Dust collection bag device, dust collection assembly, dust collection base station, and automatic cleaning system

US20260232154A1Pending Publication Date: 2026-08-13BEIJING ROCKROBO TECH CO LTD
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Patent Information

Authority / Receiving Office
US · United States
Patent Type
Applications(United States)
Current Assignee / Owner
Filing Date
2023-09-12
Publication Date
2026-08-13

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Abstract

A dust collection bag device, a dust collection assembly, a dust collection base station, and an automatic cleaning system are provided. The dust collection bag device is configured to be mounted on a dust bag support, and includes: a dust bag having a dust inlet; a dust bag fixed plate connected to the dust bag, where the dust bag fixed plate has a first clip-on member and a first through hole in communication with the dust inlet; and a sealing member configured to be disposed between the dust bag fixed plate and the dust bag support. The dust bag fixed plate is configured to compress the sealing member together with the dust bag support, and the first clip-on member is configured to be detachably connected to the dust bag support, when the dust collection bag device is mounted on the dust bag support.
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Description

CROSS-REFERENCE TO RELATED APPLICATION

[0001] The present disclosure is a U.S. National Stage of International Application No. PCT / CN2023 / 118360, filed on Sep. 12, 2023, which claims priority to Chinese Patent Applications No. 2023202885339 and No. 2023202614572, filed on Feb. 10, 2023, the content of which is incorporated herein by reference in their entirety.TECHNICAL FIELD

[0002] The present disclosure belongs to the technical field of dust collection apparatuses, and specifically relates to a dust collection bag device, a dust collection assembly, a dust collection base station, and an automatic cleaning system.BACKGROUND

[0003] The automatic cleaning system is an intelligent cleaning appliance, such as an auto-dust-collection sweeping robot and an automatic sweeper. The dust collection bag device is an essential part of the automatic cleaning system and serves to store debris or dust. A user can periodically remove the dust collection bag device for cleaning. The current dust collection bag devices are prone to debris or dust spillage after being used for a long time, resulting in a poor user experience.SUMMARY

[0004] According to a first aspect of the present disclosure, a dust collection bag device mounted on a dust bag support is provided. The dust collection bag device includes: a dust bag provided with a dust inlet; a dust bag fixed plate connected to the dust bag, where the dust bag fixed plate is provided with a first clip-on member and a first through hole in communication with the dust inlet; and a sealing member disposed between the dust bag fixed plate and the dust bag support. When the dust collection bag device is mounted on the dust bag support, the dust bag fixed plate and the dust bag support compress the sealing member, and the first clip-on member is detachably connected to the dust bag support.

[0005] According to a second aspect of the present disclosure, a dust collection assembly is provided. The dust collection assembly includes: a dust bag support including a support body provided with a sliding groove and a dust inlet channel, and a second clip-on member connected to the support body; and the dust collection bag device according to the above first aspect, where the dust bag fixed plate is slidably arranged in the sliding groove, the sealing member is disposed between the dust bag fixed plate and the dust bag support in a compressed manner, and the first clip-on member is in snap-fit connection to the second clip-on member. The dust inlet channel is in communication with the first through hole formed in the dust bag fixed plate.

[0006] According to a third aspect of the present disclosure, a dust collection assembly is provided. The dust collection assembly includes: a dust bag support including a support body provided with a sliding groove and a dust inlet channel, and a press plate connected to the support body; a dust bag provided with a dust inlet; a dust bag fixed plate connected to the dust bag, where the dust bag fixed plate is provided with a first through hole in communication with the dust inlet and the dust inlet channel; and a sealing member disposed between the dust bag fixed plate and the dust bag support in a compressed manner. The dust bag fixed plate is slidably arranged in the sliding groove, and the press plate is arranged in a blocking manner on a side of the dust bag fixed plate distal to the sealing member.

[0007] According to a fourth aspect of the present disclosure, a dust collection base station is provided. The dust collection base station includes the dust collection assembly according to the above second or third aspect.

[0008] According to a fifth aspect of the present disclosure, an automatic cleaning system is provided. The automatic cleaning system includes an automatic dust collection device and the dust collection base station according to the above fourth aspect. The automatic dust collection device is provided with a dust box, and when the automatic dust collection device enters the dust collection base station, the dust box is in communication with the dust inlet channel formed in the dust collection assembly of the dust collection base station.BRIEF DESCRIPTION OF THE DRAWINGS

[0009] For a clearer illustration of the technical solutions in embodiments of the present disclosure, the drawings that need to be used in the description of the embodiments are briefly introduced below. Apparently, the drawings in the following description are some embodiments of the present disclosure, and those of ordinary skill in the art may still derive other drawings from these drawings without creative efforts.

[0010] FIG. 1 shows a schematic structural view of a dust collection bag device according to one or more embodiments of the present disclosure.

[0011] FIG. 2 shows an exploded view of the dust collection bag device in FIG. 1.

[0012] FIG. 3 shows a schematic structural view of a dust collection assembly according to one or more embodiments of the present disclosure.

[0013] FIG. 4 shows an exploded view of the dust collection assembly in FIG. 3.

[0014] FIG. 5 is a schematic structural view of the dust collection assembly in FIG. 3 with a dust bag removed.

[0015] FIG. 6 is a structural view of the dust collection assembly in FIG. 3 in a fully cutaway state.

[0016] FIG. 7 shows a front view of FIG. 6.

[0017] FIG. 8 shows a schematic structural view of a dust collection assembly according to some other embodiments of the present disclosure.DETAILED DESCRIPTION

[0018] The technical solutions in embodiments of the present disclosure will be clearly and completely described below with reference to the drawings in the embodiments of the present disclosure. It is apparent that the described embodiments are merely some, but not all, of the embodiments of the present disclosure. Based on the embodiments in the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present disclosure.

[0019] In addition, the present disclosure may repeat reference numbers and / or reference letters in different examples. Such repetition is intended for simplicity and clarity rather than for indicating the relationship between various embodiments and / or arrangements discussed. Furthermore, the present disclosure provides examples of various specific processes and materials, but those of ordinary skill in the art will recognize the application of other processes and / or the use of other materials.

[0020] The automatic cleaning system is an intelligent cleaning appliance, such as an auto-dust-collection sweeping robot and an automatic sweeper. The dust collection bag device is an essential part of the automatic cleaning system and serves to store debris or dust. A user can periodically remove the dust collection bag device for cleaning.

[0021] The current dust collection bag devices include a dust bag, a dust bag fixed plate, and a sealing member. The dust bag is detachably connected to a dust bag support through the dust bag fixed plate, and the dust bag fixed plate and the dust bag support are sealed via the sealing member. After being used for a long time, the dust bag fixed plate and / or the sealing member are prone to deformation, causing debris or dust spillage from the dust bag, resulting in a poor user experience. By adopting the dust collection bag device, the dust collection assembly, the dust collection base station, and the automatic cleaning system according to one or more embodiments of the present disclosure, the above technical problem can be addressed at least to a certain extent.

[0022] According to a first aspect of the present disclosure, a dust collection bag device mounted on a dust bag support 100 is provided. The dust collection bag device can effectively prevent a dust bag fixed plate 300 and a sealing member 400 from deformation, thereby addressing the problem of debris or dust spillage in the current dust collection bag devices.

[0023] Referring to FIGS. 1 and 2, which are an overall structural view and an exploded view of the dust collection bag device, respectively, the dust collection bag device includes a dust bag 200, a dust bag fixed plate 300, and a sealing member 400. The dust bag 200 is provided with a dust inlet 201, and the dust bag fixed plate 300 is connected to the dust bag 200. The dust bag fixed plate 300 is provided with a first clip-on member 310 and a first through hole 301 in communication with the dust inlet 201. The sealing member 400 is disposed between the dust bag fixed plate 300 and the dust bag support 100. When the dust collection bag device is mounted on the dust bag support 100, the dust bag fixed plate 300 and the dust bag support 100 compress the sealing member 400, and the first clip-on member 310 is detachably connected to the dust bag support 100.

[0024] According to the dust collection bag device provided in one or more embodiments of the present disclosure, a first clip-on member 310 is disposed on the dust bag fixed plate 300. When the dust collection bag device is mounted on the dust bag support 100, the dust bag fixed plate 300 and the dust bag support 100 jointly compress the sealing member 400, so as to seal the gap between the dust inlet 201, the first through hole 301, and a dust inlet channel 102 of the dust bag support 100. In addition, the dust bag fixed plate 300 is in snap-fit connection to the dust bag support 100 via the first clip-on member 310. The first clip-on member 310 can provide pressure directed to the dust bag support 100 for both the dust bag fixed plate 300 and the sealing member 400, which can effectively prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby addressing the problem of debris or dust spillage.

[0025] In certain embodiments, as shown in FIGS. 1 and 2, the dust collection bag device further includes a dust bag movable plate 500 slidably connected to the dust bag fixed plate 300, and the dust bag movable plate 500 is provided with a second through hole 501, so as to achieve the opening and closing of the dust bag 200 via the dust bag movable plate 500. After the dust bag 200 is full of dust and debris, the dust bag 200 may be closed via the dust bag movable plate 500 and then be taken out, thereby avoiding the spillage of the dust and debris in the dust bag 200 during the process of taking out the dust bag 200.

[0026] In some embodiments, when the dust bag movable plate 500 slides to a first position relative to the dust bag fixed plate 300, the second through hole 501 is in communication with the first through hole 301; when the dust bag movable plate 500 slides to a second position relative to the dust bag fixed plate 300, the dust bag movable plate 500 closes the first through hole 301. In this way, the dust bag movable plate 500 opens and closes the dust bag 200.

[0027] In certain embodiments, as shown in FIG. 2, the dust bag fixed plate 300 is further provided with a first limiting block 320 and a second limiting block 330. The first limiting block 320 is correspondingly disposed at the second position, and the second limiting block 330 is correspondingly disposed at the first position. As shown in FIG. 2, the dust bag movable plate 500 is further provided with a third limiting block 520, and the third limiting block 520 is disposed between the first limiting block 320 and the second limiting block 330. When the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the second limiting block 330 blocks the third limiting block 520, so as to ensure that the second through hole 501 is in accurate communication with the first through hole 301; when the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the first limiting block 320 blocks the third limiting block 520, so as to ensure that the dust bag movable plate 500 accurately closes the first through hole 301.

[0028] To facilitate a user's pulling of the dust bag movable plate 500, in certain embodiments, as shown in FIG. 2, the dust bag movable plate 500 is provided with a pull plate 510, thus allowing a user to easily pull the dust bag movable plate 500 via the pull plate 510.

[0029] In certain embodiments, as shown in FIG. 2, the pull plate 510 is provided with a via hole 511 (for example, another through hole) in communication with the second through hole 501, the first clip-on member 310 is a snap-fit hook 310a, and the snap-fit hook 310a extends outside through the via hole 511. In this way, the snap-fit hook 310a does not occupy additional space. In addition, the pull plate 510 is generally disposed in the middle, and the snap-fit hook 310a is in the middle, such that the force exerted on the dust bag fixed plate 300 is balanced.

[0030] In certain embodiments, as shown in FIG. 2, the dust bag fixed plate 300 is provided with a sealing groove 302. The sealing groove 302 is located on the outer periphery of the first through hole 301, and the sealing member 400 is located in the sealing groove 302. When the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the sealing member 400 extends into the second through hole 501 and partially protrudes out of the second through hole 501. When the dust bag movable plate 500 slides to the second position relative to the dust bag fixed plate 300, the sealing member 400 is compressed by the fixed plate and the movable plate. Since the sealing groove 302 limits the sealing member 400, the sealing member 400 is prevented from moving when the movable plate is pulled upward. In addition, the sealing member 400 protrudes outside, so as to ensure that the sealing member 400 can be compressed by the dust bag support 100.

[0031] In certain embodiments, the sealing member 400 is a sealing ring of a solid structure. Compared to a sealing ring of a hollow structure, such as a sealing ring of a hollow structure with a cross-shaped or C-shaped cross-section, which may undergo deformation and collapse-induced failure to rebound and thereby result in dust leakage during dust collection, configuring the sealing member 400 as a sealing ring of a solid structure can prevent the sealing member 400 from deformation and collapse-induced failure to rebound, thereby reducing the risk of dust leakage during dust collection.

[0032] In certain embodiments, as shown in FIG. 2, the first clip-on member 310 is located at the top of the dust bag fixed plate 300. Since the dust inlet 201 of the dust bag 200 is located at an upper position, the first through hole 301 of the dust bag fixed plate 300 is also located at an upper position, such that the top of the dust bag fixed plate 300 is a weak part and is also a position where deformation is easy to occur. Therefore, the dust bag fixed plate may be reinforced via the first clip-on member 310; in addition, this also facilitates the removal of the first clip-on member 310 by users.

[0033] According to a second aspect of the present disclosure, a dust collection assembly is provided. Referring to FIGS. 3, 4, and 8, the dust collection assembly includes a dust bag support 100 and the dust collection bag device according to any one of the embodiments of the above first aspect. The dust bag support 100 includes a support body 110 provided with a sliding groove 101 and a dust inlet channel 102, and a second clip-on member 111 connected to the support body 110. The dust bag fixed plate 300 is slidably arranged in the sliding groove 101, and the dust inlet channel 102 is in communication with the first through hole 301 of the dust bag fixed plate 300. In some embodiments, the dust collection bag device may further include a dust bag movable plate 500, and the dust inlet channel 102, the second through hole 501, and the first through hole 301 are in communication in sequence. The sealing member 400 of the dust collection bag device is disposed between the dust bag fixed plate 300 and the dust bag support 100 in a compressed manner, and the first clip-on member 310 is in snap-fit connection to the second clip-on member 111. The first clip-on member 310 and the second clip-on member 111 being in snap-fit connection can provide pressure directed to the dust bag support 100 for both the dust bag fixed plate 300 and the sealing member 400, and can effectively prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby addressing the problem of debris or dust spillage.

[0034] The first clip-on member 310 is in snap-fit connection to the second clip-on member 111, and various snap-fit structures may be adopted. In some embodiments, as shown in FIGS. 6 and 7, the second clip-on member 111 is a stopper block 111a, and the first clip-on member 310 is a snap-fit hook 310 snapped onto the stopper block 111a. During the process of relative sliding of the dust collection bag device and the dust bag support 100, the snap-fit hook 310a is disengaged from the stopper block 111a. That is, the snap-fit direction of the stopper block 111a and the snap-fit hook 310a is parallel to the relative sliding direction of the dust collection bag device and the dust bag support 100, and this is conducive to the automatic snap-fit and disengagement between the stopper block 111a and the snap-fit hook 310a. In some other embodiments, the first clip-on member 310 is a snap pin having certain elasticity, the second clip-on member 111 is a snap hole, and the snap pin is inserted into the snap hole. The specific structures of the first clip-on member 310 and the second clip-on member 111 are not limited in the present disclosure.

[0035] As for the position of the second clip-on member 111, since the second clip-on member 111 is opposite to the first clip-on member 310, as described above, when the first clip-on member 310 is located at the top of the dust bag fixed plate 300, correspondingly, the second clip-on member 111 is also located at the top of the dust bag support 100.

[0036] In certain embodiments, as shown in FIGS. 4 and 5, the dust bag support 100 further includes a press plate 120 connected to the support body 110. The press plate 120 is arranged in a blocking manner on a side of the dust bag fixed plate 300 distal to the sealing member 400. The press plate 120 can provide pressure directed to the dust bag support 100 for both the dust bag fixed plate 300 and the sealing member 400, which can further prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby further addressing the problem of debris or dust spillage.

[0037] In certain embodiments, as shown in FIG. 4, the press plate 120 is mounted on the dust bag support 100 by screws and the press plate 120 covers the sliding groove 101. When the dust bag 200 is mounted in place on the dust bag support 100, the press plate 120 partially overlaps the dust bag fixed plate 300, such that the press plate 120 can prevent the portion of the dust bag fixed plate 300 covered by the press plate 120 from deformation. When the press plate 120 is disposed proximal to the dust inlet channel 102, a corresponding clearance hole may be formed in the press plate 120 to provide clearance for the dust inlet channel 102, such that the press plate 120 prevents the portion of the dust bag fixed plate 300 proximal to the dust inlet channel 102 As shown in FIG. 6, to improve the limiting effects and prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, in certain embodiments, the press plate 120 and the second clip-on member 111 are disposed on two opposite sides of the dust inlet channel 102. In this arrangement, the dust bag fixed plate 300 can be limited from both the two opposite sides on the plane where the first through hole 301 is located, thus achieving a better deformation prevention effect.

[0038] As described above, the press plate 120 and the second clip-on member 111 are disposed on two opposite sides of the dust inlet channel 102. In certain embodiments, as shown in FIGS. 6 and 7, the first clip-on member 310 is located at the top of the dust bag fixed plate 300, the second clip-on member 111 is located at the top of the support body 110, and correspondingly, the press plate 120 is disposed below the first through hole 301 of the dust bag fixed plate 300, so as to facilitate the removal of the first clip-on member 310 and the second clip-on member 111 by users. In some other embodiments, the press plate 120 and the second clip-on member 111 may also be disposed on two opposite sides of the dust inlet channel 102 in the horizontal direction thereof, which is not limited in the embodiments of the present disclosure.

[0039] According to a third aspect of the present disclosure, a dust collection assembly is further provided. The dust collection assembly can effectively prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby addressing the problem of debris or dust spillage in the current dust collection assemblies.

[0040] Referring to FIGS. 3 and 4, which are an overall structural view and an exploded view of the dust collection assembly, the dust collection assembly includes a dust bag support 100, a dust bag 200, a dust bag fixed plate 300, and a sealing member 400. The dust bag support 100 includes a support body 110 provided with a sliding groove 101 and a dust inlet channel 102, and a press plate 120 connected to the support body 110. The dust bag 200 is provided with a dust inlet 201. The dust bag fixed plate 300 is connected to the dust bag 200, and the dust bag fixed plate 300 is provided with a first through hole 301 in communication with the dust inlet 201 of the dust bag 200 and the dust inlet channel 102 of the support body 110. The sealing member 400 is disposed between the dust bag fixed plate 300 and the dust bag support 100 in a compressed manner, and the dust bag fixed plate 300 is slidably arranged in the sliding groove 101. The press plate 120 is arranged in a blocking manner on a side of the dust bag fixed plate 300 distal to the sealing member 400.

[0041] The dust collection assembly has a press plate 120 disposed on the dust bag support 100. The dust bag 200 is detachably mounted on the dust bag support 100 via the dust bag fixed plate 300, and the dust bag fixed plate 300 and the dust bag support 100 jointly compress the sealing member 400, so as to seal the gap between the dust inlet 201 of the dust bag 200, the first through hole 301 of the dust bag fixed plate 300, and the dust inlet channel 102 of the dust bag support 100. The press plate 120 is arranged in a blocking manner on a side of the dust bag fixed plate 300 distal to the sealing member 400. The press plate 120 can provide pressure directed to the dust bag support 100 for both the dust bag fixed plate 300 and the sealing member 400, which can effectively prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby addressing the problem of debris or dust spillage.

[0042] In certain embodiments, as shown in FIG. 5, the press plate 120 is mounted on the dust bag support 100 by screws and the press plate 120 covers the sliding groove 101. When the dust bag 200 is mounted in place on the dust bag support 100, the press plate 120 partially overlaps the dust bag fixed plate 300, such that the press plate 120 can prevent the portion of the dust bag fixed plate 300 covered by the press plate 120 from deformation. When the press plate 120 is disposed proximal to the dust inlet channel 102, a corresponding clearance hole may be formed in the press plate 120 to provide clearance for the dust inlet channel 102, such that the press plate 120 prevents the portion of the dust bag fixed plate 300 proximal to the dust inlet channel 102 from deformation.

[0043] In certain embodiments, as shown in FIGS. 1 and 2, the dust bag fixed plate 300 is provided with a first clip-on member 310, the dust bag support 100 further includes a second clip-on member 111 connected to the support body 110, and the first clip-on member 310 is in snap-fit connection to the second clip-on member 111. Through the snap-fit connection between the first clip-on member 310 on the dust bag fixed plate 300 and the second clip-on member 111 on the support body 110, as well as the presence of the press plate 120, multi-point limiting is formed. The first clip-on member 310 and the second clip-on member 111 being in snap-fit connection can provide pressure directed to the dust bag support 100 for both the dust bag fixed plate 300 and the sealing member 400, which can further effectively prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, thereby further addressing the problem of debris or dust spillage.

[0044] As shown in FIG. 4, to improve the limiting effects and prevent the dust bag fixed plate 300 and the sealing member 400 from deformation, in certain embodiments, the press plate 120 and the second clip-on member 111 are disposed on two opposite sides of the dust inlet channel 102. In this arrangement, the dust bag fixed plate 300 can be limited from both the two opposite sides on the plane where the first through hole 301 is located, thus achieving a better deformation prevention effect.

[0045] As described above, the press plate 120 and the second clip-on member 111 are disposed on two opposite sides of the dust inlet channel 102. In certain embodiments, as shown in FIG. 4, the first clip-on member 310 is located at the top of the dust bag fixed plate 300, the second clip-on member 111 is located at the top of the support body 110, and correspondingly, the press plate 120 is disposed below the first through hole 301 of the dust bag fixed plate 300, so as to facilitate the removal of the first clip-on member 310 and the second clip-on member 111 by users. In some other embodiments, the press plate 120 and the second clip-on member 111 may also be disposed on two opposite sides of the dust inlet channel 102 in the horizontal direction thereof, which is not limited in the embodiments of the present disclosure.

[0046] In certain embodiments, as shown in FIGS. 1 and 2, the dust collection assembly further includes a dust bag movable plate 500 slidably connected to the dust bag fixed plate 300, and the dust bag movable plate 500 is provided with a second through hole 501, so as to achieve the opening and closing of the dust bag 200 via the dust bag movable plate 500. After the dust bag 200 is full of dust and debris, the dust bag 200 may be closed via the dust bag movable plate 500 and then be taken out, thereby avoiding the spillage of the dust and debris in the dust bag 200 during the process of taking out the dust bag 200.

[0047] In some embodiments, when the dust bag movable plate 500 slides to a first position relative to the dust bag fixed plate 300, the dust inlet channel 102, the second through hole 501, and the first through hole 301 are in communication in sequence; when the dust bag movable plate 500 slides to a second position relative to the dust bag fixed plate 300, the dust bag movable plate 500 closes the first through hole 301. In this way, the dust bag movable plate 500 opens and closes the dust bag 200.

[0048] In certain embodiments, as shown in FIGS. 1 and 2, the dust bag fixed plate 300 is further provided with a first limiting block 320 and a second limiting block 330. The first limiting block 320 is correspondingly disposed at the second position, and the second limiting block 330 is correspondingly disposed at the first position. Meanwhile, as shown in FIGS. 1 and 2, the dust bag movable plate 500 is further provided with a third limiting block 520, and the third limiting block 520 is disposed between the first limiting block 320 and the second limiting block 330. When the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the second limiting block 330 blocks the third limiting block 520, so as to ensure that the second through hole 501 is in accurate communication with the first through hole 301; when the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the first limiting block 320 blocks the third limiting block 520, so as to ensure that the dust bag movable plate 500 accurately closes the first through hole 301.

[0049] To facilitate a user's pulling of the dust bag movable plate 500, in certain embodiments, as shown in FIGS. 1 and 2, the dust bag movable plate 500 is provided with a pull plate 510, thus allowing a user to easily pull the dust bag movable plate 500 via the pull plate 510.

[0050] In certain embodiments, the dust bag fixed plate 300 is provided with a first clip-on member 310, and the first clip-on member 310 may be a snap-fit hook 310a, as shown in FIGS. 6 and 7. The pull plate 510 is provided with a via hole 511 in communication with the second through hole 501, and the snap-fit hook 310a extends outside through the via hole 511. In this way, the snap-fit hook 310a does not occupy additional space. In addition, the pull plate 510 is generally disposed in the middle, and the snap-fit hook 310a is in the middle, such that the force exerted on the dust bag fixed plate 300 is balanced.

[0051] The first clip-on member 310 is in snap-fit connection to the second clip-on member 111, and various snap-fit structures may be adopted. In certain embodiments, as shown in FIGS. 6 and 7, the second clip-on member 111 may be a stopper block 111a, the first clip-on member 310 is a snap-fit hook 310a, and the snap-fit hook 310a is snapped onto the stopper block 111a. During the process of relative sliding of the dust bag fixed plate 300 and the dust bag support 100, the snap-fit hook 310a is disengaged from the stopper block 111a. That is, the snap-fit direction of the stopper block 111a and the snap-fit hook 310a is parallel to the relative sliding direction of the dust bag fixed plate 300 and the dust bag support 100, and this is conducive to the automatic snap-fit and disengagement between the stopper block 111a and the snap-fit hook 310a. In some other embodiments, the first clip-on member 310 may also be a snap pin having certain elasticity, the second clip-on member 111 is a snap hole, and the snap pin is inserted into the snap hole. The specific structures of the first clip-on member 310 and the second clip-on member 111 are not limited in the present disclosure.

[0052] In certain embodiments, as shown in FIGS. 1 and 2, the dust bag fixed plate 300 is provided with a sealing groove 302. The sealing groove 302 is located on the outer periphery of the first through hole 301, and the sealing member 400 is located in the sealing groove 302. When the dust bag movable plate 500 slides to the first position relative to the dust bag fixed plate 300, the sealing member 400 extends into the second through hole 501 and partially protrudes out of the second through hole 501, so as to ensure that the sealing member 400 can be compressed by the dust bag support 100. When the dust bag movable plate 500 slides to the second position relative to the dust bag fixed plate 300, the sealing member 400 is compressed by the fixed plate and the movable plate. Since the sealing groove 302 limits the sealing member 400, the sealing member 400 is prevented from moving when the movable plate is pulled upward.

[0053] In certain embodiments, the sealing member 400 is a sealing ring of a solid structure. Compared to a sealing ring of a hollow structure, such as a sealing ring of a hollow structure with a cross-shaped or C-shaped cross-section, which may undergo deformation and collapse-induced failure to rebound and thereby result in dust leakage during dust collection, configuring the sealing member 400 as a sealing ring of a solid structure can prevent the sealing member 400 from deformation and collapse-induced failure to rebound, thereby reducing the risk of dust leakage during dust collection.

[0054] According to a fourth aspect of the present disclosure, a dust collection base station is provided. The dust collection base station includes the dust collection assembly disclosed in any one of the embodiments of the above second or third aspect, and the dust collection assembly is disposed in the dust collection base station. When the dust bag 200 of the dust collection assembly is full of dust and debris, it is only necessary to close the dust inlet 201 of the dust bag 200 and then take the dust bag 200 out of the dust collection base station; after the dust and debris in the dust bag 200 are cleaned away, the dust bag 200 is put back into the dust collection base station, and the dust inlet 201 of the dust bag 200 is opened, such that continuous use is enabled. Since the dust collection base station is equipped with the above dust collection assembly, the dust collection base station accordingly shares the beneficial effects of the above dust collection assembly. For other content of the dust collection base station that is not described in detail, reference may be made to related disclosures in the prior art, which is not limited herein.

[0055] According to a fifth aspect of the present disclosure, an automatic cleaning system is provided. The automatic cleaning system includes an automatic dust collection device and the dust collection base station disclosed in any one of the embodiments of the above fourth aspect. The automatic dust collection device may be a sweeping robot, a sweeper, etc., which is not limited in the embodiments of the present disclosure.

[0056] The automatic dust collection device is provided with a dust box, and when the automatic dust collection device enters the dust collection base station, the dust box is in communication with the dust inlet channel 102 of the dust collection assembly in the dust collection base station. In some embodiments, the automatic dust collection device cleans up dust and debris in an area where the automatic dust collection device is located, and stores the dust and debris in the dust box of the automatic dust collection device. When the dust box is full of dust and debris, the automatic dust collection device enters the dust collection base station, and the dust box is in communication with the dust inlet channel 102 of the dust collection assembly. In this case, under the negative pressure of the dust collection base station, the debris in the dust box of the automatic dust collection device enters the dust bag 200 of the dust collection assembly. Then, the automatic dust collection device exits the dust collection base station and continues to clean up the dust and debris in the area where the automatic dust collection device is located.

[0057] In the present disclosure, unless otherwise clearly specified and defined, a first feature being “on” or “beneath” a second feature may include that the first and second features are in direct contact and that the first and second features are not in direct contact but are in contact via an additional feature therebetween. Moreover, a first feature being “on”, “over”, and “above” a second feature includes that the first feature is right above or obliquely above the second feature, or simply means that the first feature is at a horizontally higher position than the second feature. A first feature being “under”, “beneath”, and “below” a second feature includes that the first feature is right below or obliquely below the second feature, or simply means that the first feature is at a horizontally lower position than the second feature.

[0058] In the description of the present disclosure, it should be understood that orientational or positional relationships indicated by terms “central”, “longitudinal”, “transverse”, “length”, “width”, “thickness”, “upper”, “lower”, “front”, “rear”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inner”, “outer”, “clockwise”, and “counterclockwise”, are those shown on the basis of the drawings, and are merely intended to describe the present disclosure and simplify the description rather than indicate or imply that the indicated apparatus or element must have a specific orientation and be configured and operated according to the specific orientation. Such relationships should not be construed as limiting the present disclosure.

[0059] It should be noted that all directional indicators in the embodiments of the present disclosure are only used for explaining the relative positional relationship between the components, the movement situation, and the like under a specific posture, and if the specific posture changes, the directional indicators are changed accordingly.

[0060] In the present disclosure, unless otherwise clearly specified and defined, the terms “connect”, “fix”, and the like should be interpreted in their broad senses. For example, “fix” may be fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection via an intermediate; or internal communication between two elements or interaction between two elements, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present disclosure can be understood according to specific conditions.

[0061] In addition, in the present disclosure, descriptions involving “first”, “second”, and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, features defined by “first” and “second” may explicitly or implicitly include one or more of the features. In the description of the present disclosure, unless otherwise clearly and specifically defined, “plurality” refers to two or more.

[0062] In the description of the specification, the description of terms “one embodiment”, “some embodiments”, “an example”, “a specific example”, “some examples”, and the like means that the specific features, structures, materials, or characteristics described with reference to the embodiments or examples are included in at least one embodiment or example of the present disclosure. In the specification, the schematic description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. In addition, various embodiments or examples described in the specification may be joined and combined by those skilled in the art.

[0063] Furthermore, technical solutions in the embodiments may be combined with each other, but the combining must be based on the premise that it can be realized by those of ordinary skill in the art. When a combination of technical solutions results in contradiction or cannot be realized, such a combination of technical solutions should not be considered to exist and shall not fall within the protection scope of the present application.

[0064] Although the embodiments of the present disclosure have been illustrated and described, it can be understood by those of ordinary skill in the art that various changes, modifications, replacements, and variations can be made to these embodiments without departing from the principle and purpose of the present disclosure, and the scope of the present disclosure is defined by the claims and equivalents thereof.

Claims

1. A dust collection bag device, configured to be mounted on a dust bag support, comprising:a dust bag, provided with a dust inlet;a dust bag fixed plate, connected to the dust bag, wherein the dust bag fixed plate is provided with a first clip-on member and a first through hole in communication with the dust inlet; anda sealing member, configured to be disposed between the dust bag fixed plate and the dust bag support, whereinthe dust bag fixed plate is configured to compress the sealing member together with the dust bag support, and the first clip-on member is configured to be detachably connected to the dust bag support, when the dust collection bag device is mounted on the dust bag support.

2. The dust collection bag device according to claim 1, further comprising a dust bag movable plate slidably connected to the dust bag fixed plate, wherein the dust bag movable plate is provided with a second through hole;the second through hole is configured to be in communication with the first through hole when the dust bag movable plate slides to a first position relative to the dust bag fixed plate; and the dust bag movable plate is configured to close the first through hole when the dust bag movable plate slides to a second position relative to the dust bag fixed plate.

3. The dust collection bag device according to claim 2, wherein the dust bag movable plate is provided with a pull plate.

4. The dust collection bag device according to claim 3, wherein the first clip-on member is a snap-fit hook, the pull plate is provided with a via hole in communication with the second through hole, and the snap-fit hook extends outside through the via hole.

5. The dust collection bag device according to claim 2, wherein the dust bag fixed plate is provided with a sealing groove, the sealing groove is located on an outer periphery of the first through hole, and the sealing member is located in the sealing groove; and the sealing member is configured to extend into the second through hole and partially protrudes out of the second through hole when the dust bag movable plate slides to the first position relative to the dust bag fixed plate.

6. The dust collection bag device according to claim 1, wherein the sealing member is a sealing ring of a solid structure.

7. The dust collection bag device according to claim 1, wherein the first clip-on member is located at a top of the dust bag fixed plate.

8. A dust collection assembly, comprising:a dust bag support, comprising a support body provided with a sliding groove and a dust inlet channel, and a second clip-on member connected to the support body; andthe dust collection bag device mounted on a dust bag support, and comprising:a dust bag, provided with a dust inlet;a dust bag fixed plate, connected to the dust bag, wherein the dust bag fixed plate is provided with a first clip-on member and a first through hole in communication with the dust inlet; anda sealing member, configured to be disposed between the dust bag fixed plate and the dust bag support,wherein the dust bag fixed plate is configured to compress the sealing member together with the dust bag support, and the first clip-on member is configured to be detachably connected to the dust bag support, when the dust collection bag device is mounted on the dust bag support,wherein the dust bag fixed plate is slidably arranged in the sliding groove, the sealing member is disposed between the dust bag fixed plate and the dust bag support in a compressed manner, and the first clip-on member is in snap-fit connection to the second clip-on member;wherein the dust inlet channel is in communication with the first through hole formed in the dust bag fixed plate.

9. The dust collection assembly according to claim 8, wherein the second clip-on member is a stopper block, and the first clip-on member is a snap-fit hook snapped onto the stopper block; during a process of relative sliding of the dust collection bag device and the dust bag support, the snap-fit hook is disengaged from the stopper block.

10. A dust collection assembly, comprising:a dust bag support, comprising a support body provided with a sliding groove and a dust inlet channel, and a press plate connected to the support body;a dust bag, provided with a dust inlet;a dust bag fixed plate, connected to the dust bag, wherein the dust bag fixed plate is provided with a first through hole in communication with the dust inlet and the dust inlet channel; anda sealing member, disposed between the dust bag fixed plate and the dust bag support in a compressed manner,wherein the dust bag fixed plate is slidably arranged in the sliding groove, and the press plate is arranged in a blocking manner on a side of the dust bag fixed plate distal to the sealing member.

11. The dust collection assembly according to claim 10, wherein the dust bag fixed plate is provided with a first clip-on member, the dust bag support further comprises a second clip-on member connected to the support body, and the first clip-on member is in snap-fit connection to the second clip-on member.

12. The dust collection assembly according to claim 11, wherein the press plate and the second clip-on member are disposed on two opposite sides of the dust inlet channel.

13. The dust collection assembly according to claim 12, wherein the first clip-on member is located at a top of the dust bag fixed plate, and the second clip-on member is located at a top of the support body.

14. The dust collection assembly according to claim 11, further comprising a dust bag movable plate slidably connected to the dust bag fixed plate, wherein the dust bag movable plate is provided with a second through hole;the second through hole is configured to be in communication with the first through hole when the dust bag movable plate slides to a first position relative to the dust bag fixed plate; and the dust bag movable plate is configured to close the first through hole when the dust bag movable plate slides to a second position relative to the dust bag fixed plate.

15. The dust collection assembly according to claim 14, wherein the dust bag movable plate is provided with a pull plate, and the pull plate is provided with a via hole in communication with the second through hole; the first clip-on member is a snap-fit hook, and the snap-fit hook extends outside through the via hole.

16. The dust collection assembly according to claim 15, wherein the second clip-on member is a stopper block, and the snap-fit hook is snapped onto the stopper block; during a process of relative sliding of the dust bag fixed plate and the dust bag support, the snap-fit hook is disengaged from the stopper block.

17. The dust collection assembly according to claim 10, further comprising a dust bag movable plate slidably connected to the dust bag fixed plate, wherein the dust bag movable plate is provided with a second through hole;the second through hole is configured to be in communication with the first through hole when the dust bag movable plate slides to a first position relative to the dust bag fixed plate; and the dust bag movable plate is configured to close the first through hole when the dust bag movable plate slides to a second position relative to the dust bag fixed plate.

18. The dust collection assembly according to claim 14, wherein the dust bag movable plate is provided with a pull plate.

19. The dust collection assembly according to claim 14, wherein the dust bag fixed plate is provided with a sealing groove, the sealing groove is located on an outer periphery of the first through hole, and the sealing member is located in the sealing groove; and the sealing member is configured to extend into the second through hole and partially protrudes out of the second through hole when the dust bag movable plate slides to the first position relative to the dust bag fixed plate.

20. The dust collection assembly according to claim 10, wherein the sealing member is a sealing ring of a solid structure.21-22. (canceled)