Dust outlet apparatus, cleaning device, and dust collection system
Through the design of dust collecting piles, the driving components automatically open and close the dust outlet, which solves the problem of dust spilling in the cleaning equipment, realizes automatic collection of dust and garbage and normal use of the equipment, and improves the user experience.
Patent Information
- Application Number
- PCT/CN2024/114612
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-28
- Filing Date
- 2024-08-26
- Publication Date
- 2025-09-04
AI Technical Summary
When existing cleaning equipment removes internal dust and garbage, some of the dust and garbage are spilled and dirty, affecting the user experience and causing secondary pollution.
A dust collecting pile is designed, including a pile body and a driving assembly. The pile body is equipped with a housing cavity and an access port. The driving assembly has a driving part for automatically opening the dust outlet when the cleaning equipment is put in, and closing the dust outlet when the equipment is drawn out to prevent dust from falling.
It realizes automatic collection of dust and garbage, avoids dust spilling during manual removal, improves user experience and reduces secondary pollution.
Smart Images

Figure CN2024114612_04092025_PF_FP_ABST
Abstract
Description
Dust removal device, cleaning equipment and dust collection system
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] This disclosure claims priority to Chinese patent application number 202323618220.4, filed on December 28, 2023, entitled “A dust removal device, cleaning equipment and dust collection system”, the entire contents of which are incorporated herein by reference. Technical Field
[0003] The present disclosure belongs to the technical field of cleaning equipment, and particularly relates to a dust collection pile and a dust collection system. Background Art
[0004] After using a vacuum cleaner or other cleaning equipment, the dust and other debris inside it need to be removed. In the related art, vacuum cleaners and other cleaning equipment are manually dusted and emptied. During this process, some dust and other debris may spill and cause dirt, resulting in secondary pollution and affecting the user experience.
[0005] Summary of the Invention
[0006] The present disclosure provides a dust collection pile and a dust collection system, which aim to at least to some extent solve the technical problem that when removing dust and other garbage inside a cleaning device, some dust and other garbage is scattered and causes dirt, secondary pollution and affects the user experience.
[0007] In a first aspect of the present disclosure, a dust collecting pile is provided for receiving garbage collected by a cleaning device, the dust collecting cavity being provided with a dust outlet, and a dust collecting cover being rotatably connected to the dust outlet to open and close the dust outlet; it is characterized in that the dust collecting pile comprises: a pile body, provided with a accommodating cavity for accommodating at least part of the cleaning device, the inner wall of the accommodating cavity being provided with an access port for docking with the dust outlet; a drive assembly being provided on the inner wall of the accommodating cavity, the drive assembly having a drive part protruding from the inner wall of the accommodating cavity, the drive part and the access port being provided on the same side wall of the accommodating cavity, the drive part being able to act on the dust collecting cover located in the access port to drive the dust collecting cover to rotate toward the dust outlet to close the dust outlet.
[0008] The dust collecting pile provided by the present disclosure has a dust collecting cover that rotates toward the access port to open the dust outlet when the cleaning device is in the accommodating cavity. The opened dust outlet can be docked with the access port to automatically collect the dust and other garbage collected by the cleaning device into the dust collecting pile through the opened dust outlet, thereby avoiding the technical problem that when manually removing the internal dust and other garbage of the cleaning device, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience, and has good practicality; in the process of pulling the cleaning device out of the accommodating cavity, the driving part presses the dust collecting cover to drive the dust collecting cover to rotate toward the dust outlet to close the dust outlet, so that the cleaning device can be used normally.
[0009] In some embodiments, the drive assembly includes a drive block, which is connected to the inner wall of the accommodating cavity, at least part of the drive block protrudes from the inner wall of the accommodating cavity, and the portion of the drive block protruding from the inner wall of the accommodating cavity is configured as the drive part.
[0010] In some embodiments, a driving protrusion is provided on the side of the driving block facing the dust collecting cover, and the driving protrusion protrudes out of the plane where the access port is located to serve as a driving portion of the driving block.
[0011] In some embodiments, the driving protrusion is elastic so that the driving protrusion is in flexible contact with the dust collecting cover.
[0012] In some embodiments, the drive assembly further includes a second rolling member, which is rotatably connected to the drive protrusion, and the second rolling member can roll in contact with the dust collecting cover so that the first rolling member can roll in contact with the dust collecting cover, thereby making the movement and coordination of the cleaning device and the dust collecting pile smoother.
[0013] In some embodiments, the driving portion is provided with a first guide surface for cooperating with a second guide surface provided on the dust collecting cover, so as to facilitate the placement of the cleaning device in the accommodating cavity.
[0014] In some embodiments, the drive assembly includes a second rolling element, which is mounted on the inner wall of the accommodating cavity, and at least a portion of the second rolling element protrudes from the inner wall of the accommodating cavity to serve as a driving portion of the drive assembly.
[0015] In some embodiments, the second rolling element has elasticity so that the driving protrusion can flexibly contact the dust collecting cover.
[0016] In some embodiments, a second guide member is provided on the inner wall of the accommodating cavity. The second guide member is provided along the moving direction of the cleaning device so as to cooperate with the first guide member on the cleaning device.
[0017] In some embodiments, the second guide member includes a guide boss or a guide groove.
[0018] In some embodiments, a protrusion is further provided on the inner wall of the accommodating cavity, so that when the cleaning device is in the accommodating cavity, the protrusion acts on the opening and closing member for locking the dust collecting cover to unlock the opening and closing member and the dust collecting cover.
[0019] In the second aspect of the present disclosure, the present disclosure also provides a dust collection system, which includes a cleaning device and the above-mentioned dust collecting pile, the cleaning device can be detachably assembled in the accommodating cavity of the pile body, and the driving part can act on the dust collecting cover located in the access port to drive the dust collecting cover to rotate toward the dust outlet port to close the dust outlet port.
[0020] The dust collection system with the above-mentioned dust collecting pile has a pile body provided with a accommodating cavity for accommodating at least part of the cleaning equipment, so the cleaning equipment can be placed in the accommodating cavity, and when the cleaning equipment is in the accommodating cavity, the dust outlet is opened, and the opened dust outlet is connected to the access port; the dust and other garbage collected by the cleaning equipment are automatically collected into the dust collecting pile through the opened dust outlet, thereby avoiding the technical problem that part of the dust and other garbage is spilled and causes dirt when manually cleaning the internal dust and other garbage of the cleaning equipment, causing secondary pollution and affecting the user experience, and has good practicality; in the process of pulling the cleaning equipment out of the accommodating cavity, the driving part presses the dust collecting cover to drive the dust collecting cover to rotate in the direction of the dust outlet to close the dust outlet, so that the cleaning equipment can be used normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0022] FIG1 shows a partial schematic diagram of a cleaning device in one or more embodiments of the present disclosure;
[0023] FIG2 shows a schematic cross-sectional view of FIG1 ;
[0024] FIG3 shows a schematic structural diagram of a dust collecting pile shown in the first embodiment of the present disclosure;
[0025] FIG4 shows a partial cross-sectional schematic diagram of FIG3 ;
[0026] FIG5 shows a schematic diagram of the assembly of the drive assembly in FIG3 ;
[0027] FIG6 is a schematic diagram showing a state where the cleaning device is placed in a dust collecting pile;
[0028] FIG7 shows a schematic diagram of the cooperation between the drive assembly and the dust collecting cover in FIG6 ;
[0029] FIG8 is a schematic diagram showing a state where the cleaning device is inside a dust collecting pile;
[0030] FIG9 is a schematic diagram showing a state where the cleaning device is removed from the dust collecting pile;
[0031] FIG10 shows a schematic diagram of the assembly of the drive assembly having the first rolling element in the first embodiment;
[0032] FIG11 is a schematic diagram showing a state in which the cleaning device is placed in a dust collecting pile having a drive assembly as shown in FIG10 ;
[0033] FIG12 is a schematic diagram showing a state where the cleaning device is in a dust collecting pile having the drive assembly shown in FIG10 ;
[0034] FIG13 shows a schematic diagram of the cleaning device in a dust collecting pile having the drive assembly shown in FIG10 ;
[0035] FIG14 shows a schematic diagram of the assembly of the drive assembly of the second embodiment;
[0036] FIG15 is a schematic diagram showing a state where the cleaning device is placed in a dust collecting pile having a drive assembly as shown in FIG14 ;
[0037] FIG16 is a schematic diagram showing a state where the cleaning device is in a dust collecting pile having the drive assembly shown in FIG14 ;
[0038] FIG17 shows a schematic diagram of the cleaning device in a dust collecting pile having the drive assembly shown in FIG14 ;
[0039] FIG18 shows a schematic diagram of the assembly of the drive assembly of Example 3;
[0040] FIG19 is a schematic diagram showing a state where the cleaning device is placed in a dust collecting pile having a drive assembly as shown in FIG18 ;
[0041] FIG20 is a schematic diagram showing a state where the cleaning device is in a dust collecting pile having the drive assembly shown in FIG18 ;
[0042] FIG. 21 shows a schematic diagram of the state of the cleaning device from within the dust collecting pile having the drive assembly shown in FIG. 18 .
[0043] Explanation of the accompanying reference numerals: Cleaning device a; Dust bucket 1, dust collection chamber 11, dust outlet 12, first guide member 13; Dust collection cover 2, first buckle 21, second guide surface 22; Rotating shaft 3; Torsion spring 4; Opening and closing member 5, second buckle 51; Dust collecting pile b; Pile body 6, accommodating chamber 61, assembly opening 611, access opening 612, second guide member 613, protrusion 614; Driving assembly 7, driving member 71, driving portion 711, first guide surface 712, third guide surface 713, limiting portion 714, first mounting groove 715, elastic member 72, third guide member 73, first rolling member 74, driving block 75, driving protrusion 751, second mounting groove 752, second rolling member 76; Connecting member 8, driving cavity 81, guide hole 811, first connecting block 82, second connecting block 83, connecting screw 84; sealing member 9. DETAILED DESCRIPTION
[0044] In order to enable those skilled in the art to understand the present disclosure more clearly, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below in conjunction with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present disclosure.
[0045] With the rapid development of technology and users' demand for more intelligent cleaning products, traditional cleaning equipment is no longer able to meet user needs. For example, after use, cleaning equipment such as vacuum cleaners need to be cleaned of dust and other debris inside. In related technologies, vacuum cleaners and other cleaning equipment are manually dusted and emptied. During this process, some dust and other debris may spill, causing secondary pollution and affecting the user experience.
[0046] Based on the above technical problems, the present disclosure provides a dust collection pile and a dust collection system, which aims to at least to some extent solve the technical problem that when removing dust and other garbage inside the cleaning equipment, some dust and other garbage are scattered and cause dirt, causing secondary pollution and affecting the user experience.
[0047] In a first aspect of the present disclosure, a dust collecting pile is provided, which is used to receive dust and other garbage collected by cleaning equipment.
[0048] Figure 1 shows a partial schematic diagram of a cleaning device in one or more embodiments of the present disclosure, and Figure 2 shows a cross-sectional schematic diagram of Figure 1. Referring to Figures 1 and 2, the cleaning device a is provided with a dust collection chamber 11, which is provided with a dust outlet 12, to which a dust collection cover 2 is rotatably connected for opening and closing the dust outlet 12.
[0049] Based on the above-mentioned cleaning device a, the dust collecting pile provided in the present disclosure includes a pile body and a drive assembly. The pile body is provided with a accommodating cavity for accommodating at least part of the cleaning device a, and the inner wall of the accommodating cavity is provided with an access port for docking with the dust outlet 12. The driving assembly is arranged on the inner wall of the accommodating cavity 61, and the driving assembly has a driving part protruding from the inner wall of the accommodating cavity 61. The driving part and the access port are arranged on the same side wall of the accommodating cavity, wherein: when the cleaning device a is in the accommodating cavity, the dust collecting cover 2 rotates toward the access port to open the dust outlet 12. The opened dust outlet 12 can be docked with the access port to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile through the opened dust outlet 12, thereby avoiding the technical problem that when the internal dust and other garbage of the cleaning device a is manually removed, some dust and other garbage are spilled and cause dirt, causing secondary pollution and affecting the user experience, and has good practicality; in the process of pulling the cleaning device a out of the accommodating cavity 61, the driving part presses the dust collecting cover 2 to drive the dust collecting cover 2 to rotate in the direction of the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0050] Example 1:
[0051] FIG3 shows a schematic structural diagram of the dust collecting pile shown in the first embodiment of the present disclosure, and FIG4 shows a partial cross-sectional schematic diagram of FIG3 . In conjunction with FIG1 to FIG4 , the dust collecting pile b provided in the first embodiment includes a pile body 6 and a drive assembly 7. The pile body 6 is provided with a housing cavity 61 for accommodating at least part of the cleaning device a. The inner wall of the housing cavity 61 is provided with an access port 612 for docking with the dust outlet 12. The drive assembly 7 is provided on the inner wall of the housing cavity 61. The drive assembly 7 has a drive portion 711 that can move back and forth in the housing cavity 61. The drive portion 711 protrudes from the inner wall of the housing cavity 61, so that when the cleaning device a is in the housing cavity 61, the drive assembly 7 moves in the direction of the cleaning device a to drive the dust collecting cover 2 to rotate to open the dust outlet 12 so that the dust outlet 12 and the access port 612 are docked.
[0052] The dust collecting pile b provided by the present disclosure has a pile body 6 provided with a accommodating cavity 61 for accommodating at least part of the cleaning device a, so that the cleaning device a can be placed in the accommodating cavity 61. Since the driving assembly 7 has a driving part 711 that can move back and forth in the accommodating cavity 61, when the cleaning device a is in the accommodating cavity 61, the driving assembly 7 moves in the direction of the cleaning device a to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so that the dust outlet 12 and the access port 612 are docked, so that the dust and other garbage collected by the cleaning device a are automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually cleaning the dust and other garbage inside the cleaning device a, some dust and other garbage are spilled and cause dirt, causing secondary pollution and affecting the user experience. The dust collecting pile b has good practicality. In the process of pulling the cleaning device a out of the accommodating cavity 61, the driving part 711 presses the dust collecting cover 2 to drive the dust collecting cover 2 to rotate in the direction of the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0053] FIG6 is a schematic diagram illustrating a cleaning device placed in a dust collection pile, and FIG7 is a schematic diagram illustrating the coupling of the drive assembly and the dust collection cover in FIG6 . In conjunction with FIG1 , FIG2 , FIG6 , and FIG7 , the cleaning device a comprises a dust bucket 1 , a dust collection chamber 11 disposed within the dust bucket 1 , a dust outlet 12 disposed at the bottom of the dust bucket 1 , and a dust collection cover 2 having one end connected to the dust outlet 12 of the dust bucket 1 via a rotating shaft 3 . The rotating shaft 3 may be mounted with a torsion spring 4 to provide an opening torque for opening the dust collection cover 2 . The other end of the dust collection cover 2 may be provided with a first latch 21 . The outer circumference of the dust bucket 1 may also be provided with an opening and closing member 5 . One end of the opening and closing member 5 is connected to the outer circumference of the dust bucket 1 via a spring 2 . The other end of the opening and closing member 5 is provided with a second latch 51 . The second latch 51 is engageable with the first latch 21 to lock the dust collection cover 2 . Pressing one end of the opening and closing member 5 disengages the second latch 51 from the first latch 21 , thereby unlocking the two latches. In addition, a first guide member 13 is provided on the outer circumference of the dust bin 1 for cooperating with a second guide member 613 in the accommodating cavity 61, as described below. Furthermore, a second guide surface 22 is provided on the end of the dust cover 2 facing the opening and closing member 5 for cooperating with a first guide surface 712 on the driving portion 711, as described below.
[0054] In some embodiments, the accommodating cavity 61 on the pile body 6 of the present disclosure can be a complete cavity or an incomplete cavity (as shown in FIG3 ), so long as it can stably accommodate the cleaning device a. An assembly port 611 can be provided on the accommodating cavity 61, through which the cleaning device a is loaded into the accommodating cavity 61 of the pile body 6. In some embodiments, the cleaning device a can be loaded into the accommodating cavity 61 in a direction of travel from top to bottom. In other embodiments, the cleaning device a can also be pushed into the accommodating cavity 61 in a horizontal direction, or the cleaning device a can be loaded into the accommodating cavity 61 in an oblique direction. The present invention is not limited thereto.
[0055] In conjunction with Figures 3 and 4 , the inner wall of the accommodating cavity 61 can be provided with a second guide member 613. The second guide member 613 is arranged along the travel direction of the cleaning device a to cooperate with the first guide member 13 on the cleaning device a to provide guidance for the installation of the cleaning device a into the accommodating cavity 61. In a specific implementation, two second guide members 613 can be provided, and the two second guide members 613 can be arranged opposite each other on the inner wall of the accommodating cavity 61. Correspondingly, two first guide members 13 are also provided, which are arranged on the outer circumferential surface of the dust bin 1. When the cleaning device a is installed into the accommodating cavity 61 of the pile body 6 through the assembly opening 611, the second guide member 613 and the corresponding first guide member 13 cooperate with each other to ensure that the cleaning device a is assembled at the set position in the accommodating cavity 61.
[0056] 1 , 3 , and 4 , in some embodiments, the second guide member 613 may be a guide groove provided on the inner wall of the accommodating cavity 61, and correspondingly, the first guide member 13 may be a guide boss provided on the outer circumferential surface of the dust bucket 1. To facilitate easier alignment of the guide boss on the dust bucket 1 with the corresponding guide groove, the entrance of the guide groove may be expanded, for example, in the shape of a trumpet or a frustum, to facilitate the introduction of the guide boss into the corresponding guide groove.
[0057] In other embodiments, the second guide member 613 may be a guide boss provided on the inner wall of the accommodating cavity 61 , and correspondingly, the first guide member 13 may be a guide groove provided on the outer peripheral surface of the dust bin 1 , which is not limited here.
[0058] In conjunction with Figure 4, in some embodiments, a protrusion 614 is further provided on the inner wall of the accommodating cavity 61, so that when the cleaning device a is installed in place in the accommodating cavity 61, the protrusion 614 acts on the opening and closing member 5 that locks the dust collecting cover 2 to press one end of the opening and closing member 5 to separate the second buckle 51 from the first buckle 21, thereby completing the unlocking action of the two buckles.
[0059] The protrusion 614 and the assembly port 611 are respectively arranged at the two ends of the accommodating cavity 61. The protrusion 614 can be a protrusion integrally formed on the inner wall of the accommodating cavity 61. The protrusion can be block-shaped or strip-shaped, and can be set accordingly according to the shape of the opening and closing part 5. It will not be elaborated here.
[0060] In combination with Figures 3 and 4, in some embodiments, the access port 612 is arranged on the inner wall of the accommodating cavity 61 between the protrusion 614 and the plug interface, and the side thereof facing the opening and closing member 5 needs to be located on the periphery of the dust collecting cover 2 to facilitate the dust collecting cover 2 to be flipped toward the inside of the access port 612.
[0061] Figure 5 shows an assembly diagram of the drive component in Figure 3. Combined with Figure 4 and Figure 5, in some embodiments, the moving direction of the drive unit 711 intersects with the traveling direction of the cleaning device a in the accommodating cavity 61, so that when the cleaning device a is installed in place in the accommodating cavity 61, the drive unit 711 moves toward the end of the dust collecting cover 2 to drive the dust collecting cover 2 to rotate around the rotating shaft 3, so that the dust collecting cover 2 is flipped toward the access port 612, so as to open the dust outlet 12 of the cleaning device a, and dock the dust outlet 12 with the access port 612, so that the dust and other garbage collected by the cleaning device a can be automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually cleaning the internal dust and other garbage of the cleaning device a, some dust and other garbage will be spilled and cause dirt, causing secondary pollution and affecting the user experience.
[0062] In some embodiments, the moving direction of the driving unit 711 and the direction of travel of the cleaning device a in the accommodating chamber 61 are preferably arranged perpendicular to each other to facilitate the arrangement of the driving unit 711. In other embodiments, the angle between the moving direction of the driving unit 711 and the direction of travel of the cleaning device a in the accommodating chamber 61 can also be an obtuse angle or an acute angle, which is not limited here.
[0063] In conjunction with Figure 7, in some embodiments, the driving part 711 is provided with a first guide surface 712 for cooperating with the second guide surface 22 provided on the dust collecting cover 2. In the process of assembling the cleaning device a into the accommodating cavity 61, the driving part 711 can be smoothly moved in a direction away from the dust collecting cover 2 through the mutual cooperation between the first guide surface 712 of the driving part 711 and the second guide surface 22 on the dust collecting cover 2, so that the cleaning device a can be smoothly assembled into the accommodating cavity 61.
[0064] 7 , in some embodiments, the second guide surface 22 on the dust collecting cover 2 can be an arcuate surface, and the first guide surface 712 on the driving portion 711 can also be an arcuate surface. In other embodiments, the second guide surface 22 on the dust collecting cover 2 can also be an inclined surface, and the first guide surface 712 on the driving end of the driving portion 711 can also be an inclined surface; or, the second guide surface 22 on the dust collecting cover 2 can be a combination of an inclined surface or an arcuate surface, and correspondingly, the first guide surface 712 on the driving end of the driving portion 711 can also be a combination of an inclined surface or an arcuate surface, without limitation herein.
[0065] In combination with Figure 7, in some embodiments, a third guide surface 713 is further provided on the driving part 711. The third guide surface 713 and the first guide surface 712 can be symmetrically arranged in the moving direction of the driving part 711. The third guide surface 713 cooperates with the outer surface of the dust collecting cover 2 to allow the cleaning device a to be smoothly removed from the accommodating cavity 61.
[0066] In combination with Figures 4, 5 and 7, in some embodiments, the dust collecting pile b may further include a connecting member 8, which is connected to the inner wall of the accommodating cavity 61, and the connecting member 8 is provided with a driving cavity 81, and the driving cavity 81 is provided with a guide hole 811 communicated with the accommodating cavity 61, and the driving component 7 is arranged in the driving cavity 81, and the driving part 711 of the driving component 7 can pass through the guide hole 811 and enter the accommodating cavity 61 to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so that the dust outlet 12 and the access port 612 are docked, so that the dust and other garbage collected by the cleaning device a can be automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually cleaning the internal dust and other garbage of the cleaning device a, some dust and other garbage are spilled and cause dirt, causing secondary pollution and affecting the user experience.
[0067] In combination with Figures 4, 5 and 7, in some embodiments, the driving assembly 7 may include a driving member 71 and an elastic member 72, the driving member 71 having a first end and a second end relative to each other, the first end of the driving member 71 being configured as a driving portion 711, and an elastic member 72 being arranged between the second end of the driving member 71 and the driving cavity 81. When the cleaning device a is loaded into the accommodating cavity 61, the dust collecting cover 2 of the cleaning device a contacts the driving part 711 of the driving member 71 and compresses the elastic member 72. When the cleaning device a is assembled in the accommodating cavity 61, the compressed elastic member 72 is reset to drive the driving member 71 to move toward the dust collecting cover 2, so as to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so that the dust outlet 12 and the access port 612 are docked, so that the dust and other garbage collected by the cleaning device a are automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when the dust and other garbage inside the cleaning device a are manually cleaned, some dust and other garbage are spilled and cause dirt, causing secondary pollution and affecting the user experience.
[0068] In combination with Figures 4, 5 and 7, in some embodiments, the driving assembly 7 also includes a third guide member 73, which is arranged in the driving cavity 81. The third guide member 73 and the moving direction of the driving part 711 are arranged in parallel. There is a distance between the third guide member 73 and the second end of the driving member 71 for the reciprocating movement of the driving member 71. The third guide member 73 and the elastic member 72 cooperate to limit the deformation direction of the elastic member 72 so that the elastic member 72 is deformed and reset in the set direction to make the moving direction of the driving member 71 smooth.
[0069] 4, 5, and 7, in some embodiments, the third guide member 73 may include a guide post disposed within the drive cavity 81. The guide post may be cylindrical and disposed on a side wall of the drive cavity 81 facing the guide hole 811. In other embodiments, the third guide member 73 may also include a limiting hole disposed within the drive cavity 81. The limiting hole is disposed on a side wall of the drive cavity 81 facing the guide hole 811.
[0070] 4, 5, and 7, in some embodiments, the number of third guide members 73 may be one. When the number of third guide members 73 is one, the third guide member 73 and the guide hole 811 are co-centrically disposed. In other embodiments, the number of third guide members 73 may be two or more. When the number of third guide members 73 is two or more, the two or more third guide members 73 may be spaced apart around the center of the guide hole 811 to allow the elastic member 72 to deform and return to its original position in a predetermined direction.
[0071] 4, 5, and 7, in some embodiments, at least a portion of the periphery of the driving member 71 is blocked by the sidewall of the guide hole 811. That is, the driving member 71 has a stopper 714 that prevents it from passing through the guide hole 811, thereby limiting the range of movement of the driving member 71 and, accordingly, allowing the dust cover 2 to rotate to a set angle.
[0072] FIG10 shows an assembly diagram of a drive assembly having a first rolling member in Example 1. In conjunction with FIG10 , in some embodiments, the drive assembly 7 may further include a first rolling member 74, which is rotatably connected to one end of the drive portion 711 facing the dust collecting cover 2, and the first rolling member 74 may be in rolling contact with the dust collecting cover 2. In conjunction with FIG11 to FIG13 , when the cleaning device a is assembled into the accommodating cavity 61 or when the cleaning device a is withdrawn from the accommodating cavity 61, the dust collecting cover 2 is in rolling contact with the first rolling member 74 on the drive portion 711 to reduce the friction between the dust collecting cover 2 and the drive portion 711, so as to make the movement and coordination of the cleaning device a and the dust collecting pile b smoother.
[0073] 10 , the first rolling member can be arranged between the first guide surface 712 and the third guide surface 713 of the driving portion 711 so that the cleaning device a can be smoothly assembled into or removed from the accommodating cavity 61 while the dust collecting cover 2 is in rolling contact with the first rolling member 74, thereby reducing the friction between the dust collecting cover 2 and the driving portion 711, so that the movement and coordination of the cleaning device a and the dust collecting pile b are smoother.
[0074] 10 , in a specific implementation, a first mounting groove 715 can be opened at the end of the driving portion 711 facing the dust collecting cover 2, the opening of the first mounting groove 715 faces the dust collecting cover 2, the first rolling member 74 can be a roller, and the first rolling member 74 is installed in the first mounting groove 715 through a rotating shaft, and the first rolling member 74 has a contact portion protruding from the first mounting groove 715, and the contact portion can contact the dust collecting cover 2 to achieve rolling friction between the two.
[0075] In some embodiments, the circumference of the first rolling member 74 may be elastic so that the first rolling member 74 is in flexible contact with the dust collecting cover 2. In other embodiments, the circumference of the first rolling member 74 may also be made of a hard material, which is not limited here.
[0076] In conjunction with Figure 5, in some embodiments, the dust collecting pile b may further include a seal 9, which is connected to the side of the connecting member 8 where the guide hole 811 is provided. The seal 9 surrounds the guide hole 811, so that the assembly cavity can form an enclosed space to prevent dust and other garbage from entering the assembly cavity, so that the drive component 7 can run smoothly.
[0077] In specific implementation, the sealing member 9 can be an elastic membrane, the driving member 71 can be rod-shaped, the elastic member 72 can be a spring, the two ends of the elastic member 72 can be respectively connected to the second end of the driving member 71 and the side wall of the driving cavity 81 facing the guide hole 811, and the third guide member 73 can be columnar, and the end of the elastic member 72 connected to the driving cavity 81 is mounted on the third guide member 73.
[0078] 4 , 5 and 7 , in some embodiments, the connecting member 8 includes two oppositely arranged and connected connecting blocks, at least one of the two connecting blocks is connected to the inner wall of the access port 612 , and grooves are provided on opposite sides of the two connecting blocks to form the above-mentioned driving cavity 81 .
[0079] In combination with Figures 4, 5 and 7, in a specific implementation, the two connecting blocks can be defined as a first connecting block 82 and a second connecting block 83. The first connecting block 82 can be connected to the inner wall of the access port 612 in an integrally formed manner. The side of the first connecting block 82 facing away from the drive cavity 81 can be located in the same plane as the inlet side of the access port 612 to facilitate the assembly of the cleaning equipment a in the accommodating cavity 61. The second connecting block 83 is arranged in the access port 612, and can be detachably assembled with the first connecting block 82 by a plurality of connecting screws 84 to facilitate the assembly of the drive assembly 7 in the drive cavity 81, and can seal the elastic member 72 of the drive assembly 7 to prevent the recovery of the elastic member 72 from being interfered with by other components.
[0080] In other embodiments, the assembly cavity can also be on the side wall of the accommodating cavity 61, and the assembly cavity is located on the outside of the access port 612. It is only necessary to ensure that when the cleaning device a is assembled in the accommodating cavity 61, the driving part 711 of the driving assembly 7 is facing the part of the dust collecting cover 2 above the rotating shaft.
[0081] Based on the above-mentioned dust collecting pile b, the present disclosure also provides a dust collection system, which includes a cleaning device a and the above-mentioned dust collecting pile b. The cleaning device a can be detachably assembled in the accommodating cavity 61 of the pile body 6. When the cleaning device a is in the accommodating cavity 61, the driving assembly 7 moves toward the direction of the cleaning device a to drive the dust collecting cover 2 to rotate to open the dust outlet 12 so that the dust outlet 12 and the access port 612 are docked.
[0082] The dust collection system with the above-mentioned dust collecting pile b, since the pile body 6 of the dust collecting pile b is provided with a accommodating cavity 61 for accommodating at least part of the cleaning device a, the cleaning device a can be placed in the accommodating cavity 61, and since the driving component 7 has a driving part 711 that can move back and forth in the accommodating cavity 61, when the cleaning device a is in the accommodating cavity 61, the driving component 7 moves in the direction of the cleaning device a to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so that the dust outlet 12 and the access port 612 are docked, so that the dust and other garbage collected by the cleaning device a can be automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually cleaning the internal dust and other garbage of the cleaning device a, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience, and has good practicality.
[0083] In some embodiments, the dust collecting cover 2 of the cleaning device a is further provided with a magnet that cooperates with the drive assembly 7. The magnet can be integrated on the dust collecting cover 2, and the surface of the magnet and the dust collecting cover 2 are located in the same plane. When the cleaning device a is assembled in the accommodating cavity 61, the magnet can generate magnetism with the drive part 711 of the drive assembly 7 to attract the drive part 71 to move toward the dust collecting cover 2, so as to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so as to dock the dust outlet 12 with the access port 612, so as to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually removing the dust and other garbage inside the cleaning device a, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience.
[0084] In some embodiments, there is an air induction member in the pile body 6. The activated air induction member can generate negative pressure inside the pile body 6 and can also provide a certain driving force for the rotation of the dust collecting cover 2 so that the dust collecting cover 2 can be opened quickly.
[0085] In some embodiments, the cleaning device a may be a vacuum cleaner. Of course, it may also be a drug sweeping robot, a mopping machine, etc., which is not limited here.
[0086] The working process of the cleaning system shown in this disclosure is:
[0087] Figure 8 is a schematic diagram showing the state of the cleaning device in the dust collecting pile. In conjunction with Figure 8, when the cleaning device a is assembled in the accommodating cavity 61, the dust collecting cover 2 on the dust bucket 1 of the cleaning device a is just aligned with the access port 612 on the dust collecting pile b; the driving portion 711 of the driving assembly 7 is facing the dust collecting cover 2, the protrusion 614 presses against the spring-loaded end of the opening and closing member 5, the second snap 51 separates from the first snap 21, and the second snap 51 locking the dust collecting cover 2 is opened; the end of the dust collecting cover 2 of the dust bucket 1 is pressed by the driving portion 711 of the driving assembly 7, and under the lever force applied by the torsion spring 4 and the driving portion 711 of the driving assembly 7, it rotates toward the access port 612 side to open; under the action of the fan in the pile body 6, the garbage in the dust bucket 1 of the cleaning device a can be sucked into the dust collecting bag through the dust collecting channel from the access port 612, realizing automatic dust collection;
[0088] Figure 9 shows a schematic diagram of the cleaning device being removed from the dust collecting pile. When the user uses cleaning device a again, they can directly pick up cleaning device a from the dust collecting pile b. Cleaning device a moves toward the outside of the accommodating cavity 61 along the direction of the second guide member 613. The opening and closing member 5 of cleaning device a separates from the protrusion 614 on the accommodating cavity 61 and returns to its initial state. The dust collecting cover 2 automatically closes under the pressure of the driving portion 711 of the driving assembly 7. When the first buckle 21 of the dust collecting cover 2 reaches the engaging position of the second buckle 51 of the opening and closing member 5, the second buckle 51 of the opening and closing member 5 engages with the first buckle 21 of the dust collecting cover 2, and the opening and closing member 5 locks the dust collecting cover 2, thereby sealing the dust bin 1 and making it easier for the user to use cleaning device a.
[0089] The dust collection system provided by the present disclosure can automatically open the dust collection cover 2 when the user puts the cleaning device a into the dust collection pile b, and automatically close the dust collection cover 2 when the cleaning device a is used again. The user does not need to manually close the dust collection cover 2, which simplifies the operation. During the entire process, the driving part 711 of the driving component 7 always remains on the dust collection cover 2 and moves smoothly. The driving component 7 can be produced and assembled in a modular manner, and has the characteristics of compact, simple, firm structure, high stability and long service life, which can greatly improve the overall quality of the product and improve the user experience.
[0090] Example 2:
[0091] The main difference between the dust collecting pile shown in the second embodiment and the dust collecting pile shown in the first embodiment is that the drive assembly is set in a different manner, and the specific settings are as follows:
[0092] Figure 14 shows an assembly diagram of the drive component of Example 2. In conjunction with Figure 14, the drive component 7 includes a drive block 75, which is connected to the inner wall of the accommodating cavity 61. At least part of the drive block 75 protrudes from the inner wall of the accommodating cavity 61, and the part of the drive block 75 protruding from the inner wall of the accommodating cavity 61 is configured as a drive part.
[0093] Figure 15 is a schematic diagram showing the state of the cleaning device when it is placed in the dust collecting pile with the drive assembly shown in Figure 14, Figure 16 is a schematic diagram showing the state of the cleaning device in the dust collecting pile with the drive assembly shown in Figure 14, and Figure 17 is a schematic diagram showing the state of the cleaning device outside the dust collecting pile with the drive assembly shown in Figure 14. In conjunction with Figures 15 to 17, the dust collecting pile improved by the present invention, when the cleaning device a is in the accommodating cavity 61, the dust collecting cover 2 rotates toward the access port 612 to open the dust outlet 12, and the opened dust outlet 12 can be docked with the access port 612 to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually removing the internal dust and other garbage of the cleaning device a, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience, and has good practicality; in the process of pulling the cleaning device a out of the accommodating cavity 61, the driving part of the driving block 75 presses the dust collecting cover 2 to drive the dust collecting cover 2 to rotate toward the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0094] In conjunction with Figure 14, in some embodiments, the driving block 75 can be arranged on the inner wall of the top of the access port 612. The driving block 75 can be connected to the inner wall of the access port 612 by integral molding, welding, etc. The plane where the driving block 75 and the access port 612 are located can be located in the same plane. The driving block 75 is provided with a driving protrusion 751 on the side facing the dust collecting cover 2. The driving protrusion 751 protrudes from the plane where the access port 612 is located to serve as the driving part of the driving block 75.
[0095] 14 , as in the first embodiment, a first guide surface 712 and a third guide surface 713 are also provided on the driving protrusion 751 . For details, please refer to the description of the first embodiment, which will not be repeated here.
[0096] In some embodiments, the driving portion of the driving block 75 (i.e., the driving protrusion 751) can be elastic, and when the cleaning device a is assembled into the accommodating cavity 61 or the cleaning device a is removed from the accommodating cavity 61, the driving portion of the driving block 75 is in flexible contact with the dust collecting cover 2. In addition, during the process of assembling the cleaning device a into the accommodating cavity 61, the elastic driving part is compressed and moves in the direction away from the dust collecting cover 2; when the cleaning device a is assembled in place, the compressed elastic driving part 711 is reset to move in the direction of the dust collecting cover 2 to drive the dust collecting cover 2 of the cleaning device a to rotate, so as to open the dust outlet 12 of the cleaning device a, so that the dust outlet 12 and the access port 612 are docked, so that the dust and other garbage collected by the cleaning device a can be automatically collected into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually removing the internal dust and other garbage of the cleaning device a, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience. During the process of pulling the cleaning device a out of the accommodating cavity 61, the driving part compresses the dust collecting cover 2 to drive the dust collecting cover 2 to rotate in the direction of the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0097] In other embodiments, the driving portion 711 may also be non-elastic, for example, made of a hard material, which is not limited here.
[0098] It should be noted that, when the cleaning device a is in the accommodating cavity 61, the inner wall protrusion 614 of the accommodating cavity 61 acts on the opening and closing part 5 that locks the dust collecting cover 2 to press one end of the opening and closing part 5, so that the second buckle 51 is separated from the first buckle 21, completing the unlocking action of the two buckles. At the same time, under the action of the torsion spring 4 and / or the fan in the pile body 6, the dust collecting cover 2 rotates toward the access port 612 to open the dust outlet 12. The opened dust outlet 12 can be docked with the access port 612 to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile b through the opened dust outlet 12.
[0099] Based on the above-mentioned dust collecting pile b, the present disclosure further provides a dust collecting system, which includes a cleaning device a and the above-mentioned dust collecting pile b. The cleaning device a is detachably assembled in the accommodating cavity 61 of the pile body 6.
[0100] The dust collecting system with the above-mentioned dust collecting pile b, when the cleaning device a is in the accommodating cavity 61, the dust collecting cover 2 rotates toward the access port 612 to open the dust outlet 12, and the opened dust outlet 12 can be docked with the access port 612 to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when the internal dust and other garbage of the cleaning device a is manually removed, some dust and other garbage will be spilled and cause dirt, causing secondary pollution and affecting the user experience, and has good practicality; in the process of pulling the cleaning device a out of the accommodating cavity 61, the driving part on the driving block 75 presses the dust collecting cover 2 to drive the dust collecting cover 2 to rotate toward the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0101] Example 3:
[0102] FIG18 shows a schematic assembly diagram of the drive assembly of Example 3. In conjunction with FIG14 and FIG18 , the main difference between the dust collecting pile shown in Example 3 and the dust collecting pile shown in Example 2 is that the drive assembly 7 further includes a second rolling member 76, which is rotatably connected to the drive protrusion 75 and can roll with the dust collecting cover 2. During the process of assembling the cleaning device a into the accommodating chamber 61 or removing the cleaning device a from the accommodating chamber 61, the dust collecting cover 2 rolls with the second rolling member 76 on the drive protrusion 75 to reduce the friction between the dust collecting cover 2 and the drive protrusion 75, thereby making the movement and coordination of the cleaning device a and the dust collecting pile b smoother.
[0103] 18 , the second rolling member 76 can be arranged between the first guide surface 712 and the third guide surface 713 of the driving protrusion 75 so that the cleaning device a can be smoothly assembled into or removed from the accommodating cavity 61 while the dust collecting cover 2 can be in rolling contact with the second rolling member 76 on the driving protrusion 75, thereby reducing the friction between the dust collecting cover 2 and the driving protrusion, so that the movement and coordination of the cleaning device a and the dust collecting pile b can be smoother.
[0104] 18 , in specific implementation, a second mounting groove 752 may be opened at the end of the driving protrusion 751 facing the dust collecting cover 2, with the opening of the second mounting groove 752 facing the dust collecting cover 2. The second rolling member 76 may be a roller, and the second rolling member 76 is mounted in the second mounting groove 752 via a rotating shaft. The second rolling member 76 has a contact portion protruding from the second mounting groove, and the contact portion may contact the dust collecting cover 2 to achieve rolling friction between the two.
[0105] In some embodiments, the circumference of the second rolling member 76 may be elastic so that the second rolling member 76 is in flexible contact with the dust collecting cover 2. In other embodiments, the circumference of the second rolling member 76 may also be made of a hard material, which is not limited here.
[0106] Based on the above-mentioned dust collecting pile b, the present disclosure further provides a dust collecting system, which includes a cleaning device a and the above-mentioned dust collecting pile b. The cleaning device a is detachably assembled in the accommodating cavity 61 of the pile body 6.
[0107] In conjunction with Figures 19 to 21, the dust collection system has the above-mentioned dust collecting pile b. When the cleaning device a is in the accommodating cavity 61, the dust collecting cover 2 rotates toward the access port 612 to open the dust outlet 12. The opened dust outlet 12 can be docked with the access port 612 to automatically collect the dust and other garbage collected by the cleaning device a into the dust collecting pile b through the opened dust outlet 12, thereby avoiding the technical problem that when manually removing the internal dust and other garbage of the cleaning device a, some dust and other garbage will spill and cause dirt, causing secondary pollution and affecting the user experience. The system has good practicality. In the process of pulling the cleaning device a out of the accommodating cavity 61, the cooperation of the driving protrusion 75 and the second rolling member 76 can compress the dust collecting cover 2, and can drive the dust collecting cover 2 to rotate toward the dust outlet 12 to close the dust outlet 12, so that the cleaning device a can be used normally.
[0108] It should be noted that, in other embodiments, the second rolling member 76 can also be directly installed on the inner wall of the accommodating cavity 61, and at least part of the second rolling member 76 protrudes from the inner wall of the accommodating cavity 61 to serve as the driving part of the driving assembly 7. When the cleaning device a is assembled into the accommodating cavity 61 or the cleaning device a is removed from the accommodating cavity 61, the dust collecting cover 2 is in rolling contact with the second rolling member 76 to reduce the friction between the dust collecting cover 2 and the second rolling member 76, so that the movement and coordination of the cleaning device a and the dust collecting pile b are smoother, which will not be elaborated here.
[0109] In the present disclosure, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature includes the first feature being directly below and obliquely below the second feature, or simply indicates that the first feature is lower in level than the second feature.
[0110] In the description of the present disclosure, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise" and "counterclockwise" indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present disclosure.
[0111] In this disclosure, unless otherwise expressly specified or limited, the terms "connect," "fix," etc. should be understood broadly. For example, "fix" can mean a fixed connection, a detachable connection, or an integral connection; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean internal communication between two elements or an interaction between two elements. Those skilled in the art will understand the specific meanings of the above terms in this disclosure based on specific circumstances.
[0112] In addition, the terms "first," "second," and so on, used in this disclosure are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this disclosure, "plurality" means two or more, unless otherwise specifically defined.
[0113] Although the embodiments of the present disclosure have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations may be made to the embodiments without departing from the principles and spirit of the present disclosure, the scope of which is defined by the claims and their equivalents.
Claims
1. A dust collecting pile for receiving garbage collected by a cleaning device, wherein the cleaning device is provided with a dust collecting cavity, the dust collecting cavity is provided with a dust outlet, and a dust collecting cover is rotatably connected to the dust outlet to open and close the dust outlet; wherein, The dust collecting pile comprises: The pile body is provided with a receiving cavity for receiving at least part of the cleaning device, and the inner wall of the receiving cavity is provided with an access port for docking with the dust outlet; A drive assembly is arranged on the inner wall of the accommodating cavity, and the drive assembly has a drive part protruding from the inner wall of the accommodating cavity. The drive part and the access port are arranged on the same side wall of the accommodating cavity. The drive part can act on the dust collecting cover located in the access port to drive the dust collecting cover to rotate toward the dust outlet to close the dust outlet.
2. The dust collecting pile according to claim 1, wherein: The driving assembly includes a driving block connected to the inner wall of the accommodating cavity. At least part of the driving block protrudes from the inner wall of the accommodating cavity. The part of the driving block protruding from the inner wall of the accommodating cavity is configured as the driving part.
3. The dust collecting pile according to claim 2, wherein: The side of the driving block facing the dust collecting cover is provided with a driving protrusion, and the driving protrusion protrudes from the plane where the access port is located to serve as a driving part of the driving block.
4. The dust collecting pile according to claim 3, wherein: The driving protrusion is elastic.
5. The dust collecting pile according to claim 3, wherein: The driving assembly further includes a second rolling member, which is rotatably connected to the driving protrusion and can be in rolling contact with the dust collecting cover.
6. The dust collecting pile according to any one of claims 3 to 5, wherein: The driving part is provided with a first guide surface for matching with a second guide surface provided on the dust collecting cover.
7. The dust collecting pile according to claim 1, wherein: The driving assembly includes a second rolling member, which is mounted on the inner wall of the accommodating cavity. At least a portion of the second rolling member protrudes from the inner wall of the accommodating cavity to serve as the driving portion of the driving assembly.
8. The dust collecting pile according to claim 5 or 7, wherein: The second rolling element is elastic.
9. The dust collecting pile according to any one of claims 1 to 5 and 7, wherein: A second guide member is provided on the inner wall of the accommodating cavity. The second guide member is provided along the moving direction of the cleaning device so as to cooperate with the first guide member on the cleaning device.
10. The dust collecting pile according to claim 9, wherein: The second guide member includes a guide boss or a guide groove.
11. The dust collecting pile according to any one of claims 1 to 5 and 7, wherein: A protrusion is further provided on the inner wall of the accommodating cavity, so that when the cleaning device is in the accommodating cavity, the protrusion acts on the opening and closing member for locking the dust collecting cover to unlock the opening and closing member and the dust collecting cover.
12. A dust collection system, comprising a cleaning device and the dust collecting pile according to any one of claims 1 to 11, wherein the cleaning device can be detachably assembled in the accommodating cavity of the pile body, and the driving part can act on the dust collecting cover located in the access port to drive the dust collecting cover to rotate toward the dust outlet to close the dust outlet.