Bacteriostatic assembly, cleaning box body and base station

By installing an antibacterial component at the water inlet of the cleaning equipment's water tank, and utilizing the shell to contain the antibacterial agent and designing it with a sloping surface and baffle structure, the problem of bacterial growth and odor during the storage of solid-liquid mixed waste in the cleaning equipment is solved, achieving effective antibacterial effect and extending the component's lifespan.

CN224054517UActive Publication Date: 2026-03-27MIDEA ROBOZONE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Solid-liquid mixtures generated during the cleaning and maintenance process of cleaning equipment are prone to bacterial growth and odors when stored in water tanks.

Method used

An antibacterial component is installed at the water inlet of the cleaning equipment's water tank. The shell contains the antibacterial agent, and the incoming clean water or sewage is treated by the antibacterial agent through the water permeable holes. The lowest position of the antibacterial component is set above the highest water level line of the water tank to avoid long-term immersion. The surface of the shell is designed as a slope to guide the liquid inflow and a baffle is set to increase the contact time.

Benefits of technology

It effectively inhibits bacterial growth and odor generation in the water tank, extends the service life of the antibacterial components, and improves the cleaning effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bacteriostatic assembly, a cleaning box body and a base station. The bacteriostatic assembly comprises a shell, and the shell is provided with an inner containing cavity which is used for containing a bacteriostatic agent. According to the scheme, the bacteriostatic agent is arranged in the bacteriostatic assembly, and the purposes of bacteriostasis and deodorization can be achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning equipment, in particular to a bacteriostatic assembly, a cleaning box body and a base station. BACKGROUND

[0002] With the rapid development of economy and the improvement of technical level, the cleaning equipment has the advantages of convenient use and good cleaning effect, therefore, the cleaning equipment gradually begins to replace manual cleaning and widely appears in life and work.

[0003] The scrubber and the cleaning robot as important members of the cleaning equipment have become the first choice of many families. However, the cleaning and maintenance of the cleaning equipment itself also become an important problem to be solved, especially the solid-liquid mixed garbage generated in the cleaning and maintenance process will be collected and stored by the water tank, which is easy to breed bacteria and produce a large amount of odor after long-term use, thus bringing bad use experience to consumers. CONTENT OF THE UTILITY MODEL

[0004] The technical problem to be solved by the present application is to avoid the problem of bacterial breeding and a large amount of odor generated during the storage of the solid-liquid mixed garbage generated in the cleaning and maintenance process.

[0005] To solve the above technical problem, the present application provides a bacteriostatic assembly, which comprises a shell, the shell is provided with an internal cavity, and the internal cavity is used for accommodating a bacteriostatic agent.

[0006] Optionally, the shell comprises an upper shell and a lower shell, the upper shell and the lower shell combine to form the internal cavity, and the upper shell and the lower shell are detachably connected.

[0007] Optionally, the upper shell and the lower shell are connected to each other through a buckle or a plug-in structure.

[0008] Optionally, the surfaces of the upper shell and the lower shell are each provided with a plurality of water-permeable holes.

[0009] Optionally, an included angle exists between the upper surface of the upper shell and the horizontal plane, and the upper surface has opposite highest and lowest parts.

[0010] Optionally, the included angle is between 0-90 degrees.

[0011] Optionally, the shell is provided with a first baffle on the side closer to the lowest part of the upper surface.

[0012] Optionally, the height of the first baffle is higher than the height of the lowest part of the upper shell.

[0013] Optionally, the first baffle has a gap with the shell.

[0014] Optionally, the gap width is 1-3 cm.

[0015] Optionally, the side wall of the shell is provided with a second baffle.

[0016] Optionally, the height of the second baffle is always higher than the height of the side wall.

[0017] Optionally, the bacteriostatic agent is silver ion slow-release particles, chlorine dioxide slow-release particles, guanidine salt slow-release particles.

[0018] To solve the above problems, the application further provides a cleaning box, which comprises: a containing cavity for containing clean water or sewage; a water inlet communicating with the containing cavity; and a bacteriostatic assembly as described above arranged near the water inlet, wherein liquid flowing out of the water inlet flows into the containing cavity at least partially through the bacteriostatic assembly.

[0019] Optionally, the lowest position of the bacteriostatic assembly is higher than the highest water level line of the containing cavity.

[0020] Optionally, the bacteriostatic assembly comprises an upper shell and a lower shell, the upper shell and the lower shell combine to form an internal cavity for containing a bacteriostatic agent; the surfaces of the upper shell and the lower shell are each provided with a plurality of water-permeable holes, and an angle exists between the upper surface of the upper shell and the horizontal plane, wherein liquid flowing out of the water inlet flows into the containing cavity at least partially through the water-permeable holes and the bacteriostatic agent.

[0021] To solve the above problems, the application further provides a base station comprising the cleaning box as described above.

[0022] The application has the beneficial effect that by arranging a containing cavity inside the shell of the bacteriostatic assembly and containing a bacteriostatic agent in the containing cavity, the bacteriostatic assembly can be used to inhibit bacteria and odor of sewage. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 is a structural schematic view of an embodiment of the cleaning box provided by the application;

[0024] Figure 2 is Figure 1 a structural schematic view of the A area shown in FIG. 1;

[0025] Figure 3 is a structural schematic view of an embodiment of the bacteriostatic assembly provided by the application;

[0026] Figure 4 is a structural schematic view of another embodiment of the bacteriostatic assembly provided by the application;

[0027] Figure 5 is Figure 4 the vertical sectional view of the assembled bacteriostatic assembly shown in

[0028] Figure 6 is a structural schematic diagram of an embodiment of the base station provided in the present application. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort fall within the scope of protection of the present application.

[0030] The terms "first", "second", "third" in the embodiments of the present application are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second", "third" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise explicitly and specifically limited. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product or device.

[0031] In this document, the term "embodiment" means that the specific features, structures or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The phrase appears at various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily independent or alternative embodiments to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0032] Please refer to Figure 1 and Figure 2 , Figure 1 is a structural schematic diagram of an embodiment of the cleaning box 100 provided in the present application, Figure 2 is Figure 1 a structural schematic diagram of the A area shown in.

[0033] As Figure 1 and Figure 2As shown, the application provides a cleaning tank 100, which comprises a containing cavity 10 for containing clean water or sewage and a bacteriostatic assembly 20 arranged near a water inlet 11 of the cleaning tank 100. Thus, the clean water or sewage entering the containing cavity 10 from the water inlet 11 will first flow through the bacteriostatic assembly 20. That is, the clean water or sewage entering the containing cavity 10 will first be subjected to bacteriostatic and deodorization treatment by the bacteriostatic assembly 20, thereby reducing the phenomenon of bacterial growth and odor generation in the containing cavity 10. In addition, the application sets the lowest position of the bacteriostatic assembly 20 to be higher than the highest water level line of the containing cavity 10, so as to avoid the bacteriostatic assembly 20 from being soaked in the clean water or sewage in the containing cavity 10 for a long time, thereby prolonging the service life of the bacteriostatic assembly 20.

[0034] Further, the bacteriostatic assembly 20 comprises an upper shell 24 and a lower shell 25, which combine to form an internal cavity 22 for containing a bacteriostatic agent 23. The surfaces of the upper shell 24 and the lower shell 25 are each provided with a plurality of water-permeable holes 26, and the upper surface of the upper shell 24 forms an angle with the horizontal plane. The liquid flowing out of the water inlet 11 will at least partially flow through the water-permeable holes 26 and then flow into the containing cavity 10 after flowing through the bacteriostatic agent 23.

[0035] In other embodiments of the application, the shell 21 of the bacteriostatic assembly 20 can also be arranged as a left shell (not shown) and a right shell (not shown). Of course, the shell 21 of the bacteriostatic assembly 20 of the application can also be arranged in other forms, which are not specifically limited herein.

[0036] Please refer to Figure 3 , Figure 4 and Figure 5 , Figure 3 is a structural schematic view of an embodiment of the bacteriostatic assembly 20 provided by the application, Figure 4 is a structural schematic view of another embodiment of the bacteriostatic assembly 20 provided by the application, Figure 5 is Figure 4 a vertical sectional view of the assembled bacteriostatic assembly 20.

[0037] In an embodiment of the application, the bacteriostatic assembly 20 comprises a shell 21, which is provided with an internal cavity 22 for containing a bacteriostatic agent 23. In order to better fix the bacteriostatic assembly on the cleaning tank 100, the bacteriostatic assembly is provided with the shell 21, which can also protect the bacteriostatic agent 23 from being damaged by liquid. The material of the shell 21 can be plastic, stainless steel, etc., which is not specifically limited herein.

[0038] Further, in an embodiment of the present application, the shell 21 comprises an upper shell 24 and a lower shell 25, which combine to form the internal cavity 22, and the upper shell 24 and the lower shell 25 are detachably connected. In order to facilitate the installation and replacement of the bacteriostatic agent 23, the shell 21 is provided as two detachable parts, i.e., the upper shell 24 and the lower shell 25, which combine to form the internal cavity 22 for placing the bacteriostatic agent 23.

[0039] In other embodiments of the present application, the shell 21 of the bacteriostatic assembly 20 can also be provided as a left shell (not shown) and a right shell (not shown). Of course, the shell 21 of the bacteriostatic assembly 20 can also be provided in other forms, which are not specifically limited herein.

[0040] In some specific embodiments of the present application, as shown in Figure 3 The upper shell 24 is further provided with a connecting mechanism 27 on the side facing the water inlet 11, which can be sleeved on the water inlet 11 to achieve the fixed connection between the upper shell 24 and the cleaning tank 100, so as to achieve the fixed connection between the bacteriostatic assembly 20 and the cleaning tank 100. The upper shell 24 can be integrally formed with the connecting mechanism 27, or can be detachably connected with the connecting mechanism 27, which is not specifically limited herein.

[0041] In some other specific embodiments of the present application, as shown in Figure 4 The upper shell 24 is provided with a hook structure 28 on the side facing the water inlet 11, and the cleaning tank 100 is also provided with a structure corresponding to the hook structure 28, such as a clamping groove (not shown), etc. The upper shell 24 can be fixedly connected with the cleaning tank 100 by using the hook structure 28, so as to achieve the fixed connection between the bacteriostatic assembly 20 and the cleaning tank 100.

[0042] In some other specific embodiments of the present application, the bacteriostatic assembly 20 can also be connected with the cleaning tank 100 by other means, such as bolt connection, adhesive connection, etc., which are not specifically limited herein, as long as the relative fixed connection between the bacteriostatic assembly 20 and the cleaning tank 100 can be achieved.

[0043] In an embodiment of the present application, the upper shell 24 and the lower shell 25 can be connected with each other by a buckle or plug-in structure. As shown in Figures 3-5 In some cases, the present application is provided with a groove 29 on the upper shell 24, and a corresponding protrusion 32 is provided on the lower shell 25, so that the upper shell 24 and the lower shell 25 can be fixedly connected by the cooperation of the groove 29 and the protrusion 32. Of course, in other cases, the upper shell 24 can be provided with the protrusion 32, and the lower shell 25 can be provided with the groove 29. The upper shell 24 and the lower shell 25 can also be connected by other means, which are not specifically limited herein.

[0044] In one embodiment of the present application, the surfaces of the upper shell 24 and the lower shell 25 are provided with a plurality of water-permeable holes 26. By providing the surfaces of the upper shell 24 and the lower shell 25 with a plurality of water-permeable holes 26, the clear water or sewage can flow from the water-permeable holes 26 on the surface of the upper shell 24, be treated by the bacteriostatic agent 23, and then flow from the water-permeable holes 26 on the surface of the lower shell 25 into the containing cavity 10. In this way, the clear water or sewage flowing into the containing cavity 10 can be in full contact with the bacteriostatic agent 23, thereby enhancing the bacteriostatic effect of the bacteriostatic assembly 20.

[0045] In one embodiment of the present application, the upper surface of the upper shell 24 forms an angle with the horizontal plane, and the upper surface has opposite highest and lowest points. Since water generally flows from high to low under the influence of gravity, the upper surface of the upper shell 24 of the bacteriostatic assembly 20 is arranged to form an angle with the horizontal plane, which can guide the liquid to flow into the interior of the bacteriostatic assembly 20 and then contact the bacteriostatic agent 23.

[0046] For example, in one specific embodiment of the present application, the upper surface of the upper shell 24 can be gradually lowered from the side close to the water inlet 11 to the side away from the water inlet 11, which can better guide the clear water or sewage to flow from the water inlet 11 to the bacteriostatic assembly 20 and then flow into the containing cavity 10 after passing through the bacteriostatic assembly 20. In this way, the problem of clogging caused by the long retention of clear water or sewage on the surface of the bacteriostatic assembly 20 can also be avoided.

[0047] More specifically, in one embodiment of the present application, the angle between the upper surface of the upper shell 24 and the horizontal plane is between 0-90 degrees. When the angle is 0, the upper surface of the upper shell 24 is parallel to the horizontal plane, i.e., the upper shell 24 and the lower shell 25 are parallel to each other and enclose a cuboid or a cube, the interior of which is used to contain the bacteriostatic agent 23. At this time, since the upper surface of the upper shell 24 has no slope, it cannot guide the clear water or sewage well. When the angle is 90 degrees, the upper surface of the upper shell 24 is perpendicular to the horizontal plane, at this time, the bacteriostatic assembly 20 is a rectangular or square structure, thereby greatly compressing the space of the bacteriostatic agent 23. Therefore, through a large number of experiments and long-term practical verification by the researchers of the present application, the angle can be set to be between 10 degrees and 80 degrees, and the best angle is 45-60 degrees. At this time, the upper surface of the upper shell 24 is neither too flat nor too steep, thereby being conducive to guiding the liquid and facilitating the installation of the bacteriostatic assembly 20.

[0048] In an embodiment of the present application, in order to avoid the liquid flowing directly through the upper surface of the upper shell 24 and flowing away without having enough time to enter the internal cavity 22 of the bacteriostatic assembly 20, the shell 21 is provided with a first baffle 30 on the side closer to the lowest part of the upper surface, that is, the shell 21 is provided with the first baffle 30 on the side of the upper surface where the height is lower, so as to increase the time for the liquid to stay on the upper surface and give the liquid more time to enter the internal cavity 22 of the bacteriostatic assembly 20, thereby improving the bacteriostatic and deodorizing effect.

[0049] In a specific embodiment of the present application, in order to avoid the water flowing out of the water inlet 11 directly flowing through the upper surface of the upper shell 24 and directly flowing into the containing cavity 10, the shell 21 is provided with a first baffle 30 on the side away from the water inlet 11, so as to increase the time for the liquid to stay on the upper surface and improve the bacteriostatic and deodorizing effect.

[0050] Further, in an embodiment of the present application, the height of the first baffle 30 is higher than the height of the lowest part of the upper shell 24, so as to play a certain blocking role on the liquid.

[0051] In a specific embodiment of the present application, the first baffle 30 is provided on the side of the shell 21 away from the water inlet 11, and the height of the first baffle 30 is higher than the height of the lowest part of the upper shell 24, so that the first baffle 30 can block the water flowing directly from the upper surface of the upper shell 24 into the containing cavity 10, thereby ensuring that the water flowing from the water inlet 11 into the containing cavity 10 can be treated by the bacteriostatic agent 23, in addition, the first baffle 30 can also reduce the flow speed of the clean water or sewage, thereby increasing the contact time of the clean water or sewage with the bacteriostatic agent 23, so as to achieve better bacteriostatic and deodorizing treatment of the clean water or sewage and improve the bacteriostatic and deodorizing effect.

[0052] More specifically, in an embodiment of the present application, there is a gap 31 between the first baffle 30 and the shell 21. The clean water or sewage flowing from the water inlet 11 may, in addition to liquid substances, also contain solid or semi-solid substances, in order to avoid the accumulation of these solid or semi-solid substances on the upper shell 24 and thereby block the water-permeable holes 26, the present application is provided with a gap 31 between the first baffle 30 and the shell 21, so that the solid or semi-solid substances in the clean water or sewage can directly enter the containing cavity 10 through the gap 31.

[0053] More specifically, in one embodiment of the present application, the gap 31 has a width of 1-3 cm. If the width of the gap 31 is too large, the first baffle 30 is too far away from the bacterium-inhibiting assembly, which results in that the first baffle 30 does not actually play a great blocking role, because a lot of clean water or sewage will directly flow into the accommodating cavity 10 through the gap 31, without flowing through the bacterium-inhibiting assembly 20. If the width of the gap 31 is too small, solid or semi-solid substances in the clean water or sewage will be stuck in the gap, which affects the normal work of the bacterium-inhibiting assembly 20. Therefore, through a large number of experiments and long-term practical verification by the inventors of the present application, it is found that the width of the gap 31 is best set to 1-3 cm.

[0054] In one embodiment of the present application, in order to make the clean water or sewage entering from the water inlet 11 better enter the bacterium-inhibiting assembly 20 for bacterium-inhibiting and odor-inhibiting treatment, the present application is provided with at least one second baffle 40 on the side wall of the shell 21, and the second baffle 40 is connected with the first baffle 30. The second baffle 40 can be provided with one on each of the two side walls of the shell 21, or can be provided with one on only one of the side walls, which can be set according to the actual situation, and the present application does not make a specific limitation here. The second baffle 40 can be integrally formed with the side wall of the shell 21, or can be connected through buckling, adhesion or the like, as long as the two can be connected with each other, and the present application does not make a specific limitation here. The second baffle 40 can be integrally formed with the first baffle 30, or can be connected through buckling, adhesion or the like, as long as the two can be connected with each other, and the present application does not make a specific limitation here. The material of the first baffle 30 and the second baffle 40 can be plastic, stainless steel or the like, and the present application does not make a specific limitation here.

[0055] In one embodiment of the present application, the height of the second baffle 40 is always higher than the height of the side wall of the shell 21. In this way, the second baffle 40 can play a blocking role on the clean water or sewage flowing through the shell 21.

[0056] In one specific embodiment of the present application, the height of the second baffle 40 in the direction from the water inlet 11 to the first baffle 30 is always higher than the height of the upper shell 21. Since the second baffle 40 needs to block the clean water or sewage entering from the water inlet 11, so that the clean water or sewage entering from the water inlet 11 can better enter the bacteriostatic assembly 20 for bacteriostatic and deodorization treatment, therefore, the height of the second baffle 40 needs to be higher than the height of the upper shell 21. In some cases, the upper shell 21 has an angle with the horizontal plane, that is, the upper surface of the upper shell 24 gradually decreases from the side close to the water inlet 11 to the side away from the water inlet 11. At this time, for the consideration of cost saving, aesthetics and practicality, the height of the second baffle 40 can also be set to gradually decrease from the side close to the water inlet 11 to the side away from the water inlet 11, as long as the height of the second baffle 40 in the direction from the water inlet 11 to the first baffle 30 is always higher than the height of the upper shell 21.

[0057] In one embodiment of the present application, the bacteriostatic agent 23 is silver ion slow-release particles, chlorine dioxide slow-release particles, guanidine salt slow-release particles, etc. These slow-release particles can effectively destroy the cell structure of bacteria, inhibit the reproduction of bacteria, and have excellent bacteriostatic and deodorization effect.

[0058] In summary, by arranging the bacteriostatic assembly 20 at the water inlet 11 of the cleaning box 100, the clean water or sewage entering the containing cavity 10 can be subjected to bacteriostatic and deodorization treatment by the bacteriostatic assembly 20 in advance, thereby greatly avoiding the problems of bacterial growth and odor generation caused by long-term storage of clean water or sewage in the containing cavity 10. Further, the lowest position of the bacteriostatic assembly 20 is arranged to be higher than the highest water level line of the containing cavity 10, thereby avoiding the bacteriostatic assembly 20 being soaked in the water in the containing cavity 10 for a long time, and further greatly prolonging the service life of the bacteriostatic assembly 20.

[0059] Further, by improving the structure of the bacteriostatic assembly 20, the bacteriostatic assembly 20 can better perform bacteriostatic and deodorization treatment on the clean water or sewage entering the cleaning box 100. For example, the bacteriostatic assembly 20 is provided with a plurality of water permeable holes 26 on the surfaces of the upper shell 24 and the lower shell 25, so that the clean water or sewage can enter the internal cavity 22 through the water permeable holes 26, and then fully contact with the bacteriostatic agent 23 in the internal cavity 22. In addition, the upper surface of the upper shell 24 is arranged as an inclined surface, thereby better guiding the liquid. Further, the first baffle 30 is arranged on the side of the shell 21 closer to the lowest position of the upper surface, and the second baffle 40 is arranged on the side wall of the shell 21, both of which can block and slow down the liquid flowing through the bacteriostatic assembly 20, thereby increasing the time of the liquid entering the internal cavity 22 and improving the bacteriostatic and deodorization effect of the bacteriostatic assembly 20.

[0060] Please refer to Figure 6 , Figure 6 is a structural schematic diagram of an embodiment of the base station 200 provided in the present application.

[0061] As shown in Figure 6 , the present application provides a base station 200, which comprises the cleaning box 100 as described above.

[0062] The above is only an embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation using the content of the specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection scope of the present application.

Claims

1. An antibacterial component, characterized in that, The antibacterial component includes a housing with an internal cavity for containing an antibacterial agent. The housing includes an upper housing and a lower housing, which together form the internal cavity. The upper housing and the lower housing are detachably connected, and the upper surface of the upper housing has an angle with the horizontal plane, with a highest and a lowest point on the upper surface.

2. The antibacterial component as described in claim 1, characterized in that, The upper housing and the lower housing are connected to each other by a snap-fit ​​or plug-in structure.

3. The antibacterial component as described in claim 1, characterized in that, Both the upper and lower shells have multiple water-permeable holes on their surfaces.

4. The antibacterial component as described in claim 1, characterized in that, The included angle is between 0 and 90 degrees.

5. The antibacterial component as described in claim 1, characterized in that, The housing has a first baffle on the side closer to the lowest point of the upper surface.

6. The antibacterial component as described in claim 5, characterized in that, The height of the first baffle is higher than the height of the lowest point of the upper housing.

7. The antibacterial component as described in claim 5, characterized in that, There is a gap between the first baffle and the housing.

8. The antibacterial component as described in claim 7, characterized in that, The gap width is 1-3cm.

9. The antibacterial component as described in claim 5, characterized in that, The side wall of the housing is provided with at least one second baffle, which is connected to the first baffle.

10. The antibacterial component as described in claim 9, characterized in that, The height of the second baffle is always higher than the height of the side wall.

11. The antibacterial component as described in claim 1, characterized in that, The antibacterial agent is one of silver ion sustained-release granules, chlorine dioxide sustained-release granules, or guanidine salt sustained-release granules.

12. A cleaning box, characterized in that, include: A receiving cavity for holding clean water or wastewater; The water inlet is connected to the receiving cavity; The antibacterial component as described in any one of claims 1 to 11 is disposed near the water inlet, and at least a portion of the liquid flowing out of the water inlet flows into the receiving cavity after passing through the antibacterial component.

13. The cleaning chamber as described in claim 12, characterized in that, The lowest position of the antibacterial component is higher than the highest water level line of the receiving cavity.

14. The cleaning chamber as described in claim 12, characterized in that, The antibacterial component includes an upper shell and a lower shell, which together form an internal cavity for containing an antibacterial agent. Both the upper and lower shells have multiple water-permeable holes on their surfaces. The upper surface of the upper shell is at an angle to the horizontal plane. At least part of the liquid flowing out from the inlet flows through the water-permeable holes, passes through the antibacterial agent, and then flows into the receiving cavity.

15. A base station, characterized in that, Includes the cleaning housing as described in any one of claims 12 to 14.