Cleaning base station and cleaning system
By designing a floor brush cleaning section and a dust cup cleaning section in the cleaning base station, and utilizing a negative pressure airflow system to achieve automatic cleaning of the floor brush and dust cup, the problem of insufficient self-cleaning function of traditional cleaning equipment is solved, and the cleaning effect is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional cleaning equipment lacks self-cleaning functions in its dust cups and cleaning heads (such as floor cleaning brushes), requiring users to handle dust and debris themselves, which affects the cleaning effect.
Design a cleaning base station, including a floor brush cleaning section and a dust cup cleaning section. The floor brush and dust cup are automatically cleaned in the floor brush cleaning channel and the dust cup cleaning channel respectively through a negative pressure airflow system, and the dust and debris are collected into the corresponding dust bags.
It enables automatic cleaning of the dust cup and cleaning brush of the cleaning equipment, as well as automatic collection of dust and debris, thus improving the cleaning effect.
Smart Images

Figure CN224070327U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning equipment technology, and in particular to a cleaning base station and cleaning system. Background Technology
[0002] To meet people's growing needs, a variety of smart home appliances have emerged on the market. Vacuum cleaners and other cleaning devices, due to their ease of operation and use, are increasingly becoming part of people's lives, integrated into homes and offices, and have become an important and popular member of the small appliance category.
[0003] A vacuum cleaner (i.e., cleaning equipment) typically consists of a main body (i.e., the equipment body) containing a dirt and dust separation device, and a cleaning head (such as a cleaning brush) connected to the equipment body and having a cleaning port facing the floor surface to be cleaned. The equipment body may contain a motor-driven negative pressure suction device that draws dirt-laden air into the equipment body through the cleaning port and the cleaning brush. The dirt-laden air is then conveyed to the separation device within the equipment body, where the air and dirt / dust are separated. The separated dirt / dust is stored in a dust collection chamber or cleaning dust cup within the equipment body, while the separated air is discharged into the atmosphere.
[0004] In traditional technology, to facilitate cleaning and charging of vacuum cleaners (i.e., cleaning devices), vacuum cleaner base stations (i.e., cleaning base stations) have emerged to work in conjunction with cleaning devices. Currently, most cleaning base stations clean cleaning devices by connecting the dust cup of the cleaning device to the base station, where a suction motor generates negative pressure to draw dust and debris from the dust cup into the base station's dust bag. While this method meets most of the user's cleaning needs for vacuum cleaners and other cleaning devices, it cannot achieve self-cleaning of the cleaning heads (such as floor brushes) that directly contact the cleaning surface. Furthermore, although the self-cleaning device and system described in patent CN216628366U achieves self-cleaning of the floor brush, the dust in the dust cup still needs to be cleaned by the user. It is evident that traditional technologies lack a dust bag structure for cleaning the dust cup of cleaning equipment and storing the dust and debris within it. They also lack a dust bag structure for self-cleaning the cleaning heads (such as floor brushes) of cleaning equipment and storing the dust and debris generated during self-cleaning. This affects the effectiveness of cleaning the dust cup and self-cleaning the floor brushes. Utility Model Content
[0005] This utility model provides a cleaning base station and a cleaning system, which can provide a dust bag structure for cleaning the dust cup of the cleaning equipment and storing the dust and debris in the dust cup. It can also provide a dust bag structure for self-cleaning the cleaning head (such as a floor cleaning brush) of the cleaning equipment and storing the dust and debris generated by the self-cleaning process, which helps to improve the cleaning effect of the dust cup of the cleaning equipment and the self-cleaning effect of the floor cleaning brush.
[0006] To solve the above-mentioned technical problems, this utility model provides a clean base station, comprising:
[0007] Base station base station; and,
[0008] The base station body is mounted on the base station base;
[0009] The base station base is equipped with a floor brush cleaning section having a floor brush receiving groove;
[0010] The base station body is provided with a dust cup connection part having a dust cup docking groove;
[0011] The base station base and the base station body are provided with a floor brush cleaning channel and a dust cup cleaning channel. The floor brush cleaning channel is connected to the floor brush receiving cavity formed by the floor brush receiving groove, and the dust cup cleaning channel is connected to the dust cup docking cavity formed by the dust cup docking groove.
[0012] The floor brush cleaning channel has a first dust collection chamber for accommodating a first dust bag, and the dust cup cleaning channel has a second dust collection chamber for accommodating a second dust bag.
[0013] The first dust bag is used to hold dust and debris generated by the cleaning brush of the cleaning equipment; the second dust bag is used to hold dust and debris sucked out by the cleaning dust cup of the cleaning equipment; in the vertical direction, the position of the first dust bag is not higher than the position of the second dust bag.
[0014] Optionally, the base station base is provided with a base negative pressure generating device, which is connected to the floor brush cleaning channel and the dust cup cleaning channel, and is used to generate negative pressure airflow in the floor brush cleaning channel and the dust cup cleaning channel.
[0015] Optionally, the floor brush cleaning channel includes a main floor brush cleaning channel and a cleaning confluence channel connected in the base station base. The main floor brush cleaning channel is in communication with the floor brush receiving cavity. The base negative pressure generating device is located at the end of the cleaning confluence channel. The first dust collection chamber is located in the main floor brush cleaning channel or the cleaning confluence channel.
[0016] The dust cup cleaning channel includes a main dust cup cleaning channel located in the base station body, and a cleaning confluence channel located in the base station base and connected to the main dust cup cleaning channel. The second dust collection chamber is located in the main dust cup cleaning channel.
[0017] Optionally, the base station is provided with a base channel switching component, which is used to switch the main cleaning channel of the floor brush and the main cleaning channel of the dust cup so that one of them is connected to the cleaning confluence channel.
[0018] Optionally, the base channel switching component includes a base switching drive component disposed in the base station base, and a base switching plate connected to the base switching drive component. The base switching drive component is used to drive the base switching plate to block and close one of the main cleaning channels of the floor brush and the main cleaning channel of the dust cup, and to open the other one to communicate with the cleaning confluence channel.
[0019] Optionally, the dust cup cleaning channel is provided with a gas filter, which is disposed between the second dust collection chamber and the cleaning confluence channel.
[0020] Optionally, the base station body is equipped with a base station negative pressure generating device;
[0021] The floor brush cleaning channel includes a main floor brush cleaning channel and a cleaning convergence channel connected in the base station body. The main floor brush cleaning channel is connected to the floor brush receiving cavity, and the first dust collection cavity is disposed in the main floor brush cleaning channel or the cleaning convergence channel.
[0022] The dust cup cleaning channel includes a main dust cup cleaning channel located in the base station body, and a cleaning convergence channel connected to the main dust cup cleaning channel, wherein the second dust collection chamber is located in the main dust cup cleaning channel;
[0023] The base station negative pressure generating device is located at the end of the cleaning confluence channel and is used to generate negative pressure airflow in the floor brush cleaning channel and the dust cup cleaning channel.
[0024] Optionally, the base station body is provided with a base station channel switching component, which is used to switch the main cleaning channel of the floor brush and the main cleaning channel of the dust cup so that one of them is connected to the cleaning convergence channel.
[0025] Optionally, the base station body is provided with a floor brush connecting pipe on its outer side, which connects the base station body and the floor brush cleaning part, and the floor brush connecting pipe is provided with the floor brush cleaning main channel.
[0026] Optionally, the base station base is provided with a base negative pressure generating device, and the floor brush cleaning channel is located in the base station base or / and the base station body and connected to the base negative pressure generating device;
[0027] The base station body is equipped with a base station negative pressure generating device, and the dust cup cleaning channel is located in the base station body or / and the base station base and is connected to the base station negative pressure generating device.
[0028] Optionally, the side wall of the floor brush receiving groove is provided with a floor brush self-cleaning hole that connects the floor brush receiving cavity and the first dust collection cavity in the floor brush cleaning channel. The floor brush self-cleaning hole is used to correspond to the cleaning port of the cleaning brush of the cleaning equipment.
[0029] Optionally, a floor brush hole baffle is provided at the self-cleaning hole of the floor brush. The floor brush hole baffle is used to open the self-cleaning hole of the floor brush under the action of negative pressure airflow in the floor brush cleaning channel, so as to connect the floor brush receiving cavity and the first dust collection cavity in the floor brush cleaning channel.
[0030] Optionally, when there is no negative pressure airflow in the floor brush cleaning channel, the floor brush hole baffle is used to seal the floor brush self-cleaning hole by its own weight and / or external elastic force, so as to isolate the floor brush receiving cavity and the first dust collection cavity in the floor brush cleaning channel;
[0031] When there is negative pressure airflow in the floor brush cleaning channel, the floor brush hole baffle is used to drive the floor brush hole baffle to open the floor brush self-cleaning hole under the pressure generated by the negative pressure airflow, so as to connect the floor brush receiving cavity and the first dust collection cavity in the floor brush cleaning channel.
[0032] Optionally, the wall of the dust cup docking groove is provided with a dust cup cleaning hole that connects the dust cup docking cavity and the second dust collection cavity in the dust cup cleaning channel. The dust cup cleaning hole is used to dock with the dust discharge port of the cleaning dust cup of the cleaning equipment.
[0033] Optionally, a dust cup cleaning hole baffle is provided at the dust cup cleaning hole. The dust cup cleaning hole baffle is used to open the dust cup cleaning hole under the action of negative pressure airflow in the dust cup cleaning channel, so as to connect the dust cup docking cavity and the second dust collection cavity in the dust cup cleaning channel.
[0034] Furthermore, this utility model also proposes a cleaning system, including the cleaning base station as described above, and cleaning equipment corresponding to and cooperating with the cleaning base station;
[0035] The cleaning equipment includes a main body, a cleaning brush with a cleaning port located at the bottom of the main body, and a cleaning dust cup located on the main body.
[0036] When the cleaning equipment is connected to the cleaning base station, the cleaning brush is located in the brush receiving groove on the base station base, and the first dust bag in the first dust collection chamber is connected to the cleaning port of the cleaning brush of the cleaning equipment through the brush cleaning channel. The cleaning dust cup is snapped into the dust cup docking groove of the base station body, and the second dust bag in the second dust collection chamber is connected to the cleaning dust cup of the cleaning equipment through the dust cup cleaning channel.
[0037] The beneficial effects of the technical solution provided by this utility model include:
[0038] By installing a floor brush cleaning unit with a floor brush receiving slot on the base station base of the cleaning base station, the cleaning floor brush of the cleaning equipment can be placed in the floor brush receiving slot; moreover, through the floor brush cleaning channel connected to the floor brush receiving slot, when there is negative pressure airflow in the floor brush cleaning channel, the dust and debris on the floor brush receiving slot and the cleaning floor brush therein can be sucked into the first dust bag contained in the first dust collection chamber in the floor brush cleaning channel, so as to realize the automatic cleaning of the cleaning floor brush of the cleaning equipment and the automatic collection of dust and debris.
[0039] Furthermore, the cleaning dust cup of the cleaning equipment can be placed in the dust cup docking slot through the dust cup connection part with the dust cup docking slot on the base station body of the cleaning base station; and through the dust cup cleaning channel connected to the dust cup docking slot, when there is negative pressure airflow in the dust cup cleaning channel, the dust and debris in the dust cup docking slot and the cleaning dust cup therein can be sucked into the second dust bag contained in the second dust collection chamber in the dust cup cleaning channel, so as to realize the automatic cleaning and collection of dust and debris in the cleaning dust cup of the cleaning equipment.
[0040] In this way, by simultaneously setting up two cleaning channels (i.e., the floor brush cleaning channel and the dust cup cleaning channel) connected to the cleaning equipment's dust cup and the cleaning brush of the cleaning equipment on the cleaning base station, dust and debris in the cleaning equipment's dust cup can be collected into the second dust bag contained in the second dust collection chamber in the dust cup cleaning channel under the action of negative pressure airflow. Dust and debris on the cleaning equipment's floor brush can be collected into the first dust bag contained in the first dust collection chamber in the dust cup cleaning channel. This not only cleans the cleaning dust cup of the cleaning equipment but also enables the cleaning brush of the cleaning equipment to self-clean, which helps to improve the cleaning effect of the dust cup and the self-cleaning effect of the cleaning brush. Attached Figure Description
[0041] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0042] Figure 1 This is a three-dimensional structural diagram of the cleaning system described in an embodiment of the present invention. Figure 1 ;
[0043] Figure 2 for Figure 1 A schematic diagram of the exploded structure of the cleaning system described above;
[0044] Figure 3 for Figure 1 A three-dimensional structural diagram of the aforementioned clean base station;
[0045] Figure 4 This is a three-dimensional structural diagram of the cleaning system described in an embodiment of the present invention. Figure 2 ;
[0046] Figure 5 for Figure 4 A three-dimensional structural diagram of the aforementioned clean base station;
[0047] Figure 6 for Figure 1 Schematic diagram of the cross-sectional structure of the cleaning system Figure 1 ;
[0048] Figure 7 for Figure 1 Schematic cross-sectional view of the clean base station Figure 1 ;
[0049] Figure 8 for Figure 1 Schematic diagram of the cross-sectional structure of the cleaning system Figure 2 ;
[0050] Figure 9 for Figure 1 Schematic cross-sectional view of the clean base station Figure 2 ;
[0051] Figure 10 for Figure 4 A cross-sectional view of the cleaning system described above;
[0052] Figure 11 for Figure 4 A cross-sectional view of the aforementioned clean base station.
[0053] In the diagram: 10. Cleaning system; 100. Cleaning base station; 110. Base station base; 112. Floor brush cleaning section; 1122. Floor brush receiving groove; 1124. Floor brush receiving cavity; 1126. Floor brush self-cleaning hole; 1128. Floor brush hole baffle; 114. Base negative pressure generating device; 116. Base channel switching component; 1162. Base switching drive component; 1164. Base switching plate; 120. Base station body; 122. Dust cup connection part; 1222. Dust cup docking groove; 1224. Dust cup docking cavity; 1226. Dust cup cleaning hole; 1228. 124. Dust cup orifice baffle; 126. Base station negative pressure generating device; 128. Base station channel switching component; 130. Floor brush connecting pipe; 132. Floor brush cleaning channel; 134. Cleaning confluence channel; 140. Dust cup cleaning channel; 142. Dust cup cleaning main channel; 146. Gas filter component; 150. First dust collection chamber; 152. First dust bag; 160. Second dust collection chamber; 162. Second dust bag; 200. Cleaning equipment; 210. Equipment body; 220. Cleaning floor brush; 222. Cleaning port; 230. Cleaning dust cup. Detailed Implementation
[0054] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0055] like Figures 1 to 5 As shown, this utility model proposes a cleaning base station 100, including a base station base 110 and a base station body 120 disposed on the base station base 110. The base station base 110 can provide support for the base station body 120. The base station base 110 and the base station body 120 can be used to dock with a cleaning device 200 to facilitate charging and cleaning of the cleaning device 200.
[0056] Furthermore, a floor brush cleaning section 112 with a floor brush receiving groove 1122 can be provided on the base station base 110 of the cleaning base station 100. By providing the floor brush cleaning section 112 with the floor brush receiving groove 1122 on the base station base 110 of the cleaning base station 100, the cleaning floor brush 220 of the cleaning device 200 can be placed in the floor brush receiving groove 1122. Moreover, a dust cup connecting section 122 with a dust cup docking groove 1222 can be provided on the base station body 120. By providing the dust cup connecting section 122 with the dust cup docking groove 1222 on the base station body 120 of the cleaning base station 100, the cleaning dust cup 230 of the cleaning device 200 can be placed in the dust cup docking groove 1222.
[0057] Furthermore, such as Figure 6 and Figure 10 As shown, the base station base 110 and the base station body 120 may be provided with a floor brush cleaning channel 130 and a dust cup cleaning channel 140. The floor brush cleaning channel 130 is connected to the floor brush receiving cavity 1124 formed by the floor brush receiving groove 1122, and the dust cup cleaning channel 140 is connected to the dust cup docking cavity 1224 formed by the dust cup docking groove 1222. Moreover, the floor brush cleaning channel 130 may be provided with a first dust collection cavity 150 for accommodating the first dust bag 152, and the dust cup cleaning channel 140 may be provided with a second dust collection cavity 160 for accommodating the second dust bag 162. Furthermore, in the vertical direction, the position of the first dust bag 152 may not be higher than the position of the second dust bag 162. This means that the first dust bag 152 can be located at a lower height than the second dust bag 162, or the two can be located at the same height.
[0058] Furthermore, when there is negative pressure airflow in the floor brush cleaning channel 130, the first dust bag 152 in the first dust collection chamber 150 is used to collect the dust and debris generated by the floor brush 220 of the cleaning device 200 placed in the floor brush receiving groove 1122 through the floor brush cleaning channel 130. That is, through the floor brush cleaning channel 130 connected to the floor brush receiving groove 1122, when there is negative pressure airflow in the floor brush cleaning channel 130, the dust and debris on the floor brush receiving groove 1122 and the floor brush 220 therein can be drawn into the first dust bag 152 contained in the first dust collection chamber 150 in the floor brush cleaning channel 130, so as to realize the automatic cleaning of the floor brush 220 of the cleaning device 200 and the automatic collection of dust and debris.
[0059] Furthermore, when there is negative pressure airflow in the dust cup cleaning channel 140, the second dust bag 162 in the second dust collection chamber 160 is used to contain the dust and debris sucked out of the cleaning dust cup 230 of the cleaning device 200, which is connected to the dust cup docking slot 1222, through the dust cup cleaning channel 140 connected to the dust cup docking slot 1222. That is, through the dust cup cleaning channel 140 connected to the dust cup docking slot 1222, when there is negative pressure airflow in the dust cup cleaning channel 140, the dust and debris in the dust cup docking slot 1222 and the cleaning dust cup 230 therein can be sucked into the second dust bag 162 contained in the second dust collection chamber 160 in the dust cup cleaning channel 140, so as to realize the automatic cleaning and collection of dust and debris in the cleaning dust cup 230 of the cleaning device 200.
[0060] In this way, by simultaneously setting up two cleaning channels (i.e., the floor brush cleaning channel 130 and the dust cup cleaning channel 140) on the cleaning base station 100, which are connected to the cleaning dust cup 230 of the cleaning equipment 200 and the cleaning floor brush 220 of the cleaning equipment 200, the dust and debris in the cleaning dust cup 230 of the cleaning equipment 200 can be collected into the second dust bag 162 in the second dust collection chamber 160 in the dust cup cleaning channel 140, and the dust and debris on the cleaning floor brush 220 of the cleaning equipment 200 can be collected into the first dust bag 152 in the first dust collection chamber 150 in the dust cup cleaning channel 140, under the action of negative pressure airflow. This not only cleans the cleaning dust cup 230 of the cleaning equipment 200, but also enables the cleaning floor brush 220 of the cleaning equipment 200 to self-clean, which is beneficial to improving the cleaning effect of the dust cup of the cleaning equipment 200 and the self-cleaning effect of the cleaning floor brush 220.
[0061] In addition, such as Figures 6 to 9 As shown, in some embodiments, the base station base 110 may be provided with a base negative pressure generating device 114, which may be connected to the floor brush cleaning channel 130 and the dust cup cleaning channel 140 to generate negative pressure airflow in the floor brush cleaning channel 130 and the dust cup cleaning channel 140. The negative pressure generating device can be installed in the base station base 110. The base negative pressure generating device 114 can generate negative pressure airflow in the brush cleaning channel 130 and the dust cup cleaning channel 140, causing the brush cleaning channel 130 to suck up the brush receiving groove and the cleaning brush 220 therein, cleaning and sucking the dust and debris on the brush receiving groove and the cleaning brush 220 into the first dust collection chamber 150 of the brush cleaning channel 130 and storing it in the first dust bag 152. The dust cup cleaning channel 140 can also suck up the dust cup docking groove 1222 and the cleaning dust cup 230 therein, cleaning and sucking the dust and debris in the dust cup docking groove 1222 and the cleaning dust cup 230 into the second dust collection chamber 160 of the dust cup cleaning channel 140 and storing it in the second dust bag 162. At this time, the first dust collection chamber 150 and the first dust bag 152 it contains are located below the second dust collection chamber 160 and the second dust bag 162 it contains.
[0062] Furthermore, the floor brush cleaning channel 130 may include a floor brush cleaning main channel 132 and a cleaning confluence channel 134 connected in the base station base 110. The floor brush cleaning main channel 132 is connected to the floor brush receiving cavity 1124. The base negative pressure generating device 114 may be located at the end of the cleaning confluence channel 134. The first dust collection cavity 150 may be located in the floor brush cleaning main channel 132 or the cleaning confluence channel 134. By using the base negative pressure generating device 114 located at the end of the cleaning confluence channel 134 of the floor brush cleaning channel 130, the cleaning confluence channel 134 and the floor brush cleaning main channel 132 can be suctioned to generate negative pressure airflow. This causes the floor brush receiving groove connected to the floor brush cleaning main channel 132 and the cleaning floor brush 220 therein to be subjected to the negative pressure airflow, which can suck the dust and debris on the floor brush receiving groove and the cleaning floor brush 220 into the floor brush cleaning channel 130. When passing through the first dust collection chamber 150 in the floor brush cleaning main channel 132 or the cleaning confluence channel 134, the dust and debris in the negative pressure airflow can be collected in the first dust bag 152 in the first dust collection chamber 150.
[0063] Furthermore, the dust cup cleaning channel 140 may include a dust cup cleaning main channel 142 disposed in the base station body 120, and a cleaning confluence channel 134 disposed in the base station base 110 and connected to the dust cup cleaning main channel 142. The second dust collection chamber 160 is disposed in the dust cup cleaning main channel 142. By using the base negative pressure generating device 114 disposed at the end of the cleaning confluence channel 134 of the floor brush cleaning channel 130, the cleaning confluence channel 134 and the dust cup cleaning main channel 142 can be suctioned to generate a negative pressure airflow therein. This causes the dust cup docking groove 1222 connected to the dust cup cleaning main channel 142 and the cleaning dust cup 230 therein to be subjected to the negative pressure airflow, which can suck the dust and debris in the dust cup docking groove 1222 and the cleaning dust cup 230 into the dust cup cleaning channel 140. When passing through the second dust collection chamber 160 in the dust cup cleaning main channel 142, the dust and debris in the negative pressure airflow can be collected in the second dust bag 162 in the second dust collection chamber 160.
[0064] Furthermore, the base station 110 may be equipped with a base channel switching component 116, which is used to switch the main cleaning channel 132 of the floor brush and the main cleaning channel 142 of the dust cup so that one of them is connected to the cleaning manifold channel 134. That is, the base channel switching component 116 can connect the main cleaning channel 132 of the floor brush to the cleaning manifold channel 134 and disconnect the main cleaning channel 142 of the dust cup from the cleaning manifold channel 134. At this time, the floor brush cleaning channel 130 is open while the dust cup cleaning channel 140 is closed. Under the action of the base negative pressure generating device 114, the floor brush cleaning channel 130 can generate negative pressure airflow, which can suck up and clean the floor brush receiving groove connected to the floor brush cleaning channel 130 and the cleaning floor brush 220 therein; in addition, The dust cup cleaning main channel 142 can be connected to the cleaning confluence channel 134 through the base channel switching component 116, while the floor brush cleaning main channel 132 is separated from the cleaning confluence channel 134. At this time, the dust cup cleaning channel 140 is open, while the floor brush cleaning channel 130 is separated. The dust cup cleaning channel 140 can generate negative pressure airflow under the action of the base negative pressure generating device 114, which can suck up and clean the dust cup docking groove 1222 connected to the dust cup cleaning channel 140 and the cleaning dust cup 230 therein.
[0065] Specifically, the base channel switching component 116 may include a base switching drive component 1162 disposed in the base station base 110, and a base switching plate 1164 connected to the base switching drive component 1162. The base switching drive component 1162 is used to drive the base switching plate 1164 to block and close one of the main cleaning channels 132 of the floor brush and the main cleaning channel 142 of the dust cup, and to open the other one to communicate with the cleaning confluence channel 134. The base switching drive 1162 can drive the base switching plate 1164 to move between the floor brush cleaning main channel 132 and the dust cup cleaning main channel 142, which can close one of them and open the other, so that one of the dust cup cleaning channel 140 and the floor brush cleaning channel 130 can be connected to the base negative pressure generating device 114, thereby cleaning one of the cleaning dust cup 230 and the cleaning floor brush 220, and collecting the cleaned dust and debris into one of the first dust bag 152 in the first dust collection chamber 150 and the second dust bag 162 in the second dust collection chamber 160.
[0066] In addition, besides switching the two cleaning channels (i.e., the floor brush cleaning channel 130 and the dust cup cleaning channel 140) connected to the base negative pressure generating device 114 by setting the base channel switching component 116 in the base station base 110, the base negative pressure generating device 114 can also be connected to both cleaning channels for suction at the same time.
[0067] Furthermore, a gas filter 146 may be provided in the dust cup cleaning channel 140, and the gas filter 146 may be disposed between the second dust collection chamber 160 and the cleaning manifold channel 134. That is, the gas filter 146 can be placed in the dust cup cleaning main channel 142 to filter the gas before it enters the cleaning manifold channel 134. Since the dust cup 230 contains a large amount of dust and debris, after the dust and debris in the dust cup 230 are sucked into the second dust bag 162 in the second dust collection chamber 160 of the dust cup cleaning main channel 142, the gas entering the cleaning manifold channel 134 can be filtered again by the gas filter 146, preventing the dust and debris in the dust cup 230 from contaminating the cleaning manifold channel 134 and the base negative pressure generating device 114.
[0068] In addition, such as Figures 10 to 11 As shown, in some other embodiments, the base station body 120 may be provided with a base station negative pressure generating device 124, which can also be connected to the floor brush cleaning channel 130 and the dust cup cleaning channel 140 to generate negative pressure airflow in both. The negative pressure generating device can be installed in the base station body 120. Similarly, the base station negative pressure generating device 124 can generate negative pressure airflow in the brush cleaning channel 130 and the dust cup cleaning channel 140, causing the brush cleaning channel 130 to suck up the brush receiving groove and the cleaning brush 220 therein, cleaning and sucking the dust and debris on the brush receiving groove and the cleaning brush 220 into the first dust collection chamber 150 of the brush cleaning channel 130 and storing it in the first dust bag 152. The dust cup cleaning channel 140 can also suck up the dust cup docking groove 1222 and the cleaning dust cup 230 therein, cleaning and sucking the dust and debris in the dust cup docking groove 1222 and the cleaning dust cup 230 into the second dust collection chamber 160 of the dust cup cleaning channel 140 and storing it in the second dust bag 162. At this time, the first dust collection chamber 150 and the first dust bag 152 therein can be located below the second dust collection chamber 160 and the second dust bag 162 therein. Alternatively, the first dust bag 152 can be positioned above or at the same height as the second dust bag 162.
[0069] Furthermore, the floor brush cleaning channel 130 may include a floor brush cleaning main channel 132 and a cleaning confluence channel 134 connected in the base station body 120. The floor brush cleaning main channel 132 is connected to the floor brush receiving cavity 1124 of the floor brush receiving groove. The first dust collection cavity 150 is located in the floor brush cleaning main channel 132 or the cleaning confluence channel 134. The base station negative pressure generating device 124 may be connected to the cleaning confluence channel 134 to generate negative pressure airflow in the floor brush cleaning channel 130. The base station negative pressure generating device 124 installed on the base station body 120 can suck up the cleaning confluence channel 134 of the floor brush cleaning channel 130, and generate negative pressure airflow in the cleaning confluence channel 134 and the main floor brush cleaning channel 132. It can suck up the dust and debris in the floor brush receiving groove connected to the main floor brush cleaning channel 132 and the cleaning floor brush 220 therein, and transport the sucked dust and debris to the first dust bag 152 in the first dust collection chamber 150 in the main floor brush cleaning channel 132 or the cleaning confluence channel 134.
[0070] Furthermore, the dust cup cleaning channel 140 may include a dust cup cleaning main channel 142 disposed in the base station body 120, and a cleaning manifold channel 134 connected to the dust cup cleaning main channel 142. The second dust collection chamber 160 is disposed in the dust cup cleaning main channel 142. The base station negative pressure generating device 124 may be disposed at the end of the cleaning manifold channel 134 for generating negative pressure airflow in the dust cup cleaning channel 140. Through the base station negative pressure generating device 124 disposed on the base station body 120, the cleaning manifold channel 134 of the dust cup cleaning channel 140 can be sucked, and negative pressure airflow can be generated in the cleaning manifold channel 134 and the dust cup cleaning main channel 142. Dust and debris in the dust cup docking groove 1222 connected to the dust cup cleaning main channel 142 and the cleaning dust cup 230 therein can be sucked, and the sucked dust and debris can be transported to the second dust bag 162 in the second dust collection chamber 160 in the dust cup cleaning main channel 142.
[0071] Furthermore, the base station body 120 may also be provided with a base station channel switching component 126, which is used to switch the ground brush cleaning main channel 132 and the dust cup cleaning main channel 142 so that one of them is connected to the cleaning convergence channel 134. Similarly, the main cleaning path 132 of the floor brush and the main cleaning path 142 of the dust cup, which are connected to the cleaning confluence channel 134, can be switched by the base station channel switching component 126. When the main cleaning path 132 of the floor brush is blocked by the base station channel switching component 126, the main cleaning path 142 of the dust cup can be connected to the cleaning confluence channel 134, so that the second dust bag 162 in the second dust collection chamber 160 in the dust cup cleaning path 140 can be connected to the cleaning dust cup 230 in the dust cup docking groove 1222. When the main cleaning path 142 of the dust cup is blocked by the base station channel switching component 126, the main cleaning path 132 of the floor brush can be connected to the cleaning confluence channel 134, so that the first dust bag 152 in the first dust collection chamber 150 in the floor brush cleaning path 130 can be connected to the cleaning port 222 of the cleaning floor brush 220 in the floor brush receiving groove. Furthermore, the specific structure of the base station channel switching component 126 is similar to that of the base station channel switching component 116 described above, and will not be repeated here.
[0072] In addition, a floor brush connecting pipe 128 connecting the base station body 120 and the floor brush cleaning section 112 may be provided on the outside of the base station body 120, and a floor brush cleaning main channel 132 may be provided in the floor brush connecting pipe 128. In this way, the floor brush cleaning main channel 132 can be set separately from the dust cup cleaning main channel 142 in the base station body 120.
[0073] In addition, in some other embodiments, a base negative pressure generating device 114 is provided in the base station base 110, and a floor brush cleaning channel 130 is provided in the base station base 110 and / or in the base station body 120 and connected to the base negative pressure generating device 114; moreover, a base negative pressure generating device 124 may be provided in the base station body 120, and a dust cup cleaning channel 140 is provided in the base station body 120 and / or in the base station base 110 and connected to the base negative pressure generating device 124. Two negative pressure generating devices can be used to suction the two cleaning channels one by one, forming a negative pressure airflow in the two cleaning channels. The two cleaning channels can be used to suction the floor brush receiving groove on the base station base 110 and the cleaning floor brush 220 of the cleaning device 200 therein, as well as the dust cup docking groove 1222 on the base station body 120 and the cleaning dust cup 230 of the cleaning device 200 therein. In this way, the dust and debris on the cleaning floor brush 220 can be sucked into the first dust bag 152 set in the first dust collection chamber 150 in the floor brush cleaning channel 130, and the dust and debris in the cleaning dust cup 230 can be sucked into the second dust bag 162 set in the second dust collection chamber 160 in the dust cup cleaning channel 140.
[0074] In addition, such as Figures 1 to 5As shown, the side wall of the brush receiving groove on the brush cleaning section 112 of the base station 110 may be provided with a brush self-cleaning hole 1126 that connects the brush receiving cavity 1124 and the first dust collection chamber 150 in the brush cleaning channel 130. The brush self-cleaning hole 1126 is used to correspond to the cleaning port 222 of the cleaning brush 220 of the cleaning device 200. When cleaning the cleaning brush 220 in the brush receiving groove through the brush cleaning channel 130, the brush self-cleaning hole 1126 on the side wall of the brush receiving groove can correspond to the cleaning port 222 of the cleaning brush 220, so that the cleaning brush 220 can be better sucked and cleaned through the brush self-cleaning hole 1126 and the cleaning port 222, and the sucked dust and debris can be transported to the first dust bag 152 of the first dust collection chamber 150 in the brush cleaning channel 130 through the brush self-cleaning hole 1126.
[0075] Furthermore, a floor brush hole baffle 1128 may be provided at the self-cleaning hole 1126 of the floor brush. The floor brush hole baffle 1128 is used to open the self-cleaning hole 1126 of the floor brush under the action of negative pressure airflow in the floor brush cleaning channel 130, so as to connect the floor brush receiving cavity 1124 and the first dust collection cavity 150 in the floor brush cleaning channel 130. That is, when there is negative pressure airflow in the floor brush cleaning channel 130, the floor brush hole baffle 1128 can be driven by the negative pressure airflow to move away from the self-cleaning hole 1126 of the floor brush, so that the self-cleaning hole 1126 of the floor brush, which was originally blocked and closed by the floor brush hole baffle 1128, can be opened, so that the self-cleaning hole 1126 of the floor brush receiving cavity 1124 and the first dust collection cavity 150 in the floor brush cleaning channel 130 can be connected.
[0076] Furthermore, when there is no negative pressure airflow in the brush cleaning channel 130, the brush hole baffle 1128 is used to close the brush self-cleaning hole 1126 by its own weight and / or external elastic force, so as to isolate the brush receiving cavity 1124 and the first dust collection cavity 150 in the brush cleaning channel 130; when there is negative pressure airflow in the brush cleaning channel 130, the brush hole baffle 1128 is used to open the brush self-cleaning hole 1126 under the pressure generated by the negative pressure airflow, so as to connect the brush receiving cavity 1124 and the first dust collection cavity 150 in the brush cleaning channel 130. The floor brush hole baffle 1128 can close the floor brush self-cleaning hole 1126 by gravity or elastic force, and can overcome gravity or elastic force by the pressure generated by negative airflow, so that the floor brush hole baffle 1128 can be moved away from the floor brush self-cleaning hole 1126 to open the floor brush self-cleaning hole 1126.
[0077] Furthermore, on the wall of the dust cup docking groove 1222 at the dust cup connection part 122 of the base station body 120, a dust cup cleaning hole 1226 may be provided, which connects the dust cup docking cavity 1224 and the second dust collection chamber 160 in the dust cup cleaning channel 140. The dust cup cleaning hole 1226 is used to dock with the ash discharge port at the bottom of the cleaning dust cup 230 of the cleaning device 200. When cleaning the cleaning dust cup 230 in the dust cup docking groove 1222 through the dust cup cleaning channel 140, the dust cup cleaning hole 1226 on the wall of the dust cup docking groove 1222 can be aligned with the ash discharge port of the cleaning dust cup 230. The cleaning dust cup 230 can be sucked and cleaned through the dust cup cleaning hole 1226, and the sucked dust and garbage can be transported to the second dust bag 162 in the second dust collection chamber 160 in the dust cup cleaning channel 140 through the dust cup cleaning hole 1226.
[0078] Similarly, a dust cup cleaning hole baffle 1228 may be provided at the dust cup cleaning hole 1226. The dust cup cleaning hole baffle 1228 is used to open the dust cup cleaning hole 1226 under the action of negative pressure airflow in the dust cup cleaning channel 140, so as to connect the dust cup docking cavity 1224 and the second dust collection cavity 160 in the dust cup cleaning channel 140. Similarly, when there is negative pressure airflow in the dust cup cleaning channel 140, the dust cup cleaning hole baffle 1228 can be moved away from the dust cup cleaning hole 1226 by the negative pressure airflow, so that the dust cup cleaning hole 1226, which was originally blocked and closed by the dust cup cleaning hole baffle 1228, can be opened, so that the dust cup cleaning hole 1226 can connect the dust cup docking cavity 1224 and the second dust collection cavity 160 in the dust cup cleaning channel 140.
[0079] In addition, such as Figures 1 to 5 As shown, this utility model also proposes a cleaning system 10, including the cleaning base station 100 as described above, and a cleaning device 200 corresponding to and cooperating with the cleaning base station 100. The cleaning device 200 may include a device body 210, a cleaning brush 220 with a cleaning port 222 located at the bottom of the device body 210, and a cleaning dust cup 230 located on the device body 210. When the cleaning device 200 is connected to the cleaning base station 100, the cleaning brush 220 is located in the brush receiving groove 1122 on the base station base 110, and the first dust bag 152 in the first dust collection chamber 150 is connected to the cleaning port 222 of the cleaning brush 220 of the cleaning device 200 through the brush cleaning channel 130. The cleaning dust cup 230 is engaged in the dust cup docking groove 1222 of the base station body 120, and the second dust bag 162 in the second dust collection chamber 160 is connected to the cleaning dust cup 230 of the cleaning device 200 through the dust cup cleaning channel 140.
[0080] In this cleaning system 10, by simultaneously setting two cleaning channels (i.e., the floor brush cleaning channel 130 and the dust cup cleaning channel 140) connected to the cleaning dust cup 230 of the cleaning equipment 200 and the cleaning brush 220 of the cleaning equipment 200 on the cleaning base station 100, the dust and debris in the cleaning dust cup 230 of the cleaning equipment 200 can be collected into the second dust bag 162 contained in the second dust collection chamber 160 in the dust cup cleaning channel 140 under the action of negative pressure airflow, and the dust and debris on the cleaning brush 220 of the cleaning equipment 200 can be collected into the first dust bag 152 contained in the first dust collection chamber 150 in the dust cup cleaning channel 140. This can achieve both cleaning of the cleaning dust cup 230 of the cleaning equipment 200 and self-cleaning of the cleaning brush 220 of the cleaning equipment 200, which is beneficial to improving the cleaning effect of the dust cup of the cleaning equipment 200 and the self-cleaning effect of the cleaning brush 220.
[0081] Furthermore, in the above embodiments, the cleaning device 200 can be a vacuum cleaner, and the cleaning base station 100 can be a vacuum cleaner base station. Alternatively, the cleaning device 200 can be a mopping machine, and the cleaning base station 100 can be a mopping machine base station, and so on.
[0082] It should be noted that in this invention, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0083] The above description is merely a specific embodiment of the present invention, enabling those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features of the present invention.
Claims
1. A cleaning base station (100) characterized by , comprising: a base station seat (110); and, a base station body (120) arranged on the base station seat (110); wherein the base station seat (110) is provided with a floor brush cleaning part (112) having a floor brush accommodating groove (1122); the base station body (120) is provided with a dust cup connecting part (122) having a dust cup docking groove (1222); the base station seat (110) and the base station body (120) are provided with a floor brush cleaning channel (130) and a dust cup cleaning channel (140), the floor brush cleaning channel (130) is in communication with a floor brush containing cavity (1124) formed by the floor brush accommodating groove (1122), and the dust cup cleaning channel (140) is in communication with a dust cup docking cavity (1224) formed by the dust cup docking groove (1222); the floor brush cleaning channel (130) is provided with a first dust collecting cavity (150) for accommodating a first dust bag (152), and the dust cup cleaning channel (140) is provided with a second dust collecting cavity (160) for accommodating a second dust bag (162); the first dust bag (152) is used to accommodate dust garbage generated by suction cleaning of a cleaning floor brush (220) of a cleaning device (200), and the second dust bag (162) is used to accommodate dust garbage suctioned out by suction cleaning of a cleaning dust cup (230) of the cleaning device (200); in the vertical direction, the position of the first dust bag is not higher than the position of the second dust bag.
2. The cleaning base station (100) according to claim 1, characterized in that the base station seat (110) is provided with a base negative pressure generating device (114), which is connected with the floor brush cleaning channel (130) and the dust cup cleaning channel (140) and is used to generate a negative pressure airflow in the floor brush cleaning channel (130) and the dust cup cleaning channel (140).
3. The cleaning base station (100) according to claim 2, characterized in that the floor brush cleaning channel (130) comprises a floor brush cleaning main channel (132) arranged in the base station seat (110) and a cleaning convergence channel (134), the floor brush cleaning main channel (132) is in communication with the floor brush containing cavity (1124), the base negative pressure generating device (114) is arranged at the end of the cleaning convergence channel (134), and the first dust collecting cavity (150) is arranged in the floor brush cleaning main channel (132) or the cleaning convergence channel (134); the dust cup cleaning channel (140) comprises a dust cup cleaning main channel (142) arranged in the base station body (120) and the cleaning convergence channel (134) arranged in the base station seat (110) and connected with the dust cup cleaning main channel (142), and the second dust collecting cavity (160) is arranged in the dust cup cleaning main channel (142).
4. The cleaning base station (100) according to claim 3, characterized in that the base station seat (110) is provided with a base channel switching piece (116), which is used to switch the floor brush cleaning main channel (132) and the dust cup cleaning main channel (142) so that one of them is in communication with the cleaning convergence channel (134).
5. The cleaning base station (100) according to claim 4, characterized in that The base channel switching piece (116) comprises a base switching driving piece (1162) arranged in the base seat (110), and a base switching plate (1164) connected with the base switching driving piece (1162), and the base switching driving piece (1162) is used for driving the base switching plate (1164) to shield and close one of the brush cleaning main channel (132) and the dust cup cleaning main channel (142), and open the other one to communicate with the cleaning convergence channel (134).
6. The cleaning station (100) according to claim 3, characterized in that The dust cup cleaning channel (140) is provided with a gas filter (146) arranged between the second dust collecting cavity (160) and the cleaning convergence channel (134).
7. The cleaning station (100) according to claim 1, characterized in that The base main body (120) is provided with a base negative pressure generating device (124). The brush cleaning channel (130) comprises a brush cleaning main channel (132) and a cleaning convergence channel (134) arranged in the base main body (120), the brush cleaning main channel (132) communicates with the brush containing cavity (1124), and the first dust collecting cavity (150) is arranged in the brush cleaning main channel (132) or the cleaning convergence channel (134). The dust cup cleaning channel (140) comprises a dust cup cleaning main channel (142) arranged in the base main body (120), and the cleaning convergence channel (134) connected with the dust cup cleaning main channel (142), and the second dust collecting cavity (160) is arranged in the dust cup cleaning main channel (142). The base negative pressure generating device (124) is arranged at the end of the cleaning convergence channel (134), and is used for generating a negative pressure airflow in the brush cleaning channel (130) and the dust cup cleaning channel (140).
8. The cleaning station (100) according to claim 7, characterized in that The base main body (120) is provided with a base channel switching piece (126), which is used for switching the brush cleaning main channel (132) and the dust cup cleaning main channel (142) to communicate with the cleaning convergence channel (134).
9. The cleaning base station (100) according to claim 7, characterized in that The outer side of the base main body (120) is provided with a brush connecting pipe (128) connecting the base main body (120) and the brush cleaning part (112), and the brush cleaning main channel (132) is arranged in the brush connecting pipe (128).
10. The cleaning base station (100) of claim 1, characterized in that The base seat (110) is provided with a base negative pressure generating device (114), and the brush cleaning channel (130) is arranged in the base seat (110) and / or the base main body (120) and connected with the base negative pressure generating device (114). The base main body (120) is provided with a base negative pressure generating device (124), and the dust cup cleaning channel (140) is arranged in the base main body (120) and / or the base seat (110) and connected with the base negative pressure generating device (124).
11. The cleaning base station (100) according to any one of claims 1-10, characterized by The sidewall of the floor brush accommodating slot (1122) is provided with a floor brush self-cleaning hole (1126) communicating the floor brush accommodating cavity (1124) and the first dust collecting cavity (150) in the floor brush cleaning channel (130), which is used for corresponding with the cleaning port (222) of the cleaning floor brush (220) of the cleaning device (200).
12. The cleaning base station (100) according to claim 11, characterized in that The floor brush hole baffle (1128) is arranged at the floor brush self-cleaning hole (1126) and is used for opening the floor brush self-cleaning hole (1126) under the action of the negative pressure airflow in the floor brush cleaning channel (130) to communicate the floor brush accommodating cavity (1124) and the first dust collecting cavity (150) in the floor brush cleaning channel (130).
13. The cleaning base station (100) according to claim 12, characterized in that When there is no negative pressure airflow in the floor brush cleaning channel (130), the floor brush hole baffle (1128) is used for closing the floor brush self-cleaning hole (1126) by its own gravity or / and external elastic force to cut off the communication between the floor brush accommodating cavity (1124) and the first dust collecting cavity (150) in the floor brush cleaning channel (130). When there is negative pressure airflow in the floor brush cleaning channel (130), the floor brush hole baffle (1128) is used for driving the floor brush hole baffle (1128) to open the floor brush self-cleaning hole (1126) under the pressure generated by the negative pressure airflow to communicate the floor brush accommodating cavity (1124) and the first dust collecting cavity (150) in the floor brush cleaning channel (130).
14. The cleaning base station (100) according to any one of claims 1-10, characterized by The sidewall of the dust cup abutting slot (1222) is provided with a dust cup cleaning hole (1226) communicating the dust cup abutting cavity (1224) and the second dust collecting cavity (160) in the dust cup cleaning channel (140), which is used for abutting with the dust discharging port of the cleaning dust cup (230) of the cleaning device (200).
15. The cleaning base station (100) according to claim 14, characterized in that The dust cup hole baffle (1228) is arranged at the dust cup cleaning hole (1226) and is used for opening the dust cup cleaning hole (1226) under the action of the negative pressure airflow in the dust cup cleaning channel (140) to communicate the dust cup abutting cavity (1224) and the second dust collecting cavity (160) in the dust cup cleaning channel (140).
16. A cleaning system (10) characterized by The cleaning device (200) comprises a device main body (210), a cleaning floor brush (220) provided with a cleaning port (222) at the bottom of the device main body (210), and a cleaning dust cup (230) provided on the device main body (210). The cleaning device (200) comprises a device main body (210), a cleaning floor brush (220) provided with a cleaning port (222) at the bottom of the device main body (210), and a cleaning dust cup (230) provided on the device main body (210). When the cleaning device (200) is docked with the cleaning base station (100), the cleaning floor brush (220) is located in the floor brush containing groove (1122) on the base station seat (110), the first dust bag (152) in the first dust collecting cavity (150) is connected with the cleaning port (222) of the cleaning floor brush (220) of the cleaning device (200) through the floor brush cleaning channel (130), the cleaning dust cup (230) is clamped in the dust cup docking groove (1222) of the base station main body (120), and the second dust bag (162) in the second dust collecting cavity (160) is connected with the cleaning dust cup (230) of the cleaning device (200) through the dust cup cleaning channel (140).
Citation Information
Patent Citations
Self-cleaning device and system
CN216628366U