Cleaning base station and cleaning equipment
By designing detachable chassis components and auxiliary dust collection pipes, the problem of inconvenient cleaning of traditional cleaning base station dust collection pipes has been solved, achieving convenient pipe cleaning and anti-clogging effects.
Patent Information
- Application Number
- CN202423071131.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-12
AI Technical Summary
The dust collection pipes of traditional cleaning base stations are difficult to clean and are easily clogged, affecting the normal use of the cleaning equipment.
Design a detachable chassis component, including a dust collection port and an auxiliary dust collection pipe. The chassis and the base station body can be detached and installed separately. They can be packaged separately during transportation, connected during use, and disassembled for cleaning, which facilitates cleaning of the dust collection pipe.
This allows for convenient cleaning of dust collection pipes without affecting the normal operation of the cleaning base station, preventing blockages and improving the ease of equipment maintenance.
Smart Images

Figure CN223601398U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cleaning equipment, in particular to a cleaning base station and a cleaning equipment. BACKGROUND
[0002] The cleaning equipment generally comprises a cleaning main body and a cleaning base station, the cleaning main body is used for cleaning the ground, and the cleaning base station is used for maintaining the cleaning main body.
[0003] Specifically, after the cleaning main body completes the cleaning task, the cleaning main body can return to the cleaning base station to perform the actions of dust cleaning, drying, charging and the like, and the cleaning base station is generally provided with a dust collection air duct for sucking the dust in the cleaning main body, so as to transfer the dust stored in the cleaning main body to the cleaning base station, so that the cleaning main body has a space for storing dust to perform the cleaning work. However, the dust collection pipe in the general cleaning base station is not convenient to clean and may be blocked. Content of the utility model
[0004] Therefore, it is necessary to provide a cleaning base station and a cleaning equipment aiming at the problem that the traditional cleaning base station is not convenient to clean the dust collection pipe.
[0005] A cleaning base station comprises:
[0006] a base station main body comprising a shell and a dust collection pipe, a dust collection cavity is formed on the shell, the dust collection pipe is arranged in the shell and communicates with the dust collection cavity, and is used for allowing the dust to flow to the dust collection cavity; and
[0007] a chassis assembly comprising a chassis and an auxiliary dust collection pipe, a dust collection port is formed on the chassis, and the auxiliary dust collection pipe is arranged on the chassis and communicates with the dust collection port;
[0008] wherein the chassis is detachably mounted with the base station main body, and one end of the auxiliary dust collection pipe, which is away from the dust collection port, is detachably connected with one end of the dust collection pipe, which is away from the dust collection cavity.
[0009] In the above cleaning base station, the bottom disc assembly is detachably arranged on the base station body. During the transportation of the product, the bottom disc assembly and the base station body can be separately packaged. The bottom disc assembly and the base station body are regular structures, for example, the bottom disc assembly is a disc structure and the base station body is a columnar structure, which facilitates the packaging and transportation of the bottom disc assembly and the base station body, and further facilitates the packaging and transportation of the cleaning base station. In addition, when the cleaning base station is normally used, the bottom disc is arranged on the base station body, and the auxiliary dust collection pipeline on the bottom disc and the dust collection pipeline on the base station body are connected. When the cleaning body enters the cleaning base station and moves to the bottom disc, the dust in the cleaning body can be sucked out through the dust collection port. The sucked dust flows to the dust collection cavity through the auxiliary dust collection pipeline and the dust collection pipeline, so as to automatically transfer and clean the dust in the cleaning body. Therefore, the detachable arrangement of the bottom disc does not affect the normal use of the cleaning base station.
[0010] In addition, after the cleaning base station is used for a period of time, dust is likely to accumulate in the bottom disc and the dust collection pipeline. At this time, the bottom disc assembly can be detached from the base station body. The bottom disc can be conveniently cleaned, and the dust collection pipeline and the auxiliary dust collection pipeline can be conveniently cleaned. The dust collection pipeline and the auxiliary dust collection pipeline can be prevented from being blocked by dust. That is, the bottom disc assembly with the dust collection port is detachably arranged, and the dust collection base station can be conveniently cleaned.
[0011] In some embodiments, a cleaning body accommodating cavity is enclosed between the bottom disc and the shell, the dust collection port is communicated with the cleaning body accommodating cavity, and the auxiliary dust collection pipeline is arranged on the bottom surface of the bottom disc away from the cleaning body accommodating cavity.
[0012] In some embodiments, the auxiliary dust collection pipeline and the dust collection pipeline are connected in the first direction, and the bottom disc and the base station body are arranged in the first direction.
[0013] In some embodiments, the shell comprises an outer shell and a base, the dust collection cavity is formed on the outer shell, the base is matched with the outer shell, and the bottom disc is at least partially sleeved on the base and detachably matched with the base.
[0014] In some embodiments, the base is provided with an accommodating groove, the bottom disc comprises a connecting end and a protruding end arranged opposite to each other in the first direction, the connecting end is detachably sleeved in the accommodating groove in the first direction, and the protruding end protrudes from the base.
[0015] In some embodiments, the auxiliary dust collection pipeline and the dust collection pipeline are respectively provided with a first connecting opening and a second connecting opening, the first connecting opening is arranged corresponding to the connecting end, the second connecting opening faces the accommodating groove, and the first connecting opening and the second connecting opening are connected in the first direction.
[0016] In some embodiments, the dust collection pipe includes a first dust collection pipe and a second dust collection pipe, the first dust collection pipe is arranged on the base and has the first docking opening, and the second dust collection pipe is connected between the first dust collection pipe and the dust collection cavity.
[0017] In some embodiments, the first dust collection pipe includes a first sub-pipe and a second sub-pipe in communication with each other, the first sub-pipe is arranged on the base, the second sub-pipe is arranged on the first sub-pipe and extends away from the base and into the shell, the first sub-pipe has the first docking opening at an end away from the second sub-pipe, and the second sub-pipe has an end away from the first sub-pipe in docking communication with the second dust collection pipe.
[0018] In some embodiments, the first sub-pipe extends in the first direction, and the auxiliary dust collection pipe includes a first auxiliary pipe arranged on the base and in docking communication with the first sub-pipe in the first direction.
[0019] In some embodiments, the auxiliary dust collection pipe further includes a second auxiliary pipe intersecting the first auxiliary pipe in a plane in which the base is arranged, and an end of the second auxiliary pipe away from the first auxiliary pipe is in docking communication with the dust collection port.
[0020] In some embodiments, a sewage tank is formed on the base and used to contain sewage or cleaning elements in the cleaning device.
[0021] In some embodiments, a sealing member is arranged on any one of the auxiliary dust collection pipe and the dust collection pipe, and seals a gap between the auxiliary dust collection pipe and the dust collection pipe.
[0022] In some embodiments, the cleaning base station further includes a dust collection fan arranged in the shell and in communication with the dust collection cavity, and used to form a negative pressure in the dust collection cavity.
[0023] A cleaning device includes a cleaning device and the cleaning base station, and the cleaning device is capable of being controlled to move onto the base. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 FIG. 1 is a structural schematic diagram of a cleaning base station in some embodiments of the present application;
[0025] Figure 2 FIG. 2 is a structural schematic diagram of a base assembly of the cleaning base station in some embodiments of the present application;
[0026] Figure 3 An exploded view of the cleaning base station for some embodiments of the present application;
[0027] Figure 4 A cross-sectional view of the cleaning base station for some embodiments of the present application;
[0028] Figure 5 An exploded view of the cleaning base station for some embodiments of the present application;
[0029] Figure 6 An exploded view of the chassis assembly for some embodiments of the present application;
[0030] Figure 7 A structural view of the back of the chassis assembly for some embodiments of the present application;
[0031] Figure 8 A structural view of the assembly of the chassis assembly and the drying mechanism for some embodiments of the present application;
[0032] Figure 9 A structural view of the separation of the chassis assembly and the base for some embodiments of the present application;
[0033] Figure 10 A partial view of the cleaning base for some embodiments of the present application.
[0034] Legend: 100, cleaning base station; 10, base station main body; 12, housing; 121, dust collection cavity; 123, outer shell; 125, base; 126, accommodating groove; 14, dust collection pipeline; 141, second docking opening; 143, first dust collection pipeline; 144, first sub-pipeline; 145, second sub-pipeline; 146, second dust collection pipeline; 16, drying mechanism; 161, drying fan; 163, drying pipeline; 164, third docking opening; 165, heating element; 30, chassis assembly; 18, dust collection fan; 32, chassis; 321, dust collection port; 323, drying port; 324, air outlet groove; 325, connecting end; 327, protruding end; 328, sewage groove; 34, auxiliary dust collection pipeline; 341, first docking opening; 343, first auxiliary pipeline; 345, second auxiliary pipeline; 36, auxiliary drying pipeline; 50, cleaning main body accommodating cavity; 70, sealing element; 80, buckle. DETAILED DESCRIPTION
[0035] In order to make the above objectives, features and advantages of the present application more clear and understandable, the detailed description of the embodiments of the present application is made below in conjunction with the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in many different ways from what is described herein, and with many different combinations of elements, and the present application is not limited to the embodiments described below, and can be practiced with modifications and alterations within the scope of the present application, which are apparent to those skilled in the art.
[0036] In the description of the present application, it needs to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0037] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" 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, such as two, three, etc., unless otherwise explicitly specified and limited.
[0038] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0039] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0040] It is to be understood that where an element such as a layer, region or substrate is described as being "on" another element, it can be directly on the other element or intervening elements can also be present. Where an element is described as being "connected" or "coupled" to another element, it can be directly connected or coupled or intervening elements can be present. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0041] Referring to Figure 1 According to some embodiments of the present application, a cleaning device is provided, which includes a cleaning main body and a cleaning base station 100. The cleaning main body is used for ground cleaning operation, for example, the cleaning main body is a robot cleaner. The cleaning main body can be controlled to move into the cleaning base station 100, and the cleaning base station 100 is used for dust cleaning, drying and charging of the cleaning main body and other maintenance.
[0042] Referring to Figures 1-4 According to some embodiments of the present application, the cleaning base station 100 includes a base station main body 10 and a chassis assembly 30. The base station main body 10 includes a housing 12 and a dust collection pipeline 14 arranged in the housing 12. The housing 12 is formed with a dust collection cavity 121, and the dust collection pipeline 14 is in communication with the dust collection cavity 121, so as to allow dust to flow to the dust collection cavity 121. The chassis assembly 30 includes a chassis 32 and an auxiliary dust collection pipeline 34 arranged on the chassis 32. The chassis 32 is provided with a dust collection port 321, and the auxiliary dust collection pipeline 34 is in communication with the dust collection port 321. The chassis 32 is detachably mounted on the base station main body 10, and one end of the auxiliary dust collection pipeline 34 away from the dust collection port 321 is detachably connected to one end of the dust collection pipeline 14 away from the dust collection cavity 121.
[0043] In this way, the chassis assembly 30 and the base station main body 10 are detachably arranged. During product transportation, the chassis assembly 30 and the base station main body 10 can be separately packaged. The chassis assembly 30 and the base station main body 10 are relatively regular structures, for example, the chassis assembly 30 is a disc-shaped structure, and the base station main body 10 is a columnar structure, which facilitates packaging and transportation of the chassis assembly 30 and the base station main body 10, and further facilitates packaging and transportation of the cleaning base station 100. In addition, when the cleaning base station 100 is normally used, the chassis 32 is mounted on the base station main body 10, the auxiliary dust collection pipeline 34 on the chassis 32 is connected to the dust collection pipeline 14 on the base station main body 10, and when the cleaning main body enters the cleaning base station 100 and moves to the chassis 32, the dust in the cleaning main body can be sucked out through the dust collection port 321. The sucked dust flows to the dust collection cavity 121 through the auxiliary dust collection pipeline 34 and the dust collection pipeline 14, so as to automatically clean the dust inside the cleaning main body. In this way, the detachable arrangement of the chassis 32 does not affect the normal use of the cleaning base station 100.
[0044] In addition, when the cleaning base station 100 is used for a period of time, dust is likely to accumulate inside the dust collecting pan 32 and the dust collecting pipe 14. At this time, the dust collecting pan assembly 30 can be detached from the base station main body 10, and the dust collecting pan 32, the dust collecting pipe 14 and the auxiliary dust collecting pipe 34 can be conveniently cleaned, so as to prevent the dust collecting pipe 14 and the auxiliary dust collecting pipe 34 from being blocked by dust. That is, the dust collecting pan assembly 30 having the dust collecting port 321 is detachably arranged, and the dust collecting base station can be conveniently cleaned.
[0045] Further, the cleaning base station 100 further comprises a dust collecting fan 18 arranged in the housing 12 and communicating with the dust collecting cavity 121, for forming a negative pressure in the dust collecting cavity 121. In this way, when the cleaning main body enters the cleaning base station 100, the dust collecting fan 18 can be controlled to work, and then a negative pressure is formed in the dust collecting cavity 121, and the dust in the cleaning main body is sucked into the dust collecting cavity 121 through the dust collecting port 321, the auxiliary dust collecting pipe 34 and the dust collecting pipe 14, so as to realize automatic cleaning of the dust in the cleaning main body.
[0046] Specifically, the dust collecting fan 18 and the dust collecting pipe 14 respectively communicate with opposite sides of the dust collecting cavity 121, and the dust collecting pipe 14 and the dust collecting fan 18 are arranged on opposite sides of the periphery of the dust collecting cavity 121.
[0047] According to some embodiments of the present application, the dust collecting pan 32 and the housing 12 enclose a cleaning main body accommodating cavity 50, and the cleaning main body can enter the cleaning main body accommodating cavity 50 for maintenance. The dust collecting port 321 communicates with the cleaning main body accommodating cavity 50, so as to facilitate the dust collecting port 321 to be docked with the cleaning main body in the cleaning main body accommodating cavity 50. The auxiliary dust collecting pipe 34 is arranged on the bottom surface of the dust collecting pan 32 away from the cleaning main body accommodating cavity 50, and the auxiliary dust collecting pipe 34 is arranged away from the cleaning main body accommodating cavity 50, so as not to affect the cleaning main body to enter the cleaning main body accommodating cavity 50.
[0048] According to some embodiments of the present application, the docking direction of the auxiliary dust collecting pipe 34 and the dust collecting pipe 14 and the mounting direction of the dust collecting pan 32 and the base station main body 10 are the first direction. In this way, when the dust collecting pan 32 and the base station main body 10 are mounted along the first direction, the auxiliary dust collecting pipe 34 can also approach the dust collecting pipe 14 along the first direction, and accurate docking of the auxiliary dust collecting pipe 34 and the dust collecting pipe 14 is realized.
[0049] Referring to Figures 5-8According to some embodiments of the present application, the cleaning base station 100 comprises a base station body 10 and a bottom plate assembly 30, the base station body 10 comprises a shell 12 and a drying mechanism 16 arranged in the shell 12, the drying mechanism 16 is used to blow a drying air flow. The bottom plate assembly 30 comprises a bottom plate 32 and an auxiliary drying pipeline 36 arranged on the bottom plate 32, the bottom plate 32 is provided with a drying port 323, and the auxiliary drying pipeline 36 communicates with the drying port 323. Wherein, the bottom plate 32 is detachably installed with the base station body 10, and the auxiliary drying pipeline 36 is detachably connected with the drying mechanism 16.
[0050] In this way, the bottom plate assembly 30 and the base station body 10 are detachably arranged, and during product transportation, the bottom plate assembly 30 and the base station body 10 can be packaged separately. The bottom plate assembly 30 and the base station body 10 are relatively regular structures, for example, the bottom plate assembly 30 is a disc structure, and the base station body 10 is a columnar structure, which facilitates the packaging and transportation of the bottom plate assembly 30 and the base station body 10, and further facilitates the packaging and transportation of the cleaning base station 100. Moreover, when the cleaning base station 100 is used normally, the bottom plate 32 is installed on the base station body 10, the auxiliary drying pipeline 36 on the bottom plate 32 is connected with the drying mechanism 16 on the base station body 10, when the cleaning body enters the cleaning base station 100 and moves to the bottom plate 32, the drying mechanism 16 works to blow a drying air flow, the drying air flow flows along the auxiliary drying pipeline to the drying port 323, and is blown to the cleaning part of the cleaning body from the drying port 323, so as to dry the cleaning part of the cleaning body. In this way, the detachable arrangement of the bottom plate 32 does not affect the normal use of the cleaning base station 100.
[0051] In addition, after the cleaning base station 100 is used for a period of time, dust is likely to accumulate in the bottom plate 32 and the dust collection pipeline 14. At this time, the bottom plate assembly 30 can be detached from the base station body 10, so that the bottom plate 32 can be conveniently cleaned, and the drying mechanism 16 and the auxiliary drying pipeline 36 are separated, so that the drying mechanism 16 and the auxiliary drying pipeline 36 can be conveniently cleaned. That is, the bottom plate assembly 30 with the drying port 323 is detachably arranged, so that the dust collection base station can be conveniently cleaned.
[0052] According to some embodiments of the present application, the bottom plate 32 and the shell 12 form a cleaning body accommodating cavity 50 therebetween, and the cleaning body can enter the cleaning body accommodating cavity 50 for maintenance. The drying port 323 communicates with the cleaning body accommodating cavity 50, so that the drying port 323 faces the cleaning body in the cleaning body accommodating cavity 50, and the drying function is realized. The bottom surface of the bottom plate 32 away from the cleaning body accommodating cavity 50 is provided with the auxiliary drying pipeline 36, and the auxiliary drying pipeline 36 is arranged away from the cleaning body accommodating cavity 50, so as not to affect the cleaning body entering the cleaning body accommodating cavity 50.
[0053] According to some embodiments of the present application, the auxiliary drying pipe 36 and the mounting direction of the base plate 32 and the base station body 10 are all the first direction, so that when the base plate 32 and the base station body 10 are mounted along the first direction, the auxiliary drying pipe 36 can also approach the drying mechanism 16 along the first direction to realize accurate docking of the auxiliary drying pipe 36 and the drying mechanism 16.
[0054] According to some embodiments of the present application, the cleaning base station 100 comprises a base station body 10 and a base plate assembly 30. The base station body 10 comprises a shell 12, a dust collection pipe 14 and a drying mechanism 16 arranged in the shell 12. The shell 12 is provided with a dust collection cavity 121. The dust collection pipe 14 is in communication with the dust collection cavity 121 for allowing dust to flow to the dust collection cavity 121. The drying mechanism 16 is used to blow drying air flow. The base plate assembly 30 comprises a base plate 32, an auxiliary dust collection pipe 34 and an auxiliary drying pipe 36 arranged on the base plate 32. The base plate 32 is provided with a dust collection port 321 and a drying port 323. The auxiliary dust collection pipe 34 is in communication with the dust collection port 321. The auxiliary drying pipe 36 is in communication with the drying port 323. The base plate 32 is detachably mounted on the base station body 10. The auxiliary dust collection pipe 34 is detachably docked with the dust collection pipe 14 at an end away from the dust collection port 321. The auxiliary drying pipe 36 is detachably docked with the drying mechanism 16.
[0055] In this way, the base plate assembly 30 and the base station body 10 are detachably arranged. During product transportation, the base plate assembly 30 and the base station body 10 can be separately packaged. The base plate assembly 30 and the base station body 10 are relatively regular structures, for example, the base plate assembly 30 is a disc-shaped structure and the base station body 10 is a columnar structure, which facilitates packaging and transportation of the base plate assembly 30 and the base station body 10, and further facilitates packaging and transportation of the cleaning base station 100. When the cleaning base station 100 is normally used, the base plate 32 is mounted on the base station body 10. The auxiliary dust collection pipe 34 on the base plate 32 is docked with the dust collection pipe 14 on the base station body 10. The auxiliary drying pipe 36 on the base plate 32 is docked with the drying mechanism 16 on the base station body 10.
[0056] When the cleaning body enters the cleaning base station 100 and moves to the base plate 32, dust in the cleaning body can be sucked out through the dust collection port 321. The sucked dust flows to the dust collection cavity 121 through the auxiliary dust collection pipe 34 and the dust collection pipe 14 to automatically clean the dust inside the cleaning body. In addition, when the cleaning body enters the cleaning base station 100 and moves to the base plate 32, the drying mechanism 16 can work to blow drying air flow. The drying air flow flows to the drying port 323 along the auxiliary drying air duct and is blown to the cleaning part of the cleaning body from the drying port 323 to dry the cleaning part of the cleaning body. In this way, the detachable arrangement of the base plate 32 does not affect the normal use of the cleaning base station 100.
[0057] Moreover, when the cleaning base station 100 is used for a period of time, dust is likely to accumulate inside the bottom plate 32 and the dust collection pipeline 14. At this time, the bottom plate assembly 30 can be detached from the base station main body 10, and the bottom plate 32, the dust collection pipeline 14 and the auxiliary dust collection pipeline 34, and the drying mechanism 16 and the auxiliary drying pipeline 36 can be conveniently cleaned, so that dust does not block the dust collection pipeline 14 and the auxiliary dust collection pipeline 34. That is, the bottom plate assembly 30 having the dust collection port 321 is detachably arranged, and the dust collection base station can be conveniently cleaned.
[0058] Further, the cleaning base station 100 further comprises a dust collection fan 18 arranged in the housing 12 and communicating with the dust collection cavity 121, for forming a negative pressure in the dust collection cavity 121. In this way, when the cleaning main body enters the cleaning base station 100, the dust collection fan 18 can be controlled to work, and then a negative pressure is formed in the dust collection cavity 121, and dust in the cleaning main body is sucked into the dust collection cavity 121 through the dust collection port 321, the auxiliary dust collection pipeline 34 and the dust collection pipeline 14, so that the dust in the cleaning main body is automatically cleaned.
[0059] Specifically, the dust collection fan 18 and the dust collection pipeline 14 respectively communicate with opposite sides of the dust collection cavity 121, and the dust collection pipeline 14 and the dust collection fan 18 are arranged on opposite sides of the outer periphery of the dust collection cavity 121.
[0060] According to some embodiments of the present application, the bottom plate 32 and the housing 12 enclose a cleaning main body accommodating cavity 50, and the cleaning main body can enter the cleaning main body accommodating cavity 50 for maintenance. The dust collection port 321 and the drying port 323 both communicate with the cleaning main body accommodating cavity 50, so that the dust collection port 321 is convenient to butt joint with the cleaning main body in the cleaning main body accommodating cavity 50, and the drying port 323 is convenient to face the cleaning main body in the cleaning main body accommodating cavity 50, so that the drying function is realized; the auxiliary dust collection pipeline 34 and the auxiliary drying pipeline 36 are arranged on the bottom surface of the bottom plate 32 away from the cleaning main body accommodating cavity 50, and the auxiliary dust collection pipeline 34 and the auxiliary drying pipeline 36 are arranged away from the cleaning main body accommodating cavity 50, so that the cleaning main body can enter the cleaning main body accommodating cavity 50 without being affected.
[0061] According to some embodiments of the present application, the butt joint direction of the auxiliary dust collection pipeline 34 and the dust collection pipeline 14, the butt joint direction of the auxiliary drying pipeline 36 and the drying mechanism 16, and the mounting direction of the bottom plate 32 and the base station main body 10 are all the first direction, so that when the bottom plate 32 and the base station main body 10 are mounted along the first direction, the auxiliary dust collection pipeline 34 can approach the dust collection pipeline 14 along the first direction, and the auxiliary drying pipeline 36 also approaches the drying mechanism 16 along the first direction, so that the auxiliary dust collection pipeline 34 and the dust collection pipeline 14 are accurately butt jointed, and the auxiliary drying pipeline 36 and the drying mechanism 16 are accurately butt jointed.
[0062] According to some embodiments of the present application, the cleaning base station 100 further comprises a sealing member 70, the sealing member 70 is arranged on one of the auxiliary dust collection duct 34 and the dust collection duct 14, and seals the gap between the auxiliary dust collection duct 34 and the dust collection duct 14, thereby improving the air tightness after the two are docked.
[0063] Optionally, the sealing member 70 at least partially abuts between the auxiliary dust collection duct 34 and the dust collection duct 14, and seals the gap therebetween; and the sealing member 70 is further optionally sleeved on the outer periphery of the docking portion of the auxiliary dust collection duct 34 and the dust collection duct 14, so as to seal the gap between the auxiliary dust collection duct 34 and the dust collection duct 14, and prevent air leakage.
[0064] Referring to Figures 3-5 According to some embodiments of the present application, the housing 12 comprises an outer shell 123 and a base 125, the dust collection cavity 121 is formed on the outer shell 123, and the base 125 is coupled with the outer shell 123, and the base plate 32 is at least partially sleeved on the base 125 and detachably coupled with the base 125. That is, the base plate 32 is coupled with the base 125 of the housing 12, and the base plate 32 is at least partially sleeved on the base 125, so as to accurately guide the installation of the base plate 32 through the base 125, and prevent the base plate 32 from being installed out of position.
[0065] Further, the base 125 is formed with a receiving groove 126, and the base plate 32 comprises a connecting end 325 and a protruding end 327 which are oppositely arranged along a first direction, the connecting end 325 is detachably sleeved in the receiving groove 126 along the first direction, and the protruding end 327 protrudes from the base 125. In this way, through the cooperation of the receiving groove 126 and the connecting end 325, the base plate 32 is limited and guided to be installed and detached along the first direction, thereby ensuring the accurate docking of the auxiliary dust collection duct 14 on the base plate 32 with the dust collection duct 14, and / or the accurate docking of the auxiliary drying air duct on the base plate 32 with the drying mechanism 16.
[0066] Specifically, along a second direction intersecting the first direction, the connecting end 325 is limited and abuts with the groove wall of the receiving groove 126, and through the limitation in the second direction, the connecting end 325 is accurately assembled in the receiving groove 126 along the first direction.
[0067] According to some embodiments of the present application, the auxiliary dust collection pipe 34 and the dust collection pipe 14 are split into a first docking opening 341 and a second docking opening 141, the first docking opening 341 is arranged at the connecting end 325, the second docking opening 141 is arranged towards the accommodating groove 126, and the first docking opening 341 and the second docking opening 141 are docked in the first direction. In this way, the first docking opening 341 of the auxiliary dust collection pipe 34 is arranged at the connecting end 325, when the connecting end 325 is sleeved on the base 125, the first docking opening 341 of the connecting end 325 can be docked with the second docking opening 141 towards the accommodating groove 126 of the base 125, so as to realize the docking and communication of the auxiliary dust collection pipe 34 and the dust collection pipe 14.
[0068] The dust collection pipe 14 includes a first dust collection pipe 143 and a second dust collection pipe 146, the first dust collection pipe 143 is arranged on the base 125 and has the first docking opening 341, and the second dust collection pipe 146 is connected between the first dust collection pipe 143 and the dust collection cavity 121. In this way, the first dust collection pipe 143 is directly fixed on the base 125, so as to facilitate the docking of the auxiliary dust collection pipe 34 and the first dust collection pipe 143 through the first docking opening 341. In addition, the second dust collection pipe 146 connected to the first dust collection pipe 143 is arranged, and the first dust collection pipe 143 and the dust collection cavity 121 are communicated. In this way, the dust sucked through the dust collection port 321 enters the dust collection cavity 121 through the auxiliary dust collection pipe 34, the first dust collection pipe 143, and the second dust collection pipe 146.
[0069] The first dust collection pipe 143 includes a first sub-pipe 144 and a second sub-pipe 145 which are communicated with each other, the first sub-pipe 144 is arranged on the base 125, the second sub-pipe 145 is arranged on the first sub-pipe 144 in a direction away from the base 125 and extending into the housing 123, the first sub-pipe 144 has the first docking opening 341 at an end away from the second sub-pipe 145, and an end of the second sub-pipe 145 away from the first sub-pipe 144 is docked and communicated with the second dust collection pipe 146. In this way, the first sub-pipe 144 arranged on the base 125 is docked with the auxiliary dust collection pipe 34 conveniently, and the second sub-pipe 145 is arranged on the first sub-pipe 144 to communicate the first dust collection pipe 143 and the second dust collection pipe 146 through the second sub-pipe 145, so as to communicate the first dust collection pipe 143 and the dust collection cavity 121 through the second dust collection pipe 146. In this way, the docking of the first dust collection pipe 143 and the auxiliary dust collection pipe 34 is facilitated, and the first dust collection pipe 143 can also extend to the dust collection cavity 121 to communicate the dust collection flow path.
[0070] Optionally, the first sub-pipe 144 is arranged to extend in the first direction, and the auxiliary dust collection pipe 34 comprises a first auxiliary pipe 343 arranged to extend in the first direction on the chassis 32 and detachably connected to the first sub-pipe 144, so that the first sub-pipe 144 and the first auxiliary pipe 343 are both arranged to extend in the first direction, and the auxiliary dust collection pipe 34 and the first dust collection pipe 143 can be conveniently and accurately connected in the first direction.
[0071] The auxiliary dust collection pipe 34 further comprises a second auxiliary pipe 345 connected to the first auxiliary pipe 343 in the plane of the chassis 32, and an end of the second auxiliary pipe 345 away from the first auxiliary pipe 343 is detachably connected to the dust collection port 321, so that the auxiliary dust collection pipe 34 is arranged in an L shape, and can be connected to the dust collection port 321 and connected to the dust collection pipe 14 in the first direction.
[0072] It can be understood that the second dust collection pipe 146 can comprise a plurality of pipes connected to each other, and the first dust collection pipe 143 and the dust collection cavity 121 are connected through the plurality of pipes. For example, the second dust collection pipe 146 comprises two bent pipes bent in different directions, and the first dust collection pipe 143 and the dust collection cavity 121 are connected through the two bent pipes.
[0073] According to some embodiments of the present application, the auxiliary drying pipe 36 has a third connecting opening 164 arranged at the connecting end 325, and the air outlet of the drying mechanism 16 faces the accommodating groove 126, and the third connecting opening 164 and the air outlet of the drying mechanism 16 are detachably connected in the first direction. In this way, the third connecting opening 164 of the auxiliary drying pipe 36 is arranged at the connecting end 325, and when the connecting end 325 is arranged in the accommodating groove 126 of the base 125, the third connecting opening 164 of the connecting end 325 can be connected to the air outlet of the drying mechanism 16 facing the accommodating groove 126, so that the auxiliary drying pipe 36 and the drying mechanism 16 are connected in communication.
[0074] Referring to Figures 5-9 According to some embodiments of the present application, the drying mechanism 16 comprises a drying fan 161, a drying pipe 163 connected to the air outlet of the drying fan 161, and a heating element 165 arranged in the drying pipe 163, and an end of the drying pipe 163 away from the drying fan 161 is detachably connected to an end of the auxiliary drying pipe 36 away from the drying port 323. In this way, when the drying fan 161 works, the airflow is driven to flow to the drying pipe 163, and the heating element 165 heats the airflow, and finally hot air is blown out from the drying pipe 163, and the hot air enters the auxiliary drying pipe 36 and flows to the drying port 323, so as to dry the cleaning element in the cleaning body.
[0075] The bottom plate 32 is provided with an air outlet groove 324, one end of the air outlet groove 324 is communicated with the drying opening, and the other end of the air outlet groove 324 is arranged in the second direction intersecting the first direction. The cleaning member of the cleaning main body is generally a roller brush, which is in the shape of a shaft. The air outlet groove 324 is arranged in the form of a long strip extending in the second direction, so that the air flow blown out of the drying opening 323 can be guided to flow in the second direction, and the entire shaft of the roller brush can be dried uniformly.
[0076] It can be understood that the bottom plate 32 is provided with one or more air outlet grooves 324, and the number of the air outlet grooves 324 can be selected according to the number of cleaning members on the cleaning main body. For example, the bottom plate 32 is provided with two parallel air outlet grooves 324, which can dry the cleaning main body with double roller brushes.
[0077] The thickness of the drying fan 161 in the axial direction is smaller than the diameter of the drying fan 161, that is, the drying fan 161 is flat, and the tangential direction of the drying fan 161 intersects the first direction. That is, the drying fan 161 has a long side in the diameter direction and a short side in the axial direction. By arranging the tangential direction of the drying fan 161 to intersect the first direction, the long side of the drying fan 161 can intersect the first direction, preventing the long side of the drying fan 161 from being parallel to the first direction, and preventing the thickness of the base station main body 10 in the first direction from being too large. By reasonably arranging the installation position of the drying fan 161, the overall volume of the cleaning base station 100 is reduced.
[0078] Optionally, the tangential direction of the drying fan 161 is parallel to the second direction, so that the short side of the drying fan 161 is parallel to the first direction. By arranging the short side of the drying fan 161 in the first direction, the installation space in the first direction is saved, and the thickness of the cleaning base station 100 in the first direction is smaller.
[0079] The drying pipe 163 is curved from one of the first direction and the second direction to the other direction, the opening of the first end of the drying pipe 163 connected with the drying fan 161 faces the second direction, and the opening of the second end of the drying pipe 163 connected with the auxiliary drying pipe 36 faces the first direction. In this way, the drying fan 161 and the auxiliary drying pipe 36 in the two directions can be connected through the curved drying pipe 163. The drying fan 161 blows air flow from the second direction, and then the air flow flows into the auxiliary drying pipe 36 from the first direction after flowing through the drying pipe 163. The air flow is guided to change direction through the drying pipe 163.
[0080] The cross-sectional area of the drying pipe 163 gradually decreases from the first end to the second end, so as to guide the air flow to gradually flow into the auxiliary drying pipe 36 on the bottom plate 32, and the air flow gradually converges to the auxiliary drying pipe 36. The pressure of the air flow gradually increases, which can improve the drying effect.
[0081] According to some embodiments of the present application, the auxiliary drying duct 36 is open on one side in the axial direction, and the auxiliary drying duct 36 is provided with a gap facing the bottom plate 32. The bottom plate 32 and the auxiliary drying duct 36 form a drying airflow channel. In other words, the auxiliary drying duct 36 and the bottom plate 32 are combined to form a drying airflow channel allowing airflow. For example, the auxiliary drying duct is enclosed by a bottom wall and a side wall, and the top of the auxiliary drying duct is open to form a gap. The bottom plate 32 covers the gap at the top of the auxiliary drying duct to form a drying airflow channel. It can be understood that the auxiliary drying duct can have various shapes such as a disc shape, a strip shape, and the like.
[0082] According to some embodiments of the present application, the auxiliary drying duct 36 is closed in the axial direction, and the auxiliary drying duct 36 itself forms a drying airflow channel. In other words, the auxiliary drying duct 36 itself is circumferentially enclosed to form a drying airflow channel, and the bottom plate 32 only serves as a mounting base for the auxiliary drying duct 36 and does not cooperate with the auxiliary drying duct to form a drying airflow channel.
[0083] According to some embodiments of the present application, the bottom plate 32 is provided with a sewage tank 328 for containing sewage or cleaning components in the cleaning body. In some cleaning bodies, the cleaning body sprays water to clean the cleaning components and recovers the sewage. When the cleaning body enters the cleaning base station 100, the cleaning body discharges the recovered sewage to the sewage tank 328. The sewage tank 328 is mainly used to receive the sewage discharged by the cleaning body. Therefore, dust is easily accumulated in the sewage tank 328 after long-term use. In this case, the bottom plate 32 can be disassembled and cleaned, which is relatively convenient. In other cleaning bodies, the cleaning body places the cleaning components in the sewage tank 328 for cleaning. After cleaning, the sewage formed is discharged through the sewage tank 328. After long-term use, dust is also easily accumulated in the sewage tank 328. In this case, the bottom plate 32 can be disassembled and cleaned, which is relatively convenient.
[0084] Referring to Figure 10 According to some embodiments of the present application, the cleaning base station 100 further comprises a buckle 80 provided on the bottom plate 32 and at least partially protruding from the bottom plate 32. When the bottom plate 32 is assembled with the base 125 of the base station, the buckle 80 is buckled with the base 125 to achieve detachable connection of the bottom plate 32 and the base 125. When it is necessary to disassemble the bottom plate assembly 30, the button of the buckle 80 is pressed, and the buckle 80 is separated from the base 125 to allow the bottom plate 32 to be separated from the base 125, thereby achieving disassembly of the bottom plate assembly 30.
[0085] According to some embodiments of the present application, the present application also provides a cleaning base station 100 according to any of the above embodiments, the cleaning base station 100 comprising a base station main body 10 and a bottom plate assembly 30, the base station main body 10 comprising a shell 12, a dust collection pipeline 14 and a drying mechanism 16 arranged in the shell 12, the shell 12 being provided with a dust collection cavity 121, the dust collection pipeline 14 being in communication with the dust collection cavity 121 for allowing dust to flow to the dust collection cavity 121, and the drying mechanism 16 being configured to blow a drying airflow. The bottom plate assembly 30 comprises a bottom plate 32, an auxiliary dust collection pipeline 34 and an auxiliary drying pipeline 36 arranged on the bottom plate 32, the bottom plate 32 being provided with a dust collection port 321 and a drying port 323, the auxiliary dust collection pipeline 34 being in communication with the dust collection port 321, and the auxiliary drying pipeline 36 being in communication with the drying port 323. The bottom plate 32 is detachably mounted on the base station main body 10, one end of the auxiliary dust collection pipeline 34 away from the dust collection port 321 is detachably connected to one end of the dust collection pipeline 14 away from the dust collection cavity 121, and the auxiliary drying pipeline 36 is detachably connected to the drying mechanism 16.
[0086] In this way, the bottom plate assembly 30 and the base station main body 10 are detachably arranged, and during product transportation, the bottom plate assembly 30 and the base station main body 10 can be separately packaged. The bottom plate assembly 30 and the base station main body 10 are regular structures, for example, the bottom plate assembly 30 is a disc structure and the base station main body 10 is a columnar structure, which facilitates the packaging and transportation of the bottom plate assembly 30 and the base station main body 10, and further facilitates the packaging and transportation of the cleaning base station 100. When the cleaning base station 100 is normally used, the bottom plate 32 is mounted on the base station main body 10, the auxiliary dust collection pipeline 34 on the bottom plate 32 is connected to the dust collection pipeline 14 on the base station main body 10, and the auxiliary drying pipeline 36 on the bottom plate 32 is connected to the drying mechanism 16 on the base station main body 10.
[0087] When the cleaning main body enters the cleaning base station 100 and moves to the bottom plate 32, dust in the cleaning main body can be sucked out through the dust collection port 321, and the sucked dust flows to the dust collection cavity 121 through the auxiliary dust collection pipeline 34 and the dust collection pipeline 14, so as to automatically clean the dust in the cleaning main body. In addition, when the cleaning main body enters the cleaning base station 100 and moves to the bottom plate 32, the drying mechanism 16 can work to blow a drying airflow, the drying airflow flows to the drying port 323 along the auxiliary drying pipeline, and is blown to the cleaning part of the cleaning main body from the drying port 323, so as to dry the cleaning part of the cleaning main body. In this way, the detachable arrangement of the bottom plate 32 does not affect the normal use of the cleaning base station 100.
[0088] Moreover, when the cleaning base station 100 is used for a period of time, dust is likely to accumulate inside the dust collecting pan 32 and the dust collecting duct 14. At this time, the dust collecting pan assembly 30 can be detached from the base station main body 10, and the dust collecting pan 32 can be conveniently cleaned. At the same time, the dust collecting duct 14 and the auxiliary dust collecting duct 34 are separated, and the drying mechanism 16 and the auxiliary drying duct 36 are separated, so that the dust collecting duct 14 and the auxiliary dust collecting duct 34 and the drying mechanism 16 and the auxiliary drying duct 36 can be conveniently cleaned, and dust can be prevented from blocking the dust collecting duct 14 and the auxiliary dust collecting duct 34. That is, the dust collecting pan assembly 30 with the dust collecting port 321 is detachably arranged, and the dust collecting base station can be conveniently cleaned.
[0089] The technical features of the above-described embodiments can be combined in any manner. For the sake of brevity, not all possible combinations of the technical features in the above-described embodiments are described, but it should be understood that any combination of the technical features is within the scope of the present disclosure as long as the combination does not result in a contradiction.
[0090] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent application scope. It should be noted that, for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present application, and these are within the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.
Claims
1. A cleaning base station, characterized by, The base station body comprises a shell and a dust collection pipeline, the shell is provided with a dust collection cavity, and the dust collection pipeline is arranged in the shell and communicates with the dust collection cavity to allow dust to flow to the dust collection cavity. The base plate assembly comprises a base plate and an auxiliary dust collection pipeline, the base plate is provided with a dust collection opening, and the auxiliary dust collection pipeline is arranged on the base plate and communicates with the dust collection opening. The base plate is detachably mounted on the base station body, and one end of the auxiliary dust collection pipeline away from the dust collection opening is detachably connected to one end of the dust collection pipeline away from the dust collection cavity. A cleaning body accommodating cavity is formed between the base plate and the shell, the dust collection opening communicates with the cleaning body accommodating cavity, and the auxiliary dust collection pipeline is arranged on the bottom surface of the base plate away from the cleaning body accommodating cavity. The auxiliary dust collection pipeline and the dust collection pipeline are arranged in the first direction, and the base plate and the base station body are arranged in the first direction.
2. The cleaning dock of claim 1, wherein, The shell comprises an outer shell and a base, the outer shell is provided with the dust collection cavity, the base is matched with the outer shell, and the base plate is at least partially arranged on the base and detachably matched with the base.
3. The cleaning dock of claim 1, wherein, The base is provided with an accommodating groove, the base plate comprises a connecting end and a protruding end arranged opposite to each other in the first direction, the connecting end is detachably arranged in the accommodating groove in the first direction, and the protruding end protrudes from the base.
4. The cleaning dock of claim 3, wherein, The auxiliary dust collection pipeline and the dust collection pipeline are respectively provided with a first connecting opening and a second connecting opening, the first connecting opening is arranged corresponding to the connecting end, the second connecting opening faces the accommodating groove, and the first connecting opening and the second connecting opening are connected in the first direction.
5. The cleaning dock of claim 4, wherein, The dust collection pipeline comprises a first dust collection pipeline and a second dust collection pipeline, the first dust collection pipeline is arranged on the base and provided with the first connecting opening, and the second dust collection pipeline is connected between the first dust collection pipeline and the dust collection cavity.
6. The cleaning dock of claim 5, wherein, The first dust collection pipeline comprises a first sub-pipeline and a second sub-pipeline communicating with each other, the first sub-pipeline is arranged on the base, the second sub-pipeline is arranged on the first sub-pipeline and extends away from the base and into the outer shell, one end of the first sub-pipeline away from the second sub-pipeline is provided with the first connecting opening, and one end of the second sub-pipeline away from the first sub-pipeline is connected and communicated with the second dust collection pipeline.
7. The cleaning station of claim 6, wherein, The first sub-pipeline extends in the first direction, the auxiliary dust collection pipeline comprises a first auxiliary pipeline, the first auxiliary pipeline extends on the base plate in the first direction and is detachably connected and communicated with the first sub-pipeline.
8. The cleaning station of claim 7, wherein, The auxiliary dust collection pipeline further comprises a second auxiliary pipeline, the second auxiliary pipeline is connected and communicated with the first auxiliary pipeline in the plane where the base plate is arranged, and one end of the second auxiliary pipeline away from the first auxiliary pipeline is connected and communicated with the dust collection opening.
9. The cleaning station of claim 8, wherein, The base plate is provided with a sewage tank for accommodating sewage or a cleaning element in a cleaning device.
10. The cleaning station of claim 9, wherein, 11. The cleaning station of any one of claims 1-10, wherein, 12. The cleaning station of any one of claims 1-10, wherein, Further comprising a seal, the seal being arranged on any one of the auxiliary dust collection duct and the dust collection duct, the seal sealing a gap between the auxiliary dust collection duct and the dust collection duct.
13. The cleaning station of any one of claims 1-10, wherein, The cleaning base station further comprises a dust collection fan arranged in the housing and communicating with the dust collection cavity for forming a negative pressure in the dust collection cavity.
14. A cleaning apparatus, characterized by The cleaning base station comprises a cleaning device capable of being controlled to move onto the base plate.