Cleaning base station, cleaning device and cleaning system

By injecting cleaning liquid into the wastewater storage component of the floor brush through the flushing component of the cleaning base station, the problem of wastewater sedimentation in the cleaning equipment is solved, achieving a highly efficient and time-saving cleaning effect.

CN116269062BActive Publication Date: 2025-11-04ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202211578246.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-06
Publication Date
2025-11-04
Estimated Expiration
2042-12-06

AI Technical Summary

Technical Problem

After cleaning, wastewater accumulates in the wastewater tank, which is time-consuming and labor-intensive to clean, thus affecting cleaning efficiency.

Method used

A cleaning base station is provided, comprising a base and a flushing assembly. The base has a cleaning tank, and the flushing assembly includes a clean water tank, a flushing pipe, and a connector. Cleaning liquid is injected into the wastewater storage container of the floor brush through the connector, thereby achieving automatic cleaning of the wastewater storage container.

Benefits of technology

The cleaning base station can thoroughly clean the ground brushes and wastewater storage components, eliminating the need for manual cleaning by users, improving cleaning efficiency, and reducing labor intensity.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a cleaning base station, a cleaning device and a cleaning system. The cleaning base station comprises a base (110) and a flushing assembly (120); the base (110) is provided with a cleaning tank (111) for accommodating a floor brush (210) of the cleaning device (200); the flushing assembly (120) comprises a clean water tank (121), a flushing pipeline (122) and a first connector (123); one end of the flushing pipeline (122) is communicated with the clean water tank (122), and the other end is connected to the first connector (123); the first connector (123) is communicated with the floor brush (210) in the cleaning tank (111) to inject cleaning liquid into a sewage storage part (211) of the floor brush (210), so as to clean the sewage storage part (211). In this way, the cleaning base station can comprehensively clean the cleaning device, and the cleaning efficiency is high.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of household appliances, in particular to a cleaning base station, a cleaning device and a cleaning system. BACKGROUND

[0002] With the continuous development of science and technology and the improvement of people's living standards, new household appliances such as vacuum cleaners, floor washing machines and other household cleaning devices are increasingly appearing in people's lives.

[0003] At present, the cleaning device can include a main machine and a floor brush assembly connected with the main machine. The main machine is connected with the floor brush assembly through a connecting rod and is rotatably arranged relative to the floor brush assembly. The floor brush assembly is used for wet mopping and other cleaning operations on the surface to be cleaned (such as the ground). Specifically, a sewage tank can be arranged in the cleaning device. During wet mopping, the sewage generated during cleaning is recycled to the inside of the cleaning device, so as to avoid pollution of the cleaned ground by the sewage.

[0004] However, after the cleaning operation, the sewage will be deposited in the sewage tank of the cleaning device, which is time-consuming and laborious to clean. SUMMARY

[0005] The cleaning base station, the cleaning device and the cleaning system provided by the embodiments of the present application are more comprehensive in cleaning the cleaning device and have higher cleaning efficiency.

[0006] In a first aspect, the present application provides a cleaning base station, comprising a base and a flushing assembly; the base has a cleaning tank configured to accommodate a floor brush of a cleaning device, and the flushing assembly comprises a clean water tank, a flushing pipeline and a first docking piece. The clean water tank is configured to store a cleaning liquid, one end of the flushing pipeline is communicated with the clean water tank, and the other end of the flushing pipeline is connected to the first docking piece. The first docking piece is located in the cleaning tank, and the first docking piece is configured to be communicated with the floor brush in the cleaning tank to inject the cleaning liquid into a sewage storage member of the floor brush, thereby cleaning the sewage storage member.

[0007] In this way, the cleaning base station can not only clean the cleaning member in the floor brush, but also clean the sewage storage member in the floor brush, and the cleaning is more comprehensive. At the same time, the cleaning base station can clean the sewage storage member by injecting the cleaning liquid, which saves the user's manual cleaning step, is more time-saving and labor-saving, and has higher cleaning efficiency.

[0008] In an optional embodiment, the first docking piece is located at the bottom of the cleaning tank, and the first docking piece has a docking port configured to be communicated with the floor brush. In this way, the floor brush is less disturbed by the first docking piece during being placed in the cleaning tank, and does not need to be adjusted in position too much to complete the docking with the first docking piece.

[0009] In an alternative embodiment, the bottom of the cleaning tank has a communication port, and the flushing pipeline is connected to the communication port; the first connecting member is detachably connected to the bottom of the cleaning tank, and the connecting port and the communication port are in communication with each other. In this way, the first connecting member and the cleaning tank are in a detachable connection state, facilitating installation and replacement.

[0010] In an alternative embodiment, the bottom of the cleaning tank has a mounting portion extending towards the floor brush, and the mounting portion is located outside the communication port; the first connecting member is clamped to the mounting portion. In this way, the first connecting member is mounted to the bottom of the cleaning tank by clamping.

[0011] In an alternative embodiment, the first connecting member includes a connecting body and a sealing portion; the connecting body is clamped to the mounting portion, and the connecting port penetrates the connecting body; the sealing portion is a plurality of portions and is spaced apart along the axial direction of the connecting port. When the first connecting member and the floor brush in the cleaning tank are connected, the sealing portion can be sealingly connected to the corresponding structure on the floor brush, thereby preventing the cleaning liquid injected by the first connecting member from overflowing into the cleaning tank or preventing the sewage in the cleaning tank from seeping into the connecting port.

[0012] In an alternative embodiment, the first connecting member is a silica gel member or a rubber member. In this way, the sealing portion is a flexible structure, and the sealing effect is better.

[0013] In an alternative embodiment, the flushing assembly further includes a first driving member connected to the flushing pipeline and configured to drive the cleaning liquid in the clean water tank to flow to the sewage storage member. The first driving member can force the cleaning liquid to flow into the interior of the sewage storage member at a faster flow rate through the action of pressure, thereby flushing out the sewage and attached dirt in the sewage storage member, improving the flushing and cleaning effect of the sewage storage member.

[0014] In an alternative embodiment, the cleaning base station further includes a sewage recovery assembly, and the sewage recovery assembly includes a sewage tank in communication with the cleaning tank to store the sewage in the cleaning tank. In this way, the sewage in the cleaning tank is recovered to the interior of the cleaning base station, avoiding secondary pollution of the cleaning equipment by the sewage in the cleaning tank.

[0015] In an alternative embodiment, the cleaning base station further includes a trigger switch assembly, and the trigger switch assembly includes a trigger member arranged in the cleaning tank and configured to trigger the cleaning equipment located in the cleaning tank to discharge the sewage stored in the cleaning equipment. In this way, the sewage in the cleaning equipment can be conveniently discharged into the cleaning tank.

[0016] In an alternative embodiment, the cleaning tank is provided with a drain hole, and the trigger member is at least partially arranged in the drain hole. In this way, when the brush of the cleaning device is placed in the cleaning tank, the trigger member will be in contact with the cleaning device to trigger the cleaning device, and the cleaning device can drain the sewage. The process of draining the sewage is relatively convenient.

[0017] In an alternative embodiment, the trigger member is a top rod, and the top of the top rod extends towards the cleaning device. In this way, the size of the trigger member is relatively small, and the influence of the trigger member on the drainage of the drain hole is also relatively small.

[0018] In an alternative embodiment, the trigger switch assembly further comprises a connecting cylinder connected to the base, and the connecting cylinder has a connecting cavity therein. The top of the connecting cavity is in communication with the drain hole, and the sewage tank is in communication with the connecting cavity, and at least part of the trigger member is arranged in the connecting cavity. In this way, when the cleaning device is placed in the cleaning tank, the drain hole, the drain hole and the connecting cavity are sequentially communicated to form a sewage drainage channel, and the sewage in the cleaning device can be sequentially drained through the drain hole, the drain hole and the connecting cavity into the sewage tank 131.

[0019] In an alternative embodiment, the sewage recovery assembly further comprises a first connecting pipeline and a second driving member. One end of the first connecting pipeline is in communication with the connecting cavity, and the other end of the first connecting pipeline is in communication with the sewage tank. The second driving member is used to drive the sewage in the connecting cavity to flow into the sewage tank.

[0020] In a second aspect, the application also provides a cleaning device, which comprises a brush, the brush comprising a housing and a second docking member and a sewage storage member. The second docking member is arranged at the bottom of the housing, and the second docking member has a water inlet. The water inlet is in communication with the sewage storage member. The second docking member is configured to receive external cleaning liquid through the water inlet to clean the sewage storage member. In this way, the cleaning device can not only clean the cleaning member, but also clean the sewage storage member in the cleaning device. At the same time, the cleaning of the sewage storage member can be realized by the injection of external cleaning liquid, and the manual cleaning step of the user is saved, which is time-saving and labor-saving, and the cleaning efficiency is high.

[0021] In an alternative embodiment, the second docking member is configured to dock with the first docking member of the cleaning base station when the brush is arranged in the cleaning tank of the cleaning base station, so that the first docking member pours the cleaning liquid into the sewage storage member through the water inlet.

[0022] In an alternative embodiment, the second docking member has a docking groove, and the bottom of the docking groove is in communication with the water inlet. The docking groove is configured to accommodate at least part of the structure of the first docking member. In this way, the cleaning liquid sprayed by the first docking member will be contained in the docking groove, avoiding the overflow of the cleaning liquid from the docking position.

[0023] In an alternative embodiment, the width of the abutment groove gradually decreases from the opening to the bottom. In this way, the abutment groove gradually narrows from the opening to the bottom, which is conducive to the gathering and collection of the cleaning liquid and further prevents the cleaning liquid from overflowing from the abutment groove to the outside of the second abutment member.

[0024] In an alternative embodiment, the floor brush further has a second connecting pipeline, which is located in the shell and is in communication between the second abutment member and the sewage storage member. In this way, the sewage storage member can still be connected to the second abutment member when it is located at different positions and regions of the floor brush, and the position of the sewage storage member is more flexible.

[0025] In an alternative embodiment, the sewage storage member comprises a box body and a valve assembly, the bottom of the box body is provided with a sewage discharge hole, and at least part of the valve assembly is arranged in the sewage discharge hole. The valve assembly is configured to open or close the sewage discharge hole. In this way, the sewage in the sewage storage member can be prevented from leaking out during the daily cleaning process of the floor brush.

[0026] In a third aspect, the application also provides a cleaning system comprising a cleaning base station and / or a cleaning device, the cleaning base station being configured to clean the cleaning device. In this way, the cleaning base station in the cleaning system can not only clean the cleaning member of the cleaning device, but also clean the sewage storage member in the cleaning device; at the same time, the cleaning base station can clean the sewage storage member by injecting cleaning liquid, which saves the user from the manual cleaning step, is more time-saving and labor-saving, and has a higher cleaning efficiency.

[0027] The application provides a cleaning base station, a cleaning device and a cleaning system. The cleaning base station comprises a base and a flushing assembly. The base has a cleaning tank configured to accommodate a floor brush of the cleaning device. The flushing assembly comprises a clean water tank, a flushing pipeline and a first abutment member. The clean water tank is configured to store cleaning liquid. One end of the flushing pipeline is in communication with the clean water tank, and the other end of the flushing pipeline is connected to the first abutment member. The first abutment member is located in the cleaning tank and is configured to communicate with the floor brush in the cleaning tank to inject the cleaning liquid into a sewage storage member of the floor brush, thereby cleaning the sewage storage member. In this way, the cleaning base station can not only clean the cleaning member in the floor brush, but also clean the sewage storage member in the floor brush, and the cleaning is more comprehensive. At the same time, the cleaning base station can clean the sewage storage member by injecting cleaning liquid, which saves the user from the manual cleaning step, is more time-saving and labor-saving, and has a higher cleaning efficiency.

[0028] In addition to the technical problems solved by the embodiments of the present application, the technical features constituting the technical solutions, and the beneficial effects brought by the technical features, other technical problems solved by the dryer and clothes drying device provided by the present application, other technical features included in the technical solutions, and the beneficial effects brought by the technical features will be further described in detail in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0030] Figure 1 is a schematic diagram of the working state of a cleaning base station provided by an embodiment of the present application;

[0031] Figure 2 is a schematic diagram of the structure of a cleaning base station provided by an embodiment of the present application;

[0032] Figure 3 is Figure 2 is a partial enlarged view of position A in FIG. 7;

[0033] Figure 4 is a schematic diagram of the internal structure of a cleaning device corresponding to the cleaning base station provided by an embodiment of the present application;

[0034] Figure 5 is a schematic diagram of the connection state of the cleaning base station and the cleaning device when they are docked, provided by an embodiment of the present application;

[0035] Figure 6 is Figure 5 is a partial enlarged view of position B in FIG. 8;

[0036] Figure 7 is Figure 5 is a partial enlarged view of position C in FIG. 9;

[0037] Figure 8 is a schematic diagram of the structure of a sewage storage member in a cleaning device corresponding to the cleaning base station provided by an embodiment of the present application;

[0038] Figure 9 is a schematic diagram of the structure of a cleaning device provided by an embodiment of the present application.

[0039] Explanation of reference signs:

[0040] 100 - cleaning base station; 200 - cleaning device; 300 - cleaning system;

[0041] 110-base; 120-rinse assembly; 130-sewage recovery assembly; 140-trigger switch assembly; 210-floor brush; 220-main machine; 230-connecting rod;

[0042] 111-washing tank; 121-clean water tank; 122-rinse pipeline; 123-first docking piece; 124-first driving piece; 131-sewage tank; 132-first connecting pipeline; 133-second driving piece; 141-triggering piece; 142-connecting cylinder; 143-connecting cavity; 211-sewage storage piece; 212-cleaning piece; 213-housing; 214-second docking piece; 215-second connecting pipeline;

[0043] 1111-communication port; 1112-mounting portion; 1113-drainage hole; 1231-docking port; 1232-docking body; 1233-sealing portion; 2111-box body; 2112-valve assembly; 2113-drainage hole; 2141-water inlet; 2142-docking groove;

[0044] 1112a-flange; 1231a-step face; 2112a-valve rod; 2112b-valve core. DETAILED DESCRIPTION

[0045] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application.

[0046] Firstly, it should be understood by those skilled in the art that the embodiments are only used for explaining the technical principles of the present application, and are not intended to limit the protection scope of the present application. Those skilled in the art can make adjustments according to the needs in order to adapt to specific application occasions.

[0047] Secondly, it should be noted that in the description of the present application, the terms indicating the direction or positional relationship such as "inner" and "outer" are based on the direction or positional relationship shown in the drawings, which is only for the convenience of description, and does not indicate or imply that the device or member must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application.

[0048] In addition, it should be noted that in the description of the present application, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be the communication between the two components. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0049] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present disclosure. In the specification, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0050] At present, a cleaning device for cleaning the ground can include a main machine and a brush assembly connected with the main machine. The main machine is connected with the brush assembly through a connecting rod and is rotatably arranged relative to the brush assembly. The brush assembly is used for cleaning the surface to be cleaned (for example, the ground). Specifically, the brush assembly can include a cleaning piece for wet mopping. The cleaning piece contacts the ground during work. The cleaning device can use the cleaning piece to perform wet mopping operation after the cleaning piece is soaked. When the wet mopping operation is performed, the dirt on the ground mixes with the water in the soaked cleaning piece to form sewage. In order to avoid the sewage from polluting the ground, a sewage tank can be arranged in the cleaning device. The sewage generated during wet mopping is collected in the cleaning device to avoid the sewage from polluting the cleaned ground. Specifically, the sewage tank can collect the sewage in the interior through suction or the like.

[0051] However, after the cleaning device performs the cleaning operation, the sewage is accumulated in the sewage tank of the cleaning device, and the dirt in the sewage can also be deposited in the sewage tank. If the sewage tank is not cleaned, the dirt can block the sewage tank, produce odor, and even affect the normal use of the sewage tank. Therefore, the structure of the sewage tank of the cleaning device needs to be cleaned. Since the sewage tank structure is relatively closed, the user usually needs to manually disassemble the sewage tank and manually clean it. The cleaning process is time-consuming and laborious, which affects the cleaning efficiency.

[0052] Therefore, the present application provides a cleaning base station, a cleaning device and a cleaning system. The cleaning base station has a flushing assembly. The flushing assembly can be docked with the brush of the cleaning device and communicated with the sewage tank or other sewage storage member in the brush. Therefore, clean water is flushed into the sewage storage member, so that the sewage storage member is flushed and cleaned. Therefore, the cleaning of the cleaning device is more comprehensive, and the flushing of the sewage storage member is automatically completed by the cleaning base station using the cleaning liquid to form a cleaning water flow. It is more time-saving and labor-saving, and the cleaning efficiency is higher.

[0053] The structure and various possible implementation forms of the cleaning base station and the cleaning system provided by the present application are described in detail in combination with the specific embodiments.

[0054] Figure 1 This is a schematic diagram of the working state of a clean base station provided in an embodiment of this application. Figure 2 This is a schematic diagram of the structure of a clean base station provided in an embodiment of this application. Figure 3 yes Figure 2 A magnified view of a portion of point A in the middle. Figure 4 This is a schematic diagram of the internal structure of the cleaning equipment corresponding to the cleaning base station provided in the embodiments of this application. Figure 5 This is a schematic diagram illustrating the connection status of the cleaning base station and cleaning equipment during docking, as provided in the embodiments of this application. Figures 1 to 5 As shown, the cleaning base station 100 provided in this application is applied in the cleaning system 300 to clean the cleaning equipment 200. The cleaning base station 100 includes a base 110 and a rinsing assembly 120 disposed on the base 110; the base 110 has a cleaning tank 111, which is configured to accommodate the floor brush 210 of the cleaning equipment 200; the rinsing assembly 120 includes a clean water tank 121, a rinsing pipe 122 and a first docking member 123; the clean water tank 121 is configured to store cleaning liquid; one end of the rinsing pipe 122 is connected to the clean water tank 121 and the other end is connected to the first docking member 123; the first docking member 123 is located in the cleaning tank 111 and is configured to communicate with the floor brush 210 in the cleaning tank 111 to inject cleaning liquid into the wastewater storage member 211 of the floor brush 210, thereby cleaning the wastewater storage member 211.

[0055] Specifically, after the cleaning equipment 200 finishes cleaning the floor, the brush 210 and other structures on the cleaning equipment 200 become contaminated with dust and dirt. Therefore, the cleaning components 212 in the brush 210 need to be cleaned to facilitate continued cleaning operation. The cleaning base station 100 of this application can be used to clean the cleaning equipment 200. The cleaning equipment 200 can be a household cleaning device such as a vacuum cleaner or a mop.

[0056] Specifically, the base 110 of the cleaning base station 100 has a cleaning tank 111 that can accommodate the cleaning equipment 200, specifically the floor brush 210 of the cleaning equipment 200. The cleaning tank 111 can contain cleaning liquid, and the cleaning liquid is used to soak, wash and clean the cleaning components such as the roller brush on the floor brush 210.

[0057] In addition to cleaning the cleaning element such as the rolling brush on the floor brush 210 by using the cleaning tank 111, the base 110 of the cleaning base station 100 is also provided with the flushing assembly 120. When the floor brush 210 of the cleaning device 200 is located in the cleaning tank 111, the first docking piece 123 of the flushing assembly 120 can be docked with and communicated with the floor brush 210, so that the first docking piece 123 is communicated with the sewage storage piece 211 on the floor brush 210, and the first docking piece 123 is communicated with the clean water tank 121 on the base 110 through the flushing pipeline 122.

[0058] When the sewage in the sewage storage piece 211 is emptied, the cleaning liquid such as clean water in the clean water tank 121 can be introduced into the first docking piece 123 through the flushing pipeline 122, and the first docking piece 123 can spray the cleaning liquid to the docked floor brush 210, so that the cleaning liquid is injected into the sewage storage piece 211, so that the cleaning liquid flushes and cleans the inside of the sewage storage piece 211; the cleaned liquid can also be discharged out of the sewage storage piece 211. In this way, the cleaning base station 100 can not only clean the cleaning element in the floor brush 210, but also clean the sewage storage piece 211 in the floor brush 210, so that the cleaning of the cleaning device 200 is more complete; at the same time, the cleaning base station 100 can directly clean the cleaning device 200 by injecting the cleaning liquid, which saves the user's manual cleaning step, is more time-saving and labor-saving, and has high cleaning efficiency.

[0059] Specifically, in order to facilitate the docking of the flushing assembly 120 and the cleaning device 200, in an optional embodiment, the first docking piece 123 is located at the bottom of the cleaning tank 111, and the first docking piece 123 has a docking port 1231 configured to communicate with the floor brush 210. Because the first docking piece 123 is arranged in the cleaning tank 111 and located at the bottom of the cleaning tank 111, when the floor brush 210 is placed in the cleaning tank 111, the first docking piece 123 can be docked with the floor brush 210 above through the docking port 1231 of the first docking piece 123. The floor brush 210 is less disturbed by the first docking piece 123 during the process of being placed in the cleaning tank 111, and does not need to be adjusted in position too much, so that the docking with the first docking piece 123 can be completed.

[0060] When the first docking piece 123 is arranged at the bottom of the cleaning tank 111, the first docking piece 123 can be integrated with the bottom of the cleaning tank 111, or can be a separate structure from the bottom of the cleaning tank 111. Because the first docking piece 123 can have a relatively complex structure, the first docking piece 123 and the cleaning tank 111 can be a separate structure, so as to facilitate manufacturing and maintenance. The structure of the first docking piece 123 will be described below by taking the separate structure as an example.

[0061] Figure 6 is Figure 5A local enlarged view at B. Figure 7 is Figure 5 A local enlarged view at C. As shown in Figures 4 to 7 optionally, the bottom of the cleaning tank 111 has a communicating port 1111, and the flushing pipe 122 in the flushing assembly 120 is connected with the communicating port 1111; and the first connecting member 123 is detachably connected with the bottom of the cleaning tank 111, and the connecting port 1231 and the communicating port 1111 are in communication with each other. In this way, the first connecting member 123 and the cleaning tank 111 are in a detachable connection state, which facilitates installation and replacement.

[0062] In an optional structure, the bottom of the cleaning tank 111 has a mounting portion 1112 extending towards the floor brush 210, the mounting portion 1112 is located outside the communicating port 1111, and the first connecting member 123 is clamped with the mounting portion 1112.

[0063] Specifically, the mounting portion 1112 can be annular and surround the outside of the communicating port 1111, and the first connecting member 123 can be provided with a mounting structure matched with the annular mounting portion 1112, and the mounting structure is clamped on the mounting portion 1112. For example, when the mounting portion 1112 is annular, the top end of the mounting portion 1112 can be provided with an outwardly protruding flange 1112a, and the connecting port 1231 of the first connecting member 123 can be in the form of a through hole, and the hole wall of the through hole has a step surface 1231a matched with the flange, and the step surface 1231a is clamped on the flange 1112a, thereby completing the clamping between the first connecting member 123 and the mounting portion 1112.

[0064] In order to avoid the sewage in the cleaning tank 111 affecting the normal work of the flushing assembly 120, when the first connecting member 123 is connected with the floor brush 210, the floor brush 210 and the connecting port 1231 of the first connecting member 123 should be kept in a sealed state, that is, the connecting port 1231 of the first connecting member 123 and the cleaning tank 111 need to be separated from each other. Therefore, as an optional embodiment, the first connecting member 123 includes a connecting body 1232 and a sealing portion 1233, the connecting body 1232 is clamped on the mounting portion 1112, and the connecting port 1231 penetrates the connecting body 1232; and the sealing portion 1233 is multiple and spaced along the axial direction of the connecting port 1231.

[0065] At this time, the plurality of sealing portions 1233 are arranged at intervals along the axial direction of the docking portion 1231, i.e., the injection direction of the cleaning liquid, on the outside of the docking body 1232. When the first docking member 123 in the flushing assembly 120 is docked with the floor brush 210 in the cleaning tank 111, the sealing portions 1233 can be sealingly connected with the corresponding structures on the floor brush 210, thereby preventing the cleaning liquid injected by the first docking member 123 from overflowing to the cleaning tank 111 or preventing the sewage in the cleaning tank 111 from seeping into the docking portion 1231.

[0066] In order to ensure the sealing effect of the sealing portions 1233, at least part of the structure of the first docking member 123 is a flexible structure facilitating sealing. For example, in an alternative structure, the first docking member 123 is a silica gel member or a rubber member.

[0067] When the flushing assembly 120 in the cleaning base station 100 flushes the sewage storage member 211 in the floor brush 210 with the cleaning liquid, dirt may be attached to the inner wall of the sewage storage member 211, and the cleaning liquid needs to have a certain flow rate to flush the dirt away from the inner wall of the sewage storage member 211 to ensure the flushing effect. Alternatively, the flushing assembly 120 can further include a first driving member 124 connected to the flushing pipeline 122 and configured to drive the cleaning liquid in the clean water tank 121 to flow to the sewage storage member 211.

[0068] The first driving member 124 can be a water pump. The water pump pressurizes the flushing pipeline 122 and forces the cleaning liquid to flow into the sewage storage member 211 at a faster flow rate by pressure, thereby flushing the sewage and the attached dirt in the sewage storage member 211 out to improve the flushing and cleaning effect on the sewage storage member 211.

[0069] It should be noted that in addition to the above-mentioned arrangement in the middle of the flushing pipeline 122, the first driving member 124 can also be arranged in the clean water tank 121 and pump the cleaning liquid into the flushing pipeline 122 and the first docking member 123 by suction or negative pressure.

[0070] In addition, the clean water tank 121 in the flushing assembly 120 can also be arranged at a higher position of the base 110, for example, a position higher than the cleaning tank 111, and water flows from top to bottom by gravity and flushes into the sewage storage member 211.

[0071] When the cleaning base station 100 cleans the floor brush 210 of the cleaning device 200, on the one hand, the cleaning liquid mixes with the dirt attached to the cleaning member on the floor brush 210 to generate sewage, and on the other hand, the sewage storage member 211 in the floor brush 210 also discharges sewage to the cleaning base station 100, for example, into the cleaning tank 111. Accordingly, the sewage in the cleaning tank 111 can be recovered to the inside of the cleaning base station 100.

[0072] In a possible implementation, the cleaning base station 100 further comprises a sewage recovery assembly 130, which comprises a sewage tank 131 in communication with the cleaning tank 111. In this way, the sewage tank 131 can store the sewage in the cleaning tank 111, so as to recover the sewage in the cleaning tank 111 to the inside of the cleaning base station 100, avoiding secondary pollution of the cleaning equipment 200 by the sewage in the cleaning tank 111.

[0073] Specifically, the sewage tank 131 can be detachably arranged on the base 110, so that when the sewage tank 131 is full of sewage, the sewage tank 131 can be removed from the base 110 and the sewage can be poured out. In the embodiment, the sewage tank 131 and the clean water tank 121 are arranged at the top region of the base 110, so as to facilitate removal and installation.

[0074] Optionally, the cleaning base station 100 further comprises a trigger switch assembly 140, which comprises a trigger 141 arranged in the cleaning tank 111, and the trigger 141 is configured to trigger the cleaning equipment 200 in the cleaning tank 111, so that the cleaning equipment 200 discharges the sewage stored in the cleaning equipment 200, and the sewage of the cleaning equipment 200 can enter the sewage tank 131 for storage after being discharged into the cleaning tank 111. In this way, the sewage in the cleaning equipment 200 can be conveniently discharged into the cleaning tank 111. Specifically, the trigger 141 generally triggers the cleaning equipment 200 through physical contact, for example, the trigger 141 makes the triggered part in the cleaning equipment 200 displace through abutting, so as to realize the sewage discharge operation of the cleaning equipment 200.

[0075] The sewage stored in the cleaning equipment 200 is mainly located in the sewage storage 211 of the floor brush 210. In order to discharge the sewage from the sewage storage 211, the sewage storage 211 can be provided with a sewage discharge structure. Figure 8 is a structural schematic view of the sewage storage in the cleaning equipment corresponding to the cleaning base station provided by the embodiment of the present application. As shown in Figures 1 to 8 Specifically, the sewage storage 211 can be provided with an openable and closable sewage discharge hole 2113 at the lower part. When the sewage discharge hole 2113 is closed, the sewage is stored in the sewage storage 211; and when the sewage discharge hole 2113 is opened, the sewage storage 211 discharges the sewage outside the floor brush 210, for example, discharges into the cleaning tank 111.

[0076] It should be noted that the sewage discharge hole 2113 can be provided with an openable and closable valve structure, which is triggered by the trigger 141 to open the sewage discharge hole 2113, or the trigger 141 contacts and triggers the valve structure to close the sewage discharge hole 2113.

[0077] In a specific embodiment, the cleaning tank 111 is provided with a drainage hole 1113, and the trigger member 141 is at least partially arranged in the drainage hole 1113. In this way, when the floor brush 210 of the cleaning device 200 is placed in the cleaning tank 111, the trigger member 141 will contact the cleaning device 200 to trigger the cleaning device 200, and the cleaning device 200 can drain the sewage. The sewage is discharged from the drainage hole 1113 to the outside of the cleaning tank 111, and the sewage discharge process is more convenient.

[0078] The trigger member 141 can have various forms. Optionally, the trigger member 141 is a top rod, and the top of the top rod extends towards the cleaning device 200. In this way, the top rod can be arranged in the drainage hole 1113, and the top of the top rod is higher than the end surface of the drainage hole 1113. When the floor brush 210 of the cleaning device 200 is placed in the cleaning tank 111, the top rod can contact the corresponding structure on the floor brush 210, such as a switch valve or the like, to open the sewage discharge hole 2113 of the sewage storage member 211 in the floor brush 210, so that the sewage is discharged to the drainage hole 1113. In this way, the trigger member 141 is designed as a top rod, and the size of the trigger member 141 is smaller, which has less impact on the drainage of the drainage hole 1113.

[0079] Specifically, after the sewage is discharged from the drainage hole 1113, it can first enter the relay liquid storage member or cavity, and then be transferred to the sewage tank 131 from the liquid storage member or cavity. At this time, the trigger switch assembly 140 can further include a connecting barrel 142 connected to the base 110. The connecting barrel 142 has a connecting cavity 143 therein, the top of the connecting cavity 143 is in communication with the drainage hole 1113, the sewage tank 131 is in communication with the connecting cavity 143, and at least part of the trigger member 141 is arranged in the connecting cavity 143.

[0080] In this way, when the cleaning device 200 is placed in the cleaning tank 111, the sewage discharge hole 2113, the drainage hole 1113 and the connecting cavity 143 are sequentially communicated to form a sewage discharge channel, and the sewage in the cleaning device 200 can be sequentially discharged to the sewage tank 131 through the sewage discharge hole 2113, the drainage hole 1113 and the connecting cavity 143, thereby avoiding the sewage in the cleaning device 200 flowing to other positions of the cleaning tank 111 to cause secondary pollution to the cleaning member of the cleaning tank 111 or the cleaning device 200.

[0081] Generally, the position of the connecting cavity 143 is lower than the bottom of the cleaning tank 111, so that the sewage can be smoothly discharged into the connecting cavity by gravity.

[0082] In addition, in order to let the sewage into the sewage tank 131, the sewage recovery assembly 130 further comprises a first connecting pipeline 132 and a second driving member 133, one end of the first connecting pipeline 132 is in communication with the connecting cavity 143, the other end of the first connecting pipeline 132 is in communication with the sewage tank 131, and the second driving member 133 is used for driving the sewage in the connecting cavity 143 to flow into the sewage tank 131. The second driving member 133 can be a water pump or the like, and the sewage is pumped into the sewage tank 131.

[0083] In the embodiment, the cleaning base station comprises a base and a flushing assembly arranged on the base; the base has a cleaning tank configured to accommodate a floor brush of a cleaning device, and the flushing assembly comprises a clean water tank, a flushing pipeline and a first docking member, the clean water tank is configured to store cleaning liquid, one end of the flushing pipeline is in communication with the clean water tank, and the other end of the flushing pipeline is connected to the first docking member; the first docking member is located in the cleaning tank, and the first docking member is configured to communicate with the floor brush in the cleaning tank to inject the cleaning liquid into a sewage storage member of the floor brush, so as to clean the sewage storage member. In this way, the manual cleaning step of the user is omitted, which is time-saving and labor-saving, and the cleaning efficiency is high.

[0084] Figure 9 is a structural schematic diagram of a cleaning device provided by the embodiment of the application. As shown in Figure 9 The application also provides a cleaning device 200 capable of being cleaned by the cleaning base station 100. The specific structure, functions and working principles of the cleaning base station 100 have been described in detail in the foregoing embodiments, and will not be described here. The cleaning device 200 can comprise a floor brush 210 and the like, and uses the floor brush 210 and the like to perform cleaning work on a surface to be cleaned such as a floor.

[0085] Specifically, in the embodiment, the cleaning device 200 comprises the floor brush 210, the floor brush 210 comprises a housing 213, a second docking member 214 and a sewage storage member 211, and the second docking member 214 is configured to receive external cleaning liquid through a water inlet 2141 to clean the sewage storage member 211.

[0086] Specifically, the second docking member 214 is arranged at the bottom of the housing 213, and when the floor brush 210 is arranged in the cleaning tank 111 of the cleaning base station 100, the second docking member 214 is docked with the first docking member 123 of the cleaning base station 100 to enable the first docking member 123 to pour cleaning liquid into the sewage storage member 211 through the water inlet 2141, thereby achieving cleaning of the inside of the sewage storage member 211. In addition, it can be understood that the second docking member 214 can also be arranged at other parts of the housing 213 according to different docking positions.

[0087] In this way, in the cleaning device 200 in this embodiment, the floor brush 210 can have the cleaning member 212 and can use the cleaning member 212 to clean the surface to be cleaned, such as collecting dust and sewage on the surface to be cleaned, and the sewage storage member 211 is used to temporarily store the sewage collected by the floor brush 210 when cleaning the surface to be cleaned. After the cleaning work is completed, the cleaning base station 100 can empty the sewage in the sewage storage member 211 and clean the sewage storage member 211, so that the sewage storage member 211 remains clean to facilitate subsequent cleaning work.

[0088] The cleaning member 212 of the floor brush 210 and the sewage storage member 211 and the like can be arranged in the housing 213. For example, the cleaning member 212 can be a rolling brush and can be arranged at the bottom of the housing 213, and the sewage storage member 211 can be arranged inside the housing 213 or can be detachably arranged at the top or side of the housing 213.

[0089] In order to allow the cleaning base station 100 to clean the inside of the sewage storage member 211 and the like on the floor brush 210, the second docking member 214 on the floor brush 210 is a structure that can be docked with the washing assembly 120 of the cleaning base station 100. As shown in Figures 4 to 9 In an optional structure, the housing 213 is used to arrange other components and structures in the floor brush 210, and the second docking member 214 is arranged at the bottom of the housing 213, and the second docking member 214 has a water inlet 2141 that is in communication with the sewage storage member 211.

[0090] In order to dock with the first docking member 123 of the washing assembly 120, as an optional docking structure, the second docking member 214 has a docking groove 2142, the groove bottom of the docking groove 2142 is in communication with the water inlet 2141, and when the second docking member 214 is docked with the first docking member 123, at least part of the structure of the first docking member 123 is located in the docking groove 2142.

[0091] As shown in Figures 4 to 6 In this embodiment, the groove bottom of the docking groove 2142 is located at the top of the docking groove 2142 and is in communication with the water inlet 2141, and the groove opening of the docking groove 2142 faces downward, and when the second docking member 214 is docked with the first docking member 123, the first docking member 123 will partially or completely extend into the docking groove 2142, so that the cleaning liquid sprayed by the first docking member 123 will be contained in the docking groove 2142, avoiding the overflow of the cleaning liquid from the docking position.

[0092] Further, in an alternative, the width of the abutment groove 2142 gradually decreases from the groove opening to the groove bottom. In this way, the abutment groove 2142 gradually narrows from the groove opening to the groove bottom, which is conducive to the gathering and collection of the cleaning liquid, and further avoids the overflow of the cleaning liquid from the abutment groove 2142 to the outside of the second abutment member 214.

[0093] It should be understood by those skilled in the art that the width of the abutment groove 2142 is adapted to the shape of the abutment groove 2142 itself. For example, the abutment groove 2142 can be a solid of revolution, and the width of the abutment groove 2142 can be the inner diameter of the groove wall of the abutment groove 2142.

[0094] It should be understood that the sewage storage member 211 can be located at different positions and regions of the floor brush 210, and when the sewage storage member 211 is not directly opposite the second abutment member 214, a connecting pipe or the like structure can be provided to guide the sewage of the second abutment member 214 into the sewage storage member 211.

[0095] Optionally, the floor brush 210 further has a second connecting pipe 215 located in the housing 213 and connected between the second abutment member 214 and the sewage storage member 211. The second connecting pipe 215 can be a fixed pipe formed by the inner wall structure of the housing, or can be formed by a flexible pipe.

[0096] In addition, during the daily cleaning of the floor brush 210, the sewage in the sewage storage member 211 needs to be prevented from leaking outwards; therefore, an openable and closable structure needs to be provided on the floor brush 210 to allow the sewage storage member 211 to store sewage during the daily cleaning of the floor brush 210, and to allow the sewage in the sewage storage member 211 to flow out when the floor brush 210 is cleaned by the cleaning base station 100.

[0097] Correspondingly, as shown in Figure 7 and Figure 8 In some embodiments, the sewage storage member 211 includes a box body 2111 and a valve assembly 2112, the box body 2111 is provided with a sewage discharge hole 2113, and at least part of the valve assembly 2112 is arranged in the sewage discharge hole 2113, and the valve assembly 2112 is configured to open or close the sewage discharge hole 2113.

[0098] Therefore, when the trigger member 141 or the like structure in the cleaning base station 100 abuts against the valve assembly 2112, the trigger member 141 can lift the valve assembly 2112 upward to open the sewage discharge hole 2113, so that the sewage in the box body 2111 is discharged to the cleaning tank 111 through the sewage discharge hole 2113, and is recovered together with the sewage in the cleaning tank 111.

[0099] Specifically, the valve assembly 2112 includes a valve stem 2112a and a valve core 2112b, the valve core 2112b is sleeved on the valve stem 2112a, and the valve stem 2112a is movable along the axial direction of the valve stem 2112a relative to the blowhole 2113 to drive the valve core 2112b to close or open the blowhole 2113.

[0100] Therefore, the trigger piece 141 can abut against the valve stem 2112a to trigger the valve stem 2112a to drive the valve core 2112b to move relative to the blowhole 2113 to open or close the blowhole 2113, so that the sewage in the box body 2111 flows out through the blowhole 2113.

[0101] In addition, it can be understood that the cleaning equipment 200 can also have a main machine 220, a connecting rod 230, etc., and the main machine 220 and the floor brush 210 are connected by the connecting rod 230, so that the main machine 220 can be used to control the floor brush 210 to work, or the main machine 220 is used to perform a dust collection operation, etc., as shown in Figure 9 The main machine 220 can include a dust collection assembly and a suction assembly, etc. The suction assembly is used to provide a suction force to make dust, particles and other impurities on the ground enter the dust collection assembly through the floor brush 210, and collect dust, particles and other impurities through the dust collection assembly. It can be understood that the suction assembly can be in communication with the floor brush 210.

[0102] In this embodiment, the cleaning equipment includes a floor brush, the floor brush includes a housing, a second connecting piece and a sewage storage piece, the second connecting piece is arranged at the bottom of the housing, and the second connecting piece has a water inlet, the water inlet is in communication with the sewage storage piece; the second connecting piece is configured to receive an external cleaning liquid through the water inlet to clean the sewage storage piece. In this way, after the cleaning work of the cleaning equipment is completed, the sewage storage piece can be injected with a cleaning liquid by using an external cleaning base station and the like, so as to clean the sewage storage piece, so that the sewage storage piece is kept clean to facilitate subsequent cleaning work.

[0103] The application also provides a cleaning system 300, which includes at least one of the cleaning equipment 200 and the cleaning base station 100 in the foregoing embodiments, wherein the cleaning equipment 200 includes a floor brush 210 and a sewage storage piece 211 arranged on the floor brush 210, and the cleaning base station 100 is configured to clean the cleaning equipment 200, as shown in Figure 1 The specific structure, function and working principle of the cleaning base station 100 and the cleaning equipment 200 have been described in detail in the foregoing embodiments, and will not be described here.

[0104] In the embodiment, the cleaning system comprises a cleaning device and a cleaning base station, the cleaning device comprises a floor brush and a sewage storage part arranged on the floor brush, and the cleaning base station is configured to clean the cleaning device; the cleaning base station comprises a base and a flushing assembly arranged on the base; the base is provided with a cleaning tank configured to accommodate the floor brush of the cleaning device, and the flushing assembly comprises a clean water tank, a flushing pipeline and a first connecting part; one end of the flushing pipeline is communicated with the clean water tank, and the other end of the flushing pipeline is connected to the first connecting part; the first connecting part is located in the cleaning tank, and the first connecting part is configured to be communicated with the floor brush in the cleaning tank to inject the cleaning liquid into the sewage storage part of the floor brush, so as to clean the sewage storage part. In this way, the manual cleaning step of the user is saved, which is more time-saving and labor-saving, and the cleaning efficiency is higher.

[0105] Finally, it should be pointed out that the technical solutions described above can be modified or some or all of the technical features can be replaced with equivalent ones; and these modifications or replacements do not change the essence of the corresponding technical solutions out of the scope of the technical solutions of the embodiments of the present application.

Claims

1. A clean base station, characterized in that, The device includes a base (110) and a rinsing assembly (120); the base (110) has a cleaning tank (111) configured to accommodate a floor brush (210) of a cleaning device (200); the rinsing assembly (120) includes a clean water tank (121), a rinsing pipe (122) and a first docking member (123); the clean water tank (121) is configured to store cleaning liquid; one end of the rinsing pipe (122) is connected to the clean water tank (121) and the other end is connected to the first docking member (123); The first docking member (123) is located in the cleaning tank (111) and is configured to communicate with the floor brush (210) in the cleaning tank (111) to inject the cleaning liquid into the wastewater storage container (211) of the floor brush (210) to clean the wastewater storage container (211).

2. The clean base station according to claim 1, characterized in that, The first docking member (123) is located at the bottom of the cleaning tank (111), and the first docking member (123) has a docking interface (1231) configured to communicate with the floor brush (210).

3. The clean base station according to claim 2, characterized in that, The bottom of the cleaning tank (111) has a connecting port (1111), and the flushing pipe (122) is connected to the connecting port (1111). The first docking member (123) is detachably connected to the bottom of the cleaning tank (111), and the docking interface (1231) and the communication port (1111) are interconnected.

4. The clean base station according to claim 3, characterized in that, The bottom of the cleaning tank (111) has a mounting portion (1112) extending toward the floor brush (210), the mounting portion (1112) being located outside the communication port (1111), and the first docking member (123) engaging with the mounting portion (1112).

5. The clean base station according to claim 4, characterized in that, The first docking component (123) includes a docking body (1232) and a sealing part (1233). The docking body (1232) is snapped into the mounting part (1112), and the docking interface (1231) penetrates the docking body (1232). The sealing portions (1233) are multiple and are spaced apart along the axial direction of the mating interface (1231).

6. The clean base station according to any one of claims 1-5, characterized in that, The first docking part (123) is a silicone part or a rubber part.

7. The clean base station according to any one of claims 1-5, characterized in that, The flushing assembly (120) further includes a first drive (124) connected to the flushing pipeline (122) and configured to drive the cleaning liquid in the clean water tank (121) to the wastewater storage unit (211).

8. The clean base station according to any one of claims 1-5, characterized in that, It also includes a wastewater recovery assembly (130), which includes a wastewater tank (131) and is connected to the cleaning tank (111) to store wastewater in the cleaning tank (111).

9. The clean base station according to claim 8, characterized in that, It also includes a trigger switch assembly (140), which includes a trigger (141) disposed in the cleaning tank (111) and the trigger (141) is configured to trigger the cleaning device (200) located in the cleaning tank (111) to discharge the wastewater stored in the cleaning device (200).

10. The clean base station according to claim 9, characterized in that, The cleaning tank (111) is provided with a drain hole (1113), and the trigger (141) is at least partially disposed in the drain hole (1113).

11. The clean base station according to claim 10, characterized in that, The trigger (141) is a push rod, the top of which extends toward the cleaning device (200).

12. The clean base station according to claim 10, characterized in that, The trigger switch assembly (140) further includes a connecting cylinder (142) connected to the base (110). The connecting cylinder (142) has a connecting cavity (143) inside. The top of the connecting cavity (143) communicates with the drain hole (1113). The sewage tank (131) is connected to the connecting cavity (143), and at least a portion of the trigger element (141) is disposed in the connecting cavity (143).

13. The clean base station according to claim 12, characterized in that, The wastewater recycling assembly (130) further includes a first connecting pipe (132) and a second driving member (133). One end of the first connecting pipe (132) is connected to the connecting cavity (143), and the other end of the first connecting pipe (132) is connected to the wastewater tank (131). The second driving member (133) is used to drive the wastewater in the connecting cavity (143) to flow into the wastewater tank (131).

14. A cleaning device, characterized in that, The system includes a floor brush (210), which includes a housing (213), a second docking member (214), and a wastewater storage device (211). The second docking member (214) is disposed at the bottom of the housing (213) and has a water inlet (2141), which is connected to the wastewater storage device (211). The second docking member (214) is configured to receive external cleaning liquid through the inlet (2141) so that the cleaning liquid cleans the sewage storage unit (211).

15. The cleaning equipment according to claim 14, characterized in that, The second docking member (214) is configured to dock with the first docking member (123) of the cleaning base station (100) when the floor brush (210) is placed in the cleaning tank (111) of the cleaning base station (100), so that the first docking member (123) injects cleaning liquid into the sewage storage unit (211) through the water inlet (2141).

16. The cleaning equipment according to claim 15, characterized in that, The second docking member (214) has a docking groove (2142) with the bottom of the groove (2142) communicating with the inlet (2141), and the groove (2142) is configured to accommodate at least a portion of the structure of the first docking member (123).

17. The cleaning equipment according to claim 16, characterized in that, The width of the docking groove (2142) gradually decreases from the opening to the bottom.

18. The cleaning equipment according to any one of claims 14-17, characterized in that, The floor brush (210) also has a second connecting pipe (215), which is located inside the housing (213) and connects the second docking member (214) and the sewage storage member (211).

19. The cleaning equipment according to any one of claims 14-17, characterized in that, The wastewater storage device (211) includes a housing (2111) and a valve assembly (2112). The housing (2111) has a drain hole (2113) at the bottom. At least part of the valve assembly (2112) is disposed in the drain hole (2113). The valve assembly (2112) is configured to open or close the drain hole (2113).

20. A cleaning system, characterized in that, Includes a cleaning base station (100) according to any one of claims 1-13 and / or a cleaning device (200) according to any one of claims 14-19, wherein the cleaning base station (100) is configured to clean the cleaning device (200).

Citation Information

Patent Citations

  • Cleaning base stations, cleaning equipment and cleaning systems

    CN218792135U