurality of ribs include several first ribs located in the first trough body and several second ribs located in the second trough body, the several first ribs are evenly arranged along the circumference of the first trough body, and the several second ribs are evenly arranged along the circumference of the second trough body, wherein the first wiper is arranged on the first rib on the side of the collection trough away from the rotation direction of the cleaning member, and the second wiper is arranged on the second rib on the side of the collection trough away from the rotation direction of the cleaning member.

[0067] By evenly arranging several first ribs in the first groove body, the cleaning parts in the first groove body can be evenly supported by the several first ribs to prevent uneven force on the cleaning parts; by evenly arranging several second ribs in the second groove body, the cleaning parts in the second groove body can be evenly supported by the several second ribs to prevent uneven force on the cleaning parts.

[0068] In a possible implementation, the cleaning tank is detachably disposed on the base.

[0069] By arranging the cleaning tank detachably on the base, subsequent repair and replacement are facilitated, and it is also convenient for users to perform daily maintenance of the cleaning tank.

[0070] In a possible implementation, a mounting groove is provided on the base, a positioning protrusion is provided in the mounting groove, a positioning groove is provided on the surface of the cleaning tank facing the mounting groove, and the cleaning tank is sleeved on the positioning protrusion through the positioning groove.

[0071] The cleaning tank is detachably arranged on the base by cooperating with the positioning groove on the cleaning tank and the positioning protrusion on the mounting tank.

[0072] In a possible implementation, the cleaning tank is a stainless steel tank.

[0073] The stainless steel cleaning tank is less susceptible to dirt and is easier to clean with cleaning accessories.

[0074] On the other hand, the present application provides a cleaning system, comprising a cleaning device and any of the cleaning base stations described above, wherein the cleaning device comprises a first cleaning member and a second cleaning member, and the first cleaning member and the second cleaning member are arranged side by side on the cleaning device.

[0075] After the cleaning device of the present application enters the cleaning base station, the bottom wall of the cleaning tank contacts the cleaning piece during cleaning, and the cleaning piece can clean the cleaning tank at the same time during the process of rotating and cleaning in the cleaning tank; by setting a collection tank and a wiper structure, the wiper structure can scrape the dirt on the cleaning piece into the collection tank during the process of rotating and cleaning in the cleaning tank, thereby reducing the dirt remaining on the surface of the cleaning tank after the cleaning base station cleans the cleaning piece, which is beneficial to reducing the user's subsequent workload and improving the user's experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0076] In order to more clearly illustrate the technical solutions in the embodiments of the present application or related technologies, the following is a brief introduction to the drawings required for use in the embodiments or related technical descriptions. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0077] FIG1 is a simplified structural diagram of a cleaning base station provided in one embodiment of the present application;

[0078] FIG2 is a cross-sectional view taken along line AA of FIG1 ;

[0079] FIG3 is an exploded view of FIG1 ;

[0080] FIG4 is a schematic structural diagram of a cleaning tank provided in one embodiment of the present application;

[0081] FIG5 is a simplified structural diagram of a cleaning base station provided by another embodiment of the present application;

[0082] FIG6 is a BB cross-sectional view of FIG5 ;

[0083] FIG7 is a simplified structural diagram of a cleaning base station provided in yet another embodiment of the present application;

[0084] FIG8 is a partial enlarged view of portion A in FIG7 .

[0085] Reference numerals: 1000 - cleaning base station; 100 - base; 110 - mounting groove; 120 - positioning protrusion; 200 - cleaning trough; 201 - first trough body; 202 - second trough body; 210 - bottom wall of cleaning trough; 220 - positioning post; 300 - wiper structure; 310 - first wiper blade; 320 - second wiper blade; 400 - collecting trough; 401 - first trough wall; 402 - second trough wall; 403 - bottom wall of collecting trough; 410 - scoop wheel; 411 - wheel body; 412 - connecting post; 420 - connecting groove; 430 - filter screen; 510 - protrusion; 520 - rib; 521 - first rib; 522 - second rib; 530 - water diversion portion; 531 - water diversion bottom wall; 532 - first water diversion side wall; 533 - second water diversion side wall; 600-water inlet pipe; 610-water inlet; 620-water inlet pipe; 700-drainage pipe; 710-drainage outlet; 720-drainage pipe. DETAILED DESCRIPTION

[0086] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments.

[0087] Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.

[0088] As described in the background technology, in the solution of the related technology, dirt is likely to remain in the cleaning tank after the cleaning base station completes the cleaning of the cleaning parts of the cleaning device, and the dirt remaining in the cleaning tank needs to be manually cleaned by the user later, thereby increasing the user's workload and affecting the user experience.

[0089] In the related art solution, a cleaning base station is equipped with a cleaning trough and water supply and drainage equipment on its base, and multiple ribs are installed in the cleaning trough. After the cleaning device enters the cleaning base station, the water supply and drainage equipment supplies water to the cleaning parts, which then rotate, causing the cleaning parts to contact the ribs to clean the cleaning parts. The cleaned sewage is then discharged into the cleaning trough by the water supply and drainage equipment. The inventors have discovered that in the related art solution, when the cleaning base station cleans the cleaning parts of the cleaning device, the cleaning parts rotate and contact the ribs in the cleaning trough. Dirt on the cleaning parts is scraped off by the ribs and remains in the cleaning trough with the sewage. When the sewage is discharged, some of the dirt is discharged from the cleaning trough with the sewage, while the rest of the dirt is deposited on the surface of the cleaning trough. With increasing use, the dirt deposited on the surface of the cleaning trough continues to accumulate, forcing users to regularly clean the dirt in the cleaning trough, which increases the user's workload and provides a poor user experience.

[0090] In other related technologies, in order to solve the above problems, special cleaning components can be set up in the cleaning base station to clean the base station. However, setting up the cleaning components may require the introduction of new driving structures and new cleaning structures, thereby increasing the complexity and cost of the cleaning base station, and the reliability of use needs to be improved.

[0091] In view of this, the embodiment of the present application aims to provide a cleaning base station and a cleaning system, by raising the overall height of the cleaning tank in the base of the cleaning base station and setting a collection tank in the cleaning tank, and providing a scraping structure on the edge of the collecting tank, so that when the cleaning base station cleans the cleaning parts of the cleaning device, the cleaning parts can directly contact the bottom wall of the cleaning tank, and the cleaning parts can simultaneously clean the cleaning tank during the process of rotating and cleaning in the cleaning tank, and the dirt on the cleaning parts is scraped into the collection tank through the scraping structure, thereby reducing the dirt remaining on the surface of the cleaning tank after the cleaning base station cleans the cleaning parts, which is beneficial to reducing the user's subsequent workload and improving the user's usage experience. There is no need to set up additional cleaning components for the cleaning tank, which leads to unnecessary structural complexity and avoids the increase in manufacturing costs.

[0092] The contents of the embodiments of the present application will be described in detail below with reference to the accompanying drawings so that those skilled in the art can understand the contents of the present application in more detail.

[0093] Figure 1 is a schematic structural diagram of a cleaning base station 1000 provided in one embodiment of the present application; Figure 2 is a cross-sectional view taken along line AA of Figure 1; Figure 3 is an exploded view of Figure 1; Figure 4 is a schematic structural diagram of a cleaning tank provided in one embodiment of the present application; Figure 5 is a schematic structural diagram of a cleaning base station 1000 provided in another embodiment of the present application; Figure 6 is a cross-sectional view taken along line BB of Figure 5; Figure 7 is a schematic structural diagram of a cleaning base station 1000 provided in yet another embodiment of the present application; and Figure 8 is a partially enlarged view of portion A in Figure 7.

[0094] 1 to 8 , this embodiment provides a cleaning base station 1000 for cleaning a cleaning device. The cleaning device may be, for example, a cleaning robot, such as a sweeping robot, a mopping robot, or a sweep-and-mop robot; and the corresponding cleaning device may be, for example, a sweeping brush or a mop.

[0095] The cleaning base station 1000 can be placed on the floor of a user's home. The cleaning base station 1000 includes a base 100, which is the part of the cleaning base station 1000 that contacts the floor. To facilitate the entry of a cleaning device into the cleaning base station 1000, a ramp-shaped guide plate can be connected to the base 100, allowing the cleaning device to travel along the guide plate to the base 100. It should be understood that other components of the cleaning base station 1000 are not shown in the drawings of this embodiment.

[0096] In this embodiment, the base 100 is provided with a cleaning tank 200, which is configured to accommodate cleaning components. The tank 200 generally has a shape that matches the shape of the cleaning components, such as a disc. Clean water can be stored in the tank 200, or water can be injected into the tank 200 via other components of the cleaning base 1000. After a cleaning device enters the cleaning base 1000, it drives the cleaning components to rotate. This rotation creates friction with the tank 200, removing dirt from the cleaning components. For example, this embodiment can increase the height of the cleaning tank 200 within the base 100 by changing the connection structure between the base 100 and the cleaning tank 200. For example, a support member is provided below the cleaning tank to increase the height of the cleaning tank 200 within the base 100. Compared to the solutions in the related art, since the bottom wall of the cleaning tank 200 is raised, the bottom wall 210 of the cleaning tank contacts the cleaning members when cleaning, so that the cleaning members can simultaneously clean the bottom wall 210 of the cleaning tank. In this embodiment, the base 100 is also provided with a collection tank 400 connected to the cleaning tank 200. A wiper structure 300 is also provided in the cleaning tank 200 or the collection tank 400. The wiper structure 300 can scrape dirty water off the cleaning members, and the collection tank 400 is used to receive the dirt scraped off by the wiper structure 300.

[0097] Compared to the solutions of the related art, this embodiment raises the overall height of the cleaning tank 200 within the base 100, so that the bottom wall 210 of the cleaning tank contacts the cleaning member when cleaning the cleaning member. The cleaning member can simultaneously clean the cleaning tank 200 during the process of rotating and cleaning in the cleaning tank 200. By providing a collection tank 400 and a wiper structure 300, the wiper structure 300 can scrape the dirt on the cleaning member into the collection tank 400 during the process of rotating and cleaning in the cleaning tank 200, thereby reducing the dirt remaining on the surface of the cleaning tank 200 after the cleaning base station 1000 cleans the cleaning member, which helps to reduce the user's subsequent workload and improve the user experience. The cleaning base station 1000 of this embodiment has a simple structure and is easy to implement. The cleaning tank 200 has simple components, which avoids residual stains and avoids cleaning dead corners.

[0098] Specifically, the cleaning member of this embodiment can rotate relative to the cleaning tank 200. When the cleaning member and the cleaning tank 200 rotate relative to each other, at least one of the cleaning member and the cleaning tank 200 can be cleaned, and the wastewater on the cleaning member can be scraped off by the scraping structure 300.

[0099] Through the above structure, this embodiment can clean the cleaning tank 200 by rotating the cleaning member within the cleaning tank 200, thereby reducing the dirt remaining on the surface of the cleaning tank 200 after the cleaning base station 1000 cleans the cleaning member. In addition, the scraping structure 300 can scrape away the dirty water on the cleaning member, thereby also cleaning the cleaning member. The cleaning member and the cleaning tank are cleaned by the rotation of the cleaning member itself, and the structure is simple to implement.

[0100] In some embodiments, the wiper structure 300 of this embodiment includes a wiper plate, which is protruding from the bottom wall 210 of the cleaning tank. The wiper plate can be a flat plate, and can be tilted or vertically set on the bottom wall 210 of the cleaning tank. The wiper plate is preferably set adjacent to the collection tank 400.

[0101] For example, the wiper can be a flat plate vertically arranged on the bottom wall 210 of the cleaning tank; or, it can be a flat plate vertically arranged on the bottom wall of the collecting tank 400, with part of the wiper protruding from the bottom wall 210 of the cleaning tank.

[0102] The scraper blade being disposed adjacent to the collection trough 400 means that the scraper blade can be integrally formed with the collection trough 400. Alternatively, the scraper blade can be spaced a certain distance from the collection trough 400. The value of this distance can be set as needed, so that the wastewater scraped by the scraper blade can be collected by the collection trough 400. For example, the scraper blade can be tilted on the bottom wall 210 of the cleaning trough, and the end of the scraper blade away from the bottom wall 210 of the cleaning trough can extend above the collection trough 400, thereby facilitating the scraping of wastewater from the cleaning elements into the collection trough 400.

[0103] Since the bottom wall 210 of the cleaning tank contacts the cleaning member when cleaning the cleaning member in this embodiment, the scraper is raised on the bottom wall 210 of the cleaning tank to ensure that the scraper can scrape off the dirty water on the cleaning member during the cleaning process of the cleaning member rotating in the cleaning tank 200; and the scraper is arranged near the collecting tank 400 to facilitate the scraped dirty water to flow into the collecting tank 400, while preventing the dirty water from flowing into the cleaning tank 200 and contaminating the cleaning tank 200.

[0104] In some embodiments, the wiper blade of this embodiment is disposed on a side of the collection tank 400 that faces away from the rotational direction of the cleaning member. In a plane parallel to the bottom wall 210 of the cleaning tank, at least a portion of the wiper blade's projection overlaps with the projection of the collection tank 400. In other words, a portion of the wiper blade vertically overlaps with the collection tank 400. The side of the collection tank 400 that faces away from the rotational direction of the cleaning member refers to the side of the collection tank 400 that comes into contact with a certain point on the cleaning member as the cleaning member rotates and cleans within the cleaning tank 200.

[0105] In this embodiment, the wiper blade is positioned on the side of the collection trough 400 facing away from the rotation direction of the cleaning member. This allows the wiper blade to scrape the dirty water from the rotating cleaning member to the side of the collection trough 400 after contact with the rotating cleaning member, thereby facilitating the flow of the dirty water into the collection trough 400. By positioning at least a portion of the wiper blade within the projection of the collection trough 400, the wiper blade and the collection trough 400 overlap vertically, allowing the dirty water scraped by the wiper blade to fall directly into the collection trough 400.

[0106] In some embodiments, the wiper blade of this embodiment is connected to and integrated with the wall of the collecting tank 400. By integrally forming the wiper blade with the wall of the collecting tank 400, it is beneficial to reduce the manufacturing process and improve production efficiency.

[0107] In some embodiments, the extension direction of the wiper blade of this embodiment is perpendicular to the bottom wall 210 of the cleaning tank. By arranging the wiper blade perpendicular to the bottom wall 210 of the cleaning tank, it can ensure that the wiper blade has better wiping efficiency.

[0108] Continuing with reference to Figures 1, 3, 4, 5, and 7, in a preferred embodiment, in order to accommodate a cleaning device having two cleaning members, the cleaning tank 200 of this embodiment includes a first tank body 201 and a second tank body 202 arranged in parallel, and a collection tank 400 disposed between the first tank body 201 and the second tank body 202, and the collection tank 400 is in communication with both the first tank body 201 and the second tank body 202. The term "in communication" refers to a path between the first tank body 201 and the second tank body 202 and the collection tank 400 that allows water or other dirt to pass through, thereby facilitating the drainage of water or other dirt within the first tank body 201 and the second tank body 202 into the collection tank 400.

[0109] In this embodiment, the collecting tank 400 is disposed between the first tank body 201 and the second tank body 202 , so that the collecting tank 400 can collect sewage from the cleaning components in the first tank body 201 and the cleaning components in the second tank body 202 .

[0110] Furthermore, as shown in FIG4 , the wiper includes a first wiper 310 located on the first tank body 201 and a second wiper 320 located on the second tank body 202. The collection tank 400 includes a first tank wall 401 and a second tank wall 402 on a side facing away from the rotation direction of the cleaning element. The first wiper 310 is flush with the first tank wall 401, and the second wiper 320 is flush with the second tank wall 402. In this embodiment, the first wiper 310 can scrape the dirty water from the cleaning element in the first tank body 201 into the collection tank 400, and the second wiper 320 can scrape the dirty water from the cleaning element in the second tank body 202 into the collection tank 400.

[0111] Specifically, the cleaning member of this embodiment may include a first cleaning member and a second cleaning member. For example, in a top view of the base station, the first cleaning member is located on the left side of the base, and the second cleaning member is located on the right side of the base. When cleaning the cleaning members, the first cleaning member rotates counterclockwise, while the second cleaning member rotates clockwise. A first wiper 310 and a second wiper 320 are formed on the sidewalls of the collection tank 400 near the entrance of the cleaning base station 1000. Thus, during the rotation of the cleaning members, the wastewater scraped off by the first and second wipers can flow directly into the collection tank. Specifically, in the cleaning tank 200 shown in FIG4 , the first cleaning member in the first tank body 201 can rotate clockwise, thereby scraping the wastewater on the first cleaning member in the first tank body 201 into the collection tank 400 via the first wiper 310. The second cleaning member in the second tank body 202 can rotate counterclockwise, thereby scraping the wastewater on the second cleaning member in the second tank body 202 into the collection tank 400 via the second wiper 320.

[0112] In other possible embodiments, the first cleaning member in the first trough body 201 can rotate counterclockwise, and the second cleaning member in the second trough body 202 can rotate clockwise. At this time, the corresponding first wiper 310 and the second wiper 320 can be formed on the side wall of the collection tank 400 away from the entrance of the cleaning base station 1000, so that the sewage on the first cleaning member and the second cleaning member can also be scraped off into the collection tank 400.

[0113] Optionally, in a plane parallel to the bottom wall 210 of the cleaning tank, the projections of the first tank body 201 and the second tank body 202 are both fan-shaped or circular, suitable for cleaning circular cleaning objects. At least a portion of the collection tank 400 is located within the radius of the first tank body 201 and the radius of the second tank body 202, thereby facilitating the scraping of dirty water from the cleaning objects into the collection tank 400.

[0114] In some embodiments, a friction member is further provided on the bottom wall 210 of the cleaning tank of this embodiment, and the cleaning member can contact the bottom wall 210 of the cleaning tank and the friction member. By providing the friction member, the cleaning member can contact the friction member and the bottom wall 210 of the cleaning tank. When the cleaning member contacts the friction member, the friction between the cleaning member and the bottom wall 210 of the cleaning tank can be increased, thereby improving the cleaning efficiency of the cleaning member; when the cleaning member contacts the bottom wall 210 of the cleaning tank, the bottom wall 210 of the cleaning tank can be cleaned. Compared with the solutions in the related art, the present application increases the overall height of the cleaning tank 200 in the base 100 during use, so that the friction members on the bottom wall 210 of the cleaning tank can contact the cleaning members when cleaning the cleaning members, thereby enhancing the cleaning effect of the cleaning members; compared with the solutions in the related art, the enhanced cleaning effect of this embodiment may leave more dirt on the bottom wall 210 of the cleaning tank. In view of this, this embodiment brings the cleaning members into contact with the bottom wall 210 of the cleaning tank, so that while cleaning the cleaning members, the bottom wall 210 of the cleaning tank is also cleaned by the cleaning members to reduce the dirt remaining on the bottom wall 210 of the cleaning tank.

[0115] As shown in Figures 1, 3, and 4, in some embodiments, the friction member of this embodiment includes a plurality of protrusions 510 protruding from the bottom wall 210 of the cleaning tank. The plurality of protrusions 510 can be evenly arranged on the bottom wall 210 of the cleaning tank. By evenly arranging the plurality of protrusions 510 on the bottom wall 210 of the cleaning tank, the protrusions 510 can be used to scrub the rotating cleaning member, thereby improving the cleaning efficiency of the cleaning member.

[0116] Specifically, the plurality of protrusions 510 include a plurality of convex points formed on the bottom wall 210 of the cleaning tank, and the plurality of convex points are evenly distributed on at least a portion of the bottom wall 210 of the cleaning tank. For example, when the cleaning tank 200 is fan-shaped or circular, the plurality of convex points can be arranged in a plurality of circular rings, and the distance between two adjacent convex points in the same circular ring is equal to the distance between two adjacent convex points in adjacent circular rings, thereby achieving uniform scrubbing of the rotating cleaning element and improving the cleaning efficiency of the cleaning element.

[0117] Furthermore, the plurality of protrusions can be integrally formed with the cleaning tank 200 , thereby helping to improve production efficiency.

[0118] The cleaning base station 1000 of this embodiment also includes a water channel assembly to realize the water supply and drainage functions of the cleaning base station 1000. As shown in Figure 2, in some embodiments, the water channel assembly includes a water inlet pipe 600, and the water inlet pipe 600 includes a water inlet 610 and a water inlet pipe 620. The water inlet pipe 620 is used to connect to a water source. The water source can be a clean water tank in the cleaning base station 1000, or other water sources outside the cleaning base station 1000 (such as a tap water pipe, etc.). The water inlet 610 is formed at one end of the water inlet pipe 620, and the water inlet 610 is connected to the cleaning tank 200 or the collection tank 400, so that the clean water provided by the water source can flow into the cleaning tank 200 or the collection tank 400 through the water inlet pipe 620 and the water inlet 610. In this embodiment, the clean water from the water source is introduced into the cleaning tank 200 or the collection tank 400 by providing a water inlet pipe 600, thereby achieving cleaning of the cleaning parts.

[0119] As shown in Figures 1, 3, and 4, in some embodiments, a rotatable scooping wheel 410 is provided within the collection tank 400 of this embodiment. The scooping wheel 410 is configured to scoop water from the collection tank 400 onto the cleaning components above the cleaning tank 200. This embodiment utilizes a rotatable scooping wheel 410 to scoop water from the collection tank 400 onto the cleaning components, thereby achieving water reuse and improving water utilization. This helps reduce water consumption when cleaning the cleaning components and conserves water resources. Furthermore, the fact that both clean water and dirty water share the collection tank 400 saves base space and prevents liquid from splashing upward to wet the cleaning components, thereby wetting the cleaning base station 1000. This solution allows the liquid level within the collection tank 400 to be kept lower, allowing the scooping wheel 410 to lift the liquid and prevent overflow from the collection tank 400.

[0120] Furthermore, the scooping wheel 410 of this embodiment includes a rotatable wheel body 411 having multiple blades circumferentially therearound. The blades are configured to rotate driven by the rotation of the cleaning element to scoop water from the collection tank 400 onto the cleaning element above the cleaning tank 200. The wheel body 411 of this embodiment can partially protrude from the bottom wall 210 of the cleaning tank. When the cleaning element rotates within the cleaning tank 200, the cleaning element can drive the scooping wheel 410 to rotate synchronously within the collection tank 400. A recessed structure is formed between adjacent blades on the scooping wheel 410, thereby utilizing the recessed structure between the two adjacent blades to scoop water onto the cleaning element, thereby improving water utilization. This embodiment uses the cleaning element to drive the scooping wheel 410 to rotate, eliminating the need for a separate drive structure, which helps reduce costs and is easy to implement. The scooping wheel 410 can continuously and evenly output liquid, ensuring a continuous supply of liquid to the cleaning element.

[0121] In other possible embodiments, the wheel body 411 may be provided with a plurality of grooves, the grooves being arranged along the axial direction of the wheel body 411 and spaced apart along the circumference of the wheel body 411. When the cleaning member rotates within the cleaning tank 200, the cleaning member can drive the scooping wheel 410 to rotate synchronously within the collection tank 400. The grooves on the scooping wheel 410 can scoop water onto the cleaning member, thereby improving water utilization.

[0122] In this embodiment, the rotation of the cleaning member drives the scooping wheel 410 to rotate, and there is no need to provide a separate driving structure for the scooping wheel 410, thereby simplifying the structure of the cleaning base station 1000.

[0123] In some embodiments, the scooping wheel 410 of this embodiment is detachably disposed in the collecting tank 400; detachably disposing the scooping wheel 410 in the collecting tank 400 facilitates subsequent maintenance and replacement, and also facilitates daily cleaning of the scooping wheel 410 by the user.

[0124] Exemplarily, as shown in Figure 3, the scooping wheel 410 also includes connecting columns 412 arranged at both axial ends of the wheel body 411, and two connecting grooves 420 arranged opposite to each other are provided in the collecting tank 400. The connecting columns 412 are arranged in the corresponding connecting grooves 420 to realize a detachable connection between the scooping wheel 410 and the collecting tank 400.

[0125] 2 , in some embodiments, the waterway assembly of this embodiment further includes a drainage pipeline 700, which includes a drain port 710 and a drain pipe 720. The drain pipe 720 is used to connect to a sewage discharge device, which may be, for example, a sewage tank within the cleaning base station 1000, or other equipment outside the cleaning base station 1000. The drain port 710 is formed at one end of the drain pipe 720, and the drain port 710 is connected to the collection tank 400, so that the sewage in the collection tank 400 can flow into the sewage discharge device through the drain port 710 and the drain pipe 720. In this embodiment, by providing the drainage pipeline 700 to discharge the sewage from the collection tank 400, the water circulation in the cleaning tank 200 is achieved in combination with the water inlet pipe 600.

[0126] As shown in Figures 5 and 7, in some embodiments, a filter screen 430 is further provided in the collection tank 400 of this embodiment, and the filter screen 430 is used to block the drain outlet 710. By providing the filter screen 430, this embodiment can intercept larger dirt particles in the sewage to prevent the drain pipe 700 from being blocked.

[0127] Optionally, the filter screen 430 is detachably arranged in the collecting tank 400, so as to facilitate installation and disassembly, and facilitate timely disposal of dirt at the filter screen 430 to avoid clogging.

[0128] Continuing with Figures 1-4 , in one possible embodiment, the water source of this embodiment can be the clean water tank of the cleaning base station 1000. The water inlet 610 is located within the collection tank 400 and is disposed between the first wiper 310 and the second wiper 320, that is, between the first tank wall 401 and the second tank wall 402 connected to the first wiper 310 and the second wiper 320. The sewage discharge device can be the sewage tank of the cleaning base station 1000, with the drain outlet 710 located on the side of the collection tank 400 away from the water inlet 610. In other words, the cleaning base station 1000 of this embodiment is equipped with both a clean water tank and a sewage tank, thereby enabling water circulation within the cleaning base station 1000 without the need for external equipment. Furthermore, combined with a scoop wheel structure, this can reduce water consumption in the base station, reducing the frequency of user replacement of the clean water and sewage tanks.

[0129] Optionally, the water inlet 610 of this embodiment is arranged toward the side away from the guide plate, so that water flowing out of the water inlet 610 rushes toward the rear of the cleaning base station 1000 to avoid splashing outside the cleaning base station 1000.

[0130] In a specific embodiment, the water source of this embodiment can be the clean water tank of the cleaning base station 1000, the sewage discharge device can be the sewage tank of the cleaning base station 1000, and a rotatable scooping wheel 410 is provided in the collection tank 400, so that the water in the collection tank 400 can be repeatedly scooped up and utilized by the scooping wheel 410, which is beneficial to saving water and reducing the frequency of users replacing water tanks.

[0131] Furthermore, as shown in Figures 2 and 4 , the projection of the water inlet 610 of this embodiment is fan-shaped in a plane parallel to the bottom wall 210 of the cleaning tank. This fan-shaped cross-section of the water inlet 610 allows it to spray water over a wider surface, thereby flushing more areas within the collection tank 400. Once the wastewater in the collection tank 400 has been drained, the water inlet 610 can be opened to flush the collection tank 400 to remove any remaining dirt.

[0132] Optionally, a high-pressure nozzle connected to the water inlet 610 can be provided to improve the cleaning effect of the collection tank 400. In this way, the water inlet 610 can be used to replenish water for the cleaning element and the collection tank 400 can be cleaned by the high-pressure nozzle, which is functionally multiplexed and easy to implement.

[0133] The size of the water inlet 610 gradually increases in the direction away from the water inlet pipe 620. As can be understood from the accompanying drawings, the location where the water inlet 610 connects to the water inlet pipe 620 is slit-shaped. This allows the clean water ejected from the water inlet 610 to have a higher initial velocity, thereby delivering the clean water to a further location within the collection tank 400, thereby facilitating cleaning of the collection tank 400.

[0134] Continuing with Figure 2 , the drain outlet 710 of this embodiment is disposed on the bottom wall 403 of the collection trough. The bottom wall 403 of the collection trough is inclined from the water inlet 610 toward the drain outlet 710. In this embodiment, the bottom wall 403 of the collection trough is inclined from the water inlet 610 toward the drain outlet 710, thereby allowing sewage to flow toward the drain outlet 710 under the action of gravity, thereby facilitating the discharge of sewage from the collection trough 400.

[0135] Optionally, the drain port 710 may be provided at the lowest point of the bottom wall of the collecting tank 400 to avoid residue during drainage.

[0136] Continuing with Figure 4 , the first and second trough walls 401, 402 of this embodiment are arranged at an angle, and the distance between the first and second trough walls 401, 402 gradually increases from the water inlet 610 toward the water outlet 710. In this embodiment, the first and second trough walls 401, 402 are arranged at an angle, and the distance between the first and second trough walls 401, 402 gradually increases in a direction away from the water inlet 610. This, combined with the fan-shaped cross-section of the water inlet 610, further increases the water pressure sprayed into the collection trough 400, facilitating better cleaning of residual dirt within the collection trough 400.

[0137] For example, a control valve is connected to the drain pipe 720 of this embodiment to control the opening and closing of the drain pipe 720. When cleaning the cleaning items, the control valve disconnects the drain pipe 720 from the sewage discharge device, preventing the water in the collection tank 400 from being discharged. Combined with the scoop wheel 410, the water in the collection tank 400 is reused. When the water in the collection tank 400 becomes contaminated to a certain degree, the control valve is opened to discharge the contaminated water, thereby fully utilizing water resources and conserving water. Specifically, the water in the collection tank 400 can be replaced regularly based on the drainage time; alternatively, a contamination sensor can be provided to detect the degree of contamination, thereby confirming when to replace the water in the collection tank 400.

[0138] Continuing with reference to Figures 5-8, in another possible embodiment, the water inlet 610 of this embodiment can be located within the cleaning tank 200, and the drain outlet 710 can be located within the collection tank 400. In this embodiment, the cleaning base station 1000 can be provided with a water source such as a clean water tank and a sewage tank and other sewage discharge devices, so that the cleaning base station 1000 can achieve water circulation through itself without the need for external equipment. Alternatively, the water inlet pipe 600 and the drain pipe 700 of the cleaning base station 1000 can be connected to external equipment, thereby achieving water circulation in combination with the external equipment.

[0139] Furthermore, as shown in Figures 5 and 7, the friction member of this embodiment also includes a plurality of ribs 520. The ribs 520 are provided protruding from the bottom wall 210 of the cleaning tank, and the water inlet 610 is located on the side of the ribs 520 facing away from the rotation direction of the cleaning member. In other words, when the cleaning member rotates, it first contacts the side of the ribs 520 where the water inlet 610 is not provided, then passes over the highest point of the ribs 520 and contacts the side of the ribs 520 where the water inlet 610 is provided.

[0140] Furthermore, the plurality of ribs transition smoothly with the bottom wall of the cleaning tank, so that the cleaning element can contact the bottom wall of the cleaning tank and the ribs when rotating relative to the cleaning tank.

[0141] In this embodiment, the water inlet 610 is arranged on the side of the rib 520 away from the rotation direction of the cleaning member, which can effectively prevent the water inlet 610 from being blocked and ensure that the water inlet 610 has a good water inlet capacity.

[0142] It is understandable that, in this embodiment, a plurality of protrusions 510 as in the above embodiment may be further provided between two adjacent ribs 520, thereby further increasing the friction force on the cleaning member and improving the cleaning efficiency of the cleaning member.

[0143] As shown in Figure 5, the water inlet 610 of this embodiment can be arranged along the extension direction of the rib 520. Arranging the water inlet 610 along the extension direction of the rib 520 can increase the water inlet area of ​​the water inlet 610, thereby facilitating wetting a larger area of ​​the cleaning element and improving cleaning efficiency.

[0144] As shown in Figures 7 and 8, a water diversion portion 530 may also be provided on the rib 520 of this embodiment. The water diversion portion 530 includes a water diversion bottom wall 531, a first water diversion side wall 532 and a second water diversion side wall 533. The first water diversion side wall 532 and the second water diversion side wall 533 are both located on the water diversion bottom wall 531, and the first end of the first water diversion side wall 532 and the first end of the second water diversion side wall 533 are close to each other. The water inlet 610 is located between the first end of the first water diversion side wall 532 and the first end of the second water diversion side wall 533. The distance between the first water diversion side wall 532 and the second water diversion side wall 533 gradually increases in the direction away from the water inlet 610.

[0145] In this embodiment, a water diversion portion 530 is provided on the rib 520, and the distance between the first water diversion side wall 532 and the second water diversion side wall 533 of the water diversion portion 530 gradually increases in the direction away from the water inlet 610. Therefore, the water outflowing from the water inlet 610 can be evenly diffused by the water diversion portion 530 and then contact the cleaning element to more evenly wet the cleaning element, which is beneficial to improving the cleaning efficiency.

[0146] Please continue to refer to Figures 5 and 7. The multiple ribs 520 of this embodiment include several first ribs 521 located in the first trough body 201 and several second ribs 522 located in the second trough body 202. The several first ribs 521 are evenly arranged along the circumference of the first trough body 201, and the several second ribs 522 are evenly arranged along the circumference of the second trough body 202; wherein, the first wiper 310 is arranged on the first rib 521 on the side of the collecting trough 400 away from the rotation direction of the cleaning member, and the second wiper 320 is arranged on the second rib 522 on the side of the collecting trough 400 away from the rotation direction of the cleaning member.

[0147] In this embodiment, several first ribs 521 are evenly arranged in the first trough body 201, and the several first ribs 521 can be used to evenly support the cleaning parts in the first trough body 201 to prevent uneven force on the cleaning parts; several second ribs 522 are evenly arranged in the second trough body 202, and the several second ribs 522 can be used to evenly support the cleaning parts in the second trough body 202 to prevent uneven force on the cleaning parts.

[0148] In some embodiments, the cleaning tank 200 of this embodiment is detachably disposed on the base 100. This embodiment facilitates subsequent repair and replacement by detachably disposing the cleaning tank 200 on the base 100, and also facilitates daily maintenance of the cleaning tank 200 by the user.

[0149] As shown in Figure 3, for example, the base 100 of this embodiment is provided with a mounting groove 110, a positioning protrusion 120 is provided in the mounting groove 110, and a positioning groove is provided on the surface of the cleaning tank 200 facing the mounting groove 110, and the cleaning tank 200 is mounted on the positioning protrusion 120 through the positioning groove.

[0150] In this embodiment, the cleaning tank 200 is detachably mounted on the base 100 by cooperating with the positioning groove on the cleaning tank 200 and the positioning protrusion 120 on the mounting tank 110 .

[0151] The positioning groove forms a positioning column 220 on the surface of the cleaning tank 200 away from the installation tank 110. The cleaning member can cooperate with the positioning column 220 to achieve positioning, thereby preventing the cleaning member from shaking when rotating in the cleaning tank 200.

[0152] In some embodiments, the cleaning tank 200 of this embodiment can be a stainless steel tank. The cleaning tank 200 made of stainless steel is not easy to be contaminated and is more convenient to clean using a cleaning tool. The cleaning tank 200 can also be made of other materials that are not easy to be contaminated and are easy to clean.

[0153] In some embodiments, the cleaning tank 200, the wiper structure 300 and the collecting tank 400 of this embodiment can be integrally formed, for example, they can be integrally injection molded using a mold, which is beneficial to improving production efficiency.

[0154] This embodiment also provides a cleaning system, including a cleaning device and the above-mentioned cleaning base station 1000. The cleaning device includes a first cleaning member and a second cleaning member. The first cleaning member and the second cleaning member are arranged side by side on the cleaning device. The cleaning device can enter the cleaning base station 1000 to clean the cleaning members on the cleaning device.

[0155] After the cleaning device of this embodiment enters the cleaning base station 1000, the bottom wall 210 of the cleaning tank contacts the cleaning member during cleaning, and the cleaning member can simultaneously clean the cleaning tank 200 during the process of rotating and cleaning in the cleaning tank 200; by providing the collection tank 400 and the wiper structure 300, the cleaning member can scrape the dirt on the cleaning member into the collection tank 400 during the process of rotating and cleaning in the cleaning tank 200, thereby reducing the dirt remaining on the surface of the cleaning tank 200 after the cleaning base station 1000 has cleaned the cleaning member, which is beneficial to reducing the user's subsequent workload and improving the user's usage experience.

[0156] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0157] In this application, unless otherwise expressly specified or limited, terms such as "mounted," "connected," "connect," and "fixed" should be interpreted broadly. For example, they may refer to fixed connection, detachable connection, or integration; they may refer to direct connection or indirect connection through an intermediate medium; they may refer to internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0158] It should be noted that in the description of this application, the terms "first" and "second" are used solely to facilitate the description of different components and should not be understood to indicate or imply a sequential relationship, relative importance, or implicitly specify the number of technical features indicated. Therefore, features specified as "first" or "second" may explicitly or implicitly include at least one of such features.

[0159] The various embodiments or implementation methods in this application are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.

[0160] In the description of this application, reference to the terms "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of this application. In this application, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples.

[0161] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A cleaning base station (1000) for cleaning a cleaning member of a cleaning device, characterized in that: include: Base (100); a cleaning tank (200), the cleaning tank (200) being arranged on the base (100) and being configured to at least partially accommodate the cleaning member, wherein the bottom wall (210) of the cleaning tank contacts the cleaning member when the cleaning member is cleaned; A collecting tank (400), the collecting tank (400) being connected to the cleaning tank (200); A water scraping structure (300) is provided in the cleaning tank (200) or the collecting tank (400), and the collecting tank (400) is used to receive dirt scraped by the water scraping structure (300).

2. The cleaning base station (1000) according to claim 1, characterized in that The cleaning member can rotate relative to the cleaning tank (200). When the cleaning member rotates relative to the cleaning tank (200), it can clean at least one of the cleaning member and the cleaning tank (200), and the wastewater on the cleaning member can be scraped off by the scraping structure (300).

3. The cleaning base station (1000) according to claim 2, characterized in that The wiper structure (300) comprises a wiper plate, the wiper plate is protruding from the bottom wall (210) of the cleaning tank, and the wiper plate is adjacent to the collecting tank (400).

4. The cleaning base station (1000) according to claim 3, characterized in that The wiper is arranged on a side of the collecting trough (400) away from the rotation direction of the cleaning member, and in a plane parallel to the bottom wall (210) of the cleaning trough, at least a portion of the projection of the wiper coincides with the projection of the collecting trough (400).

5. The cleaning base station (1000) according to claim 3, characterized in that The wiper is connected to the groove wall of the collecting groove (400) and forms an integral body.

6. The cleaning base station (1000) according to claim 3, characterized in that The extending direction of the wiper blade and the bottom wall (210) of the cleaning tank are perpendicular to each other.

7. The cleaning base station (1000) according to any one of claims 3 to 6, characterized in that: The cleaning tank (200) comprises a first tank body (201) and a second tank body (202) arranged in parallel, the collecting tank (400) is arranged between the first tank body (201) and the second tank body (202), and the collecting tank (400) is communicated with both the first tank body (201) and the second tank body (202).

8. The cleaning base station (1000) according to claim 7, characterized in that The wiper comprises a first wiper (310) located on the first trough body (201) and a second wiper (320) located on the second trough body (202); the collecting trough (400) comprises a first trough wall (401) and a second trough wall (402) on a side away from the rotation direction of the cleaning member; the first wiper (310) is flush with the first trough wall (401), and the second wiper (320) is flush with the second trough wall (402).

9. The cleaning base station (1000) according to claim 8, characterized in that The first wiper (310) and the second wiper (320) are formed on the wall of the collecting tank (400) close to the entrance of the cleaning base station (1000).

10. The cleaning base station (1000) according to claim 7, characterized in that: In a plane parallel to the bottom wall (210) of the cleaning tank, the projection of the first tank body (201) and the projection of the second tank body (202) are both fan-shaped or circular, and at least part of the collecting tank (400) is located within the radius of the first tank body (201) and the radius of the second tank body (202).

11. The cleaning base station (1000) according to claim 8, characterized in that The invention also includes a water channel assembly, wherein the water channel assembly includes a water inlet pipe (600), the water inlet pipe (600) includes a water inlet (610) and a water inlet pipe (620), the water inlet pipe (620) is used to connect to a water source, the water inlet (610) is formed at one end of the water inlet pipe (620), and the water inlet (610) is connected to the cleaning tank (200) or the collecting tank (400).

12. The cleaning base station (1000) according to claim 11, characterized in that The water inlet (610) is located in the collecting trough (400), and a rotatable scooping wheel (410) is provided in the collecting trough (400). The scooping wheel (410) is configured to scoop water in the collecting trough (400) onto the cleaning member above the cleaning trough (200).

13. The cleaning base station (1000) according to claim 12, characterized in that The scooping wheel (410) comprises a rotatable wheel body (411), wherein the wheel body (411) has a plurality of blades in the circumferential direction, and the blades are configured to rotate under the driving force of the rotational movement of the cleaning member to scoop up the water in the collection tank (400).

14. The cleaning base station (1000) according to claim 13, characterized in that The scoop wheel (410) is detachably disposed in the collecting tank (400); The scooping wheel (410) further includes connecting columns (412) arranged at both axial ends of the wheel body (411), two connecting grooves (420) arranged opposite to each other are provided in the collecting groove (400), and the connecting columns (412) are arranged in the corresponding connecting grooves (420).

15. The cleaning base station (1000) according to claim 11, characterized in that The water channel assembly further comprises a drainage pipeline (700), the drainage pipeline (700) comprising a drainage port (710) and a drainage pipe (720), the drainage pipe (720) being used to communicate with a sewage discharge device, the drainage port (710) being formed at one end of the drainage pipe (720), and the drainage port (710) being communicated with the collection tank (400).

16. The cleaning base station (1000) according to claim 15, characterized in that A filter screen (430) is further provided in the collection tank (400), and the filter screen (430) is used to shield the drain outlet (710).

17. The cleaning base station (1000) according to claim 15, characterized in that The water inlet (610) is provided between the first wiper blade (310) and the second wiper blade (320); The water outlet (710) is located in the collecting tank (400) on a side away from the water inlet (610).

18. The cleaning base station (1000) according to claim 17, characterized in that A guide plate is also provided on the base (100), and the guide plate is used to guide the cleaning member into the base (100); The water inlet (610) is arranged toward a side away from the guide plate.

19. The cleaning base station (1000) according to claim 17, characterized in that In a plane parallel to the bottom wall (210) of the cleaning tank, the projection of the water inlet (610) is fan-shaped.

20. The cleaning base station (1000) according to claim 17, characterized in that The drain outlet (710) is provided on the bottom wall (403) of the collecting trough, and the bottom wall (403) of the collecting trough is inclined from the water inlet (610) toward the drain outlet (710).

21. The cleaning base station (1000) according to claim 20, characterized in that The first groove wall (401) and the second groove wall (402) are arranged obliquely, and the distance between the first groove wall (401) and the second groove wall (402) gradually increases from the water inlet (610) to the water outlet (710).

22. The cleaning base station (1000) according to claim 17, characterized in that The drain pipe (720) is also connected to a control valve, and the control valve is used to control the on and off of the drain pipe (720).

23. The cleaning base station (1000) according to any one of claims 11 to 22, characterized in that: A friction member is also provided on the bottom wall (210) of the cleaning tank, and the cleaning member can contact the bottom wall (210) of the cleaning tank and the friction member when rotating relative to the cleaning tank (200).

24. The cleaning base station (1000) according to claim 23, characterized in that The friction member includes a plurality of protrusions (510) protruding from the bottom wall (210) of the cleaning tank.

25. The cleaning base station (1000) according to claim 24, characterized in that The plurality of protrusions (510) include a plurality of convex points formed on the bottom wall (210) of the cleaning tank, and the plurality of convex points are evenly distributed over at least a portion of the bottom wall (210) of the cleaning tank.

26. The cleaning base station (1000) according to claim 23, characterized in that The water inlet (610) is located in the cleaning tank (200), and the friction member further comprises a plurality of ribs (520), wherein the ribs (520) are protruded (510) and arranged on the bottom wall (210) of the cleaning tank, and the water inlet (610) is located on the side of the ribs (520) away from the rotation direction of the cleaning member.

27. The cleaning base station (1000) according to claim 26, characterized in that The water inlet (610) is in the shape of a long hole and is arranged on the rib (520).

28. The cleaning base station (1000) according to claim 26, characterized in that A water diversion portion (530) is also provided on the rib (520), and the water diversion portion (530) includes a water diversion bottom wall (531), a first water diversion side wall (532), and a second water diversion side wall (533). The first water diversion side wall (532) and the second water diversion side wall (533) are both located on the water diversion bottom wall (531), and the first end of the first water diversion side wall (532) and the first end of the second water diversion side wall (533) are close to each other. The water inlet (610) is located between the first end of the first water diversion side wall (532) and the first end of the second water diversion side wall (533), and the distance between the first water diversion side wall (532) and the second water diversion side wall (533) gradually increases in a direction away from the water inlet (610).

29. The cleaning base station (1000) according to claim 26, characterized in that The plurality of ribs (520) include a plurality of first ribs (521) located in the first trough body (201) and a plurality of second ribs (522) located in the second trough body (202), wherein the plurality of first ribs (521) are evenly arranged along the circumference of the first trough body (201), and the plurality of second ribs (522) are evenly arranged along the circumference of the second trough body (202), wherein the first wiper (310) is arranged on the first rib (521) on the side of the collecting trough (400) away from the rotation direction of the cleaning member, and the second wiper (320) is arranged on the second rib (522) on the side of the collecting trough (400) away from the rotation direction of the cleaning member.

30. The cleaning base station (1000) according to any one of claims 1-29, characterized in that: The cleaning tank (200) is detachably arranged on the base (100).

31. The cleaning base station (1000) according to claim 30, characterized in that The base (100) is provided with a mounting groove (110), a positioning protrusion (120) is provided in the mounting groove (110), a positioning groove is provided on the surface of the cleaning tank (200) facing the mounting groove (110), and the cleaning tank (200) is sleeved on the positioning protrusion (120) through the positioning groove.

32. The cleaning base station (1000) according to claim 30, characterized in that The cleaning tank (200) is a stainless steel tank.

33. A cleaning system, characterized in that The cleaning base station (1000) comprises a cleaning device and any one of claims 1 to 32, wherein the cleaning device comprises a first cleaning member and a second cleaning member, and the first cleaning member and the second cleaning member are arranged side by side on the cleaning device.

Citation Information

Patent Citations

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