Cleaning base station
By designing a cleaning base station, the problem of users needing manual cleaning and maintenance after the window cleaning robot is solved, and rapid drying and automatic cleaning are achieved, improving the user experience.
Patent Information
- Application Number
- CN202422014030.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-19
AI Technical Summary
After the existing window cleaning robot completes the wet cleaning task, users need to clean and maintain it themselves. The cleaning and drying of the rag is time-consuming and inconvenient, which affects the user experience.
A cleaning base station is designed, including a body, an air supply assembly and a control assembly, which is provided with a first chamber for accommodating the cleaning body, and achieves rapid drying and cleaning through the opening and air supply assembly.
Users can simply put the window cleaning robot into the cleaning base station to automatically clean and dry, saving time and improving user experience.
Smart Images

Figure CN223009025U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household appliances, in particular to a cleaning base station. Background Art
[0002] With the development of technology and the acceleration of the pace of life, using a window cleaning robot to clean the window can easily remove heavy stains, making the window cleaning work easier and effectively improving the cleaning efficiency. Therefore, window cleaning robots on the market are very popular among people at present. However, after most window cleaning robots complete the wet cleaning task, users still need to clean and maintain the window cleaning robot themselves to prevent its cleaning cloth from getting moldy and stinking, etc., which cannot truly liberate hands. Moreover, the cleaning, drying, and drying of the cleaning cloth are time-consuming and inconvenient, affecting the user experience. Content of the Utility Model
[0003] Based on this, in view of the problem that after most window cleaning robots on the market complete the wet cleaning task, users still need to clean and maintain the window cleaning robot themselves, and the operation is time-consuming and inconvenient, it is necessary to provide a cleaning base station.
[0004] A cleaning base station includes: a body, the body is provided with a first chamber and a second chamber, the first chamber is located above the second chamber, the top of the body is provided with an opening communicating with the first chamber, the first chamber is used to accommodate a cleaning main body, the body is provided with an air inlet and an air outlet, and the air inlet, the second chamber, the first chamber, and the air outlet are connected in sequence; a blowing component, the blowing component is arranged in the second chamber, and the blowing component is used to provide power to make air enter the second chamber through the air inlet, and flow through the first chamber and be discharged outwards through the air outlet to take away the water vapor of the cleaning main body; a control component, the control component is arranged on the body, and the control component is electrically connected with the blowing component.
[0005] The present application provides a cleaning base station. The body is provided with a first chamber for accommodating a cleaning main body, and an opening communicating with the first chamber is arranged at the top of the body. Thus, when the window cleaning robot finishes the cleaning work, the user can directly put the window cleaning robot into the body from the top of the body for cleaning and maintenance, with simple operation, convenient and labor-saving. In addition, the body is also provided with a second chamber for arranging a blowing component, etc. The blowing component works to form an air flow and drive the air flow to flow through the first chamber, so that the water vapor of the cleaning main body can be taken away by the air flow and dried quickly. Moreover, the second chamber is located below the first chamber, so the lateral space of the cleaning base station can be saved, making the device smaller in size and more in line with the usage habits of window cleaning robot users.
[0006] In one embodiment, the body includes a housing member and an inner housing member. The inner housing member is disposed within the housing member. The first chamber and the opening are provided within the inner housing member. A second chamber is formed by the enclosure of the inner housing member and the inner wall of the housing member. The inner housing member is provided with a first air vent, and the first air vent is located above the bottom wall of the first chamber. The second chamber communicates with the first chamber through the first air vent. By adopting the above structure, the first chamber and the second chamber can be better separated. Only the air flow generated by the air supply assembly can pass through the first air vent on the inner housing member between the first chamber and the second chamber. Moreover, the position of the first air vent is higher than the bottom wall of the first chamber. Thus, when the first chamber stores cleaning liquid for washing the cleaning main body, the cleaning liquid can be better isolated to prevent the cleaning liquid from entering the second chamber through the first air vent, avoiding the risk of water ingress into components such as the air supply assembly in the second chamber.
[0007] In one embodiment, a wind guiding groove is formed by the depression on one side of the inner housing member facing the second chamber. The two ends of the wind guiding groove communicate with the second chamber and the first air vent respectively. By adopting the above structure, the air flow will flow towards the first air vent through the wind guiding groove, which is conducive to the concentration of the air flow and increases the air flow velocity.
[0008] In one embodiment, the air supply assembly includes a duct and a fan. The duct is disposed in the second chamber. One end of the duct is sealingly connected to the opening of the wind guiding groove. The second chamber communicates with the wind guiding groove through the duct. At least a part of the fan is located in the duct. The fan is used to provide power to make air enter the second chamber through the air inlet and send air to the wind guiding groove through the duct. By adopting the above structure, the air flowing into the second chamber from the outside can be concentrated in the duct and guided towards the wind guiding groove, thereby improving the air supply efficiency, reducing the energy loss of the air flow, and enabling the air flow to more efficiently carry away the water vapor on the cleaning main body to improve the drying efficiency.
[0009] In one embodiment, a heating assembly is further included. The heating assembly is disposed in the duct or the wind guiding groove. The heating assembly is electrically connected to the control assembly. By setting the heating assembly, when the heating assembly works, it can heat the air flowing through the duct or the wind guiding groove to form a hot air flow. Thus, after the hot air flow enters the first chamber, it can evaporate and carry out the water vapor on the cleaning main body and in the first chamber to the outside, thereby greatly improving the drying efficiency of the cleaning base station and achieving a certain effect of killing bacteria.
[0010] In one embodiment, the air supply assembly further includes a positioning bracket disposed on the inner housing member, and the air duct is inserted into the positioning bracket. By providing the positioning bracket, the installation stability of the air duct can be improved, and the positioning and installation of the air duct can be facilitated, thereby improving the installation efficiency.
[0011] In one embodiment, the inner housing member forms a wind guiding portion provided with the first air passing opening, a wind guiding channel, and a second air passing opening. The second air passing opening is closer to the bottom wall of the first chamber than the first air passing opening, and the first air passing opening, the wind guiding channel, the second air passing opening, and the first chamber are sequentially communicated. With the above structure, the air flow passing through the first air passing opening will flow towards the second air passing opening and into the first chamber under the guidance of the wind guiding channel. The second air passing opening is closer to the bottom of the first chamber than the first air passing opening, thereby forming a liquid leakage prevention structure. On the one hand, it can ensure that the cleaning liquid with a liquid level lower than the first air passing opening will not flow into the second chamber. On the other hand, it can enable the air flow to flow out from the bottom of the first chamber, so as to better contact the rag at the bottom of the cleaning main body to take away the water vapor.
[0012] In one embodiment, the inner housing member includes an inner housing body and a wind guiding portion. The inner housing body is provided with the first chamber, and the wind guiding portion is located in the first chamber. The wind guiding portion includes an air outlet portion and a wind guiding housing member. The air outlet portion is disposed on the inner housing body and is provided with the first air passing opening. One end of the wind guiding housing member is connected to the first air passing opening, and the other end of the wind guiding housing member extends towards the direction close to the bottom wall of the first chamber. A wind guiding channel and the second air passing opening are formed between the wind guiding housing member and the side wall of the wind guiding portion and / or the side wall of the first chamber. With the above structure, when the wind guiding housing member is disposed on the air outlet portion, it can guide the air flow flowing out from the first air passing opening, so that the air flow flows towards the second air passing opening along the wind guiding channel formed between the wind guiding housing member and the air outlet portion. The second air passing opening is closer to the bottom of the first chamber than the first air passing opening, and the air flow can flow out from the bottom of the first chamber, so as to better contact the rag at the bottom of the cleaning main body to take away the water vapor. Moreover, under the shielding of the wind guiding housing member, the splashing cleaning liquid can be blocked, and it can be ensured that the cleaning liquid with a liquid level lower than the first air passing opening will not flow into the second chamber.
[0013] In one embodiment, the air outlet part protrudes and is arranged at the bottom of the first chamber. The air outlet part is provided with an air passing chamber. The first air passing opening is located at the top of the air outlet part. The air guiding shell member includes a cover body and an air guiding plate. The cover body covers the first air passing opening. The air guiding plate extends from the cover body towards the direction close to the bottom wall of the first chamber. An air guiding channel and a second air passing opening are formed between the air guiding plate and the side wall of the air outlet part and / or the side wall of the first chamber. The second chamber communicates with the first air passing opening through the air passing chamber.
[0014] In one embodiment, the second chamber, the air guiding groove, the air passing chamber and the first air passing opening are communicated in sequence.
[0015] In one embodiment, the inner shell member includes an inner shell body and an air guiding part. The inner shell body is provided with the first chamber. The air guiding part is located in the first chamber. The air guiding part includes an air outlet part and an air guiding shell member. The air outlet part is arranged on the inner shell body. The air outlet part is provided with the first air passing opening. One end of the air guiding shell member is connected to the first air passing opening. The other end of the air guiding shell member extends towards the direction close to the bottom wall of the first chamber. The air guiding shell member is provided with the air guiding channel and the second air passing opening.
[0016] In one embodiment, a circular seat is formed at the bottom of the inner shell body. The inner peripheral wall of the circular seat and the bottom wall of the first chamber enclose a positioning groove for accommodating the cleaning main body. The air outlet part is arranged on the top wall of the circular seat. The end of the air guiding shell member far away from the first air passing opening extends to the bottom of the positioning groove. The second air passing opening communicates with the air guiding channel and the positioning groove respectively. Through the arrangement of the positioning groove, the positioning and installation of the cleaning main body can be more convenient and it can be aligned and matched with the cleaning component in the positioning groove. And when the positioning groove stores cleaning liquid to clean the cleaning component, the inner peripheral wall of the circular seat can block the splashing cleaning liquid, so that the inner wall at the top of the first chamber can be better kept clean, reducing the later finishing workload of the user.
[0017] In one embodiment, the air guiding shell member and the air outlet part are detachably connected. By setting the detachably connected air guiding shell member and air outlet part, it is convenient for the user to remove the air guiding shell member to clean the inner walls of the air guiding channel and the second air passing opening, avoiding the ineffective cleaning of the part of the air outlet part immersed in the cleaning liquid and causing stain residues.
[0018] In one embodiment, the number of the air guiding parts is at least two, and the at least two air guiding parts are arranged at intervals along the circumference of the first chamber. By arranging at least two air guiding parts, it is convenient to divide the air flow generated by the operation of the air supply component. The positions of the air guiding parts are set according to preset positions, so that the second air passing openings of the air guiding parts can respectively align with the respective cleaning turntables on the cleaning main body, thereby ensuring that the cleaning main body can be comprehensively dried.
[0019] In one embodiment, a cleaning component is further included. The cleaning component is movably arranged at the bottom of the first chamber, and the cleaning component is electrically connected to the control component. The cleaning component is configured to stir the cleaning liquid in the first chamber when rotating to clean the cleaning main body. By arranging the cleaning component in the first chamber, when the cleaning component rotates, it can stir the cleaning liquid so that the cleaning liquid continuously rubs against the cleaning main body to remove stains, thereby realizing the automatic cleaning function of the cleaning base station. Specifically, the air supply component is configured to stop working when the cleaning component is started. Under the control of the control component, the cleaning component and the air supply component will work in sequence. When cleaning the window cleaning robot, the air supply device stops running to avoid the influence of air flow entering the first chamber on the cleaning work of the cleaning liquid.
[0020] In one embodiment, a water system is further included. The water system is communicated with the first chamber, and the water system is electrically connected to the control component. The water system is configured to supply water to the first chamber and / or discharge the liquid in the first chamber. Through the setting of the water system, when the cleaning instruction is executed, the water system operates to provide the cleaning liquid to the first chamber, and the cleaning component stirs the liquid in the first chamber to clean the cleaning main body. After the cleaning is completed, the water system discharges the liquid in the cleaning container. Description of the Drawings
[0021] Figure 1 Is a perspective view of a cleaning base station of an embodiment;
[0022] Figure 2 Is an exploded view of a cleaning base station of an embodiment;
[0023] Figure 3 Is a first sectional view of a cleaning base station of an embodiment;
[0024] Figure 4 Is a second sectional view of a cleaning base station of an embodiment;
[0025] Figure 5 Is Figure 4 An enlarged view of area A of;
[0026] Figure 6 Is an exploded view of an inner shell member of an embodiment.
[0027] Among them, the correspondence between the reference signs and the component names is as follows:
[0028] 1 body, 101 first chamber, 102 second chamber, 103 opening, 104 air inlet, 105 first air passage, 106 air guide groove, 107 air guide channel, 108 second air passage, 109 air passage chamber, 110 positioning groove, 11 housing part, 12 inner housing part, 121 inner housing body, 1211 annular seat, 122 air guide part, 1221 air outlet part, 1222 air guide housing part, 12221 cover body, 12222 air guide plate;
[0029] 2 air supply assembly, 21 air duct, 22 fan, 23 positioning bracket;
[0030] 3 cleaning assembly;
[0031] 4 water system. Detailed implementation manners
[0032] In order to more clearly understand the above objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation manners. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0033] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited by the specific embodiments disclosed below.
[0034] The following describes some embodiments of the cleaning base station of the present invention with reference to the drawings.
[0035] As Figures 1 to 6 shown, this embodiment discloses a cleaning base station, including: a body 1, the body 1 is provided with a first chamber 101 and a second chamber 102, the first chamber 101 is located above the second chamber 102, an opening 103 communicating with the first chamber 101 is provided at the top of the body 1, the first chamber 101 is used to accommodate the cleaning main body, the body 1 is provided with an air inlet 104 and an air outlet, the air inlet 104, the second chamber 102, the first chamber 101 and the air outlet are connected in sequence; an air supply assembly 2, the air supply assembly 2 is arranged in the second chamber 102, and the air supply assembly 2 is used to provide power to make air enter the second chamber 102 through the air inlet 104, flow through the first chamber 101 and be discharged outwards through the air outlet, so as to take away the water vapor of the cleaning main body; a control assembly, the control assembly is arranged on the body 1, and the control assembly is electrically connected to the air supply assembly 2.
[0036] The present application provides a cleaning base station. The body 1 is provided with a first chamber 101 for accommodating a cleaning main body, and an opening 103 communicating with the first chamber 101 is provided at the top of the body 1. Thus, when the window cleaning robot finishes its cleaning work, the user can directly place the window cleaning robot into the body 1 from the top for cleaning and maintenance, which is simple to operate, convenient and labor-saving. In addition, the body 1 is further provided with a second chamber 102 for arranging a blowing component 2, etc. When the blowing component 2 works, an air flow can be formed and the air flow is driven to flow through the first chamber 101, so that the water vapor of the cleaning main body can be carried away by the air flow and dried quickly. And the second chamber 102 is located below the first chamber 101, thus the lateral space of the cleaning base station can be saved, the volume of the device can be miniaturized, and it is more in line with the usage habits of window cleaning robot users.
[0037] As Figure 2 and Figure 3 shown, in addition to the features of the above embodiments, the present embodiment further defines that: the body 1 includes an outer shell member 11 and an inner shell member 12. The inner shell member 12 is arranged in the outer shell member 11. The first chamber 101 and the opening 103 are arranged inside the inner shell member 12. The inner shell member 12 and the inner wall of the outer shell member 11 enclose to form the second chamber 102. The inner shell member 12 is provided with a first air passing opening 105, and the first air passing opening 105 is located above the bottom wall of the first chamber 101. The second chamber 102 communicates with the first chamber 101 through the first air passing opening 105. By adopting the above structure, the first chamber 101 and the second chamber 102 can be better separated. Only the air flow generated by the blowing component 2 can pass through the first air passing opening 105 on the inner shell member 12 between the first chamber 101 and the second chamber 102, and the position of the first air passing opening 105 is higher than the bottom wall of the first chamber 101. Thus, when the first chamber 101 stores cleaning liquid for washing the cleaning main body, the cleaning liquid can be better isolated to prevent the cleaning liquid from entering the second chamber 102 through the first air passing opening 105, and avoid the risk of water ingress into components such as the blowing component 2 in the second chamber 102.
[0038] As Figures 3 to 5 shown, in addition to the features of the above embodiments, the present embodiment further defines that: a wind guiding groove 106 is formed by recessing one side of the inner shell member 12 facing the second chamber 102. The two ends of the wind guiding groove 106 communicate with the second chamber 102 and the first air passing opening 105 respectively. By adopting the above structure, the air flow will flow towards the first air passing opening 105 through the wind guiding groove 106, which is beneficial to the concentration of the air flow and improves the air flow velocity.
[0039] As Figure 2 and Figure 3As shown, in addition to the features of the above embodiments, this embodiment further defines that the air supply assembly 2 includes an air duct 21 and a fan 22. The air duct 21 is arranged in the second chamber 102. One end of the air duct 21 is sealingly connected to the opening 103 of the air guide groove 106. The second chamber 102 is communicated with the air guide groove 106 through the air duct 21. At least part of the fan 22 is located in the air duct 21. The fan 22 is used to provide power so that air enters the second chamber 102 through the air inlet 104 and is sent to the air guide groove 106 through the air duct 21. By adopting the above structure, the air flowing into the second chamber 102 from the outside can be concentrated in the air duct 21 and guided towards the air guide groove 106, thereby improving the air supply efficiency, reducing the energy loss of the air flow, and enabling the air flow to more efficiently carry away the water vapor on the cleaning body, thus improving the drying efficiency.
[0040] In addition to the features of the above embodiments, this embodiment further defines that it further includes a heating assembly. The heating assembly is arranged in the air duct 21 or the air guide groove 106 and is electrically connected to the control assembly. By arranging the heating assembly, when the heating assembly works, it can heat the air flowing through the air duct 21 or the air guide groove 106 to form a hot air flow. Thus, after the hot air flow enters the first chamber 101, it can evaporate the water vapor on the cleaning body and in the first chamber 101 and carry it out of the outside, thereby greatly improving the drying efficiency of the cleaning base station and achieving a certain bactericidal effect.
[0041] As Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further defines that the air supply assembly 2 further includes a positioning bracket 23. The positioning bracket 23 is arranged on the inner shell member 12, and the air duct 21 is inserted into the positioning bracket 23. By arranging the positioning bracket 23, the installation stability of the air duct 21 can be improved, and the positioning and installation of the air duct 21 can be facilitated, thereby improving the installation efficiency.
[0042] As Figure 2 、 Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further defines that: the inner shell member 12 is formed with a wind guiding portion 122, the wind guiding portion 122 is provided with a first air passing opening 105, a wind guiding channel 107 and a second air passing opening 108. The second air passing opening 108 is closer to the bottom wall of the first chamber 101 than the first air passing opening 105. The first air passing opening 105, the wind guiding channel 107, the second air passing opening 108 and the first chamber 101 are sequentially communicated. By adopting the above structure, the air flow passing through the first air passing opening 105 will flow towards the second air passing opening 108 and into the first chamber 101 under the guidance of the wind guiding channel 107. The second air passing opening 108 is closer to the bottom of the first chamber 101 than the first air passing opening 105. Thus, a liquid leakage prevention structure can be formed. On the one hand, it can ensure that the cleaning liquid with a liquid level lower than the first air passing opening 105 will not flow into the second chamber 102. On the other hand, it can enable the air flow to flow out from the bottom of the first chamber 101, so as to better contact the cleaning cloth at the bottom of the cleaning main body to take away the water vapor.
[0043] As Figures 4 to 6 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the inner shell member 12 includes an inner shell body 121 and a wind guiding portion 122. The inner shell body 121 is provided with a first chamber 101. The wind guiding portion 122 is located in the first chamber 101. The wind guiding portion 122 includes an air outlet portion 1221 and a wind guiding shell member 1222. The air outlet portion 1221 is arranged on the inner shell body 121. The air outlet portion 1221 is provided with a first air passing opening 105. One end of the wind guiding shell member 1222 is connected to the first air passing opening 105. The other end of the wind guiding shell member 1222 extends towards the direction close to the bottom wall of the first chamber 101. A wind guiding channel 107 and a second air passing opening 108 are formed between the wind guiding shell member 1222 and the side wall of the wind guiding portion 122 and / or the side wall of the first chamber 101. By adopting the above structure, when the wind guiding shell member 1222 is arranged on the air outlet portion 1221, it can guide the air flow flowing out of the first air passing opening 105, so that the air flow flows towards the second air passing opening 108 along the wind guiding channel 107 formed between the wind guiding shell member 1222 and the air outlet portion 1221. The second air passing opening 108 is closer to the bottom of the first chamber 101 than the first air passing opening 105. The air flow can flow out from the bottom of the first chamber 101, so as to better contact the cleaning cloth at the bottom of the cleaning main body to take away the water vapor. And under the shielding of the wind guiding shell member 1222, it can block the splashing cleaning liquid and ensure that the cleaning liquid with a liquid level lower than the first air passing opening 105 will not flow into the second chamber 102.
[0044] As Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines that the air outlet part 1221 protrudes and is arranged at the bottom of the first chamber 101. The air outlet part 1221 is provided with an air passing cavity 109. The first air passing opening 105 is located at the top of the air outlet part 1221. The air guiding shell member 1222 includes a cover body 12221 and an air guiding plate 12222. The cover body 12221 is covered at the first air passing opening 105. The air guiding plate 12222 extends from the cover body 12221 towards the direction close to the bottom wall of the first chamber 101. An air guiding channel 107 and a second air passing opening 108 are formed between the air guiding plate 12222 and the side wall of the air guiding part 122 and / or the side wall of the first chamber 101. The second chamber 102 communicates with the first air passing opening 105 through the air passing cavity 109.
[0045] As Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that the second chamber 102, the air guiding groove 106, the air passing cavity 109 and the first air passing opening 105 are communicated in sequence.
[0046] In addition to the features of the above embodiments, this embodiment further defines that the inner shell member 12 includes an inner shell body 121 and an air guiding part 122. The inner shell body 121 is provided with a first chamber 101. The air guiding part 122 is located in the first chamber 101. The air guiding part 122 includes an air outlet part 1221 and an air guiding shell member 1222. The air outlet part 1221 is arranged on the inner shell body 121. The air outlet part 1221 is provided with a first air passing opening 105. One end of the air guiding shell member 1222 is connected to the first air passing opening 105. The other end of the air guiding shell member 1222 extends towards the direction close to the bottom wall of the first chamber 101. The air guiding shell member 1222 is provided with an air guiding channel 107 and a second air passing opening 108.
[0047] As Figures 4 to 6 shown, in addition to the features of the above embodiments, this embodiment further defines that an annular seat 1211 is formed at the bottom of the inner shell body 121. The inner peripheral wall of the annular seat 1211 and the bottom wall of the first chamber 101 enclose a positioning groove 110 for accommodating the cleaning main body. The air outlet part 1221 is arranged on the top wall of the annular seat 1211. The end of the air guiding shell member 1222 far from the first air passing opening 105 extends to the bottom of the positioning groove 110. The second air passing opening 108 communicates with the air guiding channel 107 and the positioning groove 110 respectively. Through the arrangement of the positioning groove 110, the positioning and installation of the cleaning main body can be more convenient and it can be aligned and matched with the cleaning component 3 in the positioning groove 110. And when the positioning groove 110 stores cleaning liquid to clean the cleaning component 3, the inner peripheral wall of the annular seat 1211 can block the splashing cleaning liquid, so that the inner wall at the top of the first chamber 101 can be better kept clean, reducing the later finishing workload of the user.
[0048] As Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines that the air guide housing 1222 and the air outlet part 1221 are detachably connected. By providing the detachably connected air guide housing 1222 and air outlet part 1221, it is convenient for the user to remove the air guide housing 1222 to clean the inner walls of the air guide channel 107 and the second air passing opening 108, avoiding stains remaining due to ineffective cleaning of the part of the air guide part 122 immersed in the cleaning liquid.
[0049] As Figure 2 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further defines that the number of air guide parts 122 is at least two, and the at least two air guide parts 122 are arranged at intervals along the circumferential direction of the first chamber 101. By providing at least two air guide parts 122, it is convenient to divide the airflow generated by the operation of the air supply component 2. The positions of the air guide parts 122 are set according to preset positions, so that the second air passing openings 108 of the air guide parts 122 can respectively align with the respective cleaning turntables on the cleaning main body, thereby ensuring that the cleaning main body can be comprehensively dried.
[0050] As Figures 2 to 4 As shown, in addition to the features of the above embodiments, this embodiment further defines that it further includes a cleaning component 3. The cleaning component 3 is movably arranged at the bottom of the first chamber 101. The cleaning component 3 is electrically connected to the control component, and the cleaning component 3 is configured to stir the cleaning liquid in the first chamber 101 when rotating to clean the cleaning main body. By providing the cleaning component in the first chamber 101, when the cleaning component rotates, it can stir the cleaning liquid so that the cleaning liquid continuously rubs against the cleaning main body to remove stains, thereby realizing the automatic cleaning function of the cleaning base station. Specifically, the air supply component 2 is configured to stop working when the cleaning component 3 is started. Under the control of the control component, the cleaning component 3 and the air supply component 2 will work in sequence. When cleaning the window cleaning robot, the air supply device stops running to avoid the airflow entering the first chamber 101 and affecting the cleaning work of the cleaning liquid.
[0051] As Figures 2 to 4 As shown, in addition to the features of the above embodiments, this embodiment further defines that it further includes a water system 4. The water system 4 is communicated with the first chamber 101. The water system 4 is electrically connected to the control component, and the water system 4 is configured to supply water to the first chamber 101 and / or discharge the liquid in the first chamber 101. Through the setting of the water system 4, when the cleaning instruction is executed, the water system 4 operates to provide the cleaning liquid to the first chamber 101, and the cleaning component 3 stirs the liquid in the first chamber 101 to clean the cleaning main body. After the cleaning is completed, the water system 4 discharges the liquid in the cleaning container.
[0052] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as falling within the scope described in this specification.
[0053] The above-described embodiments merely represent several implementation manners of the present utility model. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model patent shall be subject to the appended claims.
Claims
1. A cleaning base station, characterized in that: include: A machine body (1), the machine body (1) being provided with a first chamber (101) and a second chamber (102), the first chamber (101) being located above the second chamber (102), the top of the machine body (1) being provided with an opening (103) communicating with the first chamber (101), the first chamber (101) being used to accommodate a cleaning body, the machine body (1) being provided with an air inlet (104) and an air outlet, the air inlet (104), the second chamber (102), the first chamber (101) and the air outlet being communicated with in sequence; an air supply component (2), the air supply component (2) being arranged in the second chamber (102), the air supply component (2) being used to provide power so that air enters the second chamber (102) through the air inlet (104), and flows through the first chamber (101) and the air outlet to be discharged outwardly, so as to take away water vapor of the cleaning body; A control component, wherein the control component is arranged on the machine body (1), and the control component is electrically connected to the air supply component (2).
2. The cleaning base station according to claim 1, characterized in that: The machine body (1) comprises an outer shell (11) and an inner shell (12); the inner shell (12) is arranged in the outer shell (11); the first chamber (101) and the opening (103) are arranged in the inner shell (12); the inner shell (12) and the inner wall of the outer shell (11) are combined to form the second chamber (102); the inner shell (12) is provided with a first air outlet (105); the first air outlet (105) is located above the bottom wall of the first chamber (101); the second chamber (102) is connected to the first chamber (101) through the first air outlet (105).
3. The cleaning base station according to claim 2, characterized in that: A side of the inner shell (12) facing the second chamber (102) is recessed to form an air guide groove (106), and two ends of the air guide groove (106) are respectively connected to the second chamber (102) and the first air outlet (105).
4. The cleaning base station according to claim 3, characterized in that: The air supply component (2) comprises an air guide duct (21) and a fan (22); the air guide duct (21) is arranged in the second chamber (102); one end of the air guide duct (21) is sealedly connected to the opening (103) of the air guide groove (106); the second chamber (102) is communicated with the air guide groove (106) through the air guide duct (21); at least a part of the fan (22) is located in the air guide duct (21); the fan (22) is used to provide power so that air enters the second chamber (102) through the air inlet (104), and supplies air to the air guide groove (106) through the air guide duct (21).
5. The cleaning base station according to claim 4, characterized in that: It also includes a heating component, the heating component is arranged in the air guide pipe (21) or the air guide groove (106), and the heating component is electrically connected to the control component; and / or The air supply assembly (2) further comprises a positioning bracket (23), wherein the positioning bracket (23) is arranged on the inner shell (12), and the air guide pipe (21) is inserted into the positioning bracket (23).
6. The cleaning base station according to claim 2, characterized in that: The inner shell (12) is formed with an air guiding portion (122), and the air guiding portion (122) is provided with the first air outlet (105), an air guiding channel (107) and a second air outlet (108), the second air outlet (108) being closer to the bottom wall of the first chamber (101) than the first air outlet (105), and the first air outlet (105), the air guiding channel (107), the second air outlet (108) and the first chamber (101) are connected in sequence.
7. The cleaning base station according to claim 6, characterized in that: The inner shell component (12) comprises an inner shell body (121) and an air guide portion (122); the inner shell body (121) is provided with the first chamber (101); the air guide portion (122) is located in the first chamber (101); the air guide portion (122) comprises an air outlet portion (1221) and an air guide shell component (1222); the air outlet portion (1221) is provided on the inner shell body (121); the air outlet portion (1221) is provided with the first chamber (101); The first air outlet (105), one end of the air guide shell (1222) is connected to the first air outlet (105), the other end of the air guide shell (1222) extends towards the bottom wall of the first chamber (101), and the air guide channel (107) and the second air outlet (108) are formed between the air guide shell (1222) and the side wall of the air guide portion (122) and / or the side wall of the first chamber (101); or The inner shell component (12) comprises an inner shell body (121) and an air guide portion (122); the inner shell body (121) is provided with the first chamber (101); the air guide portion (122) is located in the first chamber (101); the air guide portion (122) comprises an air outlet portion (1221) and an air guide shell component (1222); the air outlet portion (1221) is arranged on the inner shell body (121); the air outlet portion (1221) is provided with the first air outlet (105); one end of the air guide shell component (1222) is connected to the first air outlet (105); the other end of the air guide shell component (1222) extends toward the bottom wall of the first chamber (101); the air guide shell component (1222) is provided with the air guide channel (107) and the second air outlet (108).
8. The cleaning base station according to claim 7, characterized in that: An annular seat (1211) is formed at the bottom of the inner shell body (121); the inner peripheral wall of the annular seat (1211) and the bottom wall of the first chamber (101) are combined to form a positioning groove (110); the positioning groove (110) is used to accommodate the cleaning body; the air outlet (1221) is arranged on the top wall of the annular seat (1211); one end of the air guide shell (1222) away from the first air outlet (105) extends to the bottom of the positioning groove (110); and the second air outlet (108) is respectively connected to the air guide channel (107) and the positioning groove (110); and / or The air guide shell (1222) and the air outlet portion (1221) are detachably connected.
9. The cleaning base station according to claim 6, characterized in that: The number of the air guide portions (122) is at least two, and the at least two air guide portions (122) are arranged at intervals along the circumference of the first chamber (101).
10. The cleaning base station according to any one of claims 1 to 9, characterized in that: It also comprises a cleaning component (3), the cleaning component (3) being movably arranged at the bottom of the first chamber (101), the cleaning component (3) being electrically connected to the control component, and the cleaning component (3) being configured to stir the cleaning liquid in the first chamber (101) when rotating so as to clean the cleaning body; and / or It also includes a water system (4), which is in communication with the first chamber (101), the water system (4) is electrically connected to the control component, and the water system (4) is configured to supply water to the first chamber (101) and / or discharge the liquid in the first chamber (101).