Dust collection station device for cleaning equipment and cleaning equipment

Through the design of the dust collection station device, the waste in the dust cup is automatically transferred to the dust collection barrel assembly by using the suction piece, solving the problem of cumbersome garbage cleaning in the existing cleaning equipment, and realizing automatic garbage collection and structural optimization.

CN120391905APending Publication Date: 2025-08-01GUANGDONG DONLIM INTELLIGENT ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202510822925.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

After the garbage is full, existing cleaning equipment requires users to manually clean the dust bag or dust cup, which is cumbersome and time-consuming.

Method used

A dust collection station device is designed to use suction members to suck the garbage in the dust cup into the dust collection cavity. The garbage in the dust collection cavity automatically falls into the bag body of the dust collection barrel assembly under the action of gravity, reducing the user's manual operation steps.

Benefits of technology

Automatic collection and simplified operation of garbage are realized. Users only need to throw away the full bag, saving time and effort, reducing the manufacturing cost of the whole machine and optimizing the structural compactness.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a dust collection station device for cleaning equipment and the cleaning equipment. The dust collection station device comprises a base, a dust collection barrel assembly and a movable barrel cover assembly. The base is connected with a connecting air duct, and an air suction piece is arranged in the base. The dust collection barrel assembly is used for containing the bag. The movable barrel cover assembly is rotatably arranged at an upper opening of the dust collection barrel assembly and comprises a dust box, the dust box comprises a dust collection cavity and a lower cover, the lower cover is rotatably arranged at the bottom of the dust collection cavity, and the air suction part is used for sucking garbage in the dust cup into the dust collection cavity of the dust box. The lower cover is used for rotating to open the bottom of the dust collection cavity after the air suction part sucks air, so that garbage in the dust collection cavity falls into the bag body of the dust collection barrel assembly. According to the structure, garbage in the dust collection cavity can automatically fall into the bag body in the dust collection barrel assembly below under the action of gravity, manual operation steps of a user can be reduced, after the bag body is full of the garbage, only the bag body needs to be thrown away, and the garbage collection barrel is easy, convenient and time-saving and labor-saving.
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Description

Technical Field

[0001] This application relates to the technical field of cleaning equipment, and in particular, to a dust collection station device for cleaning equipment and a cleaning equipment. Background Art

[0002] Currently, cleaning equipment with garbage collection devices on the market, such as built-in dust bags, dust cups or dust buckets for dust collection, etc. After being used for a period of time and the garbage is full, the user needs to take out the dust bag or dust cup from the base station, and then throw the dust bag into the trash can or pour the garbage in the dust cup into the trash can. The operation steps are cumbersome, and the user needs to replace the dust bag regularly or clean the dust cup or dust bucket. For example, the Chinese patent with the publication number CN115844268A discloses a cleaning equipment. The cleaning equipment includes a cleaning device and a transportation device. The cleaning device includes a cleaning handle and a cleaning head arranged at the lower end of the cleaning handle. The cleaning head can clean the ground to be cleaned; the cleaning device is detachably connected to the transportation device. It can be seen that after the cleaning equipment is used for a period of time and the garbage is full, the user needs to manually clean the collected garbage, which is difficult and time-consuming for the user. Summary of the Invention

[0003] In view of the above technical problems existing in the prior art, this application provides a dust collection station device for cleaning equipment and a cleaning equipment, which can make the garbage in the dust collection cavity automatically fall into the bag body in the dust collection bucket assembly below under the action of gravity, reducing the manual operation steps of the user. After the garbage in the bag body is full, only need to throw away the bag body, which is easy, convenient, time-saving and labor-saving.

[0004] An embodiment of this application provides a dust collection station device for cleaning equipment, including:

[0005] A base, on which a connecting air duct is connected. One end of the connecting air duct away from the base is communicated with the dust cup of the cleaning equipment, and an air suction member is arranged in the base;

[0006] A dust collection bucket assembly, which is arranged in the base and is used for accommodating a bag body. The upper part of the dust collection bucket assembly is open;

[0007] The movable bucket cover assembly is rotatably provided at the upper open end of the dust collection bucket assembly for rotatably opening or covering the dust collection bucket assembly. The movable bucket cover assembly includes a dust box, and the dust box includes a dust collection cavity and a lower cover. The lower cover is rotatably provided at the bottom of the dust collection cavity to open or cover the dust collection cavity. The dust collection cavity is respectively communicated with the suction port of the suction member and the connecting air duct. The suction member is used to suck the garbage in the dust cup into the dust collection cavity of the dust box through the connecting air duct. The lower cover is used to rotatably open the bottom of the dust collection cavity after the suction member sucks air, so that the garbage in the dust collection cavity falls into the bag body accommodated in the dust collection bucket assembly. The above structure can make the garbage in the dust collection cavity automatically fall into the bag body in the lower dust collection bucket assembly under the action of gravity, which can reduce the manual operation steps of the user. After the garbage in the bag body is full, only the bag body needs to be discarded, which is easy, convenient, time-saving and labor-saving.

[0008] In some embodiments, a stop member is provided in the dust collection cavity. The stop member is used to form a streamlined air duct in the dust collection cavity. The inlet size of the streamlined air duct is smaller than the outlet size of the streamlined air duct, and the bottom surface height of the inlet of the streamlined air duct is higher than the bottom surface height of the outlet of the streamlined air duct. A collection cavity for collecting garbage is formed between the lower surface of the stop member and the lower cover. This can make the gas flow in the air duct more smooth, thereby improving the dust collection effect.

[0009] In some embodiments, the dust collection cavity is divided into a front cavity and a rear cavity that are communicated with each other. A filter member is provided between the front cavity and the rear cavity. The connecting air duct is connected to the cavity wall of the front cavity, and the suction port of the suction member is connected to the cavity wall of the rear cavity. The stop member is provided in the front cavity so that the streamlined air duct is located in the front cavity. In this way, the gas entering the rear cavity through the front cavity can be filtered through the filter member to prevent the dust mixed in the garbage from entering the suction member through the rear cavity.

[0010] In some embodiments, the movable bucket cover assembly further includes an upper cover. The upper cover is rotatably provided at the upper open end of the dust collection bucket assembly. The dust box is provided on the side of the upper cover facing the dust collection bucket assembly. A switch member is provided on the base. When the upper cover covers the upper open end of the dust collection bucket assembly, the switch member is triggered, and the suction member is used to enter the operable state after the switch member is triggered. This can ensure that the suction member can enter the operable state when the upper cover covers the dust collection bucket assembly, and realize that the dust collection bucket assembly is sealed by the upper cover when the suction member is collecting dust.

[0011] In some embodiments, the dust collection station device further includes a control component. An induction module is provided on the base. The movable bucket cover assembly further includes a first actuating component for driving the upper cover to rotate. The induction module, the air suction component, and the first actuating component are all electrically connected to the control component. When the air suction component is in a closed state, the control component is configured to obtain the induction information generated by the induction module and send a control instruction to the first actuating component based on the induction information, so that the first actuating component drives the upper cover to rotate and open the dust collection bucket assembly. In this way, by setting the induction module, when someone approaches within a set distance of the induction module, the first actuating component can be controlled to drive the upper cover to rotate and open the dust collection bucket assembly, enabling the dust collection bucket assembly to be used as a trash can, greatly improving the user experience.

[0012] In some embodiments, the dust collection bucket assembly includes a bucket body and a fixing member provided at the open upper end of the bucket body. The bucket body is located inside the base and is used to accommodate the bag. The movable bucket cover assembly is used to rotate and open or cover the open upper end of the bucket body. The fixing member is used to press the side of the bag towards the open upper end of the bucket body, and the fixing member is made of a deformable material to release the bag by deforming under force. In this way, the fixing member can prevent the bag from falling off and effectively fix the bag.

[0013] In some embodiments, raised structures are respectively provided on opposite sides of the open upper end of the bucket body. The handle portion of the bag is sleeved on the two raised structures, and the upper surface height of the raised structures is higher than the upper surface height of the fixing member. In this way, the handle portion of the bag can be effectively limited by the raised structures respectively provided on opposite sides of the open upper end of the bucket body.

[0014] [[ID=⑨]]In some embodiments, the upper cover has an opening structure corresponding to the collection chamber. The movable bucket cover assembly further includes a movable cover rotatably provided at the opening structure. The movable cover is used to open or cover the collection chamber. In this way, the collection chamber can be directly opened by the movable cover, allowing the user to directly throw garbage into the collection chamber of the dust box without opening the entire upper cover.

[0015] In some embodiments, a connection port is provided on the base. The movable bucket cover assembly further includes a first hose and a second hose respectively communicating with the dust collection cavity. The connecting air duct is sequentially connected to the cavity wall of the front cavity through the connection port and the first hose. The air suction port of the air suction component is connected to the cavity wall of the rear cavity through the second hose. In this way, the dust collection cavity is connected to the connecting air duct and the air suction component by hoses, which can not only ensure the connection tightness but also adapt to the rotational movement of the upper cover to ensure the structural stability.

[0016] The embodiment of the present application further provides a cleaning device, which includes the above-mentioned dust collection station device for the cleaning device, and also includes a handheld cleaning device. The dust collection station device has a mounting seat for mounting the handheld cleaning device, and the dust cup is arranged on the handheld cleaning device. After the handheld cleaning device is placed on the mounting seat, the connecting air duct is communicated with the dust cup. The above structure can make the garbage in the dust collection cavity automatically fall into the bag in the dust collection bucket assembly below under the action of gravity, which can reduce the manual operation steps of the user. After the garbage in the bag is full, only need to throw away the bag, which is easy, convenient, time-saving and labor-saving.

[0017] Compared with the prior art, the beneficial effects of the embodiment of the present application are as follows: Through the suction member in the present application, the garbage in the dust cup can be sucked into the dust collection cavity of the dust box, so as to realize the temporary storage of garbage via the dust collection cavity. After the dust collection work of the suction member is completed, opening the lower cover located at the bottom of the dust collection cavity can make the garbage in the dust collection cavity automatically fall into the bag in the dust collection bucket assembly below under the action of gravity, which can reduce the manual operation steps of the user and does not require additional power, and can reduce the manufacturing cost of the whole machine. It can realize that the garbage in the dust cup can fall into the bag of the dust collection bucket assembly without the user's manual operation. The garbage in the bag can be easily packed by pulling, which is time-saving and labor-saving. That is, after the garbage in the bag is full, only need to throw away the bag, which is easy, convenient, time-saving and labor-saving. And, the above-mentioned dust box is integrated on the movable bucket cover assembly, making the structure of the dust collection station device more compact and simple, not occupying too much installation space, and the structure is more reasonable. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In the drawings which are not necessarily drawn to scale, the same reference numerals may describe similar components in different views. The drawings generally illustrate various embodiments by way of example and not limitation, and are used together with the description and the claims to explain the disclosed embodiments. Where appropriate, the same reference numerals are used throughout the drawings to refer to the same or like parts. Such embodiments are illustrative and not intended to be an exhaustive or exclusive embodiment of the device or method.

[0019] Figure 1 is an exploded view of a cleaning device using the dust collection station device of the embodiment of the present application;

[0020] Figure 2 is a cross-sectional view of a cleaning device using the dust collection station device of the embodiment of the present application;

[0021] Figure 3 is a partial structural schematic diagram of the dust collection station device of the embodiment of the present application;

[0022] Figure 4 is a partial cross-sectional view of the dust collection station device of the embodiment of the present application, and the lower cover shown in the figure is in the position of covering the dust collection cavity;

[0023] Figure 5 This is a schematic structural diagram of the movable bucket cover assembly of the dust collection station device according to an embodiment of the present application;

[0024] Figure 6 This is a cross-sectional view of the movable bucket cover assembly of the dust collection station device according to an embodiment of the present application;

[0025] Figure 7 This is a partial cross-sectional view of the dust collection station device according to an embodiment of the present application, in which the lower cover shown in the figure is in the position of opening the dust collection cavity;

[0026] Figure 8 For Figure 7 An enlarged view of part A in

[0027] Figure 9 For Figure 7 An enlarged view of part B in

[0028] Figure 10 This is an exploded view of the dust collection bucket assembly of the dust collection station device according to an embodiment of the present application;

[0029] Figure 11 This is a partial cross-sectional view of the dust collection bucket assembly of the dust collection station device according to an embodiment of the present application, in which the fixing member shown in the figure is in an unloaded state;

[0030] Figure 12 This is a partial cross-sectional view of the dust collection bucket assembly of the dust collection station device according to an embodiment of the present application, in which the fixing member shown in the figure is in a state of being deformed under force;

[0031] Figure 13 This is a schematic structural diagram of the movable bucket cover assembly of the dust collection station device according to an embodiment of the present application, in which a movable cover is shown.

[0032] Components indicated by the reference numerals in the figure:

[0033] 100, dust collection station device; 200, handheld cleaning device; 201, dust cup; 1, base; 11, connecting air duct; 12, suction member; 13, switch member; 14, induction module; 15, connection port; 16, placement cavity; 2, dust collection bucket assembly; 21, bucket body; 22, fixing member; 23, protruding structure; 3, movable bucket cover assembly; 31, dust box; 32, lower cover; 33, upper cover; 34, opening structure; 35, movable cover; 36, first hose; 37, second hose; 4, dust collection cavity; 41, stopper; 42, collection chamber; 43, front cavity; 44, rear cavity; 45, filter member; 5, first actuation assembly; 51, first drive member; 52, first transmission member; 6, bag body; 61, handle portion; 7, mounting seat; 8, second actuation assembly; 81, second drive member; 82, second transmission member. [[ID=,47]]Detailed implementation manners

[0034] To enable those skilled in the art to better understand the technical solution of this application, the following will provide a detailed description of this application in conjunction with the accompanying drawings and specific embodiments.

[0035] An embodiment of this application provides a dust collection station device 100 for a cleaning device. As Figures 1 to 7 shown, the dust collection station device 100 includes a base 1, a dust collection bucket assembly 2, and a movable bucket cover assembly 3. A connecting air duct 11 is connected to the base 1, and one end of the connecting air duct 11 away from the base 1 is communicated with the dust cup 201 of the cleaning device. An air suction member 12 is provided inside the base 1. The dust collection bucket assembly 2 is disposed inside the base 1 and is used to accommodate the bag body 6. The upper part of the dust collection bucket assembly 2 is open. The movable bucket cover assembly 3 is rotatably disposed at the upper opening of the dust collection bucket assembly 2 for rotatably opening or covering the dust collection bucket assembly 2. The movable bucket cover assembly 3 includes a dust box 31. The dust box 31 includes a dust collection cavity 4 and a lower cover 32. The lower cover 32 is rotatably disposed at the bottom of the dust collection cavity 4 to open or cover the dust collection cavity 4. The dust collection cavity 4 is respectively communicated with the air suction port of the air suction member 12 and the connecting air duct 11. The air suction member 12 is used to suck the garbage in the dust cup 201 through the connecting air duct 11 into the dust collection cavity 4 of the dust box 31. The lower cover 32 is used to rotatably open the bottom of the dust collection cavity 4 after the air suction member 12 sucks air, so that the garbage in the dust collection cavity 4 falls into the bag body 6 accommodated in the dust collection bucket assembly 2. As Figure 2 and Figure 5 shown, Figure 2 the arrow direction shown in Figure 5 is the air flow direction inside the cleaning device, and the arrow direction shown in

[0036] is the air flow direction inside the dust collection cavity 4.

[0037] As Figure 1As shown, a placement cavity 16 may be provided on the base 1 of the above-mentioned dust collection station device 100. When the handheld cleaning device 200 is placed on the dust collection station device 100, the dust cup 201 will be placed in the placement cavity 16. After the suction member 12 operates to generate negative pressure, the dust cup 201 can be opened under the action of suction, so that the garbage in the dust cup 201 can be sucked outwards by the suction member 12. In this application, the structures of the dust cup 201 and the placement cavity 16 are not specifically limited, and the dust cup 201 can be opened under the action of suction.

[0038] The capacity of the above-mentioned dust collection bucket assembly 2 can be much larger than the capacity of the dust collection cavity 4. In this way, after the suction member 12 sucks the garbage in the dust cup 201 into the dust collection cavity 4 multiple times, the garbage in the dust collection cavity 4 will fall into the dust collection bucket assembly 2 multiple times before it is necessary to replace the bag 6 contained in the dust collection bucket assembly 2, reducing the number of operations of the user and facilitating the user to use. Among them, the bag 6 can be understood as a garbage bag.

[0039] As Figures 5 to 7 shown, Figure 5 and Figure 7 the lower cover 32 shown in is in the state of opening the dust collection cavity 4, Figure 6 the lower cover 32 shown in is in the state of covering the dust collection cavity 4. The above-mentioned movable bucket cover assembly 3 may include a second actuating assembly 8 for driving the lower cover 32 to rotate. The second actuating assembly 8 includes a second driving member 81 and a second transmission member 82. The second driving member 81 is used to drive the lower cover 32 to rotate and open or cover the dust collection cavity 4 through the second transmission member 82. Among them, the above-mentioned second transmission member 82 can be one of the following structures or a combination of multiple structures: a lead screw nut structure, a worm and worm gear structure, and a gear transmission structure. Exemplarily, as Figure 8 shown, Figure 8 the second transmission member 82 of the second actuating assembly 8 shown in is a gear transmission structure.

[0040] The above-mentioned lower cover 32 is provided with a rotating shaft, and the lower cover 32 is rotatably arranged at the bottom of the dust collection cavity 4 through the rotating shaft. The second transmission member 82 can be connected to the rotating shaft to drive the lower cover 32 to rotate.

[0041] The above-mentioned suction member 12 can be specifically a suction motor, which is installed in the base 1 and located outside the dust collection bucket assembly 2, and is used to suck the garbage in the dust cup 201 of the cleaning device into the dust collection cavity 4.

[0042] When the above-mentioned suction member 12 sucks air, that is, when performing dust collection work, the lower cover 32 covers the bottom of the dust collection cavity 4 to ensure that the garbage in the dust cup 201 can be sucked into the dust collection cavity 4 and ensure the effective suction of the suction member.

[0043] In this application, the suction member 12 can suck the garbage in the dust cup 201 into the dust collection cavity 4 of the dust box 31, so as to realize the temporary storage of garbage via the dust collection cavity 4. After the dust collection operation of the suction member 12 is completed, the lower cover 32 located at the bottom of the dust collection cavity 4 is opened, so that the garbage in the dust collection cavity 4 can automatically fall into the bag 6 in the dust collection bucket assembly 2 below under the action of gravity. This can reduce the manual operation steps of the user, and no additional power is required, which can reduce the manufacturing cost of the whole machine. It can realize that the garbage in the dust cup 201 can fall into the bag 6 of the dust collection bucket assembly 2 without the user's manual operation. The garbage in the bag 6 can be easily packed by pulling, which saves time and effort. That is, after the garbage in the bag 6 is full, only the bag 6 needs to be discarded, which is easy, convenient, time-saving and labor-saving. Moreover, the above dust box 31 is integrated on the movable bucket cover assembly 3, making the structure of the dust collection station device 100 more compact and simple, not occupying too much installation space, and the structure is more reasonable.

[0044] In some embodiments, as Figures 4 to 6 shown, a stop member 41 is provided in the dust collection cavity 4. The stop member 41 is used to form a streamlined air duct in the dust collection cavity 4. The inlet size of the streamlined air duct is smaller than the outlet size of the streamlined air duct, and the bottom surface height of the inlet of the streamlined air duct is higher than the bottom surface height of the outlet of the streamlined air duct. A collection cavity 42 for collecting garbage is formed between the lower surface of the stop member 41 and the lower cover 32.

[0045] In this way, the inlet of the streamlined air duct at a relatively high height can prevent garbage from being sucked into the inside of the stop member 41, and the larger-sized outlet of the streamlined air duct increases the flow rate of the gas flowing in the direction of the suction member 12, making the gas flow in the air duct smoother, thereby improving the dust collection effect.

[0046] A stop portion can extend outward at the inlet of the above stop member 41. The stop portion is used to stop the garbage after the suction member 12 works, and further prevent the garbage from being sucked into the inside of the stop member 41.

[0047] The above lower cover 32 is pivotally connected to the dust collection cavity 4. The pivotal side of the lower cover 32 can be located on the side of the dust box 31 away from the stop member 41. The inlet of the streamlined air duct is arranged relatively far from the pivotal side of the lower cover 32 compared to the outlet, so that the garbage in the dust collection cavity 4 can fall faster into the bag 6 accommodated in the dust collection bucket assembly 2 after the lower cover 32 is opened.

[0048] In some embodiments, as Figure 4 and Figure 5As shown, the dust collection cavity 4 is divided into a front cavity 43 and a rear cavity 44 that are connected and communicate with each other. A filter element 45 is provided between the front cavity 43 and the rear cavity 44. The connecting air duct 11 is connected to the cavity wall of the front cavity 43, and the suction port of the suction member 12 is connected to the cavity wall of the rear cavity 44. A stop member 41 is provided in the front cavity 43 so that the streamlined air duct is located in the front cavity 43.

[0049] In this way, the gas entering the rear cavity 44 via the front cavity 43 can be filtered by the filter element 45 to prevent the dust mixed in the garbage from entering the suction member 12 via the rear cavity 44, achieving the purpose of protecting the suction member 12 and avoiding dust contamination of the suction member 12.

[0050] The air outlet of the above-mentioned streamlined air duct can be arranged corresponding to the filter element 45, and the air inlet of the rear cavity 44 can be arranged corresponding to the filter element 45. The size of the filter element 45 can be adapted to the size of the air outlet of the streamlined air duct and the size of the air inlet of the rear cavity 44 to ensure the gas filtration effect.

[0051] The garbage in the dust cup 201 can be blocked by the stop member 41 upstream of the filter element 45 to prevent too much garbage from blocking the filter element 45 and causing problems that affect the service life of the filter element 45.

[0052] In some embodiments, as Figures 3 to 8 shown, the movable bucket cover assembly 3 further includes an upper cover 33. The upper cover 33 is rotatably provided at the upper open end of the dust collection bucket assembly 2. The dust box 31 is provided on the side of the upper cover 33 facing the dust collection bucket assembly 2. A switch member 13 is provided on the base 1. When the upper cover 33 covers the upper open end of the dust collection bucket assembly 2, the switch member 13 is triggered, and the suction member 12 is used to enter the operable state after the switch member 13 is triggered.

[0053] In this way, the position of the upper cover 33 can be detected by the switch member 13. Specifically, the switch member 13 is triggered when the upper cover 33 covers the dust collection bucket assembly 2, and the switch member 13 is not triggered when the upper cover 33 opens the dust collection bucket assembly 2, so as to ensure that the suction member 12 can enter the operable state when the upper cover 33 covers the dust collection bucket assembly 2, that is, the suction member 12 can be in a working or non-working state, and it is realized that the dust collection bucket assembly 2 is sealed by the upper cover 33 when the suction member 12 is performing dust collection work.

[0054] It can be understood that when the switch member 13 is not triggered, the suction member 12 cannot work to avoid ineffective dust collection by the suction member 12.

[0055] As Figure 3 and Figure 4 shown, Figure 3 and Figure 4 the upper cover 33 shown in is in the state of opening the dust collection bucket assembly 2. At this time, the switch member 13 is not triggered.

[0056] After the cleaning device has been used for a long time, the user can open the upper cover 33 to access the cleaning dust collection bucket assembly 2 and the dust box 31, which is convenient and fast.

[0057] In some embodiments, such as Figure 3 , Figure 8 and Figure 9 shown, the dust collection station device 100 further includes a control component (not shown in the figure). An induction module 14 is provided on the base 1. The movable bucket cover assembly 3 further includes a first actuating component 5 for driving the upper cover 33 to rotate. The induction module 14, the suction component 12, and the first actuating component 5 are all electrically connected to the control component. The control component is configured to obtain the induction information generated by the induction module 14 when the suction component 12 is in the closed state, and send a control instruction to the first actuating component 5 based on the induction information, so that the first actuating component 5 drives the upper cover 33 to rotate and open the dust collection bucket assembly 2.

[0058] In this way, by setting the induction module 14, when someone approaches within the set distance of the induction module 14, the first actuating component 5 can be controlled to drive the upper cover 33 to rotate and open the dust collection bucket assembly 2, enabling the dust collection bucket assembly 2 to be used as a trash can, greatly enhancing the user experience.

[0059] If the control component does not receive the induction information again within the preset time after the induction module 14 generates the induction information, it will control the first actuating component 5 to drive the upper cover 33 to cover the dust collection bucket assembly 2.

[0060] It should be noted that the control component can be built with electronic components such as timers, comparators, registers, digital logic circuits, etc., or implemented with processor chips such as single-chip microcontrollers, microprocessors, programmable logic controllers (PLCs), digital signal processors (DSPs), field programmable gate arrays (FPGAs), programmable logic arrays (PLAs), application-specific integrated circuits (ASICs), and their peripheral circuits.

[0061] Responsible for starting the drive motor of the upper cover 33 component of the 1.4.9 dust collection station, opening the upper cover 33 component of the 1.3 dust collection station dust bucket, and closing the upper cover 33 component after leaving.

[0062] The above first actuating component 5 includes a first driving part 51 and a first transmission part 52. The first driving part 51 is used to drive the upper cover 33 to rotate and open or cover the dust collection bucket assembly 2 through the first transmission part 52. Among them, the above first transmission part 52 can be one of the following structures or a combination of multiple structures: lead screw nut structure, worm gear structure, and gear transmission structure. Exemplarily, as Figure 4 and Figure 9 shown, Figure 4 and Figure 9 the first transmission part 52 of the first actuating component 5 shown in is a gear transmission structure.

[0063] In some embodiments, as Figures 10 to 12 shown, the dust collection bucket assembly 2 includes a bucket body 21 and a fixing member 22 with an open mouth provided on the bucket body 21. The bucket body 21 is located inside the base 1 and is used to accommodate the bag body 6. The movable bucket cover assembly 3 is used to rotate and open or cover the upper open mouth of the bucket body 21. The fixing member 22 is used to press the side edge of the bag body 6 towards the upper open mouth of the bucket body 21, and the fixing member 22 is made of a deformable material to release the bag body 6 by deforming under force.

[0064] In this way, the fixing member 22 can prevent the bag body 6 from falling off, realizing effective fixation of the bag body 6. And the fixing member 22 can release the bag body 6 by deforming under force. When the user pulls the handle part 61 of the bag body 6, the side edge of the bag body 6 can fall off along the fixing member 22. Thus, by simply pulling the handle part 61 of the bag body 6, the bag body 6 can be packed, and then the bag body 6 can be taken out and discarded to replace it with a new one, simplifying the operation steps of the user.

[0065] The above-mentioned fixing member 22 can be constructed in a rectangular shape, a circular ring shape, etc. Exemplarily, as Figure 10 shown, Figure 10 the fixing member 22 shown in

[0066] is in a rectangular shape. Figure 11 and Figure 12 shown, Figure 11 the fixing member 22 shown in Figure 12 is in an unloaded state. At this time, the bag body 6 is limited in the bucket body 21 via the fixing member 22.

[0067] In some embodiments, as Figure 7 and Figure 10 shown, convex structures 23 are respectively provided on the opposite sides of the upper open mouth of the bucket body 21. The handle part 61 of the bag body 6 is sleeved on the two convex structures 23, and the upper surface height of the convex structures 23 is higher than the upper surface height of the fixing member 22.

[0068] In this way, the handle part 61 of the bag body 6 can be effectively limited by the convex structures 23 respectively provided on the opposite sides of the upper open mouth of the bucket body 21. When the bag body 6 needs to be taken out, the handle part 61 sleeved on the two convex structures 23 can be directly pulled gently to close the mouth of the bag body 6, facilitating the operation of the user.

[0069] The handle part 61 of the above-mentioned bag body 6 can be provided in one-to-one correspondence with the convex structures 23. After the handle part 61 is pulled, the open mouth of the bag body 6 can be tightened to complete the tying of the bag body 6, simplifying the operation of the user.

[0070] A notch may be formed at the position of the fixing member 22 corresponding to the protruding structure 23 to avoid the problem that the fixing member 22 accidentally presses the handle portion 61 of the bag body 6, making it difficult for the user to lift the handle portion 61.

[0071] In some embodiments, as Figure 13 shown, the upper cover 33 has an opening structure 34 corresponding to the collection chamber 42, and the movable bucket cover assembly 3 further includes a movable cover 35 rotatably disposed at the opening structure 34, and the movable cover 35 is used to open or cover the collection chamber 42.

[0072] In this way, the collection chamber 42 can be directly opened through the movable cover 35, so that the user can directly throw the garbage into the collection chamber 42 of the dust box 31 without opening the entire upper cover 33.

[0073] One side of the movable cover 35 can be pivotally connected to the opening structure 34 of the upper cover 33 for the convenience of the user.

[0074] Both the movable cover 35 and the upper cover 33 are in a closed state when the suction member 12 performs the dust collection work to avoid affecting the work of the suction member 12.

[0075] In some embodiments, as Figure 3 and Figure 4 shown, a connection port 15 is provided on the base 1, and the movable bucket cover assembly 3 further includes a first hose 36 and a second hose 37 respectively communicating with the dust collection cavity 4. The connection air duct 11 is sequentially connected to the chamber wall of the front cavity 43 through the connection port 15 and the first hose 36, and the suction port of the suction member 12 is connected to the chamber wall of the rear cavity 44 through the second hose 37.

[0076] In this way, the dust collection cavity 4 is connected to the connection air duct 11 and the suction member 12 by hoses, which can not only ensure the connection tightness, but also adapt to the rotational movement of the upper cover 33 to ensure the structural stability.

[0077] The embodiment of the present application also provides a cleaning device. As Figure 1 and Figure 2 shown, the cleaning device includes the above-mentioned dust collection station device 100 for the cleaning device, and further includes a handheld cleaning device 200. The dust collection station device 100 has a mounting seat 7 for installing the handheld cleaning device 200. A dust cup 201 is provided on the handheld cleaning device 200. After the handheld cleaning device 200 is placed on the mounting seat 7, the connection air duct 11 is communicated with the dust cup 201.

[0078] In this application, the suction member 12 can suck the garbage in the dust cup 201 into the dust collection cavity 4 of the dust box 31, so as to temporarily store the garbage via the dust collection cavity 4. After the dust collection operation of the suction member 12 is completed, the lower cover 32 located at the bottom of the dust collection cavity 4 is opened, so that the garbage in the dust collection cavity 4 can automatically fall into the bag 6 in the dust collection bucket assembly 2 below under the action of gravity. This can reduce the manual operation steps of the user and does not require additional power, which can reduce the manufacturing cost of the whole machine. It can realize that the garbage in the dust cup 201 can fall into the bag 6 of the dust collection bucket assembly 2 without the user's manual operation. The garbage in the bag 6 can be easily packed by pulling, which saves time and effort. That is, after the garbage in the bag 6 is full, only the bag 6 needs to be discarded, which is easy, convenient, time-saving and labor-saving. Moreover, the above dust box 31 is integrated on the movable bucket cover assembly 3, making the structure of the dust collection station device 100 more compact and simple, not occupying too much installation space, and the structure is more reasonable.

[0079] The above-mentioned handheld cleaning device 200 can be used for cleaning when held by the user. After the user finishes using it, the handheld cleaning device 200 can be placed on the dust collection station device 100. The garbage sucked during the cleaning process of the handheld cleaning device 200 can be collected by the dust cup 201 on the handheld cleaning device 200. In this application, after the handheld cleaning device 200 is placed on the dust collection station device 100, the suction member 12 can suck the garbage in the dust cup 201 into the dust collection cavity 4 of the dust box 31, so that the user does not need to manually clean the dust cup 201.

[0080] As Figure 1 shown, a placement cavity 16 can be provided on the base 1 of the above-mentioned dust collection station device 100. When the handheld cleaning device 200 is placed on the dust collection station device 100, the dust cup 201 will be placed in the placement cavity 16. After the suction member 12 works to generate negative pressure, the dust cup 201 can be opened under the suction force, so that the garbage in the dust cup 201 can be sucked outwards by the suction member 12. In this application, the structures of the dust cup 201 and the placement cavity 16 are not specifically limited, and the dust cup 201 can be opened under the suction force.

[0081] The working principle of the above cleaning equipment is as follows:

[0082] When the handheld cleaning device 200 finishes the dust suction cleaning work and is placed back on the dust collection station device 100, the dust cup 201 is placed in the placement cavity 16. At this time, the movable bucket cover assembly 3 is in the position of covering the dust collection bucket assembly 2, the upper cover 33 triggers the switch member 13, and the lower cover 32 is in the position of covering the dust collection cavity 4. The suction member 12 can be started only when both the upper cover 33 and the lower cover 32 are in the closed state. Through the work of the suction member 12 to generate negative pressure, the dust cup 201 will be opened, and the garbage in the dust cup 201 of the cleaning equipment will be collected into the dust collection cavity 4, thus completing the dust collection.

[0083] After the dust collection is completed, the control component sends a signal to control the lower cover 32 to rotate and open the dust collection cavity 4. The garbage in the dust collection cavity 4 falls into the dust collection bucket assembly 2 below. After reaching the set flipping angle, the control component can control the second driving member 81 to flip and rotate the lower cover 32 to cover the dust collection cavity 4. It should be noted that if the upper cover 33 opens the dust collection bucket assembly 2, the suction member 12 does not work and dust collection cannot be carried out. When the suction member 12 works, the induction module 14 does not work, and when the induction module 14 works, the suction member 12 does not work to ensure that the suction member 12 can suck air stably. If the upper cover 33 is forcibly opened, the dust collection work of the suction member 12 will stop immediately.

[0084] The bag body 6 is sleeved in the dust collection bucket assembly 2. When the garbage in the bag body 6 is full or a new bag body 6 needs to be replaced, just pull the handle part 61 of the bag body 6, and the side of the bag body 6 sleeved on the fixing member 22 will fall off along the fixing member 22. At the same time, the opening of the bag body 6 shrinks towards the middle to complete the packing. After taking out the bag body 6, a new bag body 6 can be replaced.

[0085] After a period of time when the dust collection work of the suction member 12 is completed, if someone approaches the dust collection station device 100 at a certain distance, the induction module 14 works and sends an induction signal to the control component. The control component sends a control instruction to drive the upper cover 33 to rotate and open the dust collection bucket assembly 2. After the person leaves, the control component sends another control instruction to make the upper cover 33 rotate to cover the dust collection bucket assembly 2, so that the dust collection bucket assembly 2 can be used as a trash can.

[0086] The above embodiments are only exemplary embodiments of the present application and are not used to limit the present application. Those skilled in the art can make various modifications or equivalent replacements to the present application within the essence and protection scope of the present application, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the present application.

Claims

1. A dust collection station device (100) for a cleaning device, characterized in that, Comprising: A base (1) to which a connecting air duct (11) is connected. One end of the connecting air duct (11) away from the base (1) is communicated with a dust cup (201) of a cleaning device. An air suction member (12) is provided in the base (1). A dust collection bucket assembly (2) which is arranged in the base (1) and is used for accommodating a bag body (6). The upper part of the dust collection bucket assembly (2) is open. A movable bucket cover assembly (3) which is rotatably arranged at the upper opening of the dust collection bucket assembly (2) and is used for rotating to open or cover the dust collection bucket assembly (2). The movable bucket cover assembly (3) includes a dust box (31). The dust box (31) includes a dust collection cavity (4) and a lower cover (32). The lower cover (32) is rotatably arranged at the bottom of the dust collection cavity (4) to open or cover the dust collection cavity (4). The dust collection cavity (4) is respectively communicated with an air suction port of the air suction member (12) and the connecting air duct (11). The air suction member (12) is used for sucking the garbage in the dust cup (201) through the connecting air duct (11) into the dust collection cavity (4) of the dust box (31). The lower cover (32) is used for rotating to open the bottom of the dust collection cavity (4) after the air suction member (12) sucks air, so that the garbage in the dust collection cavity (4) falls into the bag body (6) accommodated in the dust collection bucket assembly (2).

2. The dust collection station device (100) for a cleaning device according to claim 1, characterized in that, A stop member (41) is provided in the dust collection cavity (4). The stop member (41) is used for forming a streamlined air duct in the dust collection cavity (4). The inlet size of the streamlined air duct is smaller than the outlet size of the streamlined air duct, and the bottom height of the inlet of the streamlined air duct is higher than the bottom height of the outlet of the streamlined air duct. A collection cavity (42) for collecting garbage is formed between the lower surface of the stop member (41) and the lower cover (32).

3. The dust collection station device (100) for a cleaning device according to claim 2, characterized in that, The dust collection cavity (4) is divided into a front cavity (43) and a rear cavity (44) which are communicated with each other. A filter member (45) is provided between the front cavity (43) and the rear cavity (44). The connecting air duct (11) is connected to the cavity wall of the front cavity (43). The air suction port of the air suction member (12) is connected to the cavity wall of the rear cavity (44). The stop member (41) is arranged in the front cavity (43) so that the streamlined air duct is located in the front cavity (43).

4. The dust collection station device (100) for a cleaning device according to claim 2, characterized in that, The movable bucket cover assembly (3) further includes an upper cover (33). The upper cover (33) is rotatably arranged at the upper opening of the dust collection bucket assembly (2). The dust box (31) is arranged on one side of the upper cover (33) facing the dust collection bucket assembly (2). A switch member (13) is provided on the base (1). When the upper cover (33) covers the upper opening of the dust collection bucket assembly (2), the switch member (13) is triggered. The air suction member (12) is used for entering a working state after the switch member (13) is triggered.

5. The dust collection station device (100) for a cleaning device according to claim 4, characterized in that, The dust collection station device (100) further includes a control component. An induction module (14) is provided on the base (1). The movable bucket cover assembly (3) further includes a first actuating component (5) for driving the upper cover (33) to rotate. The induction module (14), the suction component (12), and the first actuating component (5) are all electrically connected to the control component. The control component is configured to, when the suction component (12) is in a closed state, obtain the induction information generated by the induction module (14), and send a control instruction to the first actuating component (5) based on the induction information, so that the first actuating component (5) drives the upper cover (33) to rotate and open the dust collection bucket assembly (2).

6. The dust collection station device (100) for a cleaning device according to claim 1 or 2, characterized in that, The dust collection bucket assembly (2) includes a bucket body (21) and a fixing member (22) with an open mouth provided on the bucket body (21). The bucket body (21) is located inside the base (1) and is used for accommodating the bag body (6). The movable bucket cover assembly (3) is used to rotate and open or cover the upper open mouth of the bucket body (21). The fixing member (22) is used to press the side of the bag body (6) towards the upper open mouth of the bucket body (21), and the fixing member (22) is made of a deformable material to release the bag body (6) by deforming under force.

7. The dust collection station device (100) for a cleaning device according to claim 6, characterized in that, Convex structures (23) are respectively provided on opposite sides of the upper open mouth of the bucket body (21). The handle part (61) of the bag body (6) is sleeved on the two convex structures (23). The upper surface height of the convex structures (23) is higher than the upper surface height of the fixing member (22).

8. The dust collection station device (100) for a cleaning device according to claim 4, characterized in that, The upper cover (33) has an opening structure (34) corresponding to the collection cavity (42). The movable bucket cover assembly (3) further includes a movable cover (35) rotatably provided at the opening structure (34). The movable cover (35) is used to open or cover the collection cavity (42).

9. The dust collection station device (100) for a cleaning device according to claim 3, characterized in that, A connection port (15) is provided on the base (1). The movable bucket cover assembly (3) further includes a first hose (36) and a second hose (37) respectively communicating with the dust collection cavity (4). The connecting air duct (11) is sequentially connected to the cavity wall of the front cavity (43) through the connection port (15) and the first hose (36). The suction port of the suction component (12) is connected to the cavity wall of the rear cavity (44) through the second hose (37).

10. A cleaning device, characterized in that, It includes a dust collection station device (100) for a cleaning device as described in any one of claims 1 to 9, and further includes a handheld cleaning device (200). The dust collection station device (100) has a mounting seat (7) for mounting the handheld cleaning device (200). The dust cup (201) is provided on the handheld cleaning device (200). After the handheld cleaning device (200) is placed on the mounting seat (7), the connecting air duct (11) is communicated with the dust cup (201).

Citation Information

Patent Citations

  • Cleaning device

    CN115844268A