Cleaning base station and cleaning device

CN224612546UActive Publication Date: 2026-08-11ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]本申请提供一种清洁基站及清洁设备,以解决目前滚刷在清洗过程中难以洗干净,容易产生异味的技术问题

Benefits of technology

[0037] In addition to the technical problems solved by the embodiments of this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that can be solved by the clean base station and clean equipment provided by this application, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments.

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Abstract

This application relates to the field of cleaning product technology, and more particularly to a cleaning base station and cleaning equipment. The cleaning base station provided by this application is used to clean the cleaning structure of a cleaning device. The cleaning base station includes a base station body, a cleaning component, and a drive assembly. The base station body has a cleaning chamber, the cleaning component is disposed within the cleaning chamber, and the drive assembly is disposed within the base station body. The cleaning component is connected to the drive assembly, which drives the cleaning component to rotate around its own axis while moving within the cleaning chamber. When the cleaning device is placed on the cleaning base station, the cleaning component contacts the cleaning structure, thereby cleaning the cleaning structure. The cleaning base station provided by this application cleans the cleaning structure through the cleaning component, resulting in a more thorough cleaning without producing odors.
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Description

Technical Field

[0001] This application relates to the field of cleaning product technology, and in particular to a cleaning base station and cleaning equipment. Background Technology

[0002] Vacuum cleaners, floor scrubbers, mite removers and other cleaning equipment are widely used for environmental cleaning in various indoor and outdoor scenarios. Different cleaning equipment maintains a clean and tidy living and working environment through various functions such as vacuuming and mopping.

[0003] In related technologies, cleaning equipment typically uses a cleaning base station to clean the roller brush. Water is sprayed onto the roller brush, and then the roller brush is rotated, causing the roller cloth on the roller brush to rub and scrub against the raised structure of the cleaning base station, thereby achieving the purpose of cleaning the roller brush.

[0004] However, roller brushes are difficult to clean thoroughly during the washing process and can easily produce odors. Utility Model Content

[0005] This application provides a cleaning base station and cleaning equipment to solve the technical problem that the current roller brush is difficult to clean and easily produces odors during the cleaning process.

[0006] In a first aspect, this application provides a cleaning base station for cleaning a cleaning device's cleaning structure; the cleaning base station includes a base station body, a cleaning component, and a driving assembly, the base station body having a cleaning chamber, the cleaning component being disposed within the cleaning chamber, and the driving assembly being disposed within the base station body;

[0007] The cleaning component is connected to the drive assembly, which drives the cleaning component to rotate around its own axis while moving within the cleaning chamber. When the cleaning device is placed on the cleaning base station, the cleaning component contacts the cleaning structure so that the cleaning component cleans the cleaning structure.

[0008] The cleaning base station provided in this application can clean the cleaning structure of the cleaning device. After the cleaning device is placed in the cleaning base station, the cleaning component comes into contact with the cleaning structure. On the one hand, the cleaning component can rotate around its own axis under the drive of the drive component to wipe the cleaning structure. On the other hand, the cleaning component can move along the cleaning chamber to wipe different positions of the cleaning structure, thereby completing the overall cleaning of the cleaning structure.

[0009] As an optional implementation, the cleaning component is a rotating structure with its axial direction being a first direction. The dimension of the cleaning chamber along the first direction matches the axial length of the cleaning component. The cleaning component moves within the cleaning chamber along a second direction, which is perpendicular to the first direction.

[0010] With this configuration, the cleaning component can clean the cleaning structure along the second direction, improving the cleaning effect.

[0011] As an alternative implementation, the cleaning component is a roller brush, and at least a portion of the surface of the cleaning component has a raised structure, the shape of which matches the shape of the cleaning structure.

[0012] This design allows the raised structure to fit snugly against the surface to be cleaned, ensuring no blind spots and improving cleaning precision.

[0013] As an optional implementation, the drive assembly includes a drive unit, a gear, and a rack. The drive unit has an output shaft connected to the cleaning component. The gear is coaxially connected to the output shaft. The rack is disposed along the edge of the cleaning chamber. The gear meshes with the rack so that when the output shaft drives the gear to rotate, the drive unit drives the cleaning component to move along the length direction of the rack.

[0014] This configuration allows for precise transmission via gears and racks, ensuring consistent cleaning performance.

[0015] As an optional implementation, a switching unit is provided at both ends of the rack along its length. The switching unit is configured to detect the position of the drive unit or the gear so that when the drive unit or the gear moves to both ends of the rack, the direction of rotation of the output shaft is changed.

[0016] With this configuration, the direction of movement of the cleaning component can be changed by the switching unit, allowing the cleaning component to automatically and repeatedly clean different parts of the cleaning structure, thereby improving the cleaning effect.

[0017] As an optional implementation, the cleaning base station also includes a water spraying assembly disposed on the base station body; the water spraying assembly includes at least one water spraying pump configured to supply cleaning water to the cleaning components.

[0018] This setup, with its water spray system providing cleaning water, softens stains and improves cleaning effectiveness.

[0019] As an optional implementation, the sidewall of the cleaning chamber is provided with a plurality of nozzles communicating with a water pump, the nozzles facing into the cleaning chamber, and / or the nozzles facing the cleaning structure.

[0020] This setup allows for precise rinsing via the nozzles, improving cleaning efficiency and saving water.

[0021] As an optional implementation method, the base station body is equipped with a sewage recycling pipeline;

[0022] The sewage recycling pipe is connected to the sewage chamber on the cleaning device; or, the base station body is equipped with a sewage tank, and the sewage recycling pipe is connected to the sewage tank.

[0023] This setup allows for the recycling of both wastewater and clean wastewater from the wastewater chamber via wastewater recycling pipes, facilitating centralized wastewater treatment.

[0024] Secondly, this application provides a cleaning device, including a cleaning apparatus and the aforementioned cleaning base station, wherein the cleaning apparatus can be placed on the cleaning base station.

[0025] As an optional implementation, the cleaning structure of the cleaning device includes a suction chamber and a cleaning component. The cleaning component of the cleaning base station has at least two cleaning sections, each of which is opposite to the suction chamber and the cleaning component, in order to clean the suction chamber and the cleaning component.

[0026] This setup allows for simultaneous and efficient cleaning via a dedicated cleaning section.

[0027] As an optional implementation, at least two cleaning sections include a first cleaning section and a second cleaning section; the suction chamber is located on the front side of the cleaning assembly along the cleaning direction of the cleaning device, the first cleaning section is protruding relative to the second cleaning section, and when the cleaning device is placed on the cleaning base station, the surface of the first cleaning section contacts the cavity wall of the suction chamber.

[0028] The cleaning component includes a scraper and a water spray module, which are arranged adjacent to each other along the cleaning direction of the cleaning component. When the cleaning device is placed on the cleaning base station, the second cleaning section simultaneously contacts the scraper and the water spray module.

[0029] With this setup, the first and second cleaning sections can be used to clean the walls of the suction chamber and the cleaning components respectively, thus improving the cleaning effect.

[0030] As an optional implementation, at least two cleaning segments further include a third cleaning segment, which is connected to the end of the first cleaning segment that is away from the second cleaning segment;

[0031] When the cleaning device is placed on the cleaning base station, the third cleaning section contacts the bottom wall of the cleaning device located in front of the suction chamber.

[0032] With this configuration, when cleaning the cleaning components, the third cleaning section can clean the bottom wall of the cleaning device in front of the suction chamber, thus increasing the cleaning range.

[0033] As an optional implementation, the air suction chamber, scraper, and water spray module all extend along the width direction of the cleaning device; when the cleaning device is placed on the cleaning base station, the length direction of the cleaning chamber matches the width direction of the cleaning device.

[0034] The cleaning component moves along the length of the cleaning chamber; or, the cleaning component moves along the width of the cleaning chamber.

[0035] With this configuration, the cleaning unit can move and clean to cover all areas of the cleaning structure along the width of the cleaning device, avoiding cleaning dead spots.

[0036] This application provides a cleaning base station for cleaning the cleaning structure of a cleaning device. The cleaning base station includes a base station body, a cleaning component, and a drive assembly. The base station body has a cleaning chamber, the cleaning component is disposed within the cleaning chamber, and the drive assembly is disposed within the base station body. The cleaning component is connected to the drive assembly, which drives the cleaning component to rotate around its own axis while moving within the cleaning chamber. When the cleaning device is placed on the cleaning base station, the cleaning component contacts the cleaning structure, thereby cleaning the cleaning structure. The cleaning base station provided by this application cleans the cleaning structure through the cleaning component, resulting in a more thorough cleaning without producing any odor.

[0037] In addition to the technical problems solved by the embodiments of this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that can be solved by the clean base station and clean equipment provided by this application, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments. Attached Figure Description

[0038] 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 this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0039] Figure 1 This is a schematic diagram of the structure of the cleaning equipment provided in the embodiments of this application;

[0040] Figure 2 for Figure 1 A magnified view of part A in the middle;

[0041] Figure 3 This is a schematic diagram of the structure of a clean base station provided in an embodiment of this application;

[0042] Figure 4 This is a schematic diagram of the cleaning device provided in the embodiments of this application;

[0043] Figure 5 for Figure 4 A magnified view of part B in the middle section.

[0044] Explanation of reference numerals in the attached figures:

[0045] 10- Cleaning equipment;

[0046] 100-Clean base station; 110-Base station body; 111-Clean chamber; 120-Clean component; 121-Protruding structure; 122-First cleaning section; 123-Second cleaning section; 124-Third cleaning section; 130-Drive assembly; 131-Drive unit; 1311-Output shaft; 132-Gear; 133-Rack;

[0047] 200-Cleaning device; 210-Cleaning structure; 211-Suction chamber; 212-Cleaning component; 2121-Scraper; 2122-Water spray module; 220-Sewage chamber. Detailed Implementation

[0048] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication between 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.

[0049] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "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. They 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. Therefore, they should not be construed as limitations on this application.

[0050] The terms "first," "second," and "third" (if any) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein.

[0051] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion, such as a process, method, system, product, or maintenance tool that includes a series of steps or units, not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or maintenance tool.

[0052] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0053] Vacuum cleaners, floor scrubbers, mite removers and other cleaning equipment are widely used for environmental cleaning in various indoor and outdoor scenarios. Different cleaning equipment maintains a clean and tidy living and working environment through various functions such as vacuuming and mopping.

[0054] In related technologies, cleaning equipment typically uses a cleaning base station to clean the roller brush. Water is sprayed onto the roller brush, and then the roller brush is rotated, causing the roller cloth on the roller brush to rub and scrub against the raised structure of the cleaning base station, thereby achieving the purpose of cleaning the roller brush.

[0055] However, the roller cloth of this cleaning method is difficult to clean completely, and dirt residue can easily remain, causing odors.

[0056] To solve the above-mentioned technical problems, this application provides a cleaning base station and a cleaning device. The cleaning base station is equipped with a cleaning component, and the cleaning device of the cleaning equipment is placed behind the cleaning base station. The cleaning component can contact the cleaning structure of the cleaning device. The cleaning component can wipe the cleaning structure by rotating around its own axis. The cleaning component can also move to wipe different positions of the cleaning structure. The cleaning component cleans the cleaning structure more thoroughly and will not leave any stains that cause odor.

[0057] The following is an example illustrating the application scenarios of the clean base station and clean equipment provided in the embodiments of this application.

[0058] The applicable product types for the cleaning equipment provided in this application embodiment may include, but are not limited to, floor scrubbers, vacuum cleaners, etc. Depending on the product type, the cleaning equipment provided in this application embodiment can be used to clean surfaces of various materials, such as floor tiles, glass, etc. This application embodiment does not make specific limitations in this regard. The cleaning base station provided in this application embodiment is used to clean the above-mentioned cleaning equipment.

[0059] Figure 1 This is a schematic diagram of the structure of the cleaning equipment provided in the embodiments of this application; Figure 2 for Figure 1 A magnified view of part A in the middle; Figure 3 This is a schematic diagram of the structure of a clean base station provided in an embodiment of this application; Figure 4 This is a schematic diagram of the cleaning device provided in the embodiments of this application; Figure 5 for Figure 4A magnified view of part B in the middle section.

[0060] Reference Figures 1 to 5 As shown, this application provides a cleaning base station 100 for cleaning the cleaning structure 210 of the cleaning device 200. The cleaning base station 100 includes a base station body 110, a cleaning component 120, and a drive assembly 130. The base station body 110 has a cleaning cavity 111, the cleaning component 120 is disposed in the cleaning cavity 111, and the drive assembly 130 is disposed on the base station body 110. The cleaning component 120 is connected to the drive assembly 130, and the drive assembly 130 is used to drive the cleaning component 120 to rotate around its own axis while moving within the cleaning cavity 111. When the cleaning device 200 is placed on the cleaning base station 100, the cleaning component 120 contacts the cleaning structure 210 so that the cleaning component 120 cleans the cleaning structure 210.

[0061] Understandably, the cleaning structure 210 of the cleaning device 200 is used to clean the surface to be cleaned. After the cleaning work is completed, the cleaning structure 210 will have stains or adhered debris. After the cleaning device 200 is placed on the cleaning base station 100, the cleaning structure 210 is opposite to the cleaning chamber 111, and the cleaning structure 210 is completely exposed in the cleaning chamber 111. The cleaning component 120 in the cleaning chamber 111 can make interference contact with the cleaning structure 210 to ensure that the cleaning structure 210 is cleaned. The cleaning component 120 can rotate around its own axis under the drive of the drive component 130. During the rotation, the cleaning component 120 can scrub the cleaning structure 210 to remove stains or adhered debris. At the same time, the cleaning component 120 can move in the cleaning chamber 111 under the drive of the drive component 130 to scrub different positions of the cleaning structure 210, thereby completing the comprehensive cleaning of the cleaning structure 210.

[0062] As one possible implementation, the cleaning component 120 is a rotating structure with its axial direction being a first direction. The size of the cleaning chamber 111 along the first direction matches the axial length of the cleaning component 120. The cleaning component 120 moves within the cleaning chamber 111 along a second direction, which is perpendicular to the first direction.

[0063] Understandably, the surface to be cleaned in the cleaning structure 210 is relatively complex. The cleaning component 120 can be designed as a rotating structure that matches the surface to be cleaned in the cleaning structure 210, so that the cleaning area of ​​the cleaning component 120 during rotational scrubbing matches the surface to be cleaned in the cleaning structure 210, thereby improving cleaning accuracy. Specifically, the dimension of the cleaning chamber 111 along the first direction matches the axial length of the cleaning component 120, that is, the width dimension of the cleaning chamber 111 matches the axial length of the cleaning component 120. This allows the cleaning component 120 to simultaneously scrub all areas of the cleaning structure 210 in the width direction when rotating. Simultaneously, the cleaning component 120 can move within the cleaning chamber 111 along the second direction, that is, along the length direction of the cleaning chamber 111, allowing the cleaning component 120 to scrub different areas of the cleaning structure 210 in the length direction, thus completing a comprehensive cleaning of the cleaning structure 210.

[0064] As an alternative implementation, the cleaning component 120 is a roller brush, and at least a portion of the surface of the cleaning component 120 has a raised structure 121, the shape of which matches the shape of the cleaning structure 210.

[0065] It is understood that the roller brush may include a roller body and a cleaning part. The cleaning part is disposed on the surface of the roller body and is used to contact the cleaning structure 210 and scrub the cleaning structure 210 during the rotation of the roller brush. Corresponding to the recessed area of ​​the cleaning structure 210, the roller body may be protruding, so that part of the cleaning part on the surface of the roller body protrudes, and the protruding part corresponds to the recessed area of ​​the cleaning structure 210. The cleaning part may be made of a material that is easy to dry and does not produce odor, such as brush bristles or soft rubber strips.

[0066] For example, the cleaning part of the roller brush is bristles, which are raised and match the shape of the cleaning structure 210. The bristles are in interference contact with the cleaning structure 210. When the roller brush rotates, the bristles can brush the surface of the cleaning structure 210. The bristles can be made of non-absorbent materials such as polyester fiber and polypropylene. After brushing, the bristles can be rotated and spun dry, which is quick and does not produce odor.

[0067] As one possible implementation, the drive assembly 130 includes a drive unit 131, a gear 132, and a rack 133. The drive unit 131 has an output shaft 1311 connected to the cleaning component 120. The gear 132 is coaxially connected to the output shaft 1311. The rack 133 is arranged along the edge of the cleaning chamber 111. The gear 132 meshes with the rack 133 so that when the output shaft 1311 drives the gear 132 to rotate, the drive unit 131 drives the cleaning component 120 to move along the length direction of the rack 133.

[0068] It is understood that the shaft of gear 132 and the output shaft 1311 of drive unit 131 are both in the first direction, and rack 133 extends in the second direction. After drive unit 131 is started, it can drive output shaft 1311 to drive cleaning component 120 and gear 132 to rotate. The rotation of gear 132 causes cleaning component 120 to move along the length direction of rack 133 to scrub different areas of cleaning structure 210. The linear speed of roller brush rotation can be increased by increasing the diameter ratio of roller brush to gear 132, thereby increasing the cleaning effect of roller brush.

[0069] As one possible implementation, a switching unit is provided at both ends of the rack 133 along its length. The switching unit is configured to detect the position of the drive unit 131 or the gear 132 so that when the drive unit 131 and the gear 132 move to the ends of the rack 133, the direction of rotation of the output shaft 1311 is changed.

[0070] Understandably, when gear 132 rotates to the end of rack 133, i.e., when cleaning component 120 moves to one side of cleaning chamber 111, the switching unit can detect the position of drive unit 131 or gear 132 and be triggered to reverse the output shaft 1311, enabling cleaning component 120 to automatically reciprocate within the length of rack 133 without manual intervention. The switching unit can be positioned 5-10mm before the end of rack 133 to allow for a buffer distance and prevent rigid collisions; limit baffles can be installed at both ends of rack 133 to prevent gear 132 from disengaging; and the end of rack 133 can have a tapered tooth profile for smooth deceleration.

[0071] As one possible implementation, the cleaning base station 100 also includes a water spraying assembly disposed on the base station body 110; the water spraying assembly includes at least one water spraying pump configured to supply cleaning water to the cleaning component 120.

[0072] As one possible implementation, the sidewall of the cleaning chamber 111 is provided with a plurality of nozzles communicating with a water pump, the nozzles facing into the cleaning chamber 111, and / or the nozzles facing the cleaning structure 210.

[0073] It is understandable that after the cleaning structure 210 is covered with stains or debris, it is difficult to clean it by friction alone using the cleaning component 120. Spraying water with a water pump, in conjunction with wiping with the cleaning component 120, can improve the cleaning effect. One end of the water pump can be connected to the cleaning water tank in the base station body 110, and the other end can be connected to multiple nozzles. The multiple nozzles can be directed towards the cleaning chamber 111 to wet the cleaning component 120, or towards the cleaning structure 210 to directly rinse the cleaning structure 210. Alternatively, they can be directed partially towards the cleaning chamber 111 and partially towards the cleaning structure 210.

[0074] As one possible implementation, the base station body 110 is equipped with a sewage recycling pipe; the sewage recycling pipe is connected to the sewage chamber 220 on the cleaning device 200; or, the base station body 110 is equipped with a sewage tank, and the sewage recycling pipe is connected to the sewage tank.

[0075] It is understandable that the sewage recycling pipe can be connected to the sewage chamber 220 on the cleaning device 200, and the sewage in the sewage chamber 220 and the cleaning sewage of the cleaning structure 210 can be discharged to the external sewer by gravity or negative pressure; or the base station body 110 can be equipped with a sewage tank, and the cleaning sewage can be collected into the sewage tank through the sewage recycling pipe. The sewage tank is detachably connected to the base station body 110 for manual water emptying.

[0076] This application also provides a cleaning device 10, including a cleaning device 200 and the aforementioned cleaning base station 100. The cleaning device 200 can be placed in the cleaning base station 100. The cleaning base station 100 can clean the cleaning device 200, or it can not be cleaned and is only used to store the cleaning device 200.

[0077] As one possible implementation, the cleaning structure 210 of the cleaning device 200 includes a suction chamber 211 and a cleaning component 212, and the cleaning component 120 of the cleaning base station 100 has at least two cleaning sections, each of which is opposite to the suction chamber 211 and the cleaning component 212, in order to clean the suction chamber 211 and the cleaning component 212.

[0078] Understandably, due to the complex structure of the cleaning structure 210, the cleaning component 120 may also include other cleaning sections to accommodate different cleaning needs.

[0079] As one possible implementation, at least two cleaning sections include a first cleaning section 122 and a second cleaning section 123; the suction cavity 211 is located on the front side of the cleaning assembly 212 along the cleaning direction of the cleaning device 200, the first cleaning section 122 is protruding relative to the second cleaning section 123, and when the cleaning device 200 is placed on the cleaning base station 100, the surface of the first cleaning section 122 is in contact with the cavity wall of the suction cavity 211; the cleaning assembly 212 includes a scraper 2121 and a water spray module 2122, the scraper 2121 and the water spray module 2122 are arranged adjacent to each other along the cleaning direction of the cleaning assembly 212, and when the cleaning device 200 is placed on the cleaning base station 100, the second cleaning section 123 is in contact with both the scraper 2121 and the water spray module 2122.

[0080] It should be noted that when the cleaning device 200 is placed on the cleaning base station 100, the height of the top wall of the suction cavity 211 is higher than the height of the surface to be cleaned of the cleaning module. Therefore, the diameter of the first cleaning section 122 is greater than the diameter of the second cleaning section 123, that is, the first cleaning section 122 protrudes relative to the second cleaning section 123.

[0081] It should be noted that the second cleaning section 123 can clean the scraper 2121 and the water spray module 2122 through the bristles. The scraper 2121 protrudes downward relative to the water spray module 2122. The scraper 2121 can extend into the bristles, so that the bottom and two sides of the scraper 2121 can be cleaned by the bristles. Alternatively, the bristles at the scraper 2121 are shorter than the bristles on both sides of the scraper 2121, which can prevent the bristles from being squeezed and worn for a long time.

[0082] As one possible implementation, at least two cleaning sections also include a third cleaning section 124, which is connected to the end of the first cleaning section 122 that is away from the second cleaning section 123; when the cleaning device 200 is placed on the cleaning base station 100, the third cleaning section 124 contacts the bottom wall of the cleaning device 200 located in front of the suction cavity 211.

[0083] It should be noted that when the suction chamber 211 of the cleaning device 200 is drawing air, some debris enters the suction chamber 211 from the front side of the cleaning device 200 through the bottom of the cleaning device 200, causing debris to adhere to the bottom wall of the cleaning device 200. When the cleaning device 200 is placed on the cleaning base station 100, the third cleaning section 124 is opposite to and in contact with the bottom wall of the cleaning device 200 located on the front side of the suction chamber 211, so that the bottom wall at this location can also be cleaned. The bottom wall of the cleaning device 200 on the front side of the suction chamber 211 is higher than the cleaning component 212 but lower than the top wall of the suction chamber 211. Correspondingly, the third cleaning section 124 protrudes more than the second cleaning section 123 and is lower than the first cleaning section 122.

[0084] As one possible implementation, the suction chamber 211, the scraper 2121, and the water spray module 2122 all extend along the width direction of the cleaning device 200; when the cleaning device 200 is placed on the cleaning base station 100, the length direction of the cleaning chamber 111 matches the width direction of the cleaning device 200; the cleaning component 120 moves along the length direction of the cleaning chamber 111; or, the cleaning component 120 moves along the width direction of the cleaning chamber 111.

[0085] In some embodiments, the cleaning member 120 moves along the length of the cleaning chamber 111 such that the cleaning range of the cleaning member 120 covers all areas in the width direction of the cleaning device 200.

[0086] In other embodiments, the length of the cleaning component 120 can be the same as the length of the cleaning chamber 111. The cleaning component 120 can clean the cleaning structure 210 with bristles. The bristles can make interference contact with the highest point of the cleaning structure 210, that is, with the top wall of the suction chamber 211. The driving unit 131 can drive the cleaning component 120 to reciprocate along the width direction of the cleaning chamber 111. The driving method is the same as in the above embodiments. During the reciprocating motion, the cleaning component 120 can perform a comprehensive cleaning of the entire cleaning structure 210.

[0087] This application provides a cleaning base station 100 for cleaning the cleaning structure 210 of a cleaning device 200. The cleaning base station 100 includes a base station body 110, a cleaning component 120, and a drive assembly 130. The base station body 110 has a cleaning cavity 111, the cleaning component 120 is disposed within the cleaning cavity 111, and the drive assembly 130 is disposed on the base station body 110. The cleaning component 120 is connected to the drive assembly 130, which drives the cleaning component 120 to rotate around its own axis while moving within the cleaning cavity 111. When the cleaning device 200 is placed on the cleaning base station 100, the cleaning component 120 contacts the cleaning structure 210, thereby cleaning the cleaning structure 210. The cleaning base station 100 provided by this application cleans the cleaning structure 210 through the cleaning component 120, resulting in a more thorough cleaning without producing any odor.

[0088] 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 clean base station, characterized in that, A cleaning structure (210) for cleaning the cleaning device (200); the cleaning base station (100) includes a base station body (110), a cleaning component (120) and a drive assembly (130), the base station body (110) has a cleaning chamber (111), the cleaning component (120) is disposed in the cleaning chamber (111), and the drive assembly (130) is disposed on the base station body (110). The cleaning component (120) is connected to the driving assembly (130), which drives the cleaning component (120) to rotate around its own axis while moving within the cleaning chamber (111); when the cleaning device (200) is placed on the cleaning base station (100), the cleaning component (120) contacts the cleaning structure (210) so that the cleaning component (120) cleans the cleaning structure (210).

2. The clean base station according to claim 1, characterized in that, The cleaning component (120) is a rotating body structure. The axial direction of the cleaning component (120) is a first direction. The dimension of the cleaning chamber (111) along the first direction matches the axial length of the cleaning component (120). The cleaning component (120) moves in the cleaning chamber (111) along a second direction, which is perpendicular to the first direction.

3. The clean base station according to claim 1, characterized in that, The cleaning component (120) is a roller brush, and at least a portion of the surface of the cleaning component (120) has a raised structure (121) whose shape matches the shape of the cleaning structure (210).

4. The clean base station according to claim 1, characterized in that, The drive assembly (130) includes a drive unit (131), a gear (132), and a rack (133). The drive unit (131) has an output shaft (1311) connected to the cleaning component (120). The gear (132) is coaxially connected to the output shaft (1311). The rack (133) is arranged along the edge of the cleaning chamber (111). The gear (132) meshes with the rack (133) so that when the output shaft (1311) drives the gear (132) to rotate, the drive unit (131) drives the cleaning component (120) to move along the length direction of the rack (133).

5. The clean base station according to claim 4, characterized in that, Switching units are provided at both ends of the rack (133) along its length. The switching units are configured to detect the position of the drive unit (131) or the gear (132) so that when the drive unit (131) and the gear (132) move to the two ends of the rack (133), the direction of rotation of the output shaft (1311) is changed.

6. The clean base station according to claim 1, characterized in that, The cleaning base station (100) also includes a water spraying assembly disposed on the base station body (110); the water spraying assembly includes at least one water spraying pump configured to supply cleaning water to the cleaning component (120).

7. The clean base station according to claim 6, characterized in that, The sidewall of the cleaning chamber (111) is provided with a plurality of nozzles that communicate with the water pump, the nozzles facing into the cleaning chamber (111) and / or the nozzles facing the cleaning structure (210).

8. The clean base station according to claim 1, characterized in that, The base station body (110) is equipped with a sewage recycling pipe; The sewage recycling pipe is connected to the sewage chamber (220) on the cleaning device (200); or, the base station body (110) is provided with a sewage tank, and the sewage recycling pipe is connected to the sewage tank.

9. A cleaning device, characterized in that, Includes a cleaning device (200) and a cleaning base station (100) as described in any one of claims 1-8, wherein the cleaning device (200) may be placed in the cleaning base station (100).

10. The cleaning equipment according to claim 9, characterized in that, The cleaning structure (210) of the cleaning device (200) includes a suction chamber (211) and a cleaning component (212). The cleaning component (120) of the cleaning base station (100) has at least two cleaning sections, each of which is opposite to the suction chamber (211) and the cleaning component (212) to clean the suction chamber (211) and the cleaning component (212).

11. The cleaning equipment according to claim 10, characterized in that, The at least two cleaning sections include a first cleaning section (122) and a second cleaning section (123); the suction cavity (211) is located on the front side of the cleaning assembly (212) along the cleaning direction of the cleaning device (200), the first cleaning section (122) is protruding relative to the second cleaning section (123), and when the cleaning device (200) is placed on the cleaning base station (100), the surface of the first cleaning section (122) is in contact with the cavity wall of the suction cavity (211); The cleaning component (212) includes a scraper (2121) and a water spray module (2122). The scraper (2121) and the water spray module (2122) are arranged adjacent to each other along the cleaning direction of the cleaning component (212). When the cleaning device (200) is placed on the cleaning base station (100), the second cleaning section (123) simultaneously contacts the scraper (2121) and the water spray module (2122).

12. The cleaning equipment according to claim 11, characterized in that, The at least two cleaning segments further include a third cleaning segment (124), which is connected to the end of the first cleaning segment (122) away from the second cleaning segment (123); When the cleaning device (200) is placed on the cleaning base station (100), the third cleaning section (124) contacts the bottom wall of the cleaning device (200) located in front of the air suction chamber (211).

13. The cleaning equipment according to claim 11, characterized in that, The air suction chamber (211), the scraper (2121), and the water spray module (2122) all extend along the width direction of the cleaning device (200); when the cleaning device (200) is placed on the cleaning base station (100), the length direction of the cleaning chamber (111) matches the width direction of the cleaning device (200); The cleaning component (120) moves along the length of the cleaning chamber (111); or, the cleaning component (120) moves along the width of the cleaning chamber (111).