Cleaning base station and cleaning device

By introducing heating and drying components into the cleaning station, the problem of poor removal of stubborn stains by existing cleaning equipment has been solved, resulting in a cleaning device that is both efficient and easy to use.

CN115211779BActive Publication Date: 2025-11-04ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202210335986.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-31
Publication Date
2025-11-04
Estimated Expiration
2042-03-31

AI Technical Summary

Technical Problem

Existing cleaning equipment is not very effective at removing stubborn stains from floor brushes and is inconvenient to use, especially cold water cleaning. Floor brushes take a long time to dry and are prone to bacterial growth, resulting in bulky cleaning equipment and reduced battery life.

Method used

A cleaning base station was designed, comprising a base, a liquid supply component, and a heating component. By heating the cleaning liquid and spraying it onto the surface of the cleaning component, combined with a drying component, it achieves efficient cleaning and disinfection of the cleaning component. The structure is compact and easy to use.

Benefits of technology

It improves the cleaning effect of cleaning components and the convenience of cleaning equipment, removes stubborn stains and sterilizes with warm cleaning liquid, reduces equipment size, and enhances battery life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a cleaning base station and a cleaning device. The cleaning base station comprises a base (110), a liquid supply assembly (120) and a heating assembly (130). The base (110) is provided with a cleaning groove (111). The liquid supply assembly (120) comprises a first cleaning liquid tank (121) and a first liquid supply pipeline (122). The first cleaning liquid tank (121) is arranged on the base (110). The first cleaning liquid tank (121) is communicated with the cleaning groove (111) through the first liquid supply pipeline (122). The heating assembly (130) is arranged on the first liquid supply pipeline (122). The cleaning base station improves the cleaning effect of the floor brush and the use convenience of the cleaning equipment.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present application relate to the technical field of cleaning devices, and in particular to a cleaning base station and a cleaning device. BACKGROUND

[0002] With the development of technology and the improvement of living standards, household cleaning devices such as vacuum cleaners and scrubbers have become more and more popular, and their functions have become more and more diverse. For example, the existing scrubber has a dust collection function and a mopping function, and can perform dry mopping or wet mopping according to different application scenarios.

[0003] In the prior art, a cleaning device usually includes a cleaning device body and a cleaning base station for cleaning a brush of the cleaning device body. The brush needs to be cleaned regularly to ensure the cleaning effect on the surface to be cleaned because it needs to be frequently in contact with the dirty surface to be cleaned. The cleaning base station is usually provided with a cleaning tank for cleaning the brush. The cleaning device body has a water tank for storing water to provide cleaning water for the cleaning tank. The brush is soaked in the cleaning tank or washed by water flow.

[0004] However, the existing cleaning method has poor removal effect on stubborn stains on the brush and is inconvenient to use. SUMMARY

[0005] Embodiments of the present application provide a cleaning base station and a cleaning device, which improve the cleaning effect of the cleaning part and the use convenience of the cleaning device.

[0006] In a first aspect, the present application provides a cleaning base station, which includes a base, a liquid supply assembly, and a heating assembly. The base has a cleaning tank, and the cleaning tank has a plurality of liquid injection parts.

[0007] The liquid supply assembly includes a first cleaning liquid tank and a first liquid supply pipeline. The first cleaning liquid tank is located on the base, and the first cleaning liquid tank is in communication with the cleaning tank through the first liquid supply pipeline to supply cleaning liquid to the cleaning tank.

[0008] The heating assembly is located on the first liquid supply pipeline, and the heating assembly is used to heat the cleaning liquid entering the cleaning tank.

[0009] The cleaning base station is provided with a cleaning tank arranged on the base for containing cleaning liquid and cleaning pieces to be cleaned, a liquid spraying part for spraying the cleaning liquid to the surface of the cleaning pieces to wash the cleaning pieces, a first cleaning liquid tank for storing the cleaning liquid, and a first liquid supply pipeline for conveying the cleaning liquid in the first cleaning liquid tank to the cleaning tank and supplying the cleaning tank with the cleaning liquid, so that the structure of the cleaning device is more compact and the endurance is stronger. The cleaning liquid is used for cleaning the cleaning pieces to be cleaned. A heating assembly is arranged on the first liquid supply pipeline for heating the cleaning liquid entering the cleaning tank, so as to clean stubborn stains on the cleaning pieces to be cleaned and disinfect and sterilize the cleaning pieces. Therefore, the cleaning base station improves the cleaning effect of the cleaning pieces and the use convenience of the cleaning device.

[0010] In a possible implementation, the cleaning base station provided by the application comprises a first heating piece and a first temperature sensor, both of which are arranged on the first liquid supply pipeline. The first heating piece is arranged between the first temperature sensor and the first cleaning liquid tank. The first temperature sensor is used for detecting the temperature of the liquid in the first liquid supply pipeline. When the temperature of the liquid in the first liquid supply pipeline is greater than or equal to a first preset temperature, the first heating piece is controlled to stop heating. Therefore, the cleaning liquid entering the cleaning tank is in a warm state, and the temperature of the cleaning liquid entering the cleaning tank or the cleaning device is prevented from being too high.

[0011] In a possible implementation, the cleaning base station provided by the application comprises a first liquid pumping pump arranged on the first liquid supply pipeline, and the heating assembly is arranged between the first liquid pumping pump and the first cleaning liquid tank. Therefore, the cleaning liquid in the first cleaning liquid tank is driven to flow to the cleaning tank through the first liquid supply pipeline.

[0012] In a possible implementation, the cleaning base station provided by the application comprises a first one-way valve arranged on the first liquid supply pipeline. The first one-way valve is arranged between the first liquid pumping pump and the cleaning tank. The flow direction of the cleaning liquid in the first one-way valve is from the first heating piece to the cleaning tank. Therefore, the cleaning liquid used for cleaning the cleaning pieces is prevented from flowing back and polluting the clean cleaning liquid in the first cleaning liquid tank.

[0013] In a possible implementation, the cleaning base station provided by the application comprises a liquid spraying part arranged on the side wall of the cleaning tank. The liquid spraying part is protruding. The liquid spraying part is provided with at least one liquid spraying opening for spraying the cleaning liquid. The liquid spraying opening is arranged on the side of the arc-shaped surface of the liquid spraying part away from the tank bottom of the cleaning tank. Therefore, the heated cleaning liquid is sprayed to the surface of the cleaning pieces through the liquid spraying opening, and the blockage of the liquid spraying opening is effectively avoided.

[0014] In a possible implementation, the cleaning base station provided in the present application has a liquid guide surface on the liquid spraying part for guiding the cleaning liquid to the bottom of the cleaning tank. Thus, the cleaning liquid can quickly accumulate at the bottom of the cleaning tank to soak the cleaning object.

[0015] In a possible implementation, the cleaning base station provided in the present application has an arc-shaped protrusion or a hemispherical protrusion on the side wall of the cleaning tank as the liquid spraying part, and the surface of the liquid spraying part forms the liquid guide surface. The liquid spraying part has at least two liquid spraying openings, and each liquid spraying opening is tapered and divergent. Thus, the flushing effect of the cleaning object is improved.

[0016] In a possible implementation, the cleaning base station provided in the present application has the liquid spraying parts evenly arranged along the extension direction of the cleaning tank. Thus, the cleaning effect of the cleaning object is improved, and the cleaning liquid sprayed to the cleaning object can flow back to the bottom of the cleaning tank along the liquid guide surface.

[0017] In a possible implementation, the cleaning base station provided in the present application further includes a drying assembly. The drying assembly includes a wind supply part, an air duct, and a second heating part. The wind supply part and the air duct are located in the base, and the wind supply part is connected to the first end of the air duct to supply air to the air duct.

[0018] The second heating part is arranged on the air duct, and is used to heat the gas in the air duct.

[0019] The second end of the air duct is in communication with the cleaning tank to blow the heated gas to the cleaning tank. Thus, the cleaned cleaning object in the cleaning tank is dried.

[0020] In a possible implementation, the cleaning base station provided in the present application has the air duct including a first air duct section, a second air duct section, and a third air duct section in sequence. The first air duct section is in communication with the wind supply part, the second heating part is located in the second air duct section, and the third air duct section is in communication with the cleaning tank. Thus, the second heating part can heat the air in the second air duct section, and the air generated by the wind supply part is blown to the second air duct section through the first air duct section to form hot air. The hot air is blown to the cleaning tank through the second air duct section and the third air duct section.

[0021] In a possible implementation, the cleaning base station provided in the present application has an arc-shaped air outlet on the third air duct section, and the extension direction of the air outlet is the same as the extension direction of the cleaning tank. Thus, a larger air outlet is formed, the arc-shaped air outlet matches the arc-shaped cleaning tank, and the hot air is blown to the cleaning object along the extension direction of the cleaning object through the air outlet to quickly dry the cleaning object.

[0022] In a possible implementation, the cleaning base station provided in the present application has a second temperature sensor arranged on the air duct, and the second temperature sensor is located between the second end of the air duct and the second heating part.

[0023] The second temperature sensor is configured to detect the temperature of the gas in the air duct, and the second heating member is controlled to stop heating when the temperature of the gas in the air duct is greater than or equal to a second preset temperature. Thus, the temperature of the hot air is prevented from being too high to damage the cleaning member or the cleaning base station.

[0024] In a possible implementation, the cleaning base station provided in the present application includes a first shell, a second shell and a third shell, the first shell and the second shell are collectively arranged on the third shell, and the second shell is located on one side of the first shell. The first shell, the second shell and the third shell collectively form a containing cavity, the liquid supply assembly, the heating assembly and the drying assembly are located in the containing cavity, and the upper surface of the first shell forms a cleaning groove. Thus, the liquid supply assembly, the heating assembly and the drying assembly can be fixed in the base station.

[0025] In a possible implementation, the cleaning base station provided in the present application further includes a storage box, and the storage box and the first cleaning liquid tank are located in the containing cavity. Thus, the storage box can store the cleaning assembly of the cleaning device and the second power line of the cleaning device, and the use is more convenient.

[0026] In a possible implementation, the cleaning base station provided in the present application further includes a charging communication assembly, the charging communication assembly includes a charging communication interface and a master control board, the charging communication interface is arranged on the master control board, and the charging communication interface is electrically connected with the master control board. The master control board is located in the containing cavity, and the master control board is connected with the second shell. The charging communication interface is exposed from the containing cavity. When the cleaning device is docked to the cleaning base station, the charging communication interface is electrically connected with the cleaning device, so that the master control board controls the power supply to charge the cleaning device, and the charging of the cleaning device is more convenient.

[0027] In a possible implementation, the cleaning base station provided in the present application further includes a charging communication assembly, the charging communication assembly includes a charging communication interface and a master control board, the charging communication interface is arranged on the master control board, and the charging communication interface is electrically connected with the master control board. The master control board is located in the containing cavity, and the master control board is connected with the second shell. The charging communication interface is exposed from the containing cavity. When the cleaning device is docked to the cleaning base station, the charging communication interface is electrically connected with the cleaning device, so that the master control board controls the power supply to charge the cleaning device, and the charging of the cleaning device is more convenient.

[0028] In a possible implementation, the cleaning base station provided in the present application further includes a charging communication assembly, the charging communication assembly includes a charging communication interface and a master control board, the charging communication interface is arranged on the master control board, and the charging communication interface is electrically connected with the master control board. The master control board is located in the containing cavity, and the master control board is connected with the second shell. The charging communication interface is exposed from the containing cavity. When the cleaning device is docked to the cleaning base station, the charging communication interface is electrically connected with the cleaning device, so that the master control board controls the power supply to charge the cleaning device, and the charging of the cleaning device is more convenient.

[0029] In a possible implementation, the cleaning device provided by the application includes a cleaning device main body and a liquid storage assembly, the liquid storage assembly includes a second cleaning liquid tank, the second cleaning liquid tank is detachably arranged on the cleaning device main body; the cleaning device is docked to the cleaning base station, the second cleaning liquid tank is in communication with the first liquid supply pipeline of the cleaning base station to supply cleaning liquid to the first cleaning liquid tank; when the cleaning device cleans the surface to be cleaned, the second cleaning liquid tank supplies cleaning liquid to the cleaning element. In this way, the second cleaning liquid tank can supply cleaning liquid to the first cleaning liquid tank to add cleaning liquid to the first cleaning liquid tank, or after the cleaning liquid in the second cleaning liquid tank is supplied to the first cleaning liquid tank, the cleaning liquid is heated by the heating assembly and then supplied back to the first cleaning liquid tank, and then the second cleaning liquid tank supplies warm cleaning liquid to the cleaning element to clean the surface to be cleaned by the cleaning element. Alternatively, the second cleaning liquid tank directly supplies cleaning liquid to the cleaning element to clean the surface to be cleaned by the cleaning element.

[0030] In a possible implementation, the cleaning device provided by the application includes a second liquid supply pipeline, the second liquid supply pipeline is used to supply the cleaning liquid heated by the first cleaning liquid tank to the cleaning device or supply the cleaning liquid in the cleaning device to the first cleaning liquid tank. In this way, the cleaning liquid heated by the heating assembly is supplied to the cleaning device or the cleaning liquid in the cleaning device is supplied to the first cleaning liquid tank.

[0031] In a possible implementation, the cleaning device provided by the application includes a charging interface on the cleaning device main body, and the charging communication interface of the cleaning base station is electrically connected with the charging interface when the cleaning device is docked to the cleaning base station. In this way, the main control board controls the power supply to charge the cleaning device through the charging communication interface and the charging interface, and the cleaning device is conveniently charged.

[0032] In a possible implementation, the cleaning device provided by the application includes a cleaning assembly and a second power line, and the storage box of the cleaning base station is used to store the cleaning assembly and the second power line. In this way, the cleaning assembly and the second power line are conveniently stored and used.

[0033] In a possible implementation, the cleaning device provided by the application includes a liquid recovery assembly, the liquid recovery assembly includes a liquid recovery tank, the liquid recovery tank and the second cleaning liquid tank are located on two sides of the cleaning device main body, and the liquid recovery tank is used to recover the liquid after the cleaning element is cleaned. In this way, the dirty liquid after the cleaning element is cleaned is prevented from polluting the environment around the cleaning device.

[0034] The configuration of the application and other application purposes and benefits will be more obvious and easy to understand through the description of the preferred embodiment in combination with the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced. Obviously, the accompanying drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0036] Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0037] Figure 2 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The schematic diagram of the cleaning device and the cleaning base station in the disengaged state is shown in the figure.

[0038] Figure 3 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The schematic diagram of the cleaning device and the cleaning base station in the disengaged state is shown in the figure.

[0039] Figure 4 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0040] Figure 5 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 4 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0041] Figure 6 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0042] Figure 7 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 4 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0043] Figure 8 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0044] Figure 9 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 8 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0045] Figure 10 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 6 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0046] Figure 11 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0047] Figure 12 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure. Figure 1 The structural schematic diagram of the cleaning device provided in the present application is shown in the figure.

[0048] Explanation of reference signs:

[0049] 100 - cleaning base station

[0050] 110 - base; 111 - cleaning tank; 112 - liquid spraying part; 1121 - liquid spraying port; 113 - first housing; 114 - second housing; 115 - third housing; 1141 - front shell; 1142 - rear shell; 1143 - upper cover;

[0051] 120 - liquid supply assembly; 121 - first cleaning liquid tank; 122 - first liquid supply pipeline; 1221 - first pipeline; 1222 - second pipeline; 1223 - third pipeline; 1223a - first pipeline segment; 1223b - second pipeline segment; 1224 - sixth pipeline; 123 - liquid level detection member; 1231 - first liquid level detection member; 1232 - second liquid level detection member; 124 - first liquid pumping device; 125 - first one-way valve; 126 - second liquid supply pipeline; 1261 - fourth pipeline; 1262 - fifth pipeline; 127 - electromagnetic valve; 128 - second liquid pumping device;

[0052] 130 - heating assembly; 131 - first heating member; 132 - first temperature sensor;

[0053] 140 - drying assembly; 141 - air supply member; 142 - air duct; 1421 - first air duct segment; 1422 - second air duct segment; 1423 - third air duct segment; 1424 - air outlet; 143 - second heating member; 144 - second temperature sensor;

[0054] 150 - storage box;

[0055] 160 - charging and communication assembly; 161 - charging and communication interface; 162 - main control board;

[0056] 200 - cleaning device;

[0057] 210 - cleaning device main body; 211 - cleaning member; 212 - first detection member; 213 - second detection member;

[0058] 220 - liquid storage assembly; 221 - second cleaning liquid tank; 222 - third liquid level detection member; 223 - water vapor permeable membrane; 224 - third liquid pumping device;

[0059] 230 - liquid recovery assembly; 231 - liquid recovery tank; 232 - water suction pipeline; 233 - fourth liquid level detection member; 240 - steam assembly; 241 - electromagnetic pump; 242 - second one-way valve; 243 - third liquid supply pipeline; 244 - steam boiler;

[0060] 250 - air suction assembly;

[0061] 260 - battery assembly. DETAILED DESCRIPTION

[0062] In order to make the objects, technical solutions and advantages of the present application clearer, the following will be combined with the accompanying drawings for the preferred embodiments of the present application to make the technical solutions in the embodiments of the present application more fully described. In the accompanying drawings, the same or similar notations represent the same or similar components or components with the same or similar functions throughout. The described embodiments are part of the embodiments of the present application, rather than all the embodiments. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application. The embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0063] In the description of the present application, it should be noted that unless specifically defined and limited, the terms "mount", "connect", "connection" should be understood in a broad sense, for example, it can be a fixed connection, or an indirect connection through an intermediate medium, or an internal communication of two elements or an interaction relationship between two elements. 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.

[0064] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the drawings, and are only used to facilitate the description of the present application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0065] The terms "first", "second", "third" (if any) in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0066] In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or display including a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or displays.

[0067] In the prior art, a cleaning device usually comprises a cleaning device body and a cleaning base station for cleaning a floor brush of the cleaning device body. The floor brush needs to be cleaned regularly to ensure the cleaning effect on the surface to be cleaned because it needs to be frequently in contact with the dirty surface to be cleaned. The cleaning base station is provided with a cleaning tank for cleaning the floor brush. The cleaning device body is provided with a water tank containing water, which provides cleaning water for the cleaning tank. The floor brush is soaked in the cleaning tank or is washed by water flow. However, the existing cleaning method has poor removal effect on stubborn stains on the floor brush.

[0068] This is because, in the prior art, the water provided by the cleaning device body for the cleaning base station to clean the floor brush is usually cold water. When the floor brush is used to clean the surface to be cleaned, the floor brush surface is often stained with oil stains, fruit juice and other stubborn stains due to various dirt on the surface to be cleaned. The cold water is not easy to remove the oil stains and other stains on the floor brush. If the floor brush is allowed to dry naturally after cleaning, it needs a long time to dry, and the floor brush is prone to bacterial growth if it is not dried in time, which is not conducive to the floor brush to clean the surface to be cleaned next time.

[0069] Secondly, the water tank of the cleaning device body needs to provide water for the floor brush to clean the surface to be cleaned and for the floor brush itself to be cleaned, which requires a large amount of water, easily leading to an oversized water tank of the cleaning device body, thus making the cleaning device body as a whole heavy. In addition, part of the water of the cleaning device body is used for cleaning the floor brush itself, which easily leads to insufficient water for the floor brush to clean the surface to be cleaned, thus reducing the endurance of the cleaning device body. These defects will make the cleaning device body inconvenient to use.

[0070] Therefore, the embodiments of the present application provide a cleaning base station and a cleaning device, which improve the cleaning effect of the floor brush and the use convenience of the cleaning device.

[0071] The technical solutions of the cleaning base station and the cleaning device provided by the embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0072] Referring to Figure 1 With Figure 2 It is shown that the embodiments of the present application provide a cleaning device, which comprises a cleaning base station 100 and a cleaning device 200. The cleaning base station 100 is used to clean a cleaning part 211 of the cleaning device 200 to be cleaned.

[0073] When the cleaning device 200 is used, the cleaning part 211 is in contact with the surface to be cleaned to remove dust and stains. The cleaning base station 100 mainly cleans the cleaning part 211 of the cleaning device 200. The cleaning device 200 can be a dust collector, a sweeping robot or a floor washing machine, and the type of the cleaning device 200 matched with the cleaning base station 100 is not limited in the embodiments. The cleaning part 211 can be a floor brush or a rolling brush.

[0074] Referring to Figures 1 to 4 As shown in the drawings, the cleaning base station 100 provided by the embodiments of the present application comprises a base 110, a liquid supply assembly 120 and a heating assembly 130. The base 110 is provided with a cleaning groove 111 for accommodating the cleaning part 211 of the cleaning device 200 to be cleaned. The cleaning groove 111 is provided with a plurality of liquid spraying parts 112. The cleaning groove 111 is matched with at least part of the cleaning part 211.

[0075] The liquid supply assembly 120 comprises a first cleaning liquid tank 121 and a first liquid supply pipeline 122. The first cleaning liquid tank 121 is arranged on the base 110. The first cleaning liquid tank 121 is communicated with the cleaning groove 111 through the first liquid supply pipeline 122 to supply cleaning liquid into the cleaning groove 111. The cleaning liquid is used to clean the cleaning part 211 to be cleaned.

[0076] The heating assembly 130 is arranged on the first liquid supply pipeline 122. The heating assembly 130 is used to heat the cleaning liquid entering the cleaning groove 111.

[0077] In the present application, the base 110 is used to mount the liquid supply assembly 120 and the heating assembly 130. The base 110 is provided with the cleaning groove 111. The cleaning groove 111 can be used to accommodate the cleaning liquid and the cleaning part 211 of the cleaning device 200 to be cleaned. The cleaning liquid can be used to clean the cleaning part 211 so that the cleaning part 211 can continue to clean the surface to be cleaned. The cleaning groove 111 is matched with at least part of the cleaning part 211 so that the cleaning part 211 can be fully immersed in the cleaning groove 111 to facilitate the cleaning of the cleaning part 211. The cleaning liquid can be water or a mixture of water and detergent.

[0078] The liquid supply assembly 120 is used to supply the cleaning liquid to the cleaning part 211. The first cleaning liquid tank 121 is used to store the cleaning liquid to supply the cleaning liquid to the cleaning groove 111. Thus, the capacity of the second cleaning liquid tank 221 of the cleaning device 200 only needs to match the liquid amount required by the cleaning part 211 of the cleaning device 200 to clean the surface to be cleaned. Therefore, the size of the second cleaning liquid tank 221 can be smaller. Thus, the structure of the cleaning device 200 can be more compact to facilitate handheld use. The cleaning liquid in the second cleaning liquid tank 221 can be preferentially supplied to the cleaning part 211 to clean the surface to be cleaned. The water amount in the second cleaning liquid tank 221 can support the cleaning part 211 to clean a larger area. Thus, the endurance of the cleaning device 200 is better and the cleaning device 200 is more convenient to use. The first liquid supply pipeline 122 is used to deliver the cleaning liquid in the first cleaning liquid tank 121 to the cleaning groove 111 to clean the cleaning part 211 to be cleaned.

[0079] The heating assembly 130 is used to heat the cleaning liquid in the first liquid supply pipeline 122 flowing into the cleaning tank 111. In this way, the cleaning liquid flowing out of the first cleaning liquid tank 121 can be heated by the heating assembly 130, so that the cleaning liquid entering the cleaning tank 111 is in a warm state, so that the stubborn stains on the cleaning element 211 can be cleaned by the warm cleaning liquid, thereby improving the cleaning effect of the cleaning element 211, and when the temperature of the cleaning liquid is high, the cleaning liquid can disinfect and sterilize the cleaning element 211. Therefore, the cleaning effect of the cleaning base station 100 on the cleaning element 211 is good.

[0080] By providing the liquid spraying part 112 on the cleaning tank 111, the liquid spraying part 112 faces the cleaning element 211, so that the heated cleaning liquid is sprayed to the surface of the cleaning element 211 through the liquid spraying part 112, thereby washing the cleaning element 211.

[0081] It can be understood that during the cleaning process, the cleaning element 211 can be washed by washing, or the cleaning element 211 can be soaked and washed, or a combination of the two cleaning methods, which is not limited in the embodiment.

[0082] The cleaning base station 100 provided by the embodiment of the application provides warm cleaning liquid for the cleaning element 211 by providing the base 110, the liquid supply assembly 120 and the heating assembly 130. The cleaning tank 111 and the liquid spraying part 112 are provided on the base 110, and the cleaning tank 111 is used to contain the cleaning liquid and the cleaning element 211 to be cleaned. The liquid supply assembly 120 includes the first cleaning liquid tank 121 and the first liquid supply pipeline 122, and the heating assembly 130 is arranged on the first liquid supply pipeline 122. The first cleaning liquid tank 121 is arranged to provide cleaning liquid for the cleaning tank 111, so that the structure of the cleaning device 200 is more compact and the endurance is stronger. The cleaning liquid in the first cleaning liquid tank 121 is delivered to the cleaning tank 111 through the first liquid supply pipeline 122, and in this process, the heating assembly 130 heats the cleaning liquid in the first liquid supply pipeline 122 to increase the temperature of the cleaning liquid entering the cleaning tank 111, so that the stubborn stains on the cleaning element 211 to be cleaned are cleaned by the warm cleaning liquid, and the cleaning element 211 is disinfected and sterilized. Therefore, the cleaning effect of the cleaning element 211 and the use convenience of the cleaning device 200 are improved.

[0083] Reference Figure 3As shown, in specific implementation, the heating assembly 130 includes the first heating member 131 and the first temperature sensor 132, both of which are located on the first liquid supply pipeline 122, and the first heating member 131 is located between the first temperature sensor 132 and the first cleaning liquid tank 121. The first temperature sensor 132 is configured to detect the temperature of the liquid in the first liquid supply pipeline 122. When the temperature of the liquid in the first liquid supply pipeline 122 is greater than or equal to the first preset temperature, the first heating member 131 is controlled to stop heating.

[0084] The first heating member 131 can heat the cleaning liquid flowing to the cleaning tank 111 in the first liquid supply pipeline 122, so that the cleaning liquid entering the cleaning tank 111 is warm. The first temperature sensor 132 is arranged on the side of the first liquid supply pipeline 122 away from the first heating member 131 to detect the temperature of the liquid in the first liquid supply pipeline 122 after being heated by the first heating member 131. When the first temperature sensor 132 detects that the temperature of the liquid in the first liquid supply pipeline 122 is greater than or equal to the first preset temperature, the first heating member 131 is controlled to stop heating, so as to avoid that the temperature of the cleaning liquid entering the cleaning tank 111 or the cleaning equipment 200 is too high.

[0085] In specific implementation, the first heating member 131 can be a boiler assembly. When the cleaning liquid circulates in the boiler assembly, the boiler assembly can heat the cleaning liquid, so that the boiler assembly heats the cleaning liquid flowing to the cleaning tank 111 in the first liquid supply pipeline 122, that is, the boiler assembly is heated as soon as it is turned on, which is convenient and fast.

[0086] Referring to Figure 3 As shown, in some embodiments, the liquid supply assembly 120 further includes at least one liquid level detection member 123 configured to detect the liquid level of the cleaning liquid in the first cleaning liquid tank 121, so as to avoid that the liquid level of the cleaning liquid in the first cleaning liquid tank 121 is too high, causing the cleaning liquid in the first cleaning liquid tank 121 to overflow, or avoid that the liquid level of the cleaning liquid in the first cleaning liquid tank 121 is too low, causing the first cleaning liquid tank 121 to be insufficient in liquid supply.

[0087] Referring to Figure 3 As shown, in specific implementation, the at least one liquid level detection member 123 includes the first liquid level detection member 1231 and the second liquid level detection member 1232. The first liquid level detection member 1231 is located at the lower part or the bottom of the first cleaning liquid tank 121. The first liquid level detection member 1231 is configured to send a reminder when there is no water in the first cleaning liquid tank 121, or when the liquid level in the first cleaning liquid tank 121 is less than or equal to the first preset liquid level. In this way, the first liquid level detection member 1231 can avoid that the liquid level of the cleaning liquid in the first cleaning liquid tank 121 is too low, causing the first cleaning liquid tank 121 to be insufficient in liquid supply.

[0088] The second liquid level detection member 1232 is located at an upper portion of the first cleaning liquid tank 121, and is configured to send a reminder when the liquid level in the first cleaning liquid tank 121 is greater than a second preset liquid level. The second preset liquid level is higher than the first preset liquid level. In this way, the first liquid level detection member 1231 can prevent the liquid level of the cleaning liquid in the first cleaning liquid tank 121 from being too high, thereby preventing the cleaning liquid in the first cleaning liquid tank 121 from overflowing.

[0089] Referring to Figure 3 In one possible implementation, the liquid supply assembly 120 further includes a first liquid pumping device 124, which is arranged on the first liquid supply pipeline 122 and located between the first liquid pumping device 124 and the first cleaning liquid tank 121.

[0090] The first liquid pumping device 124 can provide power for the cleaning liquid to flow from the first cleaning liquid tank 121 to the cleaning tank 111 through the first liquid supply pipeline 122.

[0091] Referring to Figure 3 In some embodiments, to prevent the cleaning liquid from flowing back, the liquid supply assembly 120 further includes a first one-way valve 125 arranged on the first liquid supply pipeline 122, and located between the first liquid pumping device 124 and the cleaning tank 111. The flow direction of the cleaning liquid in the first one-way valve 125 is from the first heating member 131 to the cleaning tank 111.

[0092] In this way, by arranging the first one-way valve 125 on the first liquid supply pipeline 122 between the first liquid pumping device 124 and the cleaning tank 111, the cleaning liquid in the cleaning tank 111 can be prevented from flowing back to the first cleaning liquid tank 121 through the first liquid supply pipeline 122 after the first liquid pumping device 124 stops working, so as to prevent the cleaning liquid that has cleaned the cleaning member 211 from contaminating the clean cleaning liquid in the first cleaning liquid tank 121.

[0093] Referring to Figure 3 , Figure 5 With Figure 6As shown, specifically, the first liquid supply pipeline 122 can include a first pipeline 1221, a second pipeline 1222 and a third pipeline 1223, the first pipeline 1221 is in communication with the first cleaning liquid tank 121, the first pipeline 1221 is in communication with the second pipeline 1222 through the first liquid pump 124, the second pipeline 1222 is in communication with the third pipeline 1223 through the heating assembly 130, and the third pipeline 1223 is in communication with the cleaning tank 111. Thus, the cleaning liquid in the first cleaning liquid tank 121 can flow into the cleaning tank 111 through the first pipeline 1221, the first liquid pump 124, the first one-way valve 125, the second pipeline 1222, the heating assembly 130 and the third pipeline 1223 in sequence.

[0094] Referring to Figure 3 As shown, in some embodiments, the liquid supply assembly 120 includes a second liquid supply pipeline 126, which is used to deliver the heated cleaning liquid in the first cleaning liquid tank 121 to the cleaning device 200, or deliver the cleaning liquid in the cleaning device 200 to the first cleaning liquid tank 121.

[0095] In this way, the cleaning liquid heated by the heating assembly 130 can be delivered to the cleaning device 200 through the second liquid supply pipeline 126, so that the cleaning device 200 can spray warm cleaning liquid to clean stubborn stains on the surface to be cleaned, or sterilize and disinfect the surface to be cleaned by the cleaning liquid with a higher temperature, thereby improving the cleaning effect of the cleaning device 200.

[0096] Alternatively, when the cleaning liquid in the first cleaning liquid tank 121 is insufficient, the cleaning liquid in the cleaning device 200 can be delivered to the first cleaning liquid tank 121 through the second liquid supply pipeline 126 to supplement the cleaning liquid in the first cleaning liquid tank 121.

[0097] Referring to Figure 3 , Figure 5 With Figure 6 As shown, specifically, the liquid supply assembly 120 can further include a second liquid pump 128, and the second liquid supply pipeline 126 can include a fourth pipeline 1261 and a fifth pipeline 1262, the fourth pipeline 1261 is in communication with the second cleaning liquid tank 221, the fourth pipeline 1261 is in communication with the fifth pipeline 1262 through the second liquid pump 128, and the fifth pipeline 1262 is in communication with the first cleaning liquid tank 121. Thus, the cleaning liquid in the second cleaning liquid tank 221 can flow into the first cleaning liquid tank 121 through the fourth pipeline 1261, the second liquid pump 128 and the fifth pipeline 1262 in sequence.

[0098] The third pipeline 1223 comprises a first pipe section 1223a and a second pipe section 1223b in communication with each other, the first pipe section 1223a is in communication with the heating assembly 130, and the second pipe section 1223b is in communication with the cleaning tank 111.

[0099] The liquid supply assembly 120 can further comprise an electromagnetic valve 127, and the first liquid supply pipeline 122 can further comprise a sixth pipeline 1224 in communication with the second cleaning liquid tank 221. The electromagnetic valve 127 has at least three ports, and the sixth pipeline 1224, the first pipe section 1223a and the second pipe section 1223b are respectively in communication with different ports. The electromagnetic valve 127 controls the sixth pipeline 1224 to be in communication with the first pipe section 1223a, and the first pipe section 1223a and the second pipe section 1223b are disconnected, so that the cleaning liquid heated by the heating assembly 130 is delivered to the second cleaning liquid tank 221. Alternatively, the electromagnetic valve 127 controls the sixth pipeline 1224 to be disconnected from the first pipe section 1223a, and the first pipe section 1223a and the second pipe section 1223b are in communication, so that the cleaning liquid heated by the heating assembly 130 is delivered to the cleaning tank 111. Thus, the cleaning liquid heated by the heating assembly 130 is delivered to the cleaning tank 111 or the second cleaning liquid tank 221 respectively.

[0100] Referring to Figure 4 With Figure 7 As shown in a possible implementation, the side wall of the cleaning tank 111 is provided with a plurality of protruding liquid spraying portions 112, and each liquid spraying portion 112 is provided with at least one liquid spraying port 1121 for spraying cleaning liquid, the liquid spraying port 1121 faces the cleaning piece 211, and the liquid spraying port 1121 is arranged on the side of the arc surface of the liquid spraying portion 112 away from the tank bottom of the cleaning tank 111.

[0101] By arranging the protruding liquid spraying portion 112 on the side wall of the cleaning tank 111, and arranging the liquid spraying port 1121 facing the cleaning piece 211 on the liquid spraying portion 112, the heated cleaning liquid is sprayed to the surface of the cleaning piece 211 through the liquid spraying port 1121, so as to flush the cleaning piece 211. By arranging the liquid spraying port 1121 on the side of the arc surface of the liquid spraying portion 112 away from the tank bottom of the cleaning tank 111, the distance between the liquid spraying port 1121 and the tank bottom is increased, and the cleaning liquid with impurities flows into the tank bottom of the cleaning tank 111, so as to effectively avoid the blockage of the liquid spraying port 1121.

[0102] The liquid spraying portion 112 can be integrally formed with the cleaning tank 111, so as to facilitate the processing of the liquid spraying portion 112.

[0103] Referring to Figure 4 With Figure 7As shown, in some embodiments, the liquid spraying part 112 has a liquid guiding surface for guiding the cleaning liquid to the bottom of the cleaning tank 111. The liquid guiding surface can guide the cleaning liquid to flow quickly and smoothly to the bottom of the cleaning tank 111, so that the cleaning liquid can quickly accumulate at the bottom of the cleaning tank 111 to soak and clean the cleaning member 211.

[0104] Referring to Figures 7 to 9 As shown, in specific implementation, the liquid spraying part 112 is an arc-shaped or hemispherical protrusion arranged on the side wall of the cleaning tank 111, and the surface of the liquid spraying part 112 forms the liquid guiding surface. The liquid spraying part 112 has at least two liquid spraying openings 1121, and each liquid spraying opening 1121 has a conical diverging orientation.

[0105] The number of liquid spraying openings 1121 can be two or more, so as to increase the water output of the liquid spraying part 112 and improve the cleaning efficiency of the cleaning member 211. For example, referring to Figure 7 As shown, the three liquid spraying openings 1121 are arranged in a triangular shape. Since the liquid spraying part has an arc-shaped surface, the orientation of the three liquid spraying openings 1121 can be conical and diverging. In this way, the area covered by the cleaning liquid sprayed by one liquid spraying part 112 can be increased, thereby improving the flushing effect of the cleaning member 211.

[0106] Referring to Figure 9 As shown, in some embodiments, the cleaning member 211 is a roller brush, and the cleaning tank 111 has an arc shape matched with the roller brush. Each liquid spraying part 112 is uniformly arranged along the extension direction of the roller brush, and the liquid spraying part 112 is located between the center of the roller brush and the back side of the roller brush. The back side of the roller brush is the side of the roller brush close to the first cleaning liquid tank 121.

[0107] By arranging the cleaning tank 111 to have an arc shape matched with the roller brush, the rolling of the roller brush can be used to soak and flush each position of the roller brush, so as to improve the cleaning effect of the cleaning member 211. Each liquid spraying part 112 can flush the roller brush along the extension direction of the roller brush, so that each part of the roller brush can be fully flushed. The liquid spraying part 112 is arranged between the center of the roller brush and the back side of the roller brush, so that the cleaning liquid is sprayed to the back of the roller brush, and then returns to the liquid guiding surface and flows back to the bottom of the cleaning tank 111 along the liquid guiding surface.

[0108] Referring to Figure 3 With Figure 5As shown, in a possible implementation, the cleaning base station 100 provided by the embodiment of the present application further includes a drying assembly 140, the drying assembly 140 includes a wind supply member 141, an air duct 142 and a second heating member 143, the wind supply member 141 and the air duct 142 are located in the base 110, the wind supply member 141 is connected to a first end of the air duct 142 to supply wind to the air duct 142. The second heating member 143 is arranged on the air duct 142, and the second heating member 143 is used to heat the gas in the air duct 142. A second end of the air duct 142 is in communication with the cleaning tank 111 to dry the cleaning member 211 by the heated gas.

[0109] Therefore, after the cleaning member 211 is cleaned in the cleaning tank 111, the second heating member 143 can heat the gas in the air duct 142, and the heated gas is blown to the cleaning member 211 in the cleaning tank 111 through the air duct 142 by the wind supply member 141, so as to dry the cleaning member 211 by the hot air, and avoid that the wet cleaning member 211 is placed for a long time to breed bacteria.

[0110] With reference to Figure 5 , Figure 8 , Figure 9 and Figure 10 As shown, in the specific implementation, the air duct 142 includes a first air duct section 1421, a second air duct section 1422 and a third air duct section 1423 which are sequentially communicated, the first air duct section 1421 is in communication with the wind supply member 141, the second heating member 143 is located in the second air duct section 1422, and the third air duct section 1423 is in communication with the cleaning tank 111.

[0111] Therefore, the second heating member 143 can heat the air in the second air duct section 1422, and the wind generated by the wind supply member 141 is blown to the second air duct section 1422 through the first air duct section 1421, so as to form hot air, and the hot air is blown to the cleaning tank 111 through the second air duct section 1422 and the third air duct section 1423, thereby drying the cleaning member 211.

[0112] With reference to Figure 9 As shown, in some embodiments, the third air duct section 1423 has an arc-shaped air outlet 1424, an extension direction of the air outlet 1424 is the same as an extension direction of the cleaning tank 111, and a second end of the air duct 142 is towards a front end of the cleaning member 211. Therefore, the arc-shaped air outlet 1424 matches the arc-shaped cleaning tank 111, and the hot air can be uniformly blown to the cleaning member 211 along the extension direction of the cleaning member 211 through the air outlet 1424, so as to make the hot air fully contact the cleaning member 211, thereby quickly drying the cleaning member 211. And the air outlet 1424 is arranged at the front end of the cleaning member 211, so that the air outlet 1424 is larger, and the air outlet effect of the drying assembly 140 is better. Wherein, the front end of the cleaning member 211 is an end of the cleaning member 211 away from the first cleaning liquid tank 121.

[0113] Referring to Figure 3 As shown in the drawings, in some embodiments, the drying assembly 140 further comprises a second temperature sensor 144, which is arranged on the air duct 142 and located between the second end of the air duct 142 and the second heating member 143.

[0114] The second temperature sensor 144 is used to detect the temperature of the gas in the air duct 142, and when the temperature of the gas in the air duct 142 is greater than or equal to a second preset temperature, the second heating member 143 is controlled to stop heating.

[0115] In this way, the second temperature sensor 144 can detect the temperature of the hot air blown to the cleaning member 211 to avoid the temperature of the hot air being too high and damaging the cleaning member 211 or the cleaning base station 100. The second temperature sensor 144 can be arranged in the second air duct segment 1422.

[0116] Referring to Figure 4 With Figure 5 As shown in the drawings, in a specific implementation, the base 110 comprises a first shell 113, a second shell 114 and a third shell 115, the first shell 113 and the second shell 114 are collectively covered on the third shell 115, and the second shell 114 is located on one side of the first shell 113.

[0117] The first shell 113, the second shell 114 and the third shell 115 collectively form a containing cavity, the heating assembly 130, the liquid supply assembly 120 and the drying assembly 140 are located in the containing cavity. The upper surface of the first shell 113 forms the cleaning groove 111. In this way, the liquid supply assembly 120, the heating assembly 130 and the drying assembly 140 can be fixed in the base 110. And the base 110 is divided into parts, which facilitates the installation and subsequent maintenance of the internal components of the base 110. In this way, the processing difficulty and cost of the cleaning base station 100 can be reduced, and the production efficiency of the cleaning base station 100 can be improved.

[0118] Specifically, the containing cavity can comprise a first containing cavity and a second containing cavity, the first shell 113, the second shell 114 and a part of the third shell 115 collectively form the first containing cavity, the third shell 115 and another part of the third shell 115 collectively form the second containing cavity, and the first containing cavity and the second containing cavity are in communication. The heating assembly 130 is located in the first containing cavity, and the liquid supply assembly 120 and the drying assembly 140 extend from the first containing cavity into the second containing cavity.

[0119] The first shell 113, the second shell 114 and the third shell 115 can be detachably connected by clamping, inserting or screw connection, which is not limited in the embodiment.

[0120] Referring to Figure 5As shown, in a possible implementation, the cleaning base station 100 provided by the embodiment of the present application can further include a storage box 150, the storage box 150 and the first cleaning liquid tank 121 are located in the containing cavity, the cleaning device 200 includes a cleaning assembly and a second power line, and the storage box 150 is used for storing the cleaning assembly of the cleaning device 200 and the second power line of the cleaning device 200.

[0121] It can be understood that the cleaning device 200 can be configured with different cleaning components 211 for different surfaces to be cleaned, and the storage box 150 can be used to store the cleaning components 211 and other cleaning assemblies. The cleaning device 200 can be used wirelessly or wired. In order to avoid the situation that the power of the cleaning device 200 is too large when it is used wirelessly, the power supply of the cleaning device 200 is insufficient to support, or the power supply is insufficient, at this time, the second power line can be connected with the power supply to make the power supply power the cleaning device 200. When the cleaning device 200 is used wirelessly, the second power line can be stored in the storage box 150, which is convenient to use.

[0122] Referring to Figure 5 Specifically, the second shell 114 includes a front shell 1141, a rear shell 1142 and an upper cover 1143, the front shell 1141 and the rear shell 1142 are connected with each other, and the upper cover 1143 is arranged on the front shell 1141 and the rear shell 1142. When needed, the upper cover 1143 can be opened to open the storage box 150 or the first cleaning liquid tank 121.

[0123] Referring to Figure 4 , Figure 5 With Figure 11 As shown, in some embodiments, the cleaning base station 100 provided by the embodiment of the present application can further include a charging communication assembly 160, the charging communication assembly 160 includes a charging communication interface 161 and a master control board 162, the charging communication interface 161 is arranged on the master control board 162, and the charging communication interface 161 is electrically connected with the master control board 162, and the cleaning device main body 210 has a charging interface. The master control board 162 and the charging communication interface 161 are located in the containing cavity, and the master control board 162 is connected with the second shell 114. The charging communication interface 161 partially exposes the containing cavity, so that the charging communication interface 161 is electrically connected with the charging interface when the cleaning device 200 is docked to the cleaning base station 100.

[0124] The master control board 162 is used for controlling the power supply to supply power to the cleaning base station 100 or controlling the power supply to charge the cleaning device 200. When the cleaning device 200 is docked to the cleaning base station 100, the cleaning device 200 is electrically connected with the charging communication interface 161, and the master control board 162 controls the power supply to charge the cleaning device 200, so that the cleaning device 200 is conveniently charged.

[0125] In some embodiments, the charging communication assembly 160 further comprises a first power line, the main control board 162 is provided with a power interface, the first power line is electrically connected with the power interface, and a joint portion of the first power line is located outside the accommodating cavity. In this way, the charging communication assembly 160 can be electrically connected with the power supply through the first power line, so that the power supply supplies power to the cleaning base station 100, or charges the cleaning device 200 through the charging communication assembly 160.

[0126] Referring to Figure 12 In some embodiments, the cleaning device 200 comprises a cleaning device body 210 and a liquid storage assembly 220, and the liquid storage assembly 220 comprises a second cleaning liquid tank 221 which is detachably arranged on the cleaning device body 210.

[0127] When the cleaning device 200 is docked to the cleaning base station 100, the second cleaning liquid tank 221 is in communication with the first liquid supply pipeline 122 of the cleaning base station 100, so as to deliver cleaning liquid to the first cleaning liquid tank 121.

[0128] When the cleaning device 200 cleans the surface to be cleaned, the second cleaning liquid tank 221 delivers cleaning liquid to the cleaning element 211.

[0129] In this way, after the second cleaning liquid tank 221 is filled with cleaning liquid, the second cleaning liquid tank 221 can be mounted on the cleaning device body 210, and cleaning liquid is delivered from the second cleaning liquid tank 221 to the first cleaning liquid tank 121, so as to add cleaning liquid to the first cleaning liquid tank 121, or cleaning liquid in the second cleaning liquid tank 221 is delivered to the first cleaning liquid tank 121, and then the heated cleaning liquid is delivered back to the first cleaning liquid tank 121 through the heating assembly 130, and then the warm cleaning liquid is delivered from the second cleaning liquid tank 221 to the cleaning element 211, so as to clean the surface to be cleaned through the cleaning element 211. Alternatively, cleaning liquid is directly delivered from the second cleaning liquid tank 221 to the cleaning element 211, so as to clean the surface to be cleaned through the cleaning element 211.

[0130] Referring to Figure 3 With Figure 12 In some embodiments, the liquid storage assembly 220 further comprises a third liquid level detection element 222, which is located at a lower portion or a bottom portion in the second cleaning liquid tank 221, and the third liquid level detection element 222 is used to issue a reminder when there is no water in the second cleaning liquid tank 221, or the liquid level in the second cleaning liquid tank 221 is less than or equal to a third preset liquid level. In this way, the third liquid level detection element 222 can prevent insufficient liquid supply in the second cleaning liquid tank 221, which affects the normal work of the cleaning device.

[0131] Referring to Figure 3As shown, in a possible implementation, the cleaning device body 210 is provided with a first detection member 212, which is configured to detect whether the second cleaning liquid tank 221 is connected to the cleaning device body 210. When the second cleaning liquid tank 221 is not connected to the cleaning device body 210, the first detection member 212 can send a reminder, so as to avoid the second cleaning liquid tank 221 from being missed due to negligence.

[0132] Referring to Figure 3 As shown, in some embodiments, the liquid storage assembly 220 further comprises a water-proof air-permeable film 223 arranged on the second cleaning liquid tank 221. The water-proof air-permeable film 223 is configured to supply air to the second cleaning liquid tank 221, so as to avoid the pressure in the second cleaning liquid tank 221 exceeding the pressure of the third liquid pumping device 224, and thus the third liquid pumping device 224 cannot work normally. The third liquid pumping device 224 is configured to provide power for the cleaning liquid, so as to drive the cleaning liquid to flow from the first cleaning liquid tank 121 to the second cleaning liquid tank 221.

[0133] Referring to Figure 3 With Figure 12 As shown, in some embodiments, the cleaning device 200 further comprises a liquid recovery assembly 230, which comprises a liquid recovery tank 231 arranged on two sides of the cleaning device body 210 with the second cleaning liquid tank 221. The liquid recovery assembly 230 is configured to recover the liquid after cleaning the cleaning member 211. In this way, the dirty liquid after cleaning the cleaning member 211 can be prevented from overflowing out of the cleaning tank 111 and polluting the environment around the cleaning device. Meanwhile, the liquid after cleaning the cleaning member 211 can be collected in the liquid recovery assembly 230, so as to be easily poured out.

[0134] Referring to Figure 3 As shown, in a specific implementation, the liquid recovery assembly 230 can further comprise a water suction pipeline 232. The liquid recovery tank 231 is detachably arranged on the cleaning device body 210, and is in communication with the water suction pipeline 232. The water suction pipeline 232 is configured to suction the liquid after cleaning the cleaning member 211 into the liquid recovery tank 231.

[0135] The liquid recovery tank 231 is configured to store the dirty liquid suctioned by the water suction pipeline 232. After the dirty liquid in the liquid recovery tank 231 is full, the liquid recovery tank 231 can be detached from the cleaning device body 210. After the dirty liquid is poured out, the liquid recovery tank 231 can be installed on the cleaning device body 210 again.

[0136] Referring to Figure 3As shown, in the specific implementation, the cleaning device main body 210 is provided with a second detection member 213, which is used to detect whether the liquid recovery tank 231 is connected to the cleaning device main body 210. When the liquid recovery tank 231 is not connected to the cleaning device main body 210, the second detection member 213 can send a reminder, so as to avoid missing the liquid recovery tank 231 due to negligence.

[0137] Referring to Figure 3 As shown, in some embodiments, the liquid recovery assembly 230 further comprises a fourth liquid level detection member 233 located at the upper portion in the liquid recovery tank 231, which is used to send a reminder when the liquid level in the liquid recovery tank 231 is greater than the fourth preset liquid level.

[0138] Therefore, when there is too much liquid in the liquid recovery tank 231, i.e. the liquid level in the liquid recovery tank 231 is greater than the fourth preset liquid level, the fourth liquid level detection member 233 can send a reminder to avoid the liquid in the liquid recovery tank 231 overflowing.

[0139] Referring to Figure 3 With Figure 12 As shown, the cleaning device 200 can further comprise a steam assembly 240 arranged on the cleaning device main body 210, the steam assembly 240 comprising an electromagnetic pump 241, a second one-way valve 242, a third liquid supply pipeline 243, a steam boiler 244 and a steam pipeline, the electromagnetic pump 241 and the second one-way valve 242 being arranged on the third liquid supply pipeline 243, the second one-way valve 242 being located between the electromagnetic pump 241 and the steam boiler 244, the flow direction of the liquid in the second one-way valve 242 being from the electromagnetic pump 241 to the steam boiler 244, one end of the third liquid supply pipeline 243 being in communication with the second cleaning liquid tank 221, and the other end of the third liquid supply pipeline 243 being in communication with the steam boiler 244, the electromagnetic pump 241 being used to drive the cleaning liquid in the second cleaning liquid tank 221 to flow to the steam boiler 244, the steam boiler 244 being used to vaporize the cleaning liquid and deliver it to the front end of the cleaning member 211 through the steam pipeline, so that the steam is sprayed to the surface to be cleaned, so as to dissolve the stains, thereby improving the cleaning effect in cooperation with the cleaning member 211.

[0140] Referring to Figure 8 With Figure 12 As shown, in some embodiments, the cleaning device 200 can further comprise an air suction assembly 250 arranged on the cleaning device main body 210, the air suction assembly 250 being used to form a negative pressure to suck the dust on the surface to be cleaned through the cleaning member 211 and to suck the dust into the liquid recovery tank 231, and after cleaning the surface to be cleaned and the cleaning member 211, the sewage and dust in the liquid recovery tank 231 can be poured out together, which is more convenient to use.

[0141] Referring toFigure 8 With Figure 12 As shown in FIG. 26, in some embodiments, the cleaning device 200 can further include an electric core assembly 260 disposed on the cleaning device body 210, which can provide a power source for the air suction assembly 250 and the electric core assembly 260, etc., so that the cleaning device 200 can be used wirelessly.

[0142] It can be understood that when the electric power of the electric core assembly 260 is insufficient, or because the power of the cleaning device 200 is large when the steam assembly 240 is used to clean the surface to be cleaned, the electric core assembly 260 is insufficient to support, the second power line can be connected with the power supply to power the cleaning device 200.

[0143] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A cleaning base station, characterized by, The utility model provides a cleaning device, including base (110), liquid supply component (120) and heating component (130), the base (110) has the cleaning groove (111) on, the cleaning groove (111) has a plurality of liquid spray parts (112) on, the liquid spray part (112) is located in the lateral wall of cleaning groove (111), and the liquid spray part (112) is protrudingly arranged, the liquid spray part (112) has at least two liquid spray ports (1121) for spraying cleaning liquid, the liquid spray port (1121) is arranged on the side of the arc surface of the liquid spray part (112) away from the groove bottom of the cleaning groove (111), the liquid spray part (112) has a liquid guide surface for guiding the cleaning liquid to the groove bottom of the cleaning groove (111), and each liquid spray port (1121) is conically divergent towards the cleaning groove (111). The liquid supply component (120) includes a first cleaning liquid tank (121) and a first liquid supply pipeline (122), the first cleaning liquid tank (121) is located on the base (110), and the first cleaning liquid tank (121) is communicated with the cleaning groove (111) through the first liquid supply pipeline (122) to convey cleaning liquid into the cleaning groove (111). The heating component (130) is located on the first liquid supply pipeline (122), and the heating component (130) is used for heating the cleaning liquid entering the cleaning groove (111). The drying assembly (140) includes a wind supply member (141), an air duct (142), and a second heating member (143), the air duct (142) includes a first air duct section (1421), a second air duct section (1422), and a third air duct section (1423) communicated in sequence, the third air duct section (1423) has an arc-shaped air outlet (1424), and the extending direction of the air outlet (1424) is the same as the extending direction of the cleaning groove (111).

2. The cleaning dock of claim 1, wherein, The heating component (130) includes a first heating member (131) and a first temperature sensor (132), the first heating member (131) and the first temperature sensor (132) are located on the first liquid supply pipeline (122), the first heating member (131) is located between the first temperature sensor (132) and the first cleaning liquid tank (121), the first temperature sensor (132) is used for detecting the temperature of the liquid in the first liquid supply pipeline (122), and when the temperature of the liquid in the first liquid supply pipeline (122) is greater than or equal to a first preset temperature, the first heating member (131) is controlled to stop heating.

3. The cleaning dock of claim 2, wherein, The liquid supply component (120) further includes a first liquid pumping pump (124), the first liquid pumping pump (124) is arranged on the first liquid supply pipeline (122), and the heating component (130) is located between the first liquid pumping pump (124) and the first cleaning liquid tank (121).

4. The cleaning dock of claim 3, wherein, The liquid supply assembly (120) further comprises a first one-way valve (125) arranged on the first liquid supply pipeline (122), the first one-way valve (125) is located between the first liquid pumping pump (124) and the cleaning tank (111), and the flow direction of the cleaning liquid in the first one-way valve (125) is from the first heating member (131) to the cleaning tank (111).

5. The cleaning station according to any one of claims 1-4, characterized in that, The liquid spraying part (112) is an arc-shaped protrusion or a semispherical protrusion arranged on the side wall of the cleaning tank (111), and a surface of the liquid spraying part (112) forms the liquid guide surface.

6. The cleaning dock of claim 5, wherein, The liquid spraying parts (112) are uniformly arranged along the extension direction of the cleaning tank (111).

7. The cleaning station according to any one of claims 1-4, characterized in that, The air supply member (141) and the air duct (142) are located in the base (110), the air supply member (141) is connected to a first end of the air duct (142) to supply air into the air duct (142); The second heating member (143) is arranged in the air duct (142), and is used for heating the gas in the air duct (142); A second end of the air duct (142) is communicated with the cleaning tank (111) to blow the heated gas to the cleaning tank (111).

8. The cleaning station of claim 7, wherein, The first air duct section (1421) is communicated with the air supply member (141), the second heating member (143) is located in the second air duct section (1422), and the third air duct section (1423) is communicated with the cleaning tank (111).

9. The cleaning station of claim 8, wherein, The drying assembly (140) further comprises a second temperature sensor (144) arranged on the air duct (142), and the second temperature sensor (144) is located between the second end of the air duct (142) and the second heating member (143); The second temperature sensor (144) is used for detecting the temperature of the gas in the air duct (142), and when the temperature of the gas in the air duct (142) is greater than or equal to a second preset temperature, the second heating member (143) is controlled to stop heating.

10. The cleaning station of claim 8, wherein, The base (110) comprises a first shell (113), a second shell (114) and a third shell (115), the first shell (113) and the second shell (114) jointly cover the third shell (115), and the second shell (114) is located on one side of the first shell (113); The first shell (113), the second shell (114) and the third shell (115) jointly form an accommodation cavity, and the heating assembly (130), the liquid supply assembly (120) and the drying assembly (140) are located in the accommodation cavity; An upper surface of the first shell (113) forms the cleaning tank (111).

11. The cleaning station of claim 10, wherein, Further comprising a storage box (150), the storage box (150) and the first cleaning liquid tank (121) are located in the accommodation cavity.

12. The cleaning station of claim 10, wherein, The charging communication assembly (160) further comprises a first power line, the main control board (162) is provided with a power interface, the first power line is electrically connected with the power interface, and a joint part of the first power line is located outside the accommodating cavity. The main control board (162) is located in the accommodating cavity, and the main control board (162) is connected with the second shell (114). The charging communication interface (161) is exposed from the accommodating cavity.

13. The cleaning station of claim 12, wherein, The charging communication assembly (160) further comprises a first power line, the main control board (162) is provided with a power interface, the first power line is electrically connected with the power interface, and a joint part of the first power line is located outside the accommodating cavity.

14. A cleaning device characterized by The cleaning device (200) comprises a cleaning device body (210) and a liquid storage assembly (220), and the liquid storage assembly (220) comprises a second cleaning liquid tank (221) which is detachably arranged on the cleaning device body (210).

15. The cleaning device of claim 14, wherein, The cleaning device (200) is docked to the cleaning base station (100), and the second cleaning liquid tank (221) is in communication with the first liquid supply pipeline (122) of the cleaning base station (100) to supply cleaning liquid to the first cleaning liquid tank (121). The cleaning device (200) is docked to the cleaning base station (100), and the second cleaning liquid tank (221) is in communication with the first liquid supply pipeline (122) of the cleaning base station (100) to supply cleaning liquid to the first cleaning liquid tank (121). The cleaning device (200) is docked to the cleaning base station (100), and the second cleaning liquid tank (221) is in communication with the first liquid supply pipeline (122) of the cleaning base station (100) to supply cleaning liquid to the first cleaning liquid tank (121).

16. The cleaning device of claim 15, wherein, The cleaning device (200) is docked to the cleaning base station (100), and the second cleaning liquid tank (221) is in communication with the first liquid supply pipeline (122) of the cleaning base station (100) to supply cleaning liquid to the first cleaning liquid tank (121).

17. The cleaning device of claim 15, wherein, The cleaning device (200) is docked to the cleaning base station (100), and the second cleaning liquid tank (221) is in communication with the first liquid supply pipeline (122) of the cleaning base station (100) to supply cleaning liquid to the first cleaning liquid tank (121).

18. The cleaning device of claim 14, wherein, The cleaning device further comprises a cleaning assembly and a second power line, and the receiving box (150) of the cleaning base station (100) is used for receiving the cleaning assembly and the second power line.

19. The cleaning device of claim 15 or 16, wherein, The cleaning device (200) further comprises a liquid recovery assembly (230), and the liquid recovery assembly (230) comprises a liquid recovery tank (231).

Citation Information

Patent Citations

  • Base station for cleaning equipment, cleaning system, control method, computer equipment and computer readable storage medium

    CN112914442A

  • Cleaning base station and cleaning device

    CN217090609U