Cleaning system

By designing the base station support cleaning module in the cleaning device, the cleaning belt is in close contact with the conveying slope, the problem of incomplete cleaning of the cleaning device is solved, the cleaning efficiency and garbage removal rate are improved, and the generation of bacteria and odors is reduced.

CN223111646UActive Publication Date: 2025-07-18SHENZHEN CURIOSITY EXPLORATION TECH CO LTD
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Patent Information

Application Number
CN202421538827.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-01
Publication Date
2025-07-18
Estimated Expiration
2034-07-01

AI Technical Summary

Technical Problem

After the existing cleaning device cleans up the garbage, some parts will be stored. If it is not cleaned for a long time, bacteria and odor will be generated, and the cleaning efficiency will be low.

Method used

A cleaning system is designed, including a base station and a cleaning device. The cleaning device includes a main frame and a cleaning module. The cleaning module is supported by the base station and is located under the support plane. The cleaning belt is driven to contact the conveying slope with the second roller, thereby improving the contact force between the cleaning belt and the conveying slope and enhancing cleaning efficiency.

Benefits of technology

It improves the effective contact between the cleaning belt and the conveying slope, enhances the cleaning efficiency, improves the removal rate of garbage on the conveying slope, and reduces the generation of bacteria and odors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cleaning system, and relates to the technical field of cleaning. The cleaning system comprises a base station and a cleaning device, the cleaning device comprises a main frame and a cleaning module, the main frame is provided with a conveying slope, the cleaning module comprises a first roller, a second roller, a connecting rod assembly and a cleaning belt, the cleaning belt abuts against the front side of the conveying slope, and the second roller abuts against a to-be-cleaned surface in a working mode; the base station is provided with a bearing surface, the bearing surface is used for supporting the main frame, the cleaning module is partially located below the supporting plane, and the cleaning device further drives the second roller to rotate in the self-cleaning mode. The base station is used for supporting the cleaning device, so that the cleaning module is partially located below the supporting plane, effective contact between the cleaning belt and the conveying slope is improved, then the cleaning efficiency is improved in the self-cleaning mode, and the removal rate of garbage accumulated on the conveying slope is increased.
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Description

Technical Field

[0001] This application relates to the field of cleaning technology, and particularly to a cleaning device. Background Art

[0002] Cleaning devices can assist users in cleaning during home life. Some existing cleaning devices, such as floor mopping machines and floor sweeping robots, generally drive a cleaning belt to mop the surface to be cleaned by rolling a roller. However, after the cleaning device finishes cleaning the garbage, some components will retain garbage, and bacteria and odors will be generated if not cleaned for a long time. Summary of the Utility Model

[0003] This application provides a cleaning system. The cleaning system includes a base station and a cleaning device. The cleaning device includes a main frame and a cleaning module. The main frame is provided with a transfer inclined plane. The cleaning module includes a first roller, a second roller, a connecting rod assembly, and a cleaning belt. One end of the first roller and the connecting rod assembly is rotatably supported on the main frame. The first roller can rotate around a first axis, and the connecting rod assembly can swing around a second axis parallel to the first axis. The second roller is supported at the other end of the connecting rod assembly and can rotate around a third axis parallel to the first axis. The cleaning belt is annularly arranged around the outer peripheries of the first roller and the second roller. The cleaning belt abuts against the front side of the transfer inclined plane and, in the working mode, is pressed against the surface to be cleaned by the second roller. Then, when the second roller rotates along a first direction, the garbage on the surface to be cleaned is conveyed from the lower end of the transfer inclined plane to the upper end of the transfer inclined plane. The main frame has a supporting plane that contacts the surface to be cleaned;

[0004] The base station is provided with a bearing surface for supporting the main frame and making part of the cleaning module located below the supporting plane. The cleaning device further drives the second roller to rotate in the self-cleaning mode.

[0005] The technical effect brought by this application is as follows: This application supports the cleaning device through the base station, making part of the cleaning module located below the supporting plane. Compared with the cleaning module being located on the supporting plane, it can effectively improve the contact force between the cleaning belt and the transfer inclined plane, thereby enhancing the effective contact between the cleaning belt and the transfer inclined plane, and further improving the cleaning efficiency and the removal rate of the garbage accumulated on the transfer inclined plane in the self-cleaning mode. Description of the Drawings

[0006] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the accompanying drawings required for the description of the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0007] Figure 1 Structural schematic diagram of the cleaning system in some embodiments of the present application;

[0008] Figure 2 Is Figure 1 Structural schematic diagram of the cleaning device in the illustrated embodiment;

[0009] Figure 3 Is Figure 2 Structural schematic diagram of the cleaning main body in some embodiments in the illustrated embodiment;

[0010] Figure 4 Is Figure 3 Partial exploded schematic diagram of the cleaning main body in the illustrated embodiment;

[0011] Figure 5 Is Figure 4 Structural schematic diagram of the cooperation between the base 11 and the scraper assembly in the illustrated embodiment;

[0012] Figure 6 Is Figure 3 Cross-sectional schematic diagram of the cleaning main body at line VI-VI in the illustrated embodiment;

[0013] Figure 7 Is Figure 6 Structural schematic diagram of the cleaning main body on the surface to be cleaned in the illustrated embodiment;

[0014] Figure 8 Is Figure 6 Structural schematic diagram of the cooperation between the cleaning module, the conveying part, and the introducing part in

[0015] Figure 9 Is Figure 6 Partial structural schematic diagram of the cleaning main body in the illustrated embodiment;

[0016] Figure 10 Is Figure 8 Structural schematic diagram of the conveying part in some embodiments in the illustrated embodiment;

[0017] Figure 11 Is Figure 8 Structural schematic diagram of the cooperation between the cleaning module, the conveying part, and the introducing part in some embodiments in the illustrated embodiment;

[0018] Figure 12 Is Figure 8Schematic diagram of the structure of the cleaning module cooperating with the conveying part and the introducing part in the illustrated embodiment;

[0019] Figure 13 For Figure 12 Schematic diagram of the structure of the cleaning module cooperating with the conveying part and the introducing part in the illustrated embodiment;

[0020] Figure 14 For Figure 8 Schematic diagram of the structure of the cleaning module cooperating with the conveying part and the introducing part in the illustrated embodiment;

[0021] Figure 15 For Figure 14 Schematic diagram of the structure of the conveying part in the illustrated embodiment;

[0022] Figure 16 For Figure 1 Cross-sectional schematic diagram of the cleaning system at XV-XV in the illustrated embodiment;

[0023] Figure 17 For Figure 16 Schematic diagram of the structure of the base station in the illustrated embodiment. Detailed implementation manners

[0024] The following further describes the present application in detail in conjunction with the accompanying drawings and embodiments. It should be specifically noted that the following embodiments are only used to illustrate the present application, but do not limit the scope of the present application. Similarly, the following embodiments are only partial embodiments of the present application rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present application.

[0025] When the present application mentions "embodiment", it means that the specific features, structures or characteristics described in combination with the embodiment may be included in at least one embodiment of the present application. Those skilled in the art explicitly and implicitly understand that the embodiments described in the present application can be combined with other embodiments.

[0026] In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions conflicts with each other or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present application.

[0027] The present application describes a cleaning system. The cleaning system can be used in daily cleaning work and can clean the surface to be cleaned. For example, it can clean the garbage affecting floor cleaning such as particulate matter, thread-like objects, debris, strip-shaped objects, sheet-shaped objects, liquids, stains, etc. on the surface to be cleaned. Specifically, based on the design requirements of the cleaning system, the cleaning system can clean the garbage corresponding to the design requirements.

[0028] The surface to be cleaned can exist on the ground, stairs, floor, desktop, or other structures where garbage may exist and need to be cleaned, which will not be elaborated here.

[0029] Please refer to Figure 1 , Figure 1 which is a schematic structural diagram of the cleaning system in some embodiments of the present application. The cleaning system 100 may include a cleaning device 101 and a base station 102. The cleaning device 101 can be used to clean the surface to be cleaned and remove the garbage on the surface to be cleaned. The base station 102 can be used to store the cleaning device 101. Of course, the cleaning device 101 may not be stored on the base station 102. In some embodiments, the cleaning device 101 may have a working mode. In the working mode, the cleaning device 101 can be used to clean the surface to be cleaned. In some embodiments, the cleaning device 101 may have a self-cleaning mode. When the cleaning device 101 is placed on the base station 102, the cleaning device 101 can start the self-cleaning mode under the control of the user and / or intelligent control. When the cleaning device 101 is cleaning garbage, some garbage may remain on some structures of the cleaning device 101 due to reasons such as being not transported in place, consolidation, adhesion, small volume, etc., resulting in some structures of the cleaning device 101 becoming dirty. In the self-cleaning mode, the cleaning device 101 can be used to clean and relocate the garbage that is not transported in place, consolidated, adhered, small in volume, etc., and clean some of its own structures. Of course, the cleaning device 101 can also perform the self-cleaning mode without the cooperation of the base station 102, but with the cooperation of other structures or the user.

[0030] Please refer to Figure 1 and Figure 2 , Figure 2 which is Figure 1 a schematic structural diagram of the cleaning device 101 in the illustrated embodiment. The cleaning device 101 may include a cleaning main body 103 and a handle 104. The cleaning main body 103 can be the main body for the cleaning device 101 to clean the surface to be cleaned. The cleaning main body 103 can be placed on the base station 102. The handle 104 can be connected to the cleaning main body 103. The handle 104 can be held by the user. The user can control the cleaning main body 103 through the handle 104 for cleaning and / or moving. In some embodiments, the cleaning main body 103 and the handle 104 can cooperate to accommodate liquids, batteries, processors, control panels, and / or control buttons for cleaning, etc.

[0031] In Figure 2 , the user can hold the handle 104 and control the cleaning main body 103 to move in the front-back direction, such as moving forward, moving backward, or moving back and forth, and of course, can also control the cleaning main body 103 to turn and move.

[0032] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present application are only used to explain the relative positional relationship and movement conditions between components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0033] In some embodiments, the handle 104 can be omitted, and the cleaning body 103 can be cleaned and / or moved under intelligent control.

[0034] Please refer to Figure 3 and Figure 4 , Figure 3 For Figure 2 the structural schematic diagram of the cleaning body 103 in the illustrated embodiment in some embodiments, Figure 4 For Figure 3 the partial exploded schematic diagram of the cleaning body 103 in the illustrated embodiment. The cleaning body 103 may include a main frame 10, a cleaning module 20, a scraper 30, and a storage box 40. The cleaning module 20, the scraper 30, and the storage box 40 are all installed on the main frame 10. The cleaning module 20 can be used to clean the garbage on the surface to be cleaned and can transport the garbage to the storage box 40 in cooperation with the main frame 10. The scraper 30 can clean the garbage on the cleaning module 20, so that the garbage falls off the cleaning module 20 and is further transported to the storage box 40. The storage box 40 can collect and store the garbage.

[0035] The main frame 10 may include a base 11, a flip cover 12, and a wheel body 13. The flip cover 12 and the wheel body 13 can be arranged on the base 11. The base 11 can form an installation space 1001 for installing the cleaning module 20, the scraper 30, and the storage box 40. The flip cover 12 is connected to the base 11. The wheel body 13 can realize the movement of the base 11 on the surface to be cleaned.

[0036] It should also be noted that when an element is referred to as "fixed to" or "disposed on" another element, it can be directly on the other element or there may be an intermediate element at the same time. When an element is referred to as "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time.

[0037] Please refer to Figure 3 , Figure 4 and Figure 5 , Figure 5 For Figure 4Schematic structural diagram of the cooperation between the base 11 and the squeegee 30 in the illustrated embodiment. The base 11 can be a housing structure or a frame structure. In some embodiments, the base 11 may include a bottom wall 111, a top wall 112, a first side wall 113, and a second side wall 114. The bottom wall 111 and the top wall 112 are oppositely arranged. The first side wall 113 and the second side wall 114 are oppositely arranged. The bottom wall 111, the first side wall 113, the top wall 112, and the second side wall 114 may be sequentially connected. In some embodiments, the base 11 is provided with an installation space 1001 to carry and install the cleaning module 20, the squeegee 30, and the storage box 40. In some embodiments, the installation space 1001 may be at least formed by enclosing the bottom wall 111, the top wall 112, the first side wall 113, and the second side wall 114.

[0038] Of course, in some embodiments, the base 11 may further include other side walls, which will not be elaborated.

[0039] In some embodiments, Figure 3 a card slot 1111 is provided on the bottom wall 111 in to cooperate with the base station 102 for positioning and limiting, so as to improve the stability of the cleaning body 103 when placed on the base station 102. In some scenarios, the card slot 1111 may also be provided on other structures in the base 11, for example, it may be provided on the first side wall 113 and the second side wall 114. Of course, the card slot 1111 may also be provided on other structures in the cleaning body 103 according to design requirements, which will not be elaborated.

[0040] In some embodiments, Figure 3 a first electrical connection end 1131 is provided on the first side wall 113 in, so that the cleaning device 101, such as the cleaning body 103, is electrically connected to the base station 102 or other devices through the first electrical connection end 1131. Furthermore, the charging operation of the cleaning device 101 can be realized, the control of the base station 102 or other devices by the cleaning device 101 can also be realized. Of course, the interaction between the cleaning device 101 and the base station 102 or other devices can also be realized. Moreover, the system upgrade or maintenance of the cleaning device 101, such as the cleaning body 103, can also be realized. Of course, the first electrical connection end 1131 may also be selectively provided on other parts of the cleaning device 101, such as the cleaning body 103, according to the needs of those skilled in the art.

[0041] It can be understood that the structural setting of the base 11 is not limited to the above embodiments, and it can also be set structurally in other ways, which will not be elaborated.

[0042] Please refer to Figure 4 、 Figure 5 、 Figure 6 and Figure 7 , Figure 6 is Figure 3 the cross-sectional schematic diagram of the cleaning body 103 at the line VI-VI in the illustrated embodiment,Figure 7 As shown in Figure 6 FIG. 0, a schematic structural diagram of the cleaning main body 103 on the surface to be cleaned. The base 11 is provided with a conveying part 115 inside the installation space 1001. The conveying part 115 can cooperate with the cleaning module 20 to pick up and / or convey garbage.

[0043] In some embodiments, the conveying part 115 can scrape the surface to be cleaned to gather garbage. In some embodiments, the conveying part 115 can cooperate with the cleaning module 20 to pick up the garbage on the surface to be cleaned. In some embodiments, the conveying part 115 can cooperate with the cleaning module 20 to convey the garbage to the storage box 40.

[0044] The conveying part 115 can divide the installation space 1001 into a containing space 1002 and a storage space 1003. The containing space 1002 is located on the front side of the conveying part 115 for containing the cleaning module 20. The storage space 1003 is located on the rear side of the conveying part 115 for containing the storage box 40. The conveying part 115 can cooperate with the cleaning module 20 to convey the garbage from the containing space 1002 to the storage space 1003.

[0045] A conveying inclined surface 1151 is arranged on the front side of the conveying part 115. The conveying inclined surface 1151 can cooperate with the cleaning module 20 so that the garbage can be conveyed from the lower end of the conveying inclined surface 1151 to the upper end of the conveying inclined surface 1151.

[0046] The upper end of the conveying inclined surface 1151 is more backward than the lower end of the conveying inclined surface 1151, while the lower end of the conveying inclined surface 1151 is more forward than the upper end of the conveying inclined surface 1151. The combination of the slope of the conveying inclined surface 1151 and the parameters of the upper end of the conveying inclined surface 1151 can ensure the garbage conveying height while meeting the garbage conveying capacity of the cleaning main body 103, so that the storage box 40 has a deeper garbage cavity.

[0047] A dropping port 1004 is arranged on the base 11. The dropping port 1004 is arranged near the upper end of the conveying inclined surface 1151 and can communicate the containing space 1002 and the storage space 1003. Thus, when the garbage is located at the upper end of the conveying inclined surface 1151, it can fall into the storage box 40 in the storage space 1003 from the dropping port 1004.

[0048] Please refer to Figure 4 , Figure 5 , Figure 6 and Figure 7 , the base 11 can be provided with a guiding part 116 at the bottom of the conveying part 115. The guiding part 116 is located on one side of the conveying inclined surface 1151 extending towards the surface to be cleaned. In some embodiments, the guiding part 116 can contact the surface to be cleaned or have a slight gap with the surface to be cleaned.

[0049] The introduction part 116 can be used to perform at least one of the following functions: scraping the garbage on the surface to be cleaned, cooperating with the cleaning module 20 to pick up the garbage on the surface to be cleaned, and cooperating with the cleaning module 20 to convey the garbage to the transfer slope 1151.

[0050] The introduction part 116 can be arranged near the lower end of the transfer slope 1151, and the surface of the introduction part 116 cooperating with the cleaning module 20 can be transitionally connected to the transfer slope 1151. The introduction part 116 can cooperate with the cleaning module 20 to clean the garbage on the surface to be cleaned, and can convey the garbage to the transfer slope 1151.

[0051] When the cleaning main body 103 cleans the surface to be cleaned, the introduction part 116 scrapes the garbage on the surface to be cleaned, or can gather the garbage together. The introduction part 116 cooperates with the cleaning module 20 to pick up the garbage on the surface to be cleaned, and can convey the garbage to the transfer slope 1151.

[0052] In some embodiments, when the transfer part 115 can implement at least part of the functions of the introduction part 116, the introduction part 116 can be omitted.

[0053] Please refer to Figure 4 、 Figure 6 and Figure 7 , the flip cover 12 can be used to perform maintenance, assembly and cleaning of the cleaning main body 103. The flip cover 12 can be connected to the base 11 on the front side of the base 11.

[0054] An assembly port can be formed on the front side of the base 11, and the flip cover 12 can be covered at the assembly port to cover the assembly port. The assembly port can be communicated with the accommodation space 1002.

[0055] In some embodiments, the assembly port can be formed on the front side of the base 11 when the bottom wall 111, the top wall 112, the first side wall 113 and the second side wall 114 are enclosed. In some embodiments, the assembly port can be arranged on the top wall 112.

[0056] It can be understood that in this application, the descriptions involving "first", "second", etc. are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" can explicitly or implicitly include at least one such feature.

[0057] In some embodiments, the flip cover 12 can be connected to at least one of the top wall 112, the first side wall 113 and the second side wall 114. In some embodiments, the flip cover 12 can be a part of the base 11.

[0058] Please refer to Figure 3, the wheel body 13 can be arranged on the base 11, such as on the bottom wall 111. The wheel body 13 can roll, thereby enabling the movement of the cleaning main body 103. In some embodiments, a motor can be arranged inside the cleaning main body 103 to drive the rotation of the wheel body 13. In some embodiments, the wheel body 13 can also be arranged on other structures in the base 11, such as on the first side wall 113 and the second side wall 114, which will not be elaborated.

[0059] The arrangement of the wheel body 13 can form a support plane PL for contacting the surface to be cleaned (as Figure 6 shown).

[0060] In some embodiments, the wheel body 13 can include a front wheel body 131 and a rear wheel body 132. The front wheel body 131 is more forward than the rear wheel body 132, and the rear wheel body 132 is more backward than the front wheel body 131. In some embodiments, the card slot 1111 can be located between the front wheel body 131 and the rear wheel body 132. In some embodiments, the guiding portion 116 can be more forward than the front wheel body 131. In some embodiments, the forward direction can be the traveling direction.

[0061] Please refer to Figure 3 and Figure 4 , the cleaning module 20 can be installed on the base 11 and can abut against the front side of the guiding portion 116 and / or the conveying inclined surface 1151. The cleaning module 20 can extend out of the accommodation space 1002 from the assembly opening and is used to contact the surface to be cleaned to achieve the cleaning of garbage.

[0062] Please refer to Figure 4 , Figure 6 and Figure 7 , the cleaning module 20 can include a first roller 21, a second roller 22, a connecting rod assembly 23, and a cleaning belt 24. One end of the first roller 21 and the connecting rod assembly 23 is rotatably supported on the base 11, and the second roller 22 is supported at the other end of the connecting rod assembly 23. The cleaning belt 24 is annularly arranged around the peripheries of the first roller 21 and the second roller 22. When the first roller 21 and / or the second roller 22 rotates, the cleaning belt 24 is driven to rotate.

[0063] The first roller 21 can be rotatably connected to the base 11. For example, it is rotatably connected to the first side wall 113 and the second side wall 114. Of course, according to the structural requirements of the base 11, the first roller 21 can also be rotatably connected to other parts of the base 11.

[0064] In some embodiments, the first roller 21 can be arranged adjacent to the upper end of the conveying inclined surface 1151. In some embodiments, the first roller 21 can be located above the dropping opening 1004.

[0065] The connecting rod assembly 23 can be rotatably connected to the base 11. For example, it can be rotatably connected to the first side wall 113 and the second side wall 114. Of course, under the structural requirements of the base 11, the connecting rod assembly 23 can also be rotatably connected to other parts of the base 11.

[0066] It can be understood that when the connecting rod assembly 23 is rotatably connected to the base 11, the connecting rod assembly 23 can swing when rotating.

[0067] In some embodiments, a motor may be provided in the connecting rod assembly 23, and the motor may be in transmission connection with the first roller 21 and / or the second roller 22, so as to drive the first roller 21 and / or the second roller 22 to rotate, thereby driving the cleaning belt 24 to rotate. In some embodiments, the motor may be provided on the base 11.

[0068] In some embodiments, the connecting rod assembly 23 may not be rotatably connected to the base 11, but may be rotatably connected to the first roller 21, so as to be indirectly rotatably connected to the base 11 through the first roller 21. In some embodiments, the first roller 21 may not be rotatably connected to the base 11, but may be rotatably connected to the connecting rod assembly 23, so as to be indirectly rotatably connected to the base 11 through the connecting rod assembly 23.

[0069] In some embodiments, the first roller 21 and the connecting rod assembly 23 can both rotate around a first axis. In some embodiments, the first roller 21 can rotate around the first axis, and the connecting rod assembly 23 can rotate around a second axis. The second axis is parallel to the first axis.

[0070] In some embodiments, the second axis may be coaxial with the first axis or may be non-coaxial with the first axis, that is, the second axis and the first axis are on the same line.

[0071] The second roller 22 can be rotatably connected to the connecting rod assembly 23 and can rotate around the third axis. In some embodiments, the third axis is arranged parallel to the first axis. In some embodiments, the second roller 22 is arranged adjacent to the lower end of the conveying inclined surface 1151.

[0072] The cleaning belt 24 may be pressed against the front side of the introduction portion 116 and / or the conveying inclined surface 1151 , or may be pressed against the surface to be cleaned.

[0073] When the cleaning belt 24 rotates, it can clean the garbage on the surface to be cleaned, and can cooperate with the introduction part 116 to clean and pick up the garbage on the surface to be cleaned, and can transport the garbage to the conveying slope 1151. The cleaning belt 24 cooperates with the conveying slope 1151 to convey the garbage from the lower end of the conveying slope 1151 to the upper end of the conveying slope 1151, and further transport it to the storage box 40.

[0074] The cleaning belt 24 can be pressed against the surface to be cleaned by the second roller 22 to increase the pressure between the cleaning belt 24 and the surface to be cleaned and improve the cleaning effect. In some embodiments, during the process of placing the cleaning main body 103 on the surface to be cleaned, the link assembly 23 can swing to support the cleaning module 20 by the surface to be cleaned as much as possible, so that the second roller 22 presses the cleaning belt 24 against the surface to be cleaned. In some embodiments, when the cleaning main body 103 contacts the garbage on the surface to be cleaned during cleaning, it can be supported by the garbage, and then the link assembly 23 can swing to lift the second roller 22 and the cleaning belt 24 over the garbage on the surface to be cleaned. The cleaning belt 24 can be made of a water-absorbing material. Of course, in order to improve the cleaning effect, the cleaning belt 24 can also be provided with a multi-layer structure.

[0075] Please refer to Figure 8 , Figure 8 is Figure 6 a schematic structural diagram of the cooperation between the cleaning module 20 and the conveying part 115 and the introducing part 116 in []. The cleaning belt 24 can include a base layer 241 wound around the outer peripheries of the first roller 21 and the second roller 22 and a fluff layer 242 provided on the outer peripheral surface of the base layer 241. The base layer 241 can serve as the main body of the cleaning belt 24 to realize the arrangement of the cleaning belt 24 on the first roller 21 and the second roller 22 and is used to arrange the fluff layer 242. The fluff layer 242 serves as the cleaning layer of the cleaning belt 24. When the cleaning belt 24 is stressed, the fluff layer 242 will be stressed to generate an interference amount, so that the fluff layer 242 is compressed. The arrangement of the fluff layer 242 can improve the cleaning ability of the cleaning belt 24.

[0076] It should be noted that regardless of the state of the cleaning belt 24, when it is not worn, the fluff length of the fluff layer 242 remains unchanged, and the fluff length of the fluff layer 242 mentioned in this article refers to the length of the fluff when it is not worn and in a natural stretched state.

[0077] And the cleaning belt 24 described in this application may be in three states:

[0078] The first state is that the cleaning belt 24 is in the factory state, the cleaning belt 24 is not wetted by liquid and is in a dry state. At this time, the fluff layer 242 is relatively fluffy, and when the fluff layer 242 is pressed against the ground to be cleaned, there will be a large deformation;

[0079] The second state is that after the cleaning belt 24 has been running for a period of time after leaving the factory and the cleaning belt 24 is not wetted by liquid and is in a dry state. For example, running in a fixed direction (such as Figure 6 the counterclockwise direction or the clockwise direction in []) for at least 5 hours, the fluff layer 242 will be relatively compacted. When the fluff layer 242 is pressed against the ground to be cleaned, the degree of deformation is relatively reduced;

[0080] In the third state, the cleaning belt 24 runs for at least 5 hours after leaving the factory state, and the cleaning belt 24 is liquid-infiltrated. When the cleaning belt 24 is pressed against the ground to be cleaned, the degree of deformation will be further reduced.

[0081] Furthermore, in the description of the present application, the interference amount of any component mentioned with respect to the fluff layer 242 refers to the difference obtained by subtracting the distance between the component and the base layer 241 from the fluff length of the fluff layer 242. In addition, if the distance between the component and the base layer 241 is variable, the minimum distance between the component and the base layer 241 can be used to calculate the interference amount with respect to the fluff layer 242.

[0082] In the above-mentioned second state, the cleaning belt 24 is naturally wound around the first roller 32 and the second roller 33, and when it is not subjected to force (such as the acting force between the ground to be cleaned, the conveying part 115 or the guiding part 116), it can be considered to be in a natural state. Furthermore, both the cleaning belt 24 and the fluff layer 242 can have a natural thickness (which can also be called "the thickness in the natural state").

[0083] Please refer to Figure 6 and Figure 7 , when the cleaning module 20 is not in contact with the surface to be cleaned, the link assembly 23 can swing, enabling a part of the cleaning module 20, such as the cleaning belt 24, to be located below the support plane PL. At this time, based on the gravity of the cleaning module 20, the cleaning belt 24 can be pressed against the guiding part 116 and / or the conveying inclined plane 1151. Of course, at this time, part of the second roller 22 can also be located below the support plane PL, or the second roller 22 can be entirely located above the support plane PL.

[0084] Optionally, when the cleaning module 20 mentioned in the present application is located below the support plane PL, it can be the lowest point of the cleaning module 20, that is, the lowest point of the cleaning belt 24 is located below the support plane PL, or it can be a part of the cleaning module 20, that is, a part of the cleaning belt 24 is located below the support plane PL, or it can be a part of the cleaning module 20, that is, a part of the cleaning belt 24 and the second roller 22 are located below the support plane PL, and no limitation is made here.

[0085] When the cleaning module 20 is in contact with the surface to be cleaned, the cleaning module 20 can be supported by the surface to be cleaned and can be located on the support plane PL. Of course, due to the structural limitations of the surface to be cleaned, the cleaning module 20 will deviate from the support plane PL, but it can still be supported by the surface to be cleaned. At this time, based on the gravity of the cleaning module 20 being shared by the surface to be cleaned, when the cleaning belt 24 is pressed against the guiding part 116 and / or the conveying inclined plane 1151, compared with the situation where the cleaning module 20 is not in contact with the surface to be cleaned, the pressure of the cleaning belt 24 on the guiding part 116 and / or the conveying inclined plane 1151 is reduced.

[0086] In addition, compared with the case where the cleaning module 20 contacts the surface to be cleaned, the cleaning module 20 not contacting the surface to be cleaned can further increase the interference amount between the cleaning belt 24 and the inlet portion 116, and / or the interference amount between the cleaning belt 24 and the transfer inclined surface 1151.

[0087] Please refer to Figure 6 and Figure 7 , when the cleaning module 20 does not contact the surface to be cleaned, the second roller 22 and the cleaning belt 24 are in a suspended state without contacting the surface to be cleaned. Then, the cleaning main body 103 can start the self-cleaning mode, and the inlet portion 116 and / or the transfer inclined surface 1151 can be cleaned by the cleaning belt 24.

[0088] It can be understood that the suspended state means that the second roller 22 and the cleaning belt 24 do not contact the structures other than the cleaning device 101, but are supported by the cleaning device 101, such as the inlet portion 116 and / or the transfer inclined surface 1151. At this time, it can also be said that the cleaning module 20 is in a suspended state.

[0089] Optionally, in some scenarios, the cleaning module 20 is carried on the inlet portion 116 and / or the transfer inclined surface 1151 under the action of gravity and is subjected to the pulling force of the main frame 10. The cleaning module 20, such as the cleaning belt 24, is spaced apart from the surface to be cleaned.

[0090] In some embodiments, in the self-cleaning mode, the second roller 22 can rotate in the first direction, thereby driving the cleaning belt 24 to rotate in the first direction. Further, the cleaning belt 24 can clean the inlet portion 116 and / or the transfer inclined surface 1151, and further clean the garbage remaining on the inlet portion 116 and / or the transfer inclined surface 1151 and convey it to the storage box 40.

[0091] In some embodiments, the first direction can be Figure 6 the counterclockwise direction in

[0092] In some embodiments, in the self-cleaning mode, the second roller 22 can rotate in the second direction, thereby driving the cleaning belt 24 to rotate in the second direction. Further, the cleaning belt 24 can clean the inlet portion 116 and / or the transfer inclined surface 1151, and further clean the garbage remaining on the inlet portion 116 and / or the transfer inclined surface 1151, and can convey it to the storage box 40 when the cleaning belt 24 rotates in the first direction.

[0093] In some embodiments, the second direction can be Figure 6 the clockwise direction in

[0094] In some embodiments, in the self-cleaning mode, the second roller 22 can rotate in the first direction or the second direction, thereby driving the cleaning belt 24 to rotate. Furthermore, the cleaning belt 24 can be cleaned by the scraper 30, achieving the cleaning of the cleaning belt 24.

[0095] In some embodiments, in the self-cleaning mode, the second roller 22 can rotate in the first direction or the second direction, thereby driving the cleaning belt 24 to rotate. Furthermore, the cleaning belt 24 can be cleaned by the cleaning liquid, and the garbage on the introduction part 116 and / or the conveying inclined plane 1151 can also be cleaned by the cleaning liquid.

[0096] In some embodiments, the self-cleaning mode can include multiple stages, and different cleaning matters can be carried out in different stages. When starting the self-cleaning mode, at least one stage in the self-cleaning mode can be executed.

[0097] In some embodiments, in the first stage of the self-cleaning mode, the second roller 22 can rotate alternately in the first direction and the second direction opposite to the first direction, while driving the cleaning belt 24 to rotate, cleaning the garbage remaining on the introduction part 116 and / or the conveying inclined plane 1151, which can improve the effect of removing difficult-to-remove garbage. In some embodiments, in the first stage, the displacement of the cleaning belt 24 relative to the conveying inclined plane 1151 is less than the length of the conveying inclined plane 1151, realizing the friction cleaning of the garbage by the cleaning belt 24. In some embodiments, in the first stage, the cleaning belt 24 can clean the garbage on the introduction part 116 and / or the conveying inclined plane 1151 by the cleaning liquid.

[0098] In some embodiments, the length of the conveying inclined plane 1151 can be the straight-line distance between the upper and lower ends of the conveying inclined plane 1151, or the distance extended between the upper and lower ends of the conveying inclined plane 1151.

[0099] In some embodiments, in the second stage of the self-cleaning mode, the second roller 22 can rotate continuously in the first direction or the second direction, while driving the cleaning belt 24 to rotate, and the displacement of the cleaning belt 24 relative to the conveying inclined plane 1151 is greater than the length of the conveying inclined plane 1151. In some embodiments, in the second stage, when the cleaning belt 24 rotates continuously in the first direction, the garbage remaining on the introduction part 116 and / or the conveying inclined plane 1151 can be cleaned, and the cleaning belt 24 can be cleaned by the scraper 30, and the cleaning belt 24, the introduction part 116 and / or the conveying inclined plane 1151 can also be cleaned by the cleaning liquid. In some embodiments, in the second stage, when the cleaning belt 24 rotates continuously in the second direction, the cleaning belt 24 can be cleaned by the scraper 30, and the cleaning belt 24 can also be cleaned by the cleaning liquid.

[0100] When Figure 6When the cleaning module 20 in it contacts the surface to be cleaned, the working mode can be started. The second roller 22 can continuously rotate in the first direction, and at the same time drive the cleaning belt 24 to rotate, with the forward direction as the traveling direction. At the same time, the cleaning belt 24 cooperates with the guiding part 116 and the transfer inclined surface 1151 to realize garbage transfer, and the guiding part 116 and the transfer inclined surface 1151 have a good supporting effect on the cleaning belt 24, without the need for wind power drive, which is beneficial to reducing the noise and cost of the cleaning main body 103.

[0101] Please refer to Figure 4 and Figure 5 , the scraper 30 can be arranged on the base 11 and used to press against the cleaning belt 24 to clean the garbage on the cleaning belt 24, so that the garbage falls off.

[0102] Please refer to Figure 6 , the scraper 30 can be installed on the base 11, such as the top wall 112, and can respectively press against the cleaning belt 24.

[0103] The scraper 30 can be arranged above the dropping port 1004 and can press the cleaning belt 24 against the outer peripheral surface of the first roller 21. The scraper 30 can clean the garbage on the cleaning belt 24, so that the garbage falls off and enters the storage space 1003 from the dropping port 1004. In some embodiments, the interference amount between the scraper 30 and the cleaning belt 24 is greater than or equal to 30% of the natural thickness of the fluff layer 242, and the interference amount refers to the part where the scraper 30 intersects or overlaps with the cleaning belt 24.

[0104] The scraper 30 can be arranged at the rear side of the cleaning belt 24. In some embodiments, the scraper 30 can be used to clean the garbage on the cleaning belt 24 in the working mode or the self-cleaning mode. In some embodiments, the scraper 30 can be used to clean the garbage on the cleaning belt 24 in the self-cleaning mode and can also be used to comb and restore the fluff layer 242. For example, in the second stage of the self-cleaning mode, the second roller 22 can continuously rotate in the second direction, and the scraper 30 can comb the fluff layer 242 to make the cleaning belt 24 return to the natural state as much as possible.

[0105] It can be understood that in the working mode, the cleaning belt 24 can rotate in the first direction, and the scraper 30 can scrape the fluff layer 242, so that the fluff on the fluff layer 242 falls in the second direction. In the second stage of the cleaning mode, the scraper 30 can scrape the fluff layer 242 and comb the fluff that has fallen in the second direction on the fluff layer 242 in the first direction, so that the fluff on the fluff layer 242 can be reopened. At the same time, the garbage remaining in the fluff layer 242 can also be cleaned.

[0106] In an alternative embodiment, the second axis and the first axis are the same axis.

[0107] In addition, when the second roller 22 rotates in the second direction under the cooperation of the squeegee 30, the cleaning belt 24 applies a force F1 to the squeegee 30 (as Figure 9 shown), and the squeegee 30 can generate a force F2 opposite to the force F1 on the cleaning belt 24 (as Figure 9 shown), so that the link assembly 23 swings under the action of the force F2, and the second roller 22 presses the cleaning belt 24 against the conveying inclined plane 1151, making the contact more sufficient and improving the self-cleaning ability.

[0108] Please refer to Figure 6 . The storage box 40 can be placed in the storage space 1003 to hold garbage. When the garbage enters from the dropping port 1004, it can directly fall into the storage box 40.

[0109] The base 11 can form a placement opening, and the placement opening can communicate with the storage space 1003. The storage box 40 can extend into the storage space 1003 from the placement opening. In some embodiments, the placement opening can be formed at the rear side of the base 11 when the bottom wall 111, the top wall 112, the first side wall 113, and the second side wall 114 enclose.

[0110] In some embodiments, the storage box 40 can be inserted into the base 11 and can be connected to the base 11.

[0111] In some embodiments, the bottom wall 111 can be reduced in size, so that the bottom of the storage box 40 serves as the bottom wall 111 and cooperates with the bottom wall 111 as the bottom of the cleaning main body 103, which can reduce the size of the cleaning main body 103 or make the storage box 40 have a deeper garbage cavity.

[0112] In some embodiments, the storage box 40 can be omitted, and the storage space 1003 can be directly used to hold garbage. In some embodiments, the storage box 40 can also be a part of the main frame 10. In some embodiments, the storage box 40 can also be an integral structure with the base 11.

[0113] Please refer to Figure 5 and Figure 6 . The edge 117 of the dropping port 1004 can facilitate the garbage to enter the storage space 1003. Furthermore, the size of the edge 117 can determine the size of the garbage to be collected. Furthermore, the collection of large particulate matter, large strip-shaped objects and other garbage can be realized by controlling the edge 117.

[0114] Please refer to Figure 6 and Figure 9 , Figure 9 For Figure 6Partial structural schematic diagram of the cleaning main body 103 in the illustrated embodiment. The mouth edge 117 may include a first front mouth edge 1171 near the upper end of the conveying inclined surface 1151 and a first rear mouth edge 1172 away from the upper end of the conveying inclined surface 1151. Among them, the first front mouth edge 1171 and the first rear mouth edge 1172 are oppositely arranged. The distance between the first front mouth edge 1171 and the first rear mouth edge 1172 can determine the size of the garbage to be collected. Furthermore, by controlling the distance between the first front mouth edge 1171 and the first rear mouth edge 1172, the collection of garbage such as large particulate matter and large strip-shaped objects can be achieved.

[0115] In some embodiments, the first front mouth edge 1171 may be provided on the conveying part 115.

[0116] In some embodiments, the first rear mouth edge 1172 may be provided on the main frame 10, such as the base 11. In some embodiments, the first rear mouth edge 1172 may be provided on the top wall 112.

[0117] Please refer to Figure 6 , since the cleaning module 20 swings as the link assembly 23 swings, and thus when the collected garbage is particulate matter, the size of the garbage is limited by the distance between the upper end of the conveying inclined surface 1151 and the periphery of the first roller 21. Specifically, the minimum distance between the upper end of the conveying inclined surface 1151 and the periphery of the first roller 21 is the first minimum distance L. During the process of the cleaning module 20 swinging as the link assembly 23 swings, the position of the first roller 21 does not change. Therefore, the first minimum distance L does not change during the swinging of the link assembly 23. Thus, whether the garbage can pass through between the upper end of the conveying inclined surface 1151 and the first roller 21 is affected by the first minimum distance L. Further, in the case where the cleaning module 20 is swingable, the cleaning belt 24 can also swing. Thus, the natural thickness of the cleaning belt 24 can also affect the size of the collected garbage. Furthermore, according to the design parameters of the garbage cleaning by the cleaning main body 103, the size of the collected garbage can be generally limited to the difference between the distance from the upper end of the conveying inclined surface 1151 to the periphery of the first roller 21 and the natural thickness of the cleaning belt 24. The natural thickness of the cleaning belt 24 can be measured in the second state.

[0118] Please refer to Figure 9, the minimum distance between the upper end of the transfer inclined plane 1151 and the periphery of the first roller 21 is the first minimum distance L, and the minimum distance between the first front edge 1171 and the first rear edge 1172 is the second minimum distance M. Furthermore, the size of the garbage collected by the cleaning main body 103 can be limited by the first minimum distance L and the second minimum distance M, and further can also be limited by the natural thickness of the cleaning belt 24. Then, in order to enable the cleaning main body 103 to collect large garbage, it can be achieved by adjusting the first minimum distance L, the second minimum distance M, and the natural thickness of the cleaning belt 24.

[0119] In some embodiments, the first front edge 1171 can be formed by the upper end of the transfer inclined plane 1151. Furthermore, the second minimum distance M can be the minimum distance between the upper end of the transfer inclined plane 1151 and the first rear edge 1172.

[0120] In some embodiments, through the matching design of the edge 41 of the dropping port 1004, the upper end of the transfer inclined plane 1151, and the position of the first roller 21, the second minimum distance L at the dropping port 1004 is better matched with the first minimum distance M, so as to make the internal structure of the cleaning device 101 more compact and reasonable as much as possible and reduce redundancy.

[0121] In some embodiments, the ratio of the first minimum distance L to the second minimum distance M is between 0.7 and 1.3.

[0122] In some embodiments, the difference between the first minimum distance L and the natural thickness of the cleaning belt 24 is less than the second minimum distance M. By balancing the relationship among the first minimum distance L, the second minimum distance M, and the natural thickness of the cleaning belt 24, the situation that large garbage is transported to the upper end of the transfer inclined plane 1151 and gets stuck at the edge 117 and cannot enter the storage box 40 is improved. By improving the interference of the second minimum distance M on large garbage, the cleaning main body 103 can collect large garbage as much as possible, highlighting the feature of the cleaning device 101 for cleaning large garbage. The natural thickness of the cleaning belt 24 can be measured in the second state.

[0123] In some embodiments, when the cleaning belt 24 is squeezed, the thickness of the cleaning belt 24 will be adjusted from the natural thickness to the incompressible thickness, and the difference between the first minimum distance L and the incompressible thickness of the cleaning belt 24 can be further less than the second minimum distance M. Optionally, the incompressible thickness of the cleaning belt 24 is greater than or equal to 3 mm and less than or equal to 5 mm.

[0124] In some embodiments, the first minimum distance L is between 18 - 26 mm. When the interference of the second minimum distance M on large garbage is small or even has no influence, the size of the garbage collected by the cleaning main body 103 is limited by the first minimum distance L.

[0125] In some embodiments, the first minimum distance L may not be less than 22 mm.

[0126] In some embodiments, the first minimum distance L may be 22 mm.

[0127] In some embodiments, the first minimum distance L is less than the second minimum distance M.

[0128] Please refer to Figure 4 and Figure 6 , the storage box 40 has a box opening 4001, and the box opening 4001 can be docked with the dropping opening 1004, so that the garbage enters the storage box 40 in sequence through the dropping opening 1004 and the box opening 4001.

[0129] The storage box 40 has a rim 41 at the box opening 4001. When the box opening 4001 can be docked with the dropping opening 1004, the rim 41 can be docked with the rim 117 to realize the cooperation between the storage box 40 and the base 11.

[0130] In some embodiments, the rim 41 may include a second front-side rim 411 and a second rear-side rim 412. When the rim 41 is docked with the rim 117, the second front-side rim 411 can be cooperatively docked with the first front-side rim 1171, and the second rear-side rim 412 can be cooperatively docked with the first rear-side rim 1172.

[0131] Please refer to Figure 9 , the minimum distance between the second front-side rim 411 and the second rear-side rim 412 is the third minimum distance N. Furthermore, the size of the garbage collected by the cleaning main body 103 can also be limited by the third minimum distance N, and further can be limited by the first minimum distance L, the second minimum distance M, the natural thickness of the cleaning belt 24, and the third minimum distance N. Then, in order to enable the cleaning main body 103 to collect large garbage, it can also be achieved by adjusting the third minimum distance N.

[0132] The third minimum distance N can improve the situation where large garbage is conveyed to the upper end of the transfer inclined plane 1151 and gets stuck at the box opening 4001 and cannot enter the storage box 40. By improving the interference of the second minimum distance M on large garbage, the cleaning main body 103 can collect large garbage as much as possible, highlighting the feature of the cleaning device 101 for cleaning large garbage.

[0133] In some embodiments, the first minimum distance L is less than the third minimum distance N, which can prevent the box opening 4001 from being too large, resulting in an increase in the volume of the cleaning main body 103 and reducing redundancy. Of course, it can also prevent the liquid garbage in the storage box 40 from shaking out due to the too large box opening 4001.

[0134] In some embodiments, the third minimum distance N may be greater than the second minimum distance M, may be less than the second minimum distance M, or may be equal to the second minimum distance M.

[0135] In some embodiments, the third minimum distance N may be greater than the second minimum distance M, such that the second front edge 411 is located on the side of the first front edge 1171 close to the transfer slope 1151, and the second rear edge 412 is located on the side of the first rear edge 1172 away from the transfer slope 1151, so that the edge 41 is docked with the edge 117, reducing the probability of liquid waste directly entering the gap between the storage box 40 and the base 11 from the dropping port 1004. Of course, it is also convenient to improve the sealing performance between the storage box 40 and the base 11.

[0136] In some embodiments, the display of the cleaning body 103 in a reference cross-section perpendicular to the support plane PL may be as Figure 6 shown. In a reference cross-section perpendicular to the support plane PL, the connection line between the upper and lower ends of the transfer slope 1151 is line X1, and the connection line between the first front edge 1171 and the first rear edge 1172 is line X2. The angle formed by line X1 and the support plane PL may be greater than the angle formed by line X2 and the support plane PL. Under the condition of the overall volume of the cleaning body 103, that is, limited by the height and the front-back length of the cleaning body 103, by adjusting the angle formed by line X2 and the support plane PL, the adjustment of the second minimum distance M can be realized to maximize the second minimum distance M as much as possible. It can be understood that in all embodiments of the present application, the reference cross-section perpendicular to the support plane PL may also be perpendicular to the first axis and / or the second axis and / or the third axis at the same time. In some embodiments, the reference cross-section perpendicular to the support plane PL may also be parallel to the front-back direction at the same time.

[0137] Please refer to Figure 9 , a first guiding surface 118 is provided on the transfer portion 115. The first guiding surface 118 is adjacent to the first front edge 1171, and thus can guide the garbage, so that the garbage is conveyed from the upper end of the transfer slope 1151 into the dropping port 1004.

[0138] Please refer to Figure 9 , a second guiding surface 1121 is provided on the base 11. The second guiding surface 1121 is adjacent to the first rear edge 1172, and thus can guide the garbage, so that the garbage is conveyed into the dropping port 1004. In some embodiments, when the scraper 30 cleans the cleaning belt 24, the fallen garbage can be guided by the second guiding surface 1121 and conveyed into the dropping port 1004.

[0139] In some embodiments, the second guiding surface 1121 may be provided on the top wall 112.

[0140] In some embodiments, the first rear side rim 1172 is higher than the first front side rim 1171. Since the garbage is driven by the cleaning belt 24 and can have inertia, it can then impact on the second guiding surface 1121. The second guiding surface 1121 guides the garbage so that the garbage is conveyed into the dropping opening 1004. Additionally, the first rear side rim 1172 being higher than the first front side rim 1171 can enable the storage box 40 to have a deeper garbage cavity.

[0141] In some embodiments, the second front side rim 411 is located below the first guiding surface 118, facilitating the first guiding surface 118 to guide the garbage so that the garbage is conveyed into the storage box 40. Further, by disposing the second front side rim 411 below the first guiding surface 118, the probability of liquid garbage directly entering the gap between the storage box 40 and the base 11 from the dropping opening 1004 can be reduced. Of course, it can also facilitate improving the sealing performance between the storage box 40 and the base 11.

[0142] In some embodiments, the second rear side rim 412 is located behind the second guiding surface 1121, facilitating the second guiding surface 1121 to guide the garbage so that the garbage is conveyed into the storage box 40. Since the garbage is conveyed from the conveying inclined surface 1151 towards the side close to the second guiding surface 1121, further, by disposing the second rear side rim 412 behind the second guiding surface 1121, the probability of liquid garbage directly entering the gap between the storage box 40 and the base 11 from the dropping opening 1004 can be reduced. Of course, it can also facilitate improving the sealing performance between the storage box 40 and the base 11.

[0143] Please refer to Figure 9 , the minimum distance from the upper end of the conveying inclined surface 1151 to the abutting position of the scraper 30 on the cleaning belt 24 is the fourth minimum distance P. Since the garbage collected by the cleaning module 20 can also be in the form of strips or sheets, the length of the garbage collected by the cleaning module 20 can be limited by the fourth minimum distance P. Further, according to the design parameters of the garbage cleaning by the cleaning main body 103, the length of the collected garbage can be generally limited to the fourth minimum distance P. Then the length of the garbage collected by the cleaning main body 103 can be limited by the second minimum distance M and the fourth minimum distance P. Then, in order to enable the cleaning main body 103 to collect longer garbage, it can be achieved by adjusting the second minimum distance M and the fourth minimum distance P.

[0144] In some embodiments, the second minimum distance M is greater than the fourth minimum distance P. By balancing the relationship between the second minimum distance M and the fourth minimum distance P, the situation where longer garbage is conveyed to the upper end of the conveying inclined surface 1151, gets stuck at the rim 117, and cannot enter the storage box 40 is improved. By improving the interference situation of the second minimum distance M on longer garbage, the cleaning main body 103 can collect large garbage as much as possible, highlighting the feature of the cleaning device 101 for cleaning large garbage.

[0145] See also Figure 9 The base 11 is provided with a mounting portion 1122, which can be used to mount the scraper 30. In some embodiments, the mounting portion 1122 is disposed adjacent to the upper end of the second introduction surface 1121, so that when the scraper 30 cleans the cleaning belt 24, the fallen garbage can be guided by the second introduction surface 1121 and transported to the drop port 1004.

[0146] In some embodiments, at least a portion of the second introduction surface 1121 is recessed toward a side away from the upper end of the conveying inclined surface 1151, so as to achieve the conveying of garbage and reduce the interference of the second introduction surface 1121 with long garbage. In some embodiments, the middle portion of the second introduction surface 1121 is recessed toward a side away from the upper end of the conveying inclined surface 1151.

[0147] In some embodiments, the second introduction surface 1121 may intersect with an extended surface of the conveying slope 1151 to reduce the interference of the second introduction surface 1121 with the longer garbage.

[0148] In some embodiments, the first minimum distance L is smaller than the radius of the second roller 22. The second roller 22 can pass over the garbage, and the radius of the second roller 22 determines whether the garbage can be passed over and collected. When the first minimum distance L defines the size of the garbage collected by the cleaning body 103, it is particularly necessary to define the first minimum distance L to be smaller than the radius of the second roller 22. In addition, the smaller the difference between the radius of the second roller 22 and the size of the garbage, the more difficult it is to pass over the garbage, and the larger the difference between the radius of the second roller 22 and the size of the garbage, the easier it is to pass over the garbage.

[0149] In some embodiments, the ratio of the first minimum distance L to the radius of the second roller 22 is limited to 0.8-0.95, which can reduce the size of the second roller 22, avoid the cleaning body 103 from becoming larger and heavier, and reduce redundancy. In some embodiments, the ratio of the first minimum distance L to the radius of the second roller 22 is limited to 0.82, 0.84, 0.86, 0.90 or 0.92, etc.

[0150] See also Figure 8 The second roller 22 presses the cleaning belt 24 against the introduction portion 116 and / or the conveying inclined surface 1151. Furthermore, the length of the cleaning body 103 in the front-to-back direction is limited by the cooperation between the second roller 22 and the conveying inclined surface 1151.

[0151] See also Figure 10 , Figure 10 for Figure 8 The structure diagram of the transmission part 115 in some embodiments is shown in the embodiment shown in FIG. The transmission part 115 on the reference cross section perpendicular to the support plane PL can be shown as follows:Figure 10 as shown

[0152] In a reference cross-section perpendicular to the support plane PL, the transfer inclined plane 1151 may include a first transfer section 1152 disposed adjacent to the lower end of the transfer inclined plane 1151. The first transfer section 1152 may be disposed opposite to the second roller 22 so that the second roller 22 can press the cleaning belt 24 against the first transfer section 1152. Then, when the first transfer section 1152 is recessed toward the side away from the second roller 22, the second roller 22 can extend into the recessed area. When the cleaning main body 103 is supported by the surface to be cleaned, the recessed area on the first transfer section 1152 corresponds to the second roller 22. Compared with the case where the first transfer section 1152 is not recessed, the recessed area on the first transfer section 1152 can reduce the supporting force of the first transfer section 1152 on the second roller 22 and the cleaning belt 24, so that the second roller 22 and the cleaning belt 24 are supported by the surface to be cleaned as much as possible, improving the cleaning effect of the cleaning main body 103 on the surface to be cleaned. In addition, the recessed area on the first transfer section 1152 allows the second roller 22 to extend into the recessed area, thereby reducing the length of the cleaning main body 103 in the front-rear direction, making the cleaning main body 103 miniaturized and facilitating the user to operate the cleaning device 101.

[0153] In some embodiments, both the upper and lower ends of the first transfer section 1152 may be disposed between the upper and lower ends of the transfer inclined plane 1151. In some embodiments, the upper end of the first transfer section 1152 may be the upper end of the transfer inclined plane 1151. In some embodiments, the lower end of the first transfer section 1152 may be the lower end of the transfer inclined plane 1151.

[0154] Please refer to Figure 11 , Figure 11 which is Figure 8 a schematic structural diagram of the cooperation of the cleaning module 20 with the transfer part 115 and the introduction part 116 in some embodiments shown in the embodiment. The display of the cleaning module 20, the transfer part 115, and the introduction part 116 in a reference cross-section perpendicular to the support plane PL may be as shown in Figure 11 as shown

[0155] In a reference cross-section perpendicular to the support plane PL, the first transfer section 1152 may be arc-shaped to match the arc-shaped outer periphery of the second roller 22. In some embodiments, the ratio of the sum of the radius of the second roller 22 and the thickness of the cleaning belt 24 in the natural state to the radius of curvature of the first transfer section 1152 is between 0.8 and 1.1, which can enable the first transfer section 1152 to better adapt to the shape of the second roller 33, so that the second roller 22 can press the cleaning belt 24 against the first transfer section 1152 for sufficient contact, improving the cleaning effect of the cleaning main body 103. The thickness of the cleaning belt 24 in the natural state can be measured in the second state.

[0156] In some embodiments, the ratio of the sum of the radius of the second roller 22 and the thickness of the cleaning belt 24 in the natural state to the radius of curvature of the first conveying section 1152 may be 0.8, 0.83, 0.85, 0.89, 0.9, 0.92, 0.96, 0.98, 1, 1.02, 1.04, 1.08, or 1.1, etc.

[0157] In some embodiments, the sum of the radius of the second roller 22 and the thickness of the cleaning belt 24 in the natural state may be slightly smaller than the radius of curvature of the first conveying section 1152. Thus, when the cleaning belt 24 is pressed against the first conveying section 1152, the cleaning belt 24 can better conform to the first conveying section 1152 and can better convey garbage.

[0158] In some embodiments, the third axis O1 of the second roller 22 coincides with the center O2 of the first conveying section 1152, so that the second roller 22 can press the cleaning belt 24 against the first conveying section 1152 for sufficient contact, improving the cleaning effect of the cleaning main body 103.

[0159] In some embodiments, the third axis O1 of the second roller 22 may not coincide with the center O2 of the first conveying section 1152. Instead, the extension line of the perpendicular connection line between the center O2 of the first conveying section 1152 and the third axis O1 of the second roller 22 may pass through the position where the cleaning belt 24 abuts against the first conveying section 1152.

[0160] Please refer to Figure 12 , Figure 12 For Figure 8 the schematic structural diagram of the cooperation of the cleaning module 20 with the conveying section 115 and the introducing section 116 in the shown embodiment. The display of the cleaning module 20, the conveying section 115, and the introducing section 116 in the reference section perpendicular to the support plane PL may be as Figure 12 shown.

[0161] In the reference section perpendicular to the support plane PL, the ratio of the distance Q from the center O2 of the first conveying section 1152 to the third axis O1 to the radius R1 of the second roller 22 is less than or equal to 0.3. In some embodiments, when the ratio of the distance Q to the radius R1 of the second roller 22 is 0, the third axis O1 of the second roller 22 may coincide with the center O2 of the first conveying section 1152. In some embodiments, the ratio of the distance Q to the radius R1 of the second roller 22 is 0.03, 0.06, 0.09, 0.12, 0.15, 0.18, 0.21, 0.24, 0.27, or 0.29.

[0162] In some embodiments, when designing the cleaning body 103, the third axis O1 of the second roller 22 can be made to coincide with the center O2 of the first conveying section 1152. However, during the assembly and production process, there are inevitable errors, which lead to the existence of the distance Q. The ratio between the distance Q and the radius R1 of the second roller 22 can determine the coordination effect between the cleaning module 20 and the first conveying section 1152. The error can be reduced and the cleaning effect of the cleaning body 103 can be improved by limiting the ratio between the distance Q and the radius R1 of the second roller 22.

[0163] In addition, the distance Q also defines the distribution of interference between the cleaning belt 24 and the first conveying section 1152. Figure 12 In the embodiment, the center O2 is biased backwards compared to the third axis O1, so that the portion with a larger interference amount between the cleaning belt 24 and the first conveying section 1152 is close to the upper end of the first conveying section 1152. Furthermore, the center O2 is biased forwards compared to the third axis O1, so that the portion with a larger interference amount between the cleaning belt 24 and the first conveying section 1152 is close to the lower end of the first conveying section 1152. Furthermore, the distribution of the interference amount between the cleaning belt 24 and the first conveying section 1152 can be adjusted by the distance Q.

[0164] See also Figure 13 , Figure 13 for Figure 12 The cleaning module 20, the conveying part 115 and the introduction part 116 in some embodiments are shown in the schematic diagram of the structure of the cleaning module 20, the conveying part 115 and the introduction part 116 in some embodiments. The display of the cleaning module 20, the conveying part 115 and the introduction part 116 on the reference section perpendicular to the support plane PL can be as follows: Figure 13 shown.

[0165] A first reference line CK1 and a second reference line CK2 are provided on a reference section perpendicular to the support plane PL. The first reference line CK1 passes through the third axis O1 and is perpendicular to the support plane PL, the second reference line CK2 passes through the third axis O1 and the upper end of the first conveying section 1152, and the angle c between the first reference line CK1 and the second reference line CK2 is between 50-85°. The size of the angle c can determine the length of the first conveying section 1152, and thus the angle c needs to be limited to avoid the excessive length of the first conveying section 1152 as much as possible, reduce redundancy, and also reduce the influence of the excessive length of the first conveying section 1152 on the cleaning effect of the cleaning body 103. The length of the first conveying section 1152 can be reasonably set by the angle c, so that the first conveying section 1152 preferentially matches the second roller 22.

[0166] In some embodiments, the angle c is 52°, 55°, 58°, 60°, 63°, 65°, 67°, 68°, 70°, 73°, 76°, 78°, 79°, 80°, 82° or 84°, etc.

[0167] Please refer to Figure 10 , on the reference section perpendicular to the support plane PL, the connection line between the point on the first transfer section 1152 and the lower end of the transfer inclined plane 1151 forms a first included angle a1 with the reference plane PL1, and the first included angle a1 is between 48.6 - 52.5°. The reference plane PL1 is arranged parallel to the support plane PL. The maximum value of the first included angle a1 can be determined based on the upper end and / or the lower end of the first transfer section 1152. Furthermore, the maximum value of the first included angle a1 can be the included angle between the transfer inclined plane 1151 and the support plane PL, or the included angle between other transfer sections on the transfer inclined plane 1151 and the support plane PL. The minimum value of the first included angle a1 determines the degree of depression of the first transfer section 1152, and the span between the minimum value and the maximum value of the first included angle a1 determines the form of the recessed setting of the first transfer section 1152. In some embodiments, the first included angle a1 is 49°, 49.5°, 50°, 50.5°, 51°, 51.5° or 52°.

[0168] Please refer to Figure 10 , on the reference section perpendicular to the support plane PL, the connection line between the upper and lower ends of the transfer inclined plane 1151 forms a second included angle a2 with the reference plane PL1, and the difference between the second included angle a2 and the first included angle a1 is between 4 - 13°. In some embodiments, the difference between the second included angle a2 and the first included angle a1 is 4°, 5°, 6°, 7°, 8°, 9°, 10°, 11°, 12° or 13°, etc.

[0169] In some embodiments, the smaller the difference between the second included angle a2 and the first included angle a1, the smoother the transfer inclined plane indicates. The interference amount distribution between the cleaning belt 24 and the transfer inclined plane 1151 can be adjusted by the difference between the second included angle a2 and the first included angle a1, the gap between the cleaning belt 24 and the transfer inclined plane 1151 can be reduced, and the cleaning effect of the cleaning main body 103 can be improved.

[0170] Please refer to Figure 10 , on the reference section perpendicular to the support plane PL, the ratio of the chord length of the first transfer section 1152 to the length of the upper and lower ends of the transfer inclined plane 1151 is between 0.3 - 0.6. By the ratio of the chord length of the first transfer section 1152 to the length of the upper and lower ends of the transfer inclined plane 1151, the size and the maximum degree of depression of the first transfer section 1152 are defined, and further, the length of the cleaning main body 103 in the front - rear direction can be adjusted.

[0171] In some embodiments, on the reference section perpendicular to the support plane PL, the ratio of the chord length of the first transfer section 1152 to the length of the upper and lower ends of the transfer inclined plane 1151 is 0.33, 0.35, 0.38, 0.4, 0.42, 0.45, 0.47, 0.5, 0.52, 0.55 or 0.58, etc.

[0172] In some embodiments, in a reference cross-section perpendicular to the support plane PL, the chord length of the first conveying section 1152 is between 8 - 12 mm. In some embodiments, in a reference cross-section perpendicular to the support plane PL, the chord length of the first conveying section 1152 is among 8.5 mm, 9 mm, 9.5 mm, 10 mm, 10.5 mm, 11 mm, or 11.5 mm, etc.

[0173] Please refer to Figure 10 , in a reference cross-section perpendicular to the support plane PL, the conveying inclined plane 1151 may further include a second conveying section 1153, and the lower end of the second conveying section 1153 may be connected to the upper end of the first conveying section 1152. In some embodiments, the upper end of the second conveying section 1153 may be disposed between the upper end of the conveying inclined plane 1151 and the upper end of the first conveying section 1152. In some embodiments, the upper end of the second conveying section 1153 may be the upper end of the conveying inclined plane 1151.

[0174] In some embodiments, in a reference cross-section perpendicular to the support plane PL, the second conveying section 1153 may be recessed toward the side away from the cleaning belt 24 to reduce the interference amount between the second conveying section 1153 and the cleaning belt 24. Additionally, it can also make the cleaning module 20 be supported by the surface to be cleaned as much as possible in the working mode, improving the cleaning effect of the cleaning main body 103. In some embodiments, in a reference cross-section perpendicular to the support plane PL, the second conveying section 1153 may be arc-shaped to improve the conveying effect of the garbage.

[0175] In some embodiments, in a reference cross-section perpendicular to the support plane PL, the radius of curvature of the second conveying section 1153 is greater than the radius of curvature of the first conveying section 1152 to control the interference degree between the second conveying section 1153 and the cleaning belt 24.

[0176] In some embodiments, in a reference cross-section perpendicular to the support plane PL, the second conveying section 1153 may be a plane. The upper end and / or the lower end of the first conveying section 1152 may be located on the extension plane of the second conveying section 1153. In some embodiments, in a reference cross-section perpendicular to the support plane PL, the second conveying section 1153 may be a plane. The upper end and / or the lower end of the first conveying section 1152 may be located on the side of the extension plane of the second conveying section 1153 away from the second roller 22, so as to further reduce the length of the cleaning main body 103 in the front-rear direction, making the cleaning main body 103 miniaturized and facilitating the user to operate the cleaning device 101.

[0177] In some embodiments, the upper end of the first conveying section 1152 and the lower end of the second conveying section 1153 may be smoothly transitionally connected, or connected through other conveying sections.

[0178] Please refer to Figure 14 ,Figure 14 In Figure 8 the structural schematic diagram of the cooperation of the cleaning module 20 with the conveying part 115 and the introducing part 116 in the illustrated embodiment. The display of the cleaning module 20, the conveying part 115, and the introducing part 116 in a reference section perpendicular to the support plane PL can be as shown in Figure 14 the figure

[0179] The conveying inclined plane 1151 may have a connected first inclined plane section 1156 and a second inclined plane section 1157. Compared with the first inclined plane section 1156, the second inclined plane section 1157 may be closer to the upper end of the conveying inclined plane 1151. Compared with the second inclined plane section 1157, the first inclined plane section 1156 may be closer to the lower end of the conveying inclined plane 1151.

[0180] In some embodiments, the lower end of the first inclined plane section 1156 may be the lower end of the conveying inclined plane 1151, and the upper end of the second inclined plane section 1157 may be the upper end of the conveying inclined plane 1151.

[0181] In some embodiments, the first inclined plane section 1156 may be provided with the first conveying section 1152 in the above embodiment. In some embodiments, the first inclined plane section 1156 may be the first conveying section 1152 in the above embodiment. In some embodiments, the second inclined plane section 1157 may be provided with the second conveying section 1153 in the above embodiment. In some embodiments, the second inclined plane section 1157 may be the second conveying section 1153 in the above embodiment.

[0182] Please refer to Figure 15 , Figure 15 In Figure 14 the structural schematic diagram of the conveying part 115 in the illustrated embodiment. The display of the conveying part 115 in a reference section perpendicular to the support plane PL can be as shown in Figure 15 the figure

[0183] In a reference section perpendicular to the support plane PL, the connection line of the upper and lower ends of the first inclined plane section 1156 forms a first included angle b1 with the reference plane PL2, the connection line of the upper and lower ends of the second inclined plane section 1157 forms a second included angle b2 with the reference plane PL1, and the connection line 1158 of the lower end of the first inclined plane section 1156 and the upper end of the second inclined plane section 1157 forms a third included angle b3 with the reference plane PL1. The first included angle b1 is less than the third included angle b3, and the third included angle b3 is less than the second included angle b2. The reference plane PL2 is arranged parallel to the support plane PL.

[0184] In Figure 14 it, the first inclined plane section 1156 may be set only based on the first included angle b1, and the first inclined plane section 1156 may replace the second inclined plane section 1157 and be implemented into Figure 6In the cleaning main body 103, the conveying inclined plane 1151 cooperates with the cleaning module 20, such as the cleaning belt 24, to convey the garbage to the dropping port 1004. The acting force at the contact part between the conveying inclined plane 1151 and the cleaning module 20 becomes smaller, and the cleaning module 20 is supported by the surface to be cleaned as much as possible in the working mode. However, this will increase the gap between the upper part of the conveying inclined plane 1151 and the cleaning module 20, such as the cleaning belt 24. As a result, when the upper part of the conveying inclined plane 1151 cooperates with the cleaning module 20, such as the cleaning belt 24, it is impossible to convey the garbage smaller than the gap. Furthermore, by cooperating the second inclined plane section 1157 with the cleaning module 20, such as the cleaning belt 24, the ability to convey garbage is improved.

[0185] Figure 15 In [the above], the first inclined plane section 1156 is set based on the first included angle b1, and the second inclined plane section 1157 is set based on the second included angle b2, which can reduce the acting force at the contact part between the conveying inclined plane 1151 and the cleaning module 20, and the cleaning module 20 is supported by the surface to be cleaned as much as possible in the working mode. At the same time, the second inclined plane section 1157 also reduces the gap between the upper part of the conveying inclined plane 1151 and the cleaning module 20, such as the cleaning belt 24. As a result, when the upper part of the conveying inclined plane 1151 cooperates with the cleaning module 20, such as the cleaning belt 24, it is possible to convey smaller garbage.

[0186] In some embodiments, please refer to Figure 15 , the difference between the second included angle b2 and the first included angle b1 is between 1 - 10 degrees. In the working mode, in order to reduce the acting force between the surface to be cleaned and the cleaning module 20 supported by the second inclined plane section 1157, it is necessary to limit the second included angle b2. In addition, the selection of the garbage size can be realized by adjusting the difference, and the garbage of the preset target size can be cleaned. In some embodiments, the difference between the second included angle b2 and the first included angle b1 is 2°, 2.5°, 3°, 3.5°, 4°, 4.5°, 5°, 5.5°, 6°, 6.5°, 7°, 7.5°, 8°, 8.5° or 9°, etc.

[0187] In some embodiments, please refer to Figure 15 , the first included angle b1 is between 48 - 54 degrees, which can improve the cooperation state between the first inclined plane section 1156 and the cleaning module 20 in the working mode. In addition, the supporting effect on the cleaning module 20 can also be adjusted by adjusting the first included angle b1. In some embodiments, the first included angle b1 is 48.5°, 49°, 49.5°, 50°, 50.5°, 51°, 51.5°, 52°, 52.5°, 53.5° or 53°.

[0188] In some embodiments, the ratio of the length of the line connecting the upper and lower ends of the first inclined plane segment 1156 to the length of the line connecting the upper and lower ends of the second inclined plane segment 1157 is between 0.5 and 1.5. The second included angle b2 can be adjusted by adjusting the ratio, and further, the cooperation between the second inclined plane segment 1157 and the cleaning module 20, such as the cleaning belt 24, can be adjusted to realize the conveyance of smaller garbage. In addition, the cleaning main body 103 can be miniaturized by adjusting the ratio, which is convenient for the user to control the cleaning device 101. In some embodiments, the ratio of the length of the line connecting the upper and lower ends of the first inclined plane segment 1156 to the length of the line connecting the upper and lower ends of the second inclined plane segment 1157 is 0.55, 0.6, 0.65, 0.7, 0.75, 0.8, 0.85, 0.9, 0.95, 1, 1.05, 1.1, 1.15, 1.2, 1.25, 1.3, 1.35, 1.4 or 1.45, etc.

[0189] Please refer to Figure 15 , since the upper end of the first inclined plane segment 1156 is connected to the lower end of the second inclined plane segment 1157, in order to ensure the effective contact between the cleaning belt 24 and the conveying inclined plane 1151 and realize garbage conveyance, the cleaning belt 24 can be made to contact the lower end of the first inclined plane segment 1156 and the upper end of the second inclined plane segment 1157. Furthermore, the outer surface of the fluff layer 242 provided on the base layer 241 can be parallel to the line connecting the lower end of the first inclined plane segment 1156 and the upper end of the second inclined plane segment 1157. The upper end of the first inclined plane segment 1156 and the lower end of the second inclined plane segment 1157 must be the parts farthest from the base layer 241. Therefore, the fluff layer 242 needs to contact the upper end of the first inclined plane segment 1156 and the lower end of the second inclined plane segment 1157. The ratio of the perpendicular distance from the upper end of the first inclined plane segment 1156 or the lower end of the second inclined plane segment 1157 to the line 1158 to the fluff length of the fluff layer 242 is between 0.7 and 0.9. The effective contact between the conveying inclined plane 1151 and the cleaning belt 24 is realized by adjusting the ratio.

[0190] In some embodiments, to ensure effective contact between the cleaning belt 24 and the conveying inclined plane 1151 and achieve waste conveyance, the cleaning belt 24 can be made to contact the lower end of the first inclined plane section 1156 and the upper end of the second inclined plane section 1157. Then, between the lower end of the first inclined plane section 1156 and the upper end of the second inclined plane section 1157, the change amount of the interference amount of the conveying inclined plane 1151 on the fluff layer 242 (the difference between the maximum interference amount and the minimum interference amount of the conveying inclined plane 1151 on the fluff layer 242) and the ratio of the maximum interference amount (the maximum interference amount of the conveying inclined plane 1151 on the fluff layer 242) are between 0.2 and 0.7. By adjusting the ratio, effective contact between the conveying inclined plane 1151 and the cleaning belt 24 can be achieved, and the cleaning ability can also be improved by adjusting the ratio. In some embodiments, the measurement of the maximum interference amount and the minimum interference amount of the conveying inclined plane 1151 on the fluff layer 242 needs to be carried out in the same state among the above-mentioned first state, second state, and third state. In some embodiments, the measurement of the maximum interference amount and the minimum interference amount of the conveying inclined plane 1151 on the fluff layer 242 needs to be carried out in the second state mentioned above.

[0191] Please refer to Figure 14 , on the side of the first roller 21 and the second roller 22 close to the conveying inclined plane 1151, there is a common tangent plane PM, and the common tangent plane PM forms a fourth included angle b4 with the reference plane PL3. The reference plane PL3 is arranged parallel to the support plane PL. When the cleaning belt 24 is pressed by the second roller 22 against the surface to be cleaned, the fourth included angle b4 is less than the second included angle b2 and greater than the first included angle b1. Thus, effective contact between the second inclined plane section 1157 and the cleaning belt 24 can be achieved, the cleaning ability can be improved, and in addition, the pressure of the cleaning module 20 on the first inclined plane section 1156 can be reduced, so that the cleaning module 20 is supported by the surface to be cleaned as much as possible.

[0192] In some embodiments, when the second roller 22 is suspended, the second roller 22 can be in a suspended state. The second roller 22 can press the cleaning belt 24 against the conveying inclined plane 1151, so that the cleaning main body 103 can enter the self-cleaning mode. The fourth included angle b4 is greater than the second included angle b2, which can increase the acting force between the conveying inclined plane 1151 and the cleaning module 20 for self-cleaning to ensure the self-cleaning effect.

[0193] In some embodiments, the absolute value of the difference between the difference between the second included angle b2 and the first included angle b1 and the angle change amount of the fourth included angle b4 when the second roller 22 is suspended and when the cleaning belt 24 is pressed by the second roller 22 against the surface to be cleaned is between 1 - 7°, so as to ensure the effective contact between the conveying inclined plane 1151 and the cleaning belt 24. In some embodiments, the absolute value of the difference between the difference between the second included angle b2 and the first included angle b1 and the angle change amount of the fourth included angle b4 when the second roller 22 is suspended and when the cleaning belt 24 is pressed by the second roller 22 against the surface to be cleaned is 1.5°, 2°, 2.5°, 3°, 3.5°, 4°, 4.5°, 5°, 5.5°, 6° or 6.5°, etc. It can be understood that when the second roller 22 is suspended, the second roller 22 can be in a suspended state.

[0194] In some embodiments, the first inclined plane section 1156 and the second inclined plane section 1157 can be smoothly connected in a transitional manner, or connected through other inclined plane sections. In some embodiments, an arc-shaped connection transition is formed between the first inclined plane section 1156 and the second inclined plane section 1157.

[0195] Please refer to Figure 1 and Figure 16 , Figure 16 is Figure 1 a schematic cross-sectional view of the cleaning system 100 at the line XV-XV in the illustrated embodiment. A bearing surface 1021 is provided on the base station 102, and the bearing surface 1021 can be used to support the cleaning main body 103. When placing the cleaning main body 103 on the base station 102, it can be specifically placed on the bearing surface 1021.

[0196] Please refer to Figure 16 , when the cleaning main body 103 is placed on the bearing surface 1021, the cleaning module 20 can be in a suspended state. The cleaning main body 103 can start the self-cleaning mode, so that the second roller 22 rotates, and further drives the cleaning belt 24 to rotate. Of course, the second roller 22 can also press the cleaning belt 24 against the base station 102, and make part of the cleaning module 20 located below the support plane PL, and then the self-cleaning mode can be started, so that the second roller 22 rotates, and further drives the cleaning belt 24 to rotate.

[0197] It can be understood that (1) in the working mode, Figure 16 the cleaning main body 103 in is not placed on the bearing surface 2001, but on the surface to be cleaned. The cleaning module 20 is in contact with the surface to be cleaned, and the link assembly 23 can drive the second roller 22 and the cleaning belt 24 to swing in a direction away from the conveying inclined plane 1151, so that the cleaning module 20 is located on the support plane PL. At this time, based on the surface to be cleaned sharing at least part of the gravity of the cleaning module 20, the contact effect between the cleaning belt 24 and the conveying inclined plane 1151 is worse than that in the self-cleaning mode.

[0198] (2) In the self-cleaning mode, Figure 16 the cleaning body 103 therein is placed on the bearing surface 2001 and in contact with the bearing surface 2001. The cleaning module 20 is in contact with the bearing surface 2001. The link assembly 23 can drive the second roller 22 and the cleaning belt 24 to swing, and can further swing in the direction closer to the transfer inclined surface 1151 on the basis of the above (1), so that part of the cleaning module 20 is located below the support plane PL. At this time, the acting force between the bearing surface 2001 and the cleaning module 20 is smaller than the acting force between the surface to be cleaned and the cleaning module 20 in the above (1), and the contact effect between the cleaning belt 24 and the transfer inclined surface 1151 at this time is better than that in the above (1). Furthermore, the self-cleaning mode can be further started, and the cleaning efficiency can be improved in the self-cleaning mode, and the removal rate of the accumulated garbage of the cleaning device 101 can be improved.

[0199] (3) In the self-cleaning mode, Figure 16 the cleaning body 103 therein is placed on the bearing surface 2001 and in contact with the bearing surface 2001. The cleaning module 20 is arranged at an interval from the bearing surface 2001. The link assembly 23 can drive the second roller 22 and the cleaning belt 24 to swing, and can further swing in the direction closer to the transfer inclined surface 1151 on the basis of the above (2), so that part of the cleaning module 20 is located below the support plane PL. At this time, the acting force between the bearing surface 2001 and the cleaning module 20 is 0, and the contact effect between the cleaning belt 24 and the transfer inclined surface 1151 at this time is better than that in the above (1) and (2). Furthermore, the self-cleaning mode can be further started, and the cleaning efficiency can be improved in the self-cleaning mode, and the removal rate of the accumulated garbage of the cleaning device 101 can be improved.

[0200] Please refer to Figure 16 , a storage groove 1022 is provided on the base station 102. When the cleaning body 103 is supported on the bearing surface 1021, at least part of the projection of the second roller 22 along the gravity direction falls into the storage groove 1022, and the cleaning belt 24 wound around the second roller 22 extends into the storage groove 1022 and is arranged at an interval from the groove wall of the storage groove 1022.

[0201] In some embodiments, the storage groove 1022 may be provided on the bearing surface 1021 and extend downward below the support plane PL to be spaced apart from the cleaning belt 24 wound around the second roller 22. In some embodiments, the storage groove 1022 may be omitted, and the cleaning module 20, such as the second roller 22 and the cleaning belt 24, may be kept in a suspended state by other means. In some embodiments, the cleaning belt 24 wound around the second roller 22 extends into the storage groove 1022 and contacts the groove wall of the storage groove 1022, and the cleaning module 20 is limited by the storage groove 1022. In some embodiments, the cleaning belt 24 wound around the second roller 22 extends into the storage groove 1022, and the second roller 22 presses the cleaning belt 24 against the groove wall of the storage groove 1022, and the cleaning module 20 is limited by the storage groove 1022. In some embodiments, when the cleaning belt 24 wound around the second roller 22 extends into the storage groove 1022 and is spaced apart from the groove wall of the storage groove 1022, the storage groove 1022 can store the garbage dropped on the cleaning belt 24 and also store the garbage sliding down from the transfer slope 1511.

[0202] Optionally, by keeping the cleaning module 20 in a suspended state and spaced apart from the groove wall of the storage groove 1022, at this time the cleaning belt 24 does not contact the groove wall of the storage groove 1022. When the cleaning belt 24 rotates in the first direction, it will not form a frictional force away from the transfer slope 1151 with the groove wall of the storage groove 1022, and thus will not have a moment away from the transfer slope 1151, thereby ensuring the pressure of the cleaning module 20 on the transfer slope 1151 and effectively improving the cleaning strength.

[0203] In some embodiments, Figure 16 the cleaning main body 103 is placed on the bearing surface 1021, the cleaning belt 24 wound around the second roller 22 extends into the storage groove 1022 and is spaced apart from the groove wall of the storage groove 1022, so that the cleaning module 20 is in a suspended state. Relative to Figure 6 the cleaning main body 103 is placed on the surface to be cleaned and supported by the surface to be cleaned, Figure 16 when the cleaning module 20 in a suspended state can swing under the link assembly 23, structures in the cleaning module 20 other than the cleaning belt 24, such as the second roller 22, press the cleaning belt 24 against the guiding portion 116 and / or the transfer slope 1151, so that the supporting force of the guiding portion 116 and / or the transfer slope 1151 on the cleaning module 20 becomes larger, and the distance between the cleaning belt 24 and the guiding portion 116 and / or the transfer slope 1151 is adjusted to facilitate the cleaning of the garbage on the guiding portion 116 and / or the transfer slope 1151 in the self-cleaning mode.

[0204] On one side edge of the base station 102, a guiding inclined plane 1023 connected to the bearing surface 1021 is provided. Further, the cooperation between the bearing surface 1021 and the surface to be cleaned or the ground can be realized through the guiding inclined plane 1023, so that the cleaning main body 103 can roll from the surface to be cleaned or the ground to the guiding inclined plane 1023 under the rolling of the wheel body 13, and further roll onto the bearing surface 1021 to realize the placement of the cleaning main body 103. In some embodiments, the guiding inclined plane 1023 can be omitted.

[0205] A limiting mechanism 1024 is provided on the base station 102. When the cleaning main body 103 is placed on the base station 102, the limiting mechanism 1024 can cooperate with the cleaning main body 103 to realize the limitation of the cleaning main body 103, and can keep the cleaning main body 103 stable and non-shaking when the cleaning main body 103 starts the self-cleaning mode, thus ensuring the use safety of the cleaning main body 103. In some embodiments, the limiting mechanism 1024 can be arranged on the bearing surface 1021.

[0206] In some embodiments, the limiting mechanism 1024 can be one or more of structures such as a groove, a bump or a baffle. In some embodiments, the limiting mechanism 1024 can be a limiting groove to accommodate the wheel body 13 and complete the limitation of the wheel body 13, and further realize the limitation of the cleaning main body 103. In some embodiments, the limiting mechanism 1024 can include a first limiting groove 1025 and a second limiting groove 1026. The first limiting groove 1025 can be correspondingly arranged for the front wheel body 131, and the second limiting groove 1026 can be correspondingly arranged for the rear wheel body 132. Then, when the cleaning main body 103 is placed on the base station 102, the front wheel body 131 is located in the first limiting groove 1025, and the rear wheel body 132 is located in the second limiting groove 1026. In some embodiments, one of the first limiting groove 1025 and the second limiting groove 1026 can be omitted. In some embodiments, on a reference section perpendicular to the support plane PL defined by the front wheel body 131 and the rear wheel body 132, the groove wall of the first limiting groove 1025 is arranged in an arc shape adapted to the outer peripheral surface of the front wheel body 131, which can better limit the front wheel body 131 and reduce the occurrence of the shaking of the cleaning main body 103. Of course, when the user controls the cleaning main body 103, it is also convenient for the front wheel body 131 to slide out of the first limiting groove 1025. In some embodiments, on a reference section perpendicular to the support plane PL defined by the front wheel body 131 and the rear wheel body 132, the groove wall of the second limiting groove 1026 is arranged in an arc shape adapted to the outer peripheral surface of the rear wheel body 132, which can better limit the rear wheel body 132 and reduce the occurrence of the shaking of the cleaning main body 103. Of course, when the user controls the cleaning main body 103, it is also convenient for the rear wheel body 132 to slide out of the second limiting groove 1026.

[0207] In some embodiments, the first limiting groove 1025 is disposed adjacent to the receiving groove 1022, and the depression depth of the first limiting groove 1025 is smaller than that of the receiving groove 1022. In some embodiments, the receiving groove 1022 may be formed at the bottom of the first limiting groove 1025, and thus the garbage in the first limiting groove 1025 can be guided to the receiving groove 1022. In some embodiments, the first limiting groove 1025 is closer to the receiving groove 1022 than the second limiting groove 1026.

[0208] A limiting protrusion 1027 may be provided on the base station 102. When the cleaning main body 103 is placed on the base station 102, the limiting protrusion 1027 can cooperate with the cleaning main body 103 to limit the cleaning main body 103, and can keep the cleaning main body 103 stable and non-shaking when the cleaning main body 103 starts the self-cleaning mode, thereby ensuring the use safety of the cleaning main body 103. In some embodiments, the limiting protrusion 1027 may be a part of the limiting mechanism 1024. In some embodiments, the limiting protrusion 1027 may be provided corresponding to the card slot 1111. When the cleaning main body 103 is placed on the base station 102, the limiting protrusion 1027 is located in the card slot 1111. In some embodiments, the installation positions of the limiting protrusion 1027 and the card slot 1111 can be interchanged. Furthermore, the card slot 1111 may also be a part of the limiting mechanism 1024. In some embodiments, the limiting protrusion 1027 can be omitted. In some embodiments, the limiting protrusion 1027 may be provided on the bearing surface 1021.

[0209] In some embodiments, the limiting protrusion 1027 may be located between the first limiting groove 1025 and the second limiting groove 1026.

[0210] In some embodiments, under the control of the user, the handle 104 can keep the front wheel body 131 suspended and the rear wheel body 132 slides. The cleaning main body 103 is pushed above the bearing surface 1021 by the rear wheel body 132 along the guiding inclined surface 1023. When the rear wheel body 132 moves to be limited by the limiting mechanism 1024 and the front wheel body 131 contacts the bearing surface 1021, the limiting protrusion 1027 extends into the card slot 1111. Of course, the way of placing the cleaning main body 103 on the bearing surface 1021 is not limited to this, and it can also be through other ways, which will not be elaborated.

[0211] Please refer to Figure 17 , Figure 17 For Figure 16 the structural schematic diagram of the base station 102 in the illustrated embodiment. The base station 102 may include a bearing seat 50 and a blower 60 disposed in the bearing seat 50 (such as Figure 16As shown). The carrier base 50 is provided with a bearing surface 1021 for placing the cleaning main body 103. The fan 60 can provide a flowing air current for the cleaning main body 103. Of course, it can also provide a drying air current or an air current with a disinfectant substance according to the needs of those skilled in the art. The air current can be generated by the fan 60 in the self-cleaning mode and can be blown towards the cleaning belt 24 to accelerate the drying and / or disinfection of the cleaning belt 24, etc. In some embodiments, the air current can be guided by the carrier base 50 into the storage groove 1022 and blown towards the cleaning belt 24 extending into the storage groove 1022. In some embodiments, the fan 60 can operate in the self-cleaning mode. In some embodiments, the fan 60 can be omitted.

[0212] The carrier base 50 may include a main housing 51 and a tray 52 detachably arranged with the main housing 51. The main housing 51 and the tray 52 can cooperate to support the base station 102. Of course, only the main housing 51 can also support the base station 102. In some embodiments, the tray 52 can be omitted. In some embodiments, the main housing 51 and the tray 52 can be of an integral structure.

[0213] The main housing 51 may include a support portion 511 and side wall portions (such as a first side wall portion 512, a second side wall portion 513, and a third side wall portion 514). The support portion 511 can be provided with the bearing surface 1021 to support the cleaning main body 103. The side wall portions can surround the support portion 511 to define a space for placing the cleaning main body 103 by the support portion 511. Additionally, the air current can also be defined. In some embodiments, the side wall portions such as the first side wall portion 512, the second side wall portion 513, and the third side wall portion 514 can be omitted.

[0214] A guiding inclined surface 1023 connected to the bearing surface 1021 is provided at the edge on one side of the support portion 511. Furthermore, the cooperation between the bearing surface 1021 and the surface to be cleaned or the ground, etc. can be realized through the guiding inclined surface 1023, so that the cleaning main body 103 can roll from the surface to be cleaned or the ground, etc. to the guiding inclined surface 1023 under the rolling of the wheel body 13 and further roll onto the bearing surface 1021 to achieve the placement of the cleaning main body 103.

[0215] In some embodiments, the support portion 511 can be provided with the storage groove 1022 in the above embodiments. In some embodiments, the support portion 511 can be provided with the limiting mechanism 1024 in the above embodiments. In some embodiments, the support portion 511 can be provided with the first limiting groove 1025 in the above embodiments. In some embodiments, the support portion 511 can be provided with the second limiting groove 1026 in the above embodiments. In some embodiments, the support portion 511 can be provided with the limiting protrusion 1027 in the above embodiments.

[0216] The first side wall portion 512, the third side wall portion 514 and the second side wall portion 513 are connected in sequence and can be connected to the support portion 511 at the edge of the support portion 511. In some embodiments, at least one of the first side wall portion 512, the third side wall portion 514 and the second side wall portion 513 and the support portion 511 are of an integral structure.

[0217] The first side wall portion 512 and the second side wall portion 513 are disposed on opposite sides of the support portion 511, and the third side wall portion 514 and the guiding inclined surface 1023 are disposed between the first side wall portion 512 and the second side wall portion 513. The guiding inclined surface 1023 is disposed on one side of the support portion 511, such that the third side wall portion 514 is disposed on the side of the support portion 511 away from the guiding inclined surface 1023.

[0218] In some embodiments, when the cleaning main body 103 is placed on the base station 102, the first side wall portion 512 is located on the side of the cleaning main body 103 where the second side wall 114 is provided, and is disposed opposite to the second side wall 114. The second side wall portion 513 is located on the side of the cleaning main body 103 where the first side wall 113 is provided, and is disposed opposite to the first side wall 113. The third side wall portion 514 is located on the side of the cleaning main body 103 where the flip cover 12 is provided.

[0219] In some embodiments, the second side wall portion 513 may be provided with a second electrical connection end 5131 corresponding to the first electrical connection end 1131, such that the second electrical connection end 5131 is electrically connected to the first electrical connection end 1131. Furthermore, the charging operation of the cleaning device 101 can be realized, the control of the base station 102 by the cleaning device 101 can also be realized. Of course, the interaction between the cleaning device 101 and the base station 102 can also be realized. Moreover, the system upgrade or maintenance of the cleaning device 101, such as the cleaning main body 103, can also be realized. Of course, the second electrical connection end 5131 can also be selectively disposed on other parts of the base station 102, such as the carrier 50, according to the needs of those skilled in the art.

[0220] In some embodiments, when the cleaning main body 103 is placed on the base station 102, the second electrical connection end 5131 and the first electrical connection end 1131 can be automatically electrically connected. In some embodiments, when the cleaning main body 103 is limited on the base station 102 in cooperation with the limiting mechanism 1024, the second electrical connection end 5131 and the first electrical connection end 1131 can be automatically electrically connected.

[0221] In some embodiments, the cleaning device 101 can control the fan 60 through the first electrical connection end 1131 and the second electrical connection end 5131.

[0222] Please refer to Figure 16, an assembly space 501 can be provided inside the third side wall portion 514 to accommodate the blower 60. An air inlet 502 is provided on the side of the third side wall portion 514 facing away from the cleaning main body 103 to communicate with the assembly space 501. An air outlet 503 is provided on the side of the third side wall portion 514 close to the cleaning main body 103 to communicate with the assembly space 501.

[0223] Please refer to Figure 16 and Figure 17 , the tray 52 can be provided with a bearing surface 1021, or can cooperate with the main housing 51, such as the support portion 511, to form the bearing surface 1021. In some embodiments, the tray 52 can be provided with the storage groove 1022 in the above embodiments. In some embodiments, the tray 52 can be provided with the limiting mechanism 1024 in the above embodiments. In some embodiments, the tray 52 can be provided with the first limiting groove 1025 in the above embodiments. In some embodiments, the tray 52 can be provided with the second limiting groove 1026 in the above embodiments. In some embodiments, the tray 52 can be provided with the limiting protrusion 1027 in the above embodiments.

[0224] In some embodiments, the tray 52 can be covered above the support portion 511. In some embodiments, when the storage groove 1022 is provided on the bearing surface 1021, the tray 52 is provided with ventilation holes 521, and the ventilation holes 521 can guide the airflow. In some embodiments, the ventilation holes 521 can communicate with the storage groove 1022, and then the airflow can be introduced into the storage groove 1022. In some embodiments, the ventilation holes 521 can be located on the side of the storage groove 1022 close to the third side wall portion 514. Of course, the position of the ventilation holes 521 can also be adjusted according to the needs of those skilled in the art.

[0225] Please refer to Figure 16 , the blower 60 can be provided, for example, in the assembly space 501 of the third side wall portion 514. The blower 60 can form an airflow, so that the airflow enters the third side wall portion 514, such as the assembly space 501, from the air inlet 502 and flows out from the air outlet 503, and then the airflow flows into the ventilation holes 521 to be guided into the storage groove 1022.

[0226] The installation position of the blower 60 can be adjusted according to the needs of those skilled in the art and can be provided at other parts of the carrier seat 50. Furthermore, the installation positions of the air inlet 502 and the air outlet 503 can also be adjusted, which will not be elaborated here.

[0227] In several embodiments provided by the present application, it should be understood that the disclosed methods and devices can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of modules or units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed.

[0228] The units described as separate components may or may not be physically separated. The components shown as units may or may not be physical units, that is, they may be located in one place or distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0229] In addition, each functional unit in various embodiments of the present application can be integrated in a processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit. The above integrated units can be implemented in the form of hardware or in the form of software functional units.

[0230] The above is only the embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.

Claims

1. A cleaning system, characterized in that, The cleaning system includes a base station and a cleaning device. The cleaning device includes a main frame and a cleaning module. The main frame is provided with a transfer inclined plane. The cleaning module includes a first roller, a second roller, a link assembly, and a cleaning belt. One end of the first roller and the link assembly is rotatably supported on the main frame. The first roller can rotate about a first axis, and the link assembly can swing about a second axis parallel to the first axis. The second roller is supported at the other end of the link assembly and can rotate about a third axis parallel to the first axis. The cleaning belt is annularly arranged around the first roller and the second roller. The cleaning belt abuts against the front side of the transfer inclined plane and, in the working mode, is pressed against the surface to be cleaned by the second roller. Then, when the second roller rotates in a first direction, the garbage on the surface to be cleaned is conveyed from the lower end of the transfer inclined plane to the upper end of the transfer inclined plane. The main frame has a support plane in contact with the surface to be cleaned; A bearing surface is provided on the base station. The bearing surface is used to support the main frame and makes part of the cleaning module located below the support plane. The cleaning device further drives the second roller to rotate in the self-cleaning mode.

2. The cleaning system according to claim 1, wherein The bearing surface is used to support the main frame and keeps the second roller in a suspended state. The cleaning device further drives the second roller in the suspended state to rotate in the self-cleaning mode.

3. The cleaning system according to claim 1, characterized in that, The cleaning device is configured to drive the second roller to rotate in the first direction in the self-cleaning mode.

4. The cleaning system according to claim 3, wherein, The second axis and the first axis are the same axis. The cleaning device further includes a scraper. The scraper is arranged on the main frame and is used to press the cleaning belt against the outer peripheral surface of the first roller. The cleaning device is also configured to drive the second roller to rotate in a second direction opposite to the first direction in the self-cleaning mode.

5. The cleaning system according to any one of claims 1-3, characterized in that, The cleaning device is also configured to drive the second roller to rotate in a second direction opposite to the first direction in the self-cleaning mode.

6. The cleaning system according to claim 3, wherein The cleaning device is configured to drive the second roller to rotate alternately in the first direction and the second direction opposite to the first direction in the first stage of the self-cleaning mode, and the displacement of the cleaning belt relative to the transfer inclined plane is less than the length of the transfer inclined plane. The cleaning device is configured to drive the second roller to rotate continuously in the first direction or the second direction in the second stage of the self-cleaning mode, and the displacement of the cleaning belt relative to the transfer inclined plane is greater than the length of the transfer inclined plane.

7. The cleaning system according to claim 1, characterized in that, The base station is further provided with a storage groove. When the cleaning device is supported on the bearing surface, at least part of the projection of the second roller in the direction of gravity falls into the storage groove. The cleaning belt wound around the second roller extends into the storage groove and is spaced from the groove wall of the storage groove.

8. The cleaning system according to claim 7, characterized in that, The base station includes a main housing and a tray detachably arranged with the main housing. The storage groove is located on the tray.

9. The cleaning system according to claim 8, wherein, The base station further includes a blower disposed within the main housing. An air outlet is provided on the main housing, and ventilation holes are provided on the tray. The blower is configured to supply a drying air flow to the storage groove through the air outlet and the ventilation holes.

10. The cleaning system according to claim 1, wherein Limit protrusions are provided on the bearing surface, and a clamping groove is provided at the bottom of the main frame. When the cleaning device is supported on the bearing surface, the limit protrusions are placed within the clamping groove.

11. The cleaning system according to claim 10, wherein A guiding slope connected to the bearing surface is further provided on the base station. A front wheel body approaching the second roller and a rear wheel body away from the second roller along the traveling direction of the cleaning device are provided on the main frame. The cleaning device is further provided with a handle. The handle is configured to allow the user to push the cleaning device above the bearing surface along the guiding slope by using the rear wheel body with the front wheel body remaining suspended. A limiting mechanism is further provided on the bearing surface and the guiding slope. When the rear wheel body moves to be limited by the limiting mechanism and the front wheel body contacts the bearing surface, the clamping groove is positioned to cooperate with the limit protrusions.

12. The cleaning system according to claim 11, wherein The limiting mechanism is a limiting groove. The supporting plane is defined by the front wheel body and the rear wheel body. On a reference cross-section perpendicular to the supporting plane, the groove wall of the limiting groove is arranged in an arc shape adapted to the outer peripheral surface of the rear wheel body.