Cleaning assembly and base station
By designing a multi-zone automatic cleaning structure for the cleaning components and a cleaning brush inside the chassis, the problem of manually cleaning the cleaning parts of the sweeping robot has been solved, achieving automated cleaning, improving user experience and extending equipment lifespan.
Patent Information
- Application Number
- CN202520278937.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-09
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-02-09
AI Technical Summary
Existing robotic vacuum cleaners require users to manually clean their cleaning components, such as roller brushes, mops, and rags, which wastes time and reduces the user experience.
Design a cleaning component including a cleaning disc body, multiple first and second cleaning sections forming multiple cleaning zones, automatic cleaning achieved through automatic water injection and diversion components, improved cleaning effect by combining protruding columnar structure and rib structure, and a cleaning brush and a drainage structure are set in the chassis.
It enables automatic cleaning of the cleaning components of the robot vacuum cleaner, saving users time, improving cleaning effect and user experience, and reducing production costs and wear risks.
Smart Images

Figure CN223817510U_ABST
Abstract
Description
[0001] This application is a divisional application. The original application has the application number 202420291582.2 and the original application date is February 9, 2024. The entire contents of the original application are incorporated herein by reference. Technical Field
[0002] This utility model relates to the field of cleaning component technology, and in particular to a cleaning component and a base station. Background Technology
[0003] In recent years, with the improvement of people's living standards, home cleaning has gradually entered an era of automation and intelligence. This has led to the emergence of cleaning equipment such as robotic vacuum cleaners. Robotic vacuum cleaners, also known as automatic cleaning machines, intelligent vacuums, or robotic vacuum cleaners, are a type of intelligent home appliance that can automatically clean floors in a room using a certain level of artificial intelligence. They free people from home cleaning tasks, effectively reducing their workload and alleviating fatigue during the process.
[0004] In related technologies, robotic vacuum cleaners generally use brushing and vacuuming to suck up debris from the floor and collect it into their own dustbin, thus completing the floor cleaning function. After completing the cleaning work, the cleaning components of existing robotic vacuum cleaners, such as the cleaning components, mops, and rags, often have a lot of stains or debris attached to them, which usually requires users to clean the roller brushes, mops, and rags themselves.
[0005] However, users frequently have to manually clean cleaning components such as roller brushes, mops, and rags, which wastes a lot of time and greatly reduces the user experience. Utility Model Content
[0006] This application provides a cleaning component and base station to solve the problem that users often waste a lot of time manually cleaning cleaning components such as roller brushes, mops, and rags, thereby improving the user experience.
[0007] This application provides a cleaning assembly for a base station, including a cleaning tray body. The cleaning tray body includes a first cleaning surface for cleaning cleaning components of a cleaning device compatible with the base station. The first cleaning surface has a plurality of first cleaning sections and a plurality of second cleaning sections. The cleaning tray body includes a water inlet end and a water blocking end disposed opposite each other along a first direction. Along the first direction, both ends of the second cleaning sections extend toward the water inlet end and the water blocking end, respectively. The plurality of second cleaning sections are spaced apart along a second direction perpendicular to the first direction, such that a plurality of cleaning areas are formed between the plurality of second cleaning sections and the outer edge of the cleaning tray body, and each cleaning area has a plurality of first cleaning sections.
[0008] By including a cleaning disc body in the cleaning assembly, the cleaning disc body can be used to clean the cleaning components of the cleaning equipment, replacing manual cleaning by the user. This saves users time, reduces user fatigue, and improves the user experience. By including a first cleaning section and a second cleaning section in the first cleaning surface, the problem of ineffective cleaning from a single cleaning section can be avoided, thus improving the cleaning effect of the first cleaning surface. The second cleaning section divides the first cleaning surface into multiple cleaning zones, allowing for differentiated water injection during the first cleaning surface process. This ensures a more uniform water volume in each cleaning zone, further improving the cleaning effect of the first cleaning surface.
[0009] In one possible implementation, the outer edge of the cleaning tray body extends from the first cleaning surface along the thickness direction of the cleaning tray body beyond the first cleaning surface, thereby forming a water-retaining space between the outer edge of the cleaning tray body and the first cleaning surface. Both the first cleaning section and the second cleaning section are located within the water-retaining space.
[0010] By extending the outer edge of the cleaning disc body beyond the first cleaning surface in the thickness direction of the cleaning disc body, and forming a water-holding space between the outer edge of the cleaning disc body and the first cleaning surface, it is possible to ensure that moisture is retained on the first cleaning surface of the cleaning disc body. This can fully wet the cleaning components of the cleaning equipment being cleaned, which is beneficial to improving the cleaning effect.
[0011] In one possible implementation, a plurality of first cleaning sections are spaced apart on the first cleaning surface, each first cleaning section being a protruding cylindrical structure with an arc-shaped top end.
[0012] By setting multiple spaced first cleaning sections on the first cleaning surface, a space for accommodating water can be formed between the first cleaning sections, so that some water can be stored on the first cleaning surface of the cleaning tray body to clean the cleaning components of the cleaning equipment. This helps to clean the stains on the cleaning components, thereby improving the cleaning effect of the cleaning component and enhancing the user experience.
[0013] By designing the first cleaning section as a protruding cylindrical structure, manufacturing difficulty is reduced, and production costs are saved. Furthermore, the protruding cylindrical structure allows for friction against the surface of the cleaning components, facilitating the removal of dirt. By making the top of the cylindrical structure rounded, the tip of the first cleaning section is smooth and free of sharp edges, preventing scratches or damage to the cleaning components of the cleaning equipment during cleaning. It also prevents scratches from accidental contact by children or pets with the first cleaning surface of the cleaning tray body.
[0014] In one possible implementation, the second cleaning section is a rib structure, and in the thickness direction of the cleaning disc body, the height of the first cleaning section is greater than or equal to the height of the second cleaning section, and is greater than or equal to the height of the outer edge of the cleaning disc body.
[0015] By designing the second cleaning section with a ribbed structure, the cleaning disc body can repeatedly scrape and wash the cleaning components while cleaning the cleaning equipment. This helps remove hair and other debris from the components and also removes moisture. With wastewater continuously being scraped away and clean water being continuously injected, the components are thoroughly cleaned after repeated cycles, thus improving the cleaning effect. Furthermore, after cleaning, there is less moisture remaining on the components, saving time in the subsequent drying process.
[0016] In one possible implementation, the cleaning tray body has a plurality of spaced-apart openings. These openings penetrate the cleaning tray body along its thickness direction.
[0017] By setting multiple openings on the cleaning disc body, water on the cleaning disc body can flow into the chassis through these openings when cleaning the cleaning components on the cleaning equipment. In this way, as clean water is continuously injected, wastewater can be discharged into the chassis, thereby improving cleaning efficiency and cleaning effect.
[0018] In one possible implementation, the sidewall of the opening protrudes beyond the first cleaning surface, thereby forming a plurality of cleaning areas between the plurality of second cleaning sections, the sidewall of the opening, and the outer edge of the cleaning tray body.
[0019] By making the sidewall of the opening protrude beyond the first cleaning surface, the sidewall of the opening can act as a water barrier, so that the water on the first cleaning surface can be retained in the water-holding space. This ensures that moisture is retained on the first cleaning surface of the cleaning tray body, which can fully wet the cleaning components of the cleaning equipment being cleaned, thus improving the cleaning effect.
[0020] In one possible implementation, the cleaning assembly further includes a diversion component. The diversion component is located at the water inlet end of the cleaning tray body. The diversion component has multiple water outlets configured to supply water to the cleaning area. Each water outlet corresponds to at least one cleaning area.
[0021] By setting up a diversion component and multiple water outlets on the diversion component, water can be injected into different cleaning areas of the first cleaning surface separately to ensure that clean water is injected into each cleaning area. This can improve the uniformity of water injection in each cleaning area and thus improve the cleaning effect.
[0022] In one possible implementation, a guide section is provided at the water outlet. The guide section has a different orientation for different water outlets.
[0023] By setting a guide section at the water outlet, water can be injected into cleaning areas in different directions, thus enabling precise water injection into different cleaning areas, improving water injection uniformity, and thereby improving the cleaning effect.
[0024] In one possible implementation, the diversion component includes an inlet and a plurality of flow channels disposed between the inlet and the outlet. The flow channels connect the inlet and the outlet, and each flow channel corresponds to one outlet.
[0025] By inlet water is provided to inject water into the diversion component, and by dividing the water into multiple channels between the inlet and outlet, water can be injected into different outlets through different channels. Compared to injecting water into multiple outlets through a single channel, this improves the uniformity of water injection into different outlets. Furthermore, the water injection volume into different outlets can be varied by controlling the length and width of the channels. Thus, when different outlets correspond to different cleaning areas, the water output of different outlets can be altered by changing the shape of the channels, thereby further improving the uniformity of water injection into different cleaning areas.
[0026] In one possible implementation, the journey from the inlet through different flow channels to different outlets is the same.
[0027] By setting the same stroke for different flow channels between the inlet and outlet, the water output from different outlets can be more uniform, ensuring that the water volume per unit area on the first cleaning surface of the cleaning disc is the same. This guarantees that different areas of the cleaning components of the cleaning equipment are cleaned equally, preventing some areas from being cleaned while others remain uncleaned. Cleaning every part of the cleaning components would require more time, significantly reducing the cleaning efficiency and thus lowering the user experience.
[0028] In one possible implementation, at least a portion of the plurality of flow channels includes a bend. The bend extends the travel distance from the inlet through the flow channel to the outlet.
[0029] By incorporating bends in the flow channel, the length of the flow channel can be extended, thereby increasing the stroke of the inlet and outlet.
[0030] In one possible implementation, the flow splitting assembly includes a flow splitting base and a flow splitting cap. The flow splitting cap is located at the top of the flow splitting base, and a plurality of flow channels are formed between the flow splitting base and the flow splitting cap.
[0031] By including both a diversion base and a diversion gland in the diversion assembly, the manufacturing difficulty of the diversion assembly is reduced compared to making it a one-piece structure. Furthermore, this design facilitates maintenance in case of blockages at the inlet, outlet, or flow channel; for example, the diversion base and gland can be disassembled for cleaning.
[0032] In one possible implementation, the flow-diverting base has a plurality of raised baffles on the side facing the flow-diverting cap. A flow channel is formed between two adjacent baffles.
[0033] By setting baffles on the distribution base and forming flow channels between the baffles, the sealing between different flow channels can be improved, preventing water leakage between them. The baffles can be integrally molded on the distribution base, which reduces the processing difficulty of the flow channels and thus reduces costs.
[0034] In one possible implementation, the diversion cap has multiple grooves on the side facing the diversion base that mate with the multiple baffles. When the diversion base and the diversion cap are connected, the end of the baffle facing the diversion cap is located within the groove.
[0035] By setting grooves on the distributor gland, the distributor gland and distributor base can be easily aligned and installed during assembly, ensuring the sealing of the distributor assembly and preventing water leakage caused by misalignment of the distributor gland and distributor base.
[0036] In one possible implementation, the inlet is located on the side of the diversion gland opposite to the diversion base.
[0037] By placing the water inlet on the side of the diversion gland away from the diversion base, the water inlet can be located at the top of the diversion assembly, making it convenient to connect to the water supply pipeline.
[0038] In one possible implementation, the shunt cap and the shunt base are connected by ultrasonic welding.
[0039] By ultrasonically welding the shunt gland and the shunt base together, the connection stability between the shunt gland and the shunt base can be increased, thereby extending the service life of the shunt assembly.
[0040] In one possible implementation, the diversion component is detachably connected to the cleaning tray body.
[0041] By making the connection between the diversion component and the cleaning tray body detachable, the cleaning tray body and the diversion component can be easily disassembled. When the cleaning tray body needs to be cleaned, only the cleaning tray body can be disassembled for cleaning. Compared to disassembling the entire cleaning component, disassembling only the cleaning tray body is simpler, thus reducing the cost of cleaning and maintaining the cleaning tray body.
[0042] In one possible implementation, the diversion assembly has a first mating portion. The cleaning tray body has a second mating portion for mating with the first mating portion. When the diversion assembly is connected to the cleaning tray body, the first mating portion and the second mating portion are inserted into each other.
[0043] By providing a first mating part on the diversion component and a second mating part on the cleaning tray component, the diversion component and the cleaning tray body can be aligned and installed, facilitating the connection between the cleaning tray component and the diversion component. The insertion and mating of the first and second mating parts reduces the difficulty of connecting the diversion component and the cleaning tray component, thereby reducing the time cost for users to learn how to use the cleaning tray component.
[0044] In one possible implementation, the first mating part is a first groove structure. The second mating part is a first protrusion structure protruding outward from the water inlet end of the cleaning tray body. When the diversion assembly is connected to the cleaning tray body, the first protrusion structure is inserted into the first groove structure.
[0045] By setting the first mating part as a first groove structure and the second mating part as a first protrusion structure, the processing difficulty can be reduced, thereby reducing the processing cost.
[0046] In one possible implementation, the first mating part includes a first assembly part. The second mating part includes a second assembly part that mates with and connects to the first assembly part. When the first mating part and the second mating part are inserted into each other, the first assembly part and the second assembly part are locked together.
[0047] By providing a first assembly part within the first mating part and a second assembly part on the second mating part, the connection between the first and second mating parts can be made more stable, preventing the cleaning disc body and the diversion assembly from separating during use.
[0048] In one possible implementation, the second assembly part is telescopically disposed on the second mating part along a direction perpendicular to the insertion direction of the first assembly part and the second assembly part.
[0049] By telescopically mounting the second assembly part on the second mating part, the second assembly part can be separated from the first assembly part by pressing the second assembly part. When there is no pressing on the second assembly part, the first and second assembly parts are locked together. This disassembly method is simple and convenient to operate.
[0050] In one possible implementation, the cleaning tray body is provided with a locking button connected to the second assembly part. The locking button is used to drive the second assembly part to move in a direction perpendicular to the insertion direction of the first and second assembly parts, thereby unlocking the first and second assembly parts.
[0051] By setting a locking button, the first and second assembly parts can be unlocked by pressing the locking button. The operation is quick and convenient, which can save the user's operating costs.
[0052] In one possible implementation, the first assembly portion is a second groove structure disposed within the first mating portion. The second assembly portion is a second protrusion structure disposed on the second mating portion. In the insertion direction of the first assembly portion and the second assembly portion, the side of the second assembly portion facing the first assembly portion has an inclined surface, and the inclined surface is inclined in a direction away from the first assembly portion.
[0053] By providing a slope on the second assembly part, the slope acts as a guide when connecting the cleaning tray body and the diverting assembly. This allows the second assembly part to be gradually pushed into the first assembly part along the slope, requiring less force to connect the cleaning tray body and the diverting assembly. This makes it easier for women and the elderly with less strength to connect the cleaning tray body and the diverting assembly, thus broadening the applicability of the cleaning assembly to a wider range of people. Furthermore, the slope reduces wear on both the first and second assembly parts, thereby extending the service life of the cleaning tray body and the diverting assembly.
[0054] In one possible implementation, the cleaning assembly includes a chassis for housing the cleaning tray body. The cleaning tray body includes a second cleaning surface. The first cleaning surface and the second cleaning surface are disposed opposite each other in the thickness direction of the cleaning tray body. When the cleaning tray body is located within the chassis, the second cleaning surface contacts the chassis and is used to clean the chassis.
[0055] By configuring the cleaning disc body to include a first cleaning surface and a second cleaning surface arranged vertically opposite each other, since the cleaning disc assembly is located inside the chassis, the second cleaning surface can clean the chassis while the cleaning disc assembly cleans the cleaning parts of the cleaning equipment. This avoids the user having to manually clean the chassis, reduces the user's burden in cleaning work, and improves the user experience.
[0056] In one possible implementation, the chassis includes a cleaning tank, and a cleaning brush is provided on the second cleaning surface. When the cleaning disc body is located inside the chassis, the cleaning brush on the second cleaning surface contacts the cleaning tank, and the cleaning brush is used to clean the bottom wall of the cleaning tank.
[0057] By incorporating a cleaning tank on the chassis, the cleaning tray can be easily accommodated, and water used by the cleaning components for cleaning the equipment can be conveniently collected, preventing wastewater leakage and improving the user experience. The cleaning brush on the second cleaning surface enhances the cleaning effect of the second cleaning surface on the cleaning tank.
[0058] In one possible implementation, the bottom wall of the cleaning tank includes a confluence portion and a drain outlet, the drain outlet being disposed on the confluence portion. Specifically, in the thickness direction of the cleaning tray body, the height of the confluence portion from the bottom of the chassis gradually decreases from the end of the confluence portion away from the drain outlet to the drain outlet, so that water in the confluence portion automatically gathers at the drain outlet.
[0059] By incorporating a manifold and a drain outlet within the cleaning tank, wastewater can be effectively discharged. The manifold is positioned so that its height gradually decreases from the end furthest from the drain outlet towards it, allowing water to flow automatically towards the drain, reducing drainage difficulty, increasing drainage speed, and preventing wastewater from the clean water tank from becoming difficult to drain.
[0060] In one possible implementation, rollers are provided on the second cleaning surface of the cleaning disc body. A support portion is provided on the bottom wall of the cleaning tank, opposite to the rollers. When the cleaning disc body moves relative to the cleaning tank, the rollers move on the support portion. In the thickness direction of the cleaning disc body, the height of the support portion from the bottom of the chassis is greater than the height of the confluence portion from the bottom of the chassis.
[0061] By installing rollers on the second cleaning surface of the cleaning tray body, the friction between the cleaning tray body and the cleaning tank can be reduced, making the movement of the cleaning tray body within the cleaning tank smoother. This reduces wear on both the cleaning tray body and the cleaning tank, extending their service life. By providing a support portion opposite to the rollers within the cleaning tank, the rollers can be supported. By setting the height of the support portion to the bottom of the chassis greater than the height of the busbar to the bottom of the chassis, water at the support portion can be reduced, preventing water splashing when the rollers move on the support portion and thus avoiding contamination of the ground near the base station, thus avoiding unnecessary cleaning work for users.
[0062] In one possible implementation, the bottom wall of the cleaning tank further includes a transition section. This transition section is located between the support section and the confluence section, and its height from the support section to the bottom of the chassis gradually decreases in the direction from the confluence section to the support section.
[0063] By incorporating a transition section whose height gradually decreases from the bottom of the chassis, water located on the support section can be channeled into the confluence section through the transition section. This reduces the amount of water on the support section and prevents water droplets from splashing when the rollers move across it. It also prevents water accumulation between the support section and the transition section.
[0064] In one possible implementation, the first cleaning surface gradually tilts towards the second cleaning surface in the direction from the water inlet to the water-blocking end.
[0065] By setting the first cleaning surface to gradually tilt towards the second cleaning surface from the water inlet end to the water-blocking end, the first cleaning surface can be gradually tilted downwards from the water inlet end to the water-blocking end. When water is injected onto the first cleaning surface from the water inlet end, the water can flow downwards along the first cleaning surface, so that the water-blocking end of the first cleaning surface also has water for cleaning. This ensures that the cleaning parts of the cleaning equipment are cleaned to the edges, that is, it ensures that the edges of the cleaning parts of the cleaning equipment are also cleaned, thereby improving the cleaning effect of the first cleaning surface.
[0066] A second aspect of this application provides a cleaning assembly for a base station, including a chassis and a cleaning tray body disposed within the chassis. The chassis includes a cleaning tank, and the cleaning tray body is located within the cleaning tank. The bottom wall of the cleaning tank includes a confluence portion and a drain outlet, the drain outlet being disposed on the confluence portion. Furthermore, in the thickness direction of the cleaning tray body, the height of the confluence portion from the bottom of the chassis gradually decreases from the end of the confluence portion away from the drain outlet to the drain outlet, so that water in the confluence portion automatically gathers at the drain outlet.
[0067] By incorporating a manifold and a drain outlet within the cleaning tank, wastewater can be effectively discharged. The manifold is positioned so that its height gradually decreases from the end furthest from the drain outlet towards it, allowing water to flow automatically towards the drain, reducing drainage difficulty, increasing drainage speed, and preventing wastewater from the clean water tank from becoming difficult to drain.
[0068] In one possible implementation, the side of the cleaning disc body facing the chassis is provided with rollers.
[0069] By installing rollers on the second cleaning surface of the cleaning disc body, the friction between the cleaning disc body and the cleaning tank can be reduced, making the movement of the cleaning disc body in the cleaning tank smoother. This reduces wear on the cleaning disc body and the cleaning tank, extending their service life.
[0070] In one possible implementation, the bottom wall of the cleaning tank is provided with a support portion opposite to the roller, and when the cleaning disc body moves relative to the cleaning tank, the roller moves on the support portion. In the thickness direction of the cleaning disc body, the height of the support portion from the bottom of the chassis is greater than the height of the confluence portion from the bottom of the chassis.
[0071] By setting a support part opposite to the roller in the cleaning tank, the roller can be supported. By setting the height of the support part to the bottom of the chassis to be greater than the height of the busbar to the bottom of the chassis, the water at the support part can be reduced, preventing water droplets from splashing when the roller moves on the support part, which would cause the ground near the base station to be contaminated and bring unnecessary cleaning work to the user.
[0072] In one possible implementation, the bottom wall of the cleaning tank further includes a transition section. This transition section is located between the support section and the confluence section, and its height from the support section to the bottom of the chassis gradually decreases in the direction from the confluence section to the support section.
[0073] By incorporating a transition section whose height gradually decreases to the bottom of the chassis, water can be prevented from entering the support section. Water located in the support section can also be channeled into the confluence section through the transition section, preventing water droplets from splashing when the rollers move on the support section. Furthermore, it prevents water accumulation between the support section and the transition section.
[0074] In one possible implementation, the transition portion is an arc-shaped surface.
[0075] By setting the transition section as an arc surface, the connection between the support section and the transition section, as well as between the transition section and the confluence section, can be smoothly transitioned, so as to achieve a seamless connection between the support section and the transition section, as well as between the transition section and the confluence section, and improve the aesthetics of the cleaning tank.
[0076] In one possible implementation, a cleaning brush is provided on the side of the cleaning tray body facing the cleaning tank, the cleaning brush abutting against the confluence portion, and the cleaning brush is used to clean the confluence portion.
[0077] By installing cleaning brushes, the cleaning effect on the manifold can be improved.
[0078] In one possible implementation, the confluence is an arc-shaped surface.
[0079] By setting the manifold to an arc-shaped surface, the surface of the manifold is made smooth, preventing jamming when it comes into contact with the cleaning brush and reducing wear on the cleaning brush, thereby extending the service life of the cleaning disc body.
[0080] In one possible implementation, a filter structure is provided on the outside of the drain outlet.
[0081] By installing a filter structure at the drain outlet, larger debris can be prevented from clogging the drain outlet, thus ensuring the normal operation of the cleaning components.
[0082] A third aspect of this application provides a cleaning assembly applied to a base station. The cleaning assembly includes a chassis and a cleaning tray body located within the chassis. The cleaning tray body includes a first cleaning surface and a second cleaning surface disposed opposite to each other in the thickness direction. The first cleaning surface is used to clean cleaning components of a cleaning device corresponding to the base station, and the second cleaning surface is used to clean the chassis.
[0083] By setting a first cleaning surface and a second cleaning surface opposite each other in the thickness direction of the cleaning disc body, since the cleaning disc assembly is located inside the chassis, the second cleaning surface can clean the chassis while the cleaning disc assembly cleans the cleaning parts of the cleaning equipment. This avoids the user having to manually clean the chassis, reduces the user's burden in cleaning work, and improves the user experience.
[0084] A fourth aspect of this application provides a base station including any of the cleaning components described in the first aspect above. Alternatively, it includes any of the cleaning components described in the second aspect above.
[0085] The base station in this embodiment of the application can have an automatic cleaning function by setting the cleaning component of the first aspect or the cleaning component of the second aspect. It can automatically clean the cleaning components of the cleaning equipment, replacing the user's manual cleaning of the cleaning components of the cleaning equipment. This can save the user's time in cleaning the cleaning equipment, reduce the user's workload in cleaning, and improve the user experience. Attached Figure Description
[0086] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0087] Figure 1 This is a schematic diagram of the structure of a cleaning assembly provided in an embodiment of this application;
[0088] Figure 2 A side view of a cleaning assembly provided in an embodiment of this application;
[0089] Figure 3 This is an exploded structural diagram of a cleaning assembly provided in an embodiment of this application;
[0090] Figure 4 A top view of a cleaning assembly provided in an embodiment of this application;
[0091] Figure 5An exploded view of the diversion component of a cleaning assembly provided in this application embodiment;
[0092] Figure 6 Another top view of a cleaning assembly provided in an embodiment of this application;
[0093] Figure 7 A schematic diagram of the structure of the diversion gland of a diversion component of a cleaning assembly provided in this application embodiment;
[0094] Figure 8 This is a cross-sectional structural diagram of a cleaning assembly provided in an embodiment of this application;
[0095] Figure 9 This is another cross-sectional structural diagram of a cleaning assembly provided in an embodiment of this application;
[0096] Figure 10 This is another exploded structural diagram of a cleaning assembly provided in an embodiment of this application;
[0097] Figure 11 This is a schematic diagram of the structure of a cleaning assembly provided in an embodiment of this application;
[0098] Figure 12 This is a structural schematic diagram of a cleaning assembly provided in an embodiment of this application from another angle;
[0099] Figure 13 This is a schematic diagram of the chassis of a cleaning assembly provided in an embodiment of this application;
[0100] Figure 14 This is another structural schematic diagram of the chassis of a cleaning assembly provided in an embodiment of this application;
[0101] Figure 15 This is a schematic diagram of the structure of a base station provided in an embodiment of this application.
[0102] Explanation of reference numerals in the attached figures:
[0103] 100 - Cleaning component; 10 - Cleaning disc body; 11 - First cleaning surface;
[0104] 111 - First cleaning section; 112 - Second cleaning section; 113 - Cleaning area;
[0105] 12-Second cleaning surface; 121-Cleaning brush;
[0106] 13-Water inlet end; 14-Water blocking end;
[0107] 15 - Outer edge; 16 - Opening; 161 - Sidewall of the opening;
[0108] 17-Second mating part; 171-Second assembly part; 1711-Sloping surface;
[0109] 18-Locking button; 181-Elastic element; 19-Roller;
[0110] 20 - Flow divider assembly; 21 - Outlet; 211 - Flow guide section;
[0111] 22-Inlet; 23-Diverter base; 231-Baffle wall;
[0112] 24-Diverter cap; 241-Groove; 25-Flow channel;
[0113] 251 - Bending part; 26 - First mating part; 261 - First assembly part;
[0114] 30 - Chassis; 31 - Washing tank; 311 - Manifold;
[0115] 312 - Drain outlet; 313 - Support part; 314 - Transition part;
[0116] 32 - Filter structure; 1000 - Base station; 200 - Housing. Detailed Implementation
[0117] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0118] The cleaning components and base station provided in the embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0119] Figure 1 This is a schematic diagram of a cleaning assembly provided in an embodiment of this application.
[0120] For ease of description, in this embodiment of the application, the thickness direction of the cleaning disc body 10 is taken as the z-direction, the first direction is taken as the x-direction, and the second direction is taken as the y-direction.
[0121] This application provides a cleaning component 100 for a base station, such as... Figure 1As shown, the cleaning assembly 100 may include a cleaning tray body 10. The cleaning tray body 10 includes a first cleaning surface 11, which is used to clean the cleaning components of a cleaning device compatible with the base station. For example, when the cleaning device compatible with the base station needs cleaning, the cleaning device can be placed on the first cleaning surface 11 of the cleaning tray body 10 of the cleaning assembly 100, and the cleaning device can be cleaned through the first cleaning surface 11.
[0122] like Figure 1 As shown, the first cleaning surface 11 is provided with a plurality of first cleaning parts 111 and a plurality of second cleaning parts 112. For example, the plurality of first cleaning parts 111 are spaced apart on the first cleaning surface 11, and the first cleaning part 111 is a protruding cylindrical structure, and the top of the cylindrical structure is an arc-shaped surface.
[0123] It should be noted that the first cleaning part 111 can be a cylindrical, prism or other structure, and the arc-shaped surface at the top of the cylindrical structure can be a spherical surface or other structure. In this embodiment, the specific shape of the first cleaning part 111 and the arc-shaped surface at the top of the cylindrical structure are not further limited.
[0124] By providing multiple spaced first cleaning sections 111 on the first cleaning surface 11, a space for accommodating water can be formed between the first cleaning sections 111, so that some water can be stored on the first cleaning surface 11 of the cleaning tray body 10 to clean the cleaning components of the cleaning equipment. This helps to clean the stains on the cleaning components, thereby improving the cleaning effect of the cleaning component 100 and enhancing the user experience.
[0125] By designing the first cleaning section 111 as a protruding cylindrical structure, the processing difficulty can be reduced and production costs saved. Furthermore, the protruding cylindrical structure can also rub against the surface of the cleaning components, making it easier to clean stains. By setting the top of the cylindrical structure as a curved surface, the top of the first cleaning section 111 is smooth and without sharp edges, preventing scratches or damage to the cleaning components of the cleaning equipment during cleaning. It also prevents scratches from accidental contact by children or pets with the first cleaning surface 11 of the cleaning disc body 10.
[0126] In this embodiment, the cleaning tray body 10 may include a water inlet end 13 and a water-blocking end 14 disposed opposite to each other along a first direction (x direction). The water inlet end 13 is used to inject water into the first cleaning surface 11 of the cleaning tray body 10, and the water-blocking end 14 is used to restrict the water entering the first cleaning surface 11 from the water inlet end 13 within the first cleaning surface 11. This allows some water to be stored in the first cleaning surface 11, which can moisten the cleaning components of the cleaning equipment being cleaned, thereby improving the cleaning effect.
[0127] In the first direction (x-direction), the two ends of the second cleaning section 112 extend toward the water inlet end 13 and the water blocking end 14, respectively. Multiple second cleaning sections 112 are spaced apart along a second direction (y-direction), which is perpendicular to the first direction, so that multiple cleaning areas 113 are formed between the multiple second cleaning sections 112 and the outer edge 15 of the cleaning tray body 10. Each cleaning area 113 is provided with multiple first cleaning sections 111.
[0128] By including a cleaning disc body 10 in the cleaning assembly 100, the cleaning disc body 10 can be used to clean the cleaning components of the cleaning equipment, replacing manual cleaning by the user. This saves users time, reduces user fatigue, and improves the user experience. By including a first cleaning section 111 and a second cleaning section 112 in the first cleaning surface 11, the problem of poor cleaning effect from a single cleaning section can be avoided, thus improving the cleaning effect of the first cleaning surface 11. By setting the second cleaning section 112, the first cleaning surface 11 can be divided into multiple cleaning areas 113. This allows for differentiated water injection into the first cleaning surface 11, ensuring a relatively uniform water volume in each cleaning area 113, thereby generally improving the cleaning effect of the first cleaning surface 11.
[0129] In one possible implementation, the outer edge 15 of the cleaning tray body 10 extends from the first cleaning surface 11 along the thickness direction (z-direction) of the cleaning tray body 10 beyond the first cleaning surface 11, so as to form a water-containing space between the outer edge 15 of the cleaning tray body 10 and the first cleaning surface 11. The first cleaning section 111 and the second cleaning section 112 are both located within the water-containing space.
[0130] By extending the outer edge 15 of the cleaning disc body 10 beyond the first cleaning surface 11 in the thickness direction of the cleaning disc body 10, and forming a water-holding space between the outer edge 15 of the cleaning disc body 10 and the first cleaning surface 11, it is possible to ensure that moisture is retained on the first cleaning surface 11 of the cleaning disc body 10. This can fully wet the cleaning components of the cleaning equipment being cleaned, which is beneficial to improving the cleaning effect.
[0131] See also Figure 1 As shown, the second cleaning section 112 can be a rib structure, and in the z direction, the height of the first cleaning section 111 is greater than or equal to the height of the second cleaning section 112, and is greater than or equal to the height of the outer edge 15 of the cleaning disc body 10.
[0132] By configuring the second cleaning section 112 with a rib structure, the cleaning disc body 10 can repeatedly scrape and wash the cleaning components of the cleaning equipment during cleaning. This facilitates the removal of hair and other debris from the cleaning components and also removes moisture. With wastewater continuously scraped away and clean water continuously injected, the cleaning components are thoroughly cleaned through repeated cycles, thus improving the cleaning effect. Furthermore, after cleaning, the remaining moisture on the cleaning components is minimal, saving time in the subsequent drying process. By setting the height of the first cleaning section 111 to be greater than or equal to the height of the second cleaning section 112, and also greater than or equal to the height of the outer edge 15 of the cleaning disc body 10, it is ensured that the first cleaning section 111 makes full contact with the cleaning components when using the cleaning assembly 100, thereby enhancing the cleaning effect.
[0133] like Figure 1 As shown, the cleaning tray body 10 may also be provided with a plurality of spaced openings 16. The openings 16 penetrate the cleaning tray body 10 in the thickness direction (z direction).
[0134] By providing multiple openings 16 on the cleaning disc body 10, water on the cleaning disc body 10 can flow into the chassis 30 through the openings 16 when cleaning the cleaning components on the cleaning equipment. In this way, as clean water is continuously injected, wastewater can be discharged into the chassis 30, thereby improving cleaning efficiency and cleaning effect.
[0135] In one possible implementation, the sidewall 161 of the opening may protrude beyond the first cleaning surface 11, so that a plurality of cleaning areas 113 are formed between the plurality of second cleaning sections 112, the sidewall 161 of the opening, and the outer edge 15 of the cleaning tray body 10.
[0136] By making the sidewall 161 of the opening protrude beyond the first cleaning surface 11, the sidewall 161 of the opening can act as a water barrier, allowing water on the first cleaning surface 11 to be retained in the water-holding space. This ensures that moisture is maintained on the first cleaning surface 11 of the cleaning tray body 10, which can fully wet the cleaning components of the cleaning equipment being cleaned, thus improving the cleaning effect. In addition, by making the sidewall 161 of the opening protrude beyond the first cleaning surface 11, the processing difficulty can be reduced, thereby reducing production costs.
[0137] For example, the height of the sidewall 161 of the opening in the z-direction is less than or equal to the height of the first cleaning part 111. This ensures that when the cleaning assembly 100 is used, the first cleaning part 111 makes full contact with the part being cleaned, thereby improving the cleaning effect on the part.
[0138] It should be noted that the cleaning disc body 10 can be produced by one-piece molding, which can reduce the processing difficulty and save costs.
[0139] like Figure 2 As shown, the first cleaning surface 11 gradually slopes towards the ground in the direction from the water inlet end 13 to the water blocking end 14.
[0140] The first cleaning surface 11 gradually slopes towards the ground from the water inlet end 13 to the water blocking end 14. When water is injected onto the first cleaning surface 11 from the water inlet end 13, the water can flow downwards along the first cleaning surface 11, so that the water blocking end 14 of the first cleaning surface 11 also has water for cleaning. This ensures that the cleaning parts of the cleaning equipment are cleaned to the edges, that is, it ensures that the edges of the cleaning parts of the cleaning equipment are also cleaned, thereby improving the cleaning effect of the first cleaning surface 11.
[0141] Combination Figure 1 and Figure 3 As shown, the cleaning assembly 100 may further include a diversion assembly 20. The diversion assembly 20 is located at the water inlet 13 of the cleaning tray body 10. The diversion assembly 20 may have multiple water outlets 21 configured to supply water to the cleaning area 113. Each water outlet 21 corresponds to at least one cleaning area 113.
[0142] like Figure 4 As shown, by setting up a diversion component 20 and providing multiple water outlets 21 on the diversion component 20, water can be injected into different cleaning areas 113 of the first cleaning surface 11 separately, ensuring that each cleaning area 113 is injected with clean water. This improves the uniformity of water injection in each cleaning area 113, thereby improving the cleaning effect. Figure 4 The arrows in the diagram represent the direction of water flow.
[0143] For example, a guide section 211 is provided at the water outlet 21. The guide section 211 is oriented differently for different water outlets 21.
[0144] In some embodiments, the flow guide 211 can be a tubular structure formed on the flow divider 20, or it can be a tubular structure inserted into the flow divider 20. In this embodiment, the structure of the flow guide 211 is not further limited.
[0145] By setting a guide section 211 at the water outlet 21, water can be injected into the cleaning area 113 in different directions. This allows for precise water injection into different cleaning areas 113, improving the uniformity of water injection and thus enhancing the cleaning effect.
[0146] In one possible implementation, such as Figure 5As shown, the diversion assembly 20 may include a diversion base 23 and a diversion cap 24. In the z-direction, the diversion cap 24 is located at the top of the diversion base 23. The diversion assembly 20 includes an inlet 22 and an outlet 21, and a plurality of flow channels 25 between the inlet 22 and the outlet 21. These flow channels 25 can be used to connect the inlet 22 and the outlet 21, and each flow channel 25 corresponds to one outlet 21.
[0147] By including a diversion base 23 and a diversion gland 24 in the diversion assembly 20, the manufacturing difficulty of the diversion assembly 20 can be reduced compared to making the diversion assembly 20 a one-piece structure. In addition, this facilitates maintenance in case of blockage in the inlet 22, outlet 21, or flow channel 25. For example, the diversion base 23 and diversion gland 24 can be disassembled to clean the inlet 22, outlet 21, or flow channel 25.
[0148] For example, the water inlet 22 can be located on the side of the diversion cover 24 away from the diversion base 23. By setting the water inlet 22 on the side of the diversion cover 24 away from the diversion base 23, the water inlet 22 can be located at the top of the diversion assembly 20, which facilitates connection with the water supply pipeline of the base station.
[0149] For example, multiple flow channels 25 are arranged side by side in the y-direction, and the multiple flow channels 25 converge at the inlet 22, so that water can be injected into multiple flow channels 25 through a single inlet 22. By providing a single inlet 22, the structure of the diversion assembly 20 can be simplified, thereby reducing the manufacturing cost of the diversion assembly 20. In addition, the structure of the water inlet pipe used to inject water into the inlet 22 can also be simplified, thereby reducing the cost of the base station matched with the cleaning assembly.
[0150] Of course, in other embodiments, multiple water inlets 22 can be provided, each connected to a flow channel 25, and water can be injected into multiple flow channels 25 through multiple pipes. This allows for more precise control of the amount of water entering each flow channel 25, resulting in a more uniform water volume in each cleaning area 113, thereby improving the cleaning effect. Compared to indiscriminate water injection, this also saves water used for cleaning the cleaning parts of the cleaning equipment.
[0151] By providing an inlet 22 to inject water into the diversion assembly 20, and dividing the space between the inlet 22 and the outlet 21 into multiple channels 25, water can be injected into different outlets 21 through different channels 25. This improves the uniformity of water injection into different outlets 21 compared to injecting water into multiple outlets 21 through a single channel 25. Furthermore, the water injection volume into different outlets 21 can be changed by controlling the length and width of the channels 25. Thus, when the cleaning areas 113 corresponding to different outlets 21 have different areas, the water output of different outlets 21 can be changed by altering the shape of the channels 25, thereby improving the uniformity of water injection into different cleaning areas 113.
[0152] For example, such as Figure 6 As shown, the travel distance from the inlet 22 through different flow channels 25 to different outlets 21 is the same. In one possible implementation, at least a portion of the multiple flow channels 25 includes a bend 251. The bend 251 extends the travel distance from the inlet 22 through the flow channels 25 to the outlet 21. By providing the bend 251 in the flow channels 25, the length of the flow channels 25 can be extended, thereby extending the travel distance between the inlet 22 and the outlet 21.
[0153] By setting the stroke of the different flow channels 25 between the inlet 22 and the outlet 21 to be the same, the water output from the different outlets 21 can be more uniform, ensuring that the water volume per unit area on the first cleaning surface 11 of the cleaning disc body 10 is the same. This guarantees that the cleaning effect is the same for different areas of the cleaning components of the cleaning equipment being cleaned, preventing some areas from being cleaned while others remain uncleaned. Cleaning every part of the cleaning components would require more time, significantly reducing the cleaning efficiency of the cleaning component 100 and thus lowering the user experience. Figure 5 As shown, the side of the diversion base 23 facing the diversion cap 24 has multiple protruding baffles 231. A flow channel 25 is formed between adjacent baffles 231. By setting baffles 231 on the diversion base 23 and forming flow channels 25 between the baffles 231, the sealing performance between different flow channels 25 can be improved, preventing water leakage between different flow channels 25. The baffles 231 can be integrally formed on the diversion base 23, which reduces the processing difficulty of the flow channels 25 and thus reduces costs.
[0154] like Figure 7 As shown, the diversion cover 24 has multiple grooves 241 on the side facing the diversion base 23, which cooperate with multiple baffles 231. When the diversion base 23 and the diversion cover 24 are connected, the end of the baffle 231 facing the diversion cover 24 is located in the groove 241.
[0155] By providing a groove 241 on the diversion gland 24, the diversion gland 24 and the diversion base 23 can be easily aligned and installed during assembly, ensuring the sealing of the diversion assembly 20 and preventing water leakage caused by misalignment of the diversion gland 24 and the diversion base 23.
[0156] In one possible implementation, the diversion gland 24 and the diversion base 23 are connected by ultrasonic welding. Of course, in other embodiments, the diversion gland 24 and the diversion base 23 can also be fixedly connected by welding, bonding, riveting, fastener connection, integral molding, etc. In this embodiment, the connection method between the diversion gland 24 and the diversion base 23 is not further limited.
[0157] By ultrasonically welding the shunt cap 24 and the shunt base 23 together, the connection stability between the shunt cap 24 and the shunt base 23 can be increased, thereby extending the service life of the shunt assembly 20.
[0158] In one possible implementation, the diversion component 20 is detachably connected to the cleaning tray body 10.
[0159] By making the diversion component 20 and the cleaning tray body 10 detachably connected, the cleaning tray body 10 and the diversion component 20 can be easily disassembled. When the cleaning tray body 10 needs to be cleaned, only the cleaning tray body 10 can be disassembled for cleaning. Compared to disassembling the entire cleaning component 100, disassembling only the cleaning tray body 10 is simpler. Therefore, this can reduce the cost of cleaning and maintaining the cleaning tray body 10.
[0160] The connection structure between the diversion component 20 and the cleaning disc body 10 is described below with reference to the accompanying drawings.
[0161] Combination Figure 3 and Figure 8 As shown, the diversion assembly 20 is provided with a first mating part 26. The cleaning tray body 10 is provided with a second mating part 17 for mating with the first mating part 26. When the diversion assembly 20 is connected to the cleaning tray body 10, the first mating part 26 and the second mating part 17 are inserted into each other.
[0162] By providing a first mating part 26 on the diversion assembly 20 and a second mating part 17 on the cleaning tray assembly, the diversion assembly 20 and the cleaning tray body 10 can be aligned and installed, facilitating the connection between the cleaning tray assembly and the diversion assembly 20. The insertion and mating of the first mating part 26 and the second mating part 17 reduces the difficulty of connecting the diversion assembly 20 and the cleaning tray assembly, thereby reducing the time cost for users to learn how to use the cleaning tray assembly.
[0163] For example, such as Figure 8 As shown, the first mating part 26 is a first groove structure. The second mating part 17 is a first protrusion structure protruding outward from the water inlet end 13 of the cleaning tray body 10. When the diversion assembly 20 is connected to the cleaning tray body 10, the first protrusion structure is inserted into the first groove structure. By setting the first mating part 26 as a first groove structure and the second mating part 17 as a first protrusion structure, the processing difficulty can be reduced, thereby reducing the processing cost.
[0164] like Figure 8 As shown, in the z-direction, the flow channel 25 is located at the top of the first groove. That is, a first mating part 26 is provided at the bottom of the flow channel 25, which can make reasonable use of the space at the bottom of the flow channel 25 of the diversion component 20, thereby simplifying the structure of the cleaning component 100 and reducing costs.
[0165] It should be noted that, in the embodiments of this application, the shape of the outer wall of the first groove is not further limited. For example, it can be a cuboid structure as shown in the figure, an arc-shaped wall structure, or a triangular structure, etc.
[0166] like Figure 9 As shown, the first mating part 26 has a first assembly part 261 inside. The second mating part 17 has a second assembly part 171 that mates with and connects to the first assembly part 261. When the first mating part 26 and the second mating part 17 are inserted into each other, the first assembly part 261 and the second assembly part 171 are locked together.
[0167] By providing a first assembly part 261 in the first mating part 26 and a second assembly part 171 on the second mating part 17, the connection between the first mating part 26 and the second mating part 17 can be made more stable, preventing the problem of separation between the cleaning disc body 10 and the diversion assembly 20 during use.
[0168] For example, the second assembly part 171 is telescopically disposed on the second mating part 17 along a direction perpendicular to the insertion direction of the first assembly part 261 and the second assembly part 171.
[0169] like Figure 9As shown in the embodiment of this application, the insertion direction of the first assembly part 261 and the second assembly part 171 is the x-direction. Therefore, the second assembly part 171 can be retractably disposed on the second mating part 17 along the z-direction or the y-direction. Of course, in other embodiments, the insertion direction of the first assembly part 261 and the second assembly part 171 can also be the z-direction. In this case, the second assembly part 171 can be retractably disposed on the second mating part 17 along the x-direction or the y-direction. The insertion direction of the first assembly part 261 and the second assembly part 171 is related to their shapes. Therefore, in this embodiment of the application, the insertion direction of the first assembly part 261 and the second assembly part 171 is not further limited.
[0170] By telescoping the second assembly part 171 onto the second mating part 17, the second assembly part 171 and the first assembly part 261 can be separated by pressing the second assembly part 171. When there is no pressing on the second assembly part 171, the first assembly part 261 and the second assembly part 171 are locked together. This disassembly method is simple and convenient to operate.
[0171] In one possible implementation, such as Figure 10 As shown, a locking button 18 connected to the second assembly part 171 can be provided on the cleaning disc body 10. The locking button 18 is used to drive the second assembly part 171 to move in a direction perpendicular to the insertion direction of the first assembly part 261 and the second assembly part 171, so as to unlock the first assembly part 261 and the second assembly part 171.
[0172] It should be noted that, driven by the locking button 18, the second assembly part 171 can be moved along the retractable direction of the second assembly part 171 to unlock the first assembly part 261 and the second assembly part 171.
[0173] For example, the extension and retraction direction of the second assembly part 171 can be the y direction or the z direction. In this application, the extension and retraction direction of the second assembly part 171 is not further limited.
[0174] For example, such as Figure 9 As shown, the extension and retraction direction of the second assembly part 171 can be the y-direction.
[0175] The locking button 18 and the second assembly part 171 can be an integral structure. The locking button 18 is located inside the cleaning tray body 10. An opening is provided on the cleaning tray body 10 for the locking button 18 to be exposed, and a portion of the locking button 18 protrudes outward from the opening for user pressing. There can be two locking buttons 18, which are arranged opposite each other along the y-direction. An elastic member 181 is provided between the two locking buttons 18, compressed between them so that the locking button 18 can automatically return to its original position after being pressed.
[0176] Of course, in some embodiments, the pressing direction of the locking button 18 can also be set in the z direction, so that the cleaning disc body 10 and the diversion assembly 20 can be disassembled by pressing the locking button 18 directly downwards.
[0177] By setting the locking button 18, the first assembly part 261 and the second assembly part 171 can be unlocked by pressing the locking button 18. The operation is quick and convenient, which can save the user's operating costs.
[0178] Combination Figure 9 and Figure 10 As shown, the first assembly part 261 can be a second groove structure provided in the first mating part 26. The second assembly part 171 can be a second protrusion structure provided on the second mating part 17. In the insertion direction of the first assembly part 261 and the second assembly part 171, the side of the second assembly part 171 facing the first assembly part 261 is provided with a slope 1711, and the slope 1711 is inclined in a direction away from the first assembly part 261.
[0179] By providing a slope 1711 on the second assembly part 171, the slope 1711 acts as a guide when connecting the cleaning tray body and the diversion assembly 20. This allows the first assembly part 261 to gradually push the second assembly part 171 into the first assembly part 261 along the slope 1711. This requires less force to connect the cleaning tray body and the diversion assembly 20, making it easier for women and the elderly to connect them, thus broadening the applicability of the cleaning assembly 100 to a wider range of people. Furthermore, by providing the slope 1711, wear on the first assembly part 261 and the second assembly part 171 can be reduced, thereby extending the service life of the cleaning tray body and the diversion assembly 20.
[0180] It should be noted that the second assembly part 171 can be disposed on the side wall of the second mating part 17 along the z-direction or on the side wall of the second mating part 17 along the y-direction. In this embodiment, the placement of the second assembly part 171 is not further limited. Furthermore, the number of second assembly parts 171 can be one, two, three, four, or more. In this embodiment, the number of second assembly parts 171 is not further limited.
[0181] It should be noted that the diversion component 20 and the cleaning tray body 10 can be detachably connected by means of plug-in connection, fastener connection, snap-fit connection, etc. In this embodiment, the cooperation method between the diversion component 20 and the cleaning tray component is not further limited.
[0182] In some embodiments, such as Figure 11 As shown, the cleaning assembly 100 may further include a chassis 30 for accommodating the cleaning tray body 10. For example, the chassis 30 may include a cleaning tank 31, in which the cleaning tray body 10 can be placed during use. The cleaning tank 31 serves to accommodate the cleaning tray body 10. By providing a cleaning tank 31 on the chassis 30, the cleaning tray body 10 can be conveniently accommodated, and water used by the cleaning assembly 100 for cleaning the cleaning components of the cleaning equipment can be easily collected, preventing wastewater leakage and improving the user experience.
[0183] In some embodiments, such as Figure 12 As shown, the cleaning tray body 10 may further include a second cleaning surface 12. The first cleaning surface 11 and the second cleaning surface 12 are disposed opposite each other in the thickness direction of the cleaning tray body 10. When the cleaning tray body 10 is located within the chassis 30, the second cleaning surface 12 contacts the chassis 30, and the second cleaning surface 12 is used to clean the chassis 30.
[0184] For example, a cleaning brush 121 is provided on the second cleaning surface 12. When the cleaning disc body 10 is located inside the chassis 30, the cleaning brush 121 on the second cleaning surface 12 contacts the cleaning tank 31, and the cleaning brush 121 is used to clean the bottom wall of the cleaning tank 31. By providing the cleaning brush 121 on the second cleaning surface, the cleaning effect of the second cleaning surface on the cleaning tank 31 can be improved.
[0185] By configuring the cleaning disc body 10 to include a first cleaning surface 11 and a second cleaning surface 12 arranged opposite each other in the vertical direction, since the cleaning disc assembly is located inside the chassis 30, the second cleaning surface 12 can clean the chassis 30 while the cleaning disc assembly cleans the cleaning parts of the cleaning equipment. This avoids the user having to manually clean the chassis 30, reduces the user's burden in cleaning work, and improves the user experience.
[0186] like Figure 13 As shown, the bottom wall of the cleaning tank 31 may include a confluence portion 311 and a drain outlet 312, with the drain outlet 312 disposed on the confluence portion 311. Specifically, in the thickness direction of the cleaning tank body, the height of the confluence portion 311 from the bottom of the tank 30 gradually decreases from the end of the confluence portion 311 furthest from the drain outlet 312 to the drain outlet 312. In other words, the drain outlet 312 is located at the lowest point of the confluence portion 311 so that water on the confluence portion 311 can automatically collect at the drain outlet 312.
[0187] By providing a confluence section 311 and a drain outlet 312 within the cleaning tank 31, wastewater within the cleaning tank 31 can be discharged. The height of the confluence section 311 at the bottom of the chassis 30 is designed to gradually decrease from the end furthest from the drain outlet 312 towards the drain outlet 312, allowing water in the confluence section 311 to automatically flow towards the drain outlet 312, reducing drainage difficulty, increasing drainage speed, and preventing wastewater in the clean water tank from being difficult to drain.
[0188] In one possible implementation, when the cleaning disc body 10 is located within the cleaning tank 31, the cleaning brush 121 on the second cleaning surface 12 of the cleaning disc body 10 can abut against the confluence section 311, and the cleaning brush 121 is used to clean the confluence section 311. This cleaning brush 121 can improve the cleaning effect on the confluence section 311.
[0189] It should be noted that the confluence part 311 can be an arc-shaped surface. By setting the confluence part 311 to an arc-shaped surface, the surface of the confluence part 311 can smoothly transition to the drain outlet 312. This will prevent jamming when it comes into contact with the cleaning brush 121 and reduce wear on the cleaning brush 121, thereby extending the service life of the cleaning disc body 10.
[0190] See also Figure 12 As shown, rollers 19 can also be provided on the second cleaning surface 12 of the cleaning disc body 10. Correspondingly, as... Figure 13 As shown, a support portion 313 is provided on the bottom wall of the cleaning tank 31, opposite to the roller 19. When the cleaning disc body 10 moves relative to the cleaning tank 31, the roller 19 moves on the support portion 313. In the thickness direction of the cleaning disc body, the height of the support portion 313 to the bottom of the chassis 30 is greater than the height of the confluence portion 311 to the bottom of the chassis 30.
[0191] By providing rollers 19 on the second cleaning surface 12 of the cleaning tray body 10, the friction between the cleaning tray body 10 and the cleaning tank 31 can be reduced, making the movement of the cleaning tray body 10 within the cleaning tank 31 smoother. This reduces wear on both the cleaning tray body 10 and the cleaning tank 31, extending their service life. By providing a support portion 313 opposite to the rollers 19 within the cleaning tank 31, support can be provided for the rollers 19. By setting the height of the support portion 313 at the bottom of the chassis 30 to be greater than the height of the confluence portion 311 at the bottom of the chassis 30, water at the support portion 313 can be reduced, preventing water droplets from splashing when the rollers 19 move on the support portion 313, thus preventing contamination of the ground near the base station and unnecessary cleaning work for users.
[0192] See also Figure 13 As shown, the bottom wall of the cleaning tank 31 may also include a transition portion 314. The transition portion 314 is located between the support portion 313 and the confluence portion 311, and its height gradually decreases from the support portion 313 to the confluence portion 311 towards the bottom of the chassis 30. For example, the transition portion 314 may be an arc-shaped surface. By setting the transition portion 314 as an arc-shaped surface, the connection between the support portion 313 and the transition portion 314, and between the transition portion 314 and the confluence portion 311, can be smoothly transitioned, allowing for a seamless connection between the support portion 313 and the transition portion 314, and between the transition portion 314 and the confluence portion 311, thus improving the aesthetics of the cleaning tank 31.
[0193] By providing a transition section 314, with the height of the transition section 314 gradually decreasing to the bottom of the chassis 30, water located in the support section 313 can be channeled into the confluence section 311 through the transition section 314. This reduces the amount of water on the support section 313 and prevents water droplets from splashing when the roller 19 moves on the support section 313. It also prevents problems such as water accumulation between the support section 313 and the transition section 314.
[0194] It should be noted that the cleaning tank 31 can be a one-piece molded structure, which can ensure the sealing of the cleaning tank 31, prevent water leakage, and reduce the processing difficulty and cost of the cleaning tank 31.
[0195] In one possible implementation, such as Figure 14 As shown, a filter structure 32 can also be installed on the outside of the drain outlet 312. This filter structure 32 can be opened and closed relative to the drain outlet 312. The dotted line with arrows in the figure indicates that the filter structure 32 can be flipped relative to the chassis 30, and does not represent the state of the filter structure 32. In normal use, the filter structure 32 is installed above the drain outlet 312.
[0196] For example, the filter structure 32 can be a plate-like structure with mesh or a cap-like structure with filter holes. In this embodiment, the specific shape of the filter structure 32 is not further limited.
[0197] By setting a filter structure 32 at the drain outlet 312, it is possible to prevent large debris from entering the drain outlet 312 and clogging it, thus ensuring the normal use of the cleaning component 100.
[0198] It should be noted that the shape, structure, principle, and connection relationship of the first cleaning surface 11 of the cleaning disc body 10 and the diversion component 20 in this embodiment are all similar to those in the present application. Figures 1-10 The structure of the cleaning tank 31 in the illustrated embodiment is the same. For the specific structure of the chassis 30 and the cleaning tank body 10, please refer to the embodiment shown below. Figures 1-10 The description of the above will not be repeated in the embodiments of this application.
[0199] This application also provides a base station 1000, such as Figure 15 As shown, the cleaning assembly 100 in any of the above embodiments includes a housing 200. The housing 200 is located above the cleaning assembly, the chassis 30 is located at the bottom of the housing 200, and the cleaning disc body 10 is located within the chassis 30.
[0200] The base station 1000 in this embodiment of the application can have an automatic cleaning function by setting the cleaning component 100 mentioned above. It can automatically clean the cleaning components of the cleaning equipment, replacing the user's manual cleaning of the cleaning components of the cleaning equipment. This can save the user's time in cleaning the cleaning equipment, reduce the user's workload in cleaning, and improve the user experience.
[0201] It should be noted that the cleaning equipment that works with the base station 1000 in this application embodiment can be a sweeper, a floor scrubber, a vacuum cleaner, etc. In this application embodiment, the type of cleaning equipment that works with the base station 1000 in this application embodiment is not further limited.
[0202] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0203] In the description of this application, it should be understood that the terms “comprising” and “having” as used herein, and any variations thereof, are intended to cover non-exclusive inclusion, for example, a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those steps or units that are expressly listed, but may include other steps or units that are not expressly listed or that are inherent to such process, method, product, or apparatus.
[0204] Unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the connection within two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated.
[0205] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A cleaning assembly for a base station, characterized in that, Includes a chassis and a cleaning disc body disposed within the chassis; wherein, The chassis includes a cleaning tank, and the cleaning disc body is located inside the cleaning tank; The bottom wall of the cleaning tank includes a confluence section and a drain outlet. The drain outlet is located on the confluence section. In the thickness direction of the cleaning tray body, the height of the confluence section from the bottom of the chassis gradually decreases from the end of the confluence section away from the drain outlet to the drain outlet, so that the water in the confluence section automatically gathers at the drain outlet.
2. The cleaning assembly according to claim 1, characterized in that, The cleaning tray body is equipped with rollers on the side facing the chassis.
3. The cleaning assembly according to claim 2, characterized in that, The bottom wall of the cleaning tank is provided with a support part opposite to the roller. When the cleaning disc body moves relative to the cleaning tank, the roller moves on the support part. In the thickness direction of the cleaning disc body, the height of the support portion to the bottom of the chassis is greater than the height of the confluence portion to the bottom of the chassis.
4. The cleaning assembly according to claim 3, characterized in that, The bottom wall of the cleaning tank further includes a transition section; wherein, The transition section is located between the support section and the confluence section, and the height of the transition section from the bottom of the chassis gradually decreases in the direction from the support section to the confluence section.
5. The cleaning assembly according to claim 4, characterized in that, The transition section is an arc-shaped surface.
6. The cleaning assembly according to any one of claims 1-4, characterized in that, The cleaning plate body is provided with a cleaning brush on the side facing the cleaning tank. The cleaning brush abuts against the confluence part and is used to clean the confluence part.
7. The cleaning assembly according to any one of claims 1-4, characterized in that, The confluence section has an arc-shaped surface.
8. The cleaning assembly according to any one of claims 1-4, characterized in that, A filter structure is provided on the outside of the drain outlet.
9. The cleaning assembly according to any one of claims 1-4, characterized in that, The cleaning tank is a one-piece molded structure.
10. A base station, characterized in that, Includes the cleaning component described in any one of claims 1-9 above.