Base station and cleaning system

By setting up multiple air inlets in the base station cleaning tank and installing drying components, the problem of low drying efficiency of the base station is solved, and efficient and fast drying effect of cleaning parts is achieved.

CN223208366UActive Publication Date: 2025-08-12SHEN ZHEN 3IROBOTICS CO LTD
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Patent Information

Application Number
CN202422381563.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-08-12
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing base stations have low drying efficiency and poor drying effect on cleaning parts.

Method used

At least two air inlets are provided in the cleaning tank of the base station main body, and a drying assembly is installed to provide drying air flow to the air inlet through the ventilation parts and the drying parts to ensure that the cleaning parts are blown dry along both opposite sides.

Benefits of technology

It improves the drying efficiency of cleaning parts, can be fully dried in a short time, and has a better drying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a base station and a cleaning system. The base station comprises a base station body and a drying assembly. A cleaning tank is arranged on the base station body, at least two air inlets are formed in the cleaning tank, and the at least two air inlets are located in the two opposite sides of the cleaning tank in the first direction correspondingly; the drying assembly is installed in the base station body and used for providing drying airflow for the at least two air inlets. According to the base station, the problems that the drying efficiency of the base station on the cleaning part is low and the drying effect is poor are solved.
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Description

Technical Field

[0001] The present application relates to the technical field of cleaning devices, and in particular to a base station and a cleaning system. Background Art

[0002] Currently, cleaning equipment such as floor scrubbers and mops are commonly used to remove dirt and stains from floors and tables. After completing their cleaning duties, the brushes of some cleaning equipment (such as mops) return to a base station to recharge, refill with clean water, drain wastewater, and clean cleaning components (such as rollers, mops, and brushes). To prevent the cleaning components from odor or bacterial growth due to prolonged storage, they are typically dried. However, existing base stations have low drying efficiency and poor drying results. Utility Model Content

[0003] The main purpose of the present application is to provide a base station and a cleaning system to solve the problem in the background art that the base station has low drying efficiency and poor drying effect on cleaning parts.

[0004] According to one aspect of the present application, a base station is provided, including:

[0005] A base station body, wherein the base station body is provided with a cleaning tank, wherein at least two air inlets are provided in the cleaning tank, and the at least two air inlets are respectively located on opposite sides of the cleaning tank along a first direction;

[0006] A drying component is installed in the base station body, and is used to provide drying airflow to at least two of the air inlets.

[0007] Furthermore, the drying component includes:

[0008] a ventilation component, wherein a ventilation duct is provided in the ventilation component and the ventilation duct is communicated with the air inlet;

[0009] A drying component is installed in the ventilation duct and transmits the generated drying airflow along the ventilation duct to the air inlet.

[0010] Furthermore, the base station body includes:

[0011] A base, wherein the base is provided with a mounting groove, and the ventilation component is installed in the mounting groove;

[0012] The cover body is buckled on the installation groove, the cleaning groove is arranged on the outer side of the cover body away from the installation groove, and a connecting part is provided on the side of the cover body close to the ventilation component, the connecting part is connected to the ventilation component and connects the air inlet and the ventilation duct.

[0013] Furthermore, the connecting portion includes:

[0014] A connecting protrusion, wherein the connecting protrusion is located on a side of the cleaning tank close to the ventilation component, and at least two communicating ports are spaced apart on the side of the connecting protrusion close to the ventilation component, and at least two of the communicating ports are arranged in a one-to-one correspondence with at least two of the air inlets and are connected with the air inlets, and a socket structure is provided between the connecting protrusion and the ventilation component, and the socket structure detachably sockets the connecting protrusion and the ventilation component and connects the communicating port with the ventilation duct.

[0015] Furthermore, the ventilation component is provided with at least two air outlets at intervals on one side close to the connecting protrusion, the at least two air outlets are provided in one-to-one correspondence with the at least two communication ports and are connected to the ventilation duct, and the socket structure includes:

[0016] A sleeve groove, the sleeve groove is provided on a side of the connecting protrusion close to the ventilation component, and the communication port is located at a groove bottom of the sleeve groove away from the ventilation component;

[0017] The sleeve flange is arranged on a side of the ventilation component close to the connecting protrusion and is arranged to form at least two air outlets. The sleeve flange is adapted to the sleeve groove and sleeved in the sleeve groove.

[0018] Furthermore, the air inlet includes a first air inlet and a second air inlet, the first air inlet and the second air inlet are respectively located on opposite sides of the cleaning tank along the first direction, the ventilation duct includes a first channel section, a second channel section and a third channel section, and the ventilation component includes:

[0019] a first shell, wherein the first shell is provided with a groove;

[0020] a first partition plate, the first partition plate being arranged on a side of the groove close to the cleaning tank;

[0021] a second shell, the second shell being buckled and covering the groove, the second shell, the inner wall of the groove, and the first partition forming the first channel section, the second channel section, and the third channel section;

[0022] Among them, the second channel section and the third channel section are closer to the cleaning tank than the first channel section and are respectively connected to the first channel section, the drying component is installed in the first channel section, the second channel section is connected to the first air inlet, and the third channel section is connected to the second air inlet.

[0023] Furthermore, a vent is provided on a side of the first channel section away from the cleaning tank, and the drying component includes:

[0024] A fan, the fan being installed at the vent, the fan comprising an air supply port, the air supply port being located on a side of the fan close to the cleaning tank;

[0025] A heating element is installed between the air supply port and the first partition.

[0026] Furthermore, the ventilation component further includes:

[0027] The second baffles include at least three pieces, and the at least three second baffles are installed in the first channel section at intervals along the first direction and are located between the air supply port and the heating element.

[0028] Furthermore, the heating element includes a positive temperature coefficient thermistor heater.

[0029] According to another aspect of the present application, a cleaning system is provided, which includes the base station.

[0030] In this application, the cleaning tank of the base station body is provided with at least two air inlets, located on opposite sides of the cleaning tank along a first direction. After the cleaning device returns to the base station, the cleaning elements of the floor brush of the cleaning device are placed in the cleaning tank and cleaned. A drying assembly then provides drying airflow to the at least two air inlets within the cleaning tank, simultaneously blowing air onto the cleaning elements on opposite sides along the first direction. This drying efficiency is higher when the cleaning elements are baked and dried, allowing them to be fully dried in a shorter time, resulting in a better drying effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0032] Figure 1 A schematic diagram of the structure of a base station provided in one embodiment of the present application;

[0033] Figure 2 A schematic diagram of the structure of the base of the base station body;

[0034] Figure 3 This is a schematic diagram of the assembly between the base station cover and the drying component;

[0035] Figure 4 This is a structural diagram of the cover body close to the drying component;

[0036] Figure 5 for Figure 4 A magnified schematic diagram of part A;

[0037] Figure 6 It is a structural diagram of the ventilation components;

[0038] Figure 7 It is a schematic diagram of the assembly between the first shell and the drying component.

[0039] The above drawings include the following reference numerals:

[0040] 10. Base station body; 11. Cleaning tank; 111. Air inlet; 1111. First air inlet; 1112. Second air inlet; 12. Base; 121. Mounting slot; 13. Cover; 131. Connecting protrusion; 311. Communication port; 132. Socket structure; 321. Socket groove; 322. Socket flange; 20. Drying assembly; 21. Ventilation component; 210. Ventilation duct; 2100. Air outlet; 2101. First channel section; 1011. Ventilation port; 2102. Second channel section; 2103. Third channel section; 211. First shell; 2111. Groove; 212. First partition; 213. Second shell; 214. Second partition; 22. Drying component; 221. Fan; 222. Heating element. DETAILED DESCRIPTION

[0041] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0042] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.

[0043] Unless otherwise specifically stated, the relative arrangement of the parts and steps, numerical expressions and numerical values set forth in these embodiments do not limit the scope of the present application. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the drawings are not drawn according to actual proportional relationships. The techniques, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values should be interpreted as being merely exemplary, not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, and therefore, once an item is defined in one figure, it does not need to be further discussed in subsequent figures.

[0044] In order to dry the cleaning parts of the cleaning equipment (such as the roller of the floor brush), the cleaning parts are usually dried by letting air in from the front or rear side of the cleaning tank 11 on the base station. However, this method has low drying efficiency, and since the cleaning parts are difficult to be blown away from the side of the air inlet, they are often not easily dried, so the drying effect is also poor.

[0045] In order to solve the problem that the existing base station has low drying efficiency and poor drying effect on cleaning parts, the first embodiment of the present utility model provides a base station, see Figures 1 to 7 The base station includes a base station body 10 and a drying component 20. The base station body 10 is provided with a cleaning tank 11, and at least two air inlets 111 are provided in the cleaning tank 11. The at least two air inlets 111 are respectively located in the cleaning tank 11 along the first direction (the first direction is Figure 1 Air inlets 111 are provided on opposite sides of the cleaning tank 11 along the first direction (in the direction indicated by the arrow X in the middle), that is, on opposite sides of the cleaning tank 11 along the first direction. The drying component 20 is installed in the base station body 10, and the drying component 20 is used to provide drying airflow to at least two air inlets 111. After the cleaning member (such as a roller or a mop) is placed in the cleaning tank 11, the cleaning member can be baked by the airflow on opposite sides along the first direction. If the cleaning member is a roller, since the roller has air inlets 111 on opposite sides along the first direction (that is, the direction of its own length), the drying airflow blown out by the air inlets 111 can directly reach the roots of the opposite sides of the roller and flow and diffuse around the roller, thereby drying the roller efficiently and quickly, and the roller can be fully dried in a short time.

[0046] As can be seen, in this embodiment, the cleaning tank 11 of the base station body 10 is provided with at least two air inlets 111, located on opposite sides of the cleaning tank 11 along a first direction. After the cleaning device returns to the base station, the cleaning elements of the cleaning brush are placed in the cleaning tank 11 and cleaned. Drying air is then provided to the at least two air inlets 111 in the cleaning tank 11 by the drying assembly 20, simultaneously blowing air to the cleaning elements on opposite sides along the first direction. This drying efficiency is higher when the cleaning elements are dried, allowing them to be fully dried in a shorter time, resulting in a better drying effect.

[0047] The drying assembly 20 provided in this embodiment includes a ventilation component 21 and a drying component 22. A ventilation duct 210 is provided in the ventilation component 21, and the ventilation duct 210 is connected to the air inlet 111. The drying component 22 is installed in the ventilation duct 210 and transmits the generated drying airflow along the ventilation duct 210 to the air inlet 111, and the assembly is efficient and convenient. After the cleaning parts are cleaned in the cleaning tank 11, the drying component 22 is started to generate a drying airflow (i.e., hot airflow) in the ventilation duct 210, and transmits the drying airflow along the ventilation duct 210 to the air inlets 111 on opposite sides of the cleaning tank 11, so as to bake the cleaning parts in the cleaning tank 11 at the same time through at least two air inlets 111. The direction of the ventilation duct 210 only needs to be reasonably arranged according to the position of the corresponding air inlet 111.

[0048] like Figure 2 and Figure 3 As shown, the base station body 10 in this embodiment includes a base 12 and a cover 13. The base 12 is provided with a mounting groove 121, and the ventilation component 21 is installed in the mounting groove 121. The cover 13 is snapped onto the mounting groove 121, and the cleaning tank 11 is arranged on the outer side of the cover 13 away from the mounting groove 121. In this embodiment, the cleaning tank 11 can be obtained by punching a recess in the cover 13 where the cleaning tank 11 is to be located to match the shape of the cleaning component, which facilitates processing. When assembling the base station in this embodiment, the ventilation component 21 with the drying component 22 is installed in the mounting groove 121, and the cover 13 is snapped onto the mounting groove 121 to complete the assembly of the base station, which is efficient and convenient. To further improve the assembly convenience between the air inlet 111 on the cleaning tank 11 and the ventilation component 21, a connecting portion is provided on the side of the cover 13 near the ventilation component 21 in this embodiment. The connecting portion is connected to the ventilation component 21 and connects the air inlet 111 with the air duct 210. Therefore, in this embodiment, when the cover body 13 is buckled to cover the installation groove 121, the connecting part is connected to the ventilation component 21 to connect the air inlet 111 and the ventilation duct 210. The installation is convenient and the assembly difficulty is low, which greatly improves the assembly efficiency between the cleaning tank 11 and the ventilation component 21.

[0049] See Figure 4 and Figure 5 The connecting portion includes a connecting protrusion 131, which is disposed on the cover 13 and located on a side of the washing tank 11 near the ventilation component 21. At least two communication openings 311 are spaced apart on the side of the connecting protrusion 131 near the ventilation component 21. The at least two communication openings 311 are arranged in a one-to-one correspondence with the at least two air inlets 111 and communicate with the air inlets 111. A socket structure 132 is disposed between the connecting protrusion 131 and the ventilation component 21. The socket structure 132 removably connects the connecting protrusion 131 to the ventilation component 21 and connects the communication openings 311 to the ventilation duct 210. In other words, this embodiment allows the connecting protrusion 131 on the cover 13 to be removably connected to the ventilation component 21 via the socket structure 132, further reducing the difficulty of assembling the cover 13 and the ventilation component 21. Moreover, since the cover 13 and the ventilation component 21 are removable after installation, it is convenient to remove the cover 13 later to perform maintenance and inspection on the drying assembly 20.

[0050] At least two air outlets 2100 are spaced apart on one side of the ventilation component 21 close to the connecting protrusion 131. The at least two air outlets 2100 are arranged in one-to-one correspondence with the at least two connecting ports 311 and are connected to the ventilation duct 210 so as to transmit the drying airflow in the ventilation duct 210 to the at least two connecting ports 311 respectively through the at least two air outlets 2100.

[0051] Among them, the sleeve structure 132 includes a sleeve groove 321 and a sleeve flange 322. The sleeve groove 321 is arranged on the side of the connecting protrusion 131 close to the ventilation component 21, and the communication port 311 is located at the bottom of the sleeve groove 321 away from the ventilation component 21. The sleeve flange 322 is arranged on the side of the ventilation component 21 close to the connecting protrusion 131 and is surrounded to form at least two air outlets 2100. The sleeve flange 322 is adapted to the sleeve groove 321 and sleeved in the sleeve groove 321. Therefore, in this embodiment, when the cover body 13 is buckled onto the installation groove 121, the sleeve groove 321 is aligned with the sleeve flange 322 on the ventilation component 21 to quickly assemble the connection protrusion 131 of the cover body 13 and the ventilation component 21 together. At the same time, after the sleeve flange 322 is sleeved in the sleeve groove 321, at least two air outlets 2100 can be connected to at least two connecting ports 311 one by one, and the assembly is efficient and convenient. The sleeve flange 322 fits tightly with the inner wall surface of the sleeve groove 321 to ensure the air tightness during the transmission of the drying airflow.

[0052] The air inlet 111 in this embodiment includes a first air inlet 1111 and a second air inlet 1112. The first air inlet 1111 and the second air inlet 1112 are respectively located on opposite sides of the cleaning tank 11 along the first direction. Figure 6 and Figure 7The ventilation duct 210 in this embodiment includes a first channel section 2101, a second channel section 2102 and a third channel section 2103. Among them, the ventilation component 21 includes a first shell 211, a first partition 212 and a second shell 213. A groove 2111 is provided on the first shell 211, and the first partition 212 is provided on the side of the groove 2111 close to the cleaning tank 11. The second shell 213 is buckled on the groove 2111, and the second shell 213 and the inner wall surface of the groove 2111 and the first partition 212 are surrounded to form the first channel section 2101, the second channel section 2102 and the third channel section 2103. Secondly, a notch is respectively provided on the side of the second channel section 2102 and the third channel section 2103 close to the cover body 13. After the second shell 213 is buckled on the groove 2111, it is surrounded with the corresponding notch to form the air outlet 2100. Specifically, in order to enable the ventilation component 21 to be socketed with the connecting protrusion 131 on the cover body 13, the first shell 211 and the second shell 213 are both provided with a socket flange 322 on the outer peripheral wall close to the cover body 13, and the socket flange 322 on the second shell 213 and the socket flange 322 on the first shell 211 are arranged to form an air outlet 2100, which is convenient for assembly.

[0053] The second channel section 2102 and the third channel section 2103 are closer to the washing tank 11 than the first channel section 2101 and are respectively connected to the first channel section 2101. The drying component 22 is mounted on the first channel section 2101. The second channel section 2102 is connected to the first air inlet 1111, and the third channel section 2103 is connected to the second air inlet 1112. Thus, in this embodiment, after the drying component 22 generates a dry airflow in the first channel section 2101, the generated dry airflow is divided into two paths and enters the second channel section 2102 and the third channel section 2103, respectively. The dry airflow is then transmitted to the first air inlet 1111 and the second air inlet 1112 through the second channel section 2102 and the third channel section 2103, respectively. The ventilation component 21 in this embodiment is assembled from the first shell 211, the first partition plate 212, and the second shell 213, and the assembly difficulty is simple.

[0054] The ventilation component 21 in this embodiment has three channel sections, and the drying airflow is respectively transmitted to the corresponding air inlet 111 through two of the channel sections (i.e., the second channel section 2102 and the third channel section 2103). Compared with the method of supplying air to the air inlet 111 at the same time through a larger channel, when air is supplied to the corresponding air inlet 111 through two smaller channel sections, when the volume flow rate of the airflow generated by the drying component 22 is constant, the transmission speed of the drying airflow will be faster, so that the airflow entering the air inlet 111 and blowing onto the cleaning part will be stronger, and the drying effect on the cleaning part will be better.

[0055] The first channel section 2101 is provided with a vent 1011 on one side away from the cleaning tank 11. Figure 7 As shown, the drying component 22 may specifically include a fan 221 and a heater 222. The fan 221 is installed at the vent 1011 so that the fan 221 can guide the outside air into the ventilation duct 210. The fan 221 includes an air supply port, which is located on the side of the fan 221 close to the cleaning tank 11. The heater 222 is installed between the air supply port and the first partition 212. The heater 222 is used to heat the air blown by the fan 221 and transmit the heated airflow to the second channel section 2102 and the third channel section 2103. Since the heater 222 is located between the air supply port of the fan 221 and the first partition 212, that is, at the connection point between the second channel section 2102 and the third channel section 2103 and the first channel section 2101, the heater 222 can promptly transmit the heated airflow to the second channel section 2102 and the third channel section 2103.

[0056] The heating element 222 extends along the first direction and blocks the connection between the second and third channel sections 2102 and 2103 and the first channel section 2101. To ensure more uniform air delivery from the fan 221 to the heating element 222, thereby enabling the heating element 222 to efficiently and fully heat the air from the fan 221, the ventilation component 21 in this embodiment also includes a second baffle 214. The second baffle 214 comprises at least three pieces. The at least three second baffles 214 are installed in the first channel section 2101 at intervals along the first direction and between the air outlet and the heating element 222. A plurality of guide channels will be formed between two adjacent second partitions 214 and between the second partition 214 and the inner wall surface of the groove 2111 of the first shell 211. The fan 221 transmits the air along the plurality of guide channels to the heating element 222 respectively, so that each part of the heating element 222 along the first direction can receive the air and heat the air in time, thereby improving the heating efficiency of the heating element 222 in heating the air.

[0057] The heating element 222 in this embodiment may include at least one of a resistance wire heater, a ceramic heater, a quartz heater, and a positive temperature coefficient thermistor heater. Among them, the resistance wire heater uses a metal wire (usually a nickel-chromium alloy or an iron-chromium-aluminum alloy) as a heating element, and an electric current passes through these metal wires to generate heat during the heating period. The ceramic heater is a device that uses the resistance characteristics of ceramic materials to generate heat by heating ceramic elements with electric current. The ceramic heater has the characteristics of rapid heating and high efficiency. The quartz heater contains a resistance wire or other heating element inside, which is enclosed in a quartz tube. They can heat up quickly and reach a very high temperature.

[0058] Positive temperature coefficient thermistor heaters are referred to as PTC heaters (PTC is the abbreviation of Positive Temperature Coefficient). PTC heaters use a special ceramic material whose resistance increases with increasing temperature, thereby automatically adjusting power output to avoid overheating.

[0059] The heating element 222 in this embodiment is preferably a PTC heater. This is because the PTC heater has at least the following advantages for heating air:

[0060] 1) Automatic Temperature Control: The core of the PTC heater is a PTC thermistor, a material whose resistance increases with increasing temperature. This means that when the temperature reaches a certain level, the increased resistance causes a decrease in current flow, thereby reducing power input and automatically adjusting the temperature to prevent overheating and thermal damage to the drying assembly 20 or nearby components within the base station. This safe and reliable system maintains a safe range even during extended operation, mitigating potential safety hazards such as line damage and fire in the base station.

[0061] 2) Energy saving and high efficiency: Since PTC heaters can automatically reduce power consumption when the temperature rises, they can save energy and improve efficiency when maintaining a constant temperature.

[0062] 3) Rapid heating: PTC heaters can heat up quickly and provide instant heating effects, which is very beneficial for the need to heat cleaning parts in a timely and rapid manner.

[0063] 4) Long life: Due to the special properties of PTC materials, they can maintain stable performance over a long period of time and are not easily aged or damaged by high temperatures, thereby extending the service life of the heating element 222. Furthermore, their small size, light weight, and compact design facilitate integration into the ventilation duct 210, making them suitable for applications in space-constrained environments such as ventilation duct 210. Furthermore, the PTC heaters generate relatively low noise during operation, providing a quieter user experience for the base station.

[0064] The second embodiment of the present invention provides a cleaning system, which includes a base station. For the specific structure of the base station, please refer to the content provided in the first embodiment of the present invention, which will not be repeated here in this embodiment. Among them, the cleaning system in this embodiment also includes a cleaning device, which may include a floor brush, and the floor brush is provided with a cleaning part for cleaning the surface to be cleaned (such as the floor, table, wall, etc.). When the cleaning equipment returns to the base station and docks with the base station to perform tasks such as replenishing electricity, replenishing clean water, and discharging sewage, the cleaning part can be placed in the cleaning tank 11 of the base station for cleaning. After the cleaning part is cleaned, a drying airflow is transmitted to the air inlets 111 on opposite sides of the cleaning tank 11 through the drying component 20, so that the cleaning part can be baked by the drying airflow on both sides of the cleaning part along the first direction. The drying efficiency of the cleaning part is higher when it is baked and dried, and the cleaning part can be fully dried in a short time, and the drying effect is also better.

[0065] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used herein to describe the spatial positional relationship of a device or feature to other devices or features as shown in the figures. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figures. For example, if the device in the drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.

[0066] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.

[0067] The above are merely preferred embodiments of the present application and are not intended to limit the present application. Those skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A base station, characterized in that: include: A base station body (10), wherein a cleaning tank (11) is provided on the base station body (10), and at least two air inlets (111) are provided in the cleaning tank (11), and the at least two air inlets (111) are respectively located on opposite sides of the cleaning tank (11) along a first direction; A drying component (20), the drying component (20) is installed in the base station body (10), and the drying component (20) is used to provide drying airflow to at least two of the air inlets (111).

2. The base station according to claim 1, wherein The drying component (20) comprises: a ventilation component (21), wherein a ventilation duct (210) is provided in the ventilation component (21), and the ventilation duct (210) is communicated with the air inlet (111); A drying component (22) is installed in the ventilation duct (210) and transmits the generated drying airflow along the ventilation duct (210) to the air inlet (111).

3. The base station according to claim 2, wherein The base station body (10) comprises: A base (12), wherein a mounting groove (121) is provided on the base (12), and the ventilation component (21) is mounted in the mounting groove (121); A cover body (13) is provided, wherein the cover body (13) is buckled onto the mounting groove (121), the cleaning groove (11) is arranged on the outer side of the cover body (13) away from the mounting groove (121), and a connecting portion is provided on a side of the cover body (13) close to the ventilation component (21), the connecting portion is connected to the ventilation component (21) and enables the air inlet (111) and the ventilation duct (210) to communicate.

4. The base station according to claim 3, wherein The communication portion includes: A connecting protrusion (131) is provided, the connecting protrusion (131) being located on a side of the cleaning tank (11) close to the ventilation component (21); at least two communication openings (311) are provided at intervals on the side of the connecting protrusion (131) close to the ventilation component (21); the at least two communication openings (311) are provided in one-to-one correspondence with at least two air inlets (111) and are in communication with the air inlets (111); a sleeve structure (132) is provided between the connecting protrusion (131) and the ventilation component (21); the sleeve structure (132) detachably sleeves the connecting protrusion (131) and the ventilation component (21) and enables the communication openings (311) to be in communication with the ventilation duct (210).

5. The base station according to claim 4, characterized in that At least two air outlets (2100) are arranged at intervals on one side of the ventilation component (21) close to the connecting protrusion (131); the at least two air outlets (2100) are arranged in a one-to-one correspondence with the at least two communication ports (311) and are connected to the ventilation duct (210); the sleeve structure (132) comprises: a sleeve groove (321), the sleeve groove (321) being arranged on a side of the connecting protrusion (131) close to the ventilation component (21), and the communication port (311) being located at a groove bottom of the sleeve groove (321) away from the ventilation component (21); A sleeve flange (322), the sleeve flange (322) is arranged on a side of the ventilation component (21) close to the connecting protrusion (131) and is arranged to form at least two air outlets (2100), and the sleeve flange (322) is adapted to the sleeve groove (321) and sleeved in the sleeve groove (321).

6. The base station according to any one of claims 3 to 5, characterized in that The air inlet (111) comprises a first air inlet (1111) and a second air inlet (1112), the first air inlet (1111) and the second air inlet (1112) being respectively located on opposite sides of the cleaning tank (11) along a first direction, the ventilation duct (210) comprises a first channel section (2101), a second channel section (2102) and a third channel section (2103), and the ventilation component (21) comprises: A first shell (211), wherein the first shell (211) is provided with a groove (2111); a first partition (212), the first partition (212) being arranged on a side of the groove (2111) close to the cleaning tank (11); a second shell (213), the second shell (213) being buckled and covered on the groove (2111); the second shell (213), the inner wall surface of the groove (2111) and the first partition (212) forming the first channel section (2101), the second channel section (2102) and the third channel section (2103); The second channel section (2102) and the third channel section (2103) are closer to the cleaning tank (11) than the first channel section (2101) and are respectively connected to the first channel section (2101); the drying component (22) is installed on the first channel section (2101); the second channel section (2102) is connected to the first air inlet (1111); and the third channel section (2103) is connected to the second air inlet (1112).

7. The base station according to claim 6, characterized in that A vent (1011) is provided on a side of the first channel section (2101) away from the cleaning tank (11), and the drying component (22) comprises: A fan (221), the fan (221) being installed at the vent (1011), the fan (221) comprising an air supply port, the air supply port being located on a side of the fan (221) close to the cleaning tank (11); A heating element (222) is installed between the air supply port and the first partition (212).

8. The base station according to claim 7, characterized in that The ventilation component (21) further comprises: The second partition (214) includes at least three pieces, and the at least three second partitions (214) are installed in the first channel section (2101) at intervals along the first direction and are located between the air supply port and the heating element (222).

9. The base station according to claim 7, wherein: The heating element (222) includes a positive temperature coefficient thermistor heater.

10. A cleaning system, characterized in that: The cleaning system comprises the base station according to any one of claims 1 to 9.