Dust cup structure, cleaning equipment and cleaning system

By incorporating a coordinated translation mechanism between the drive unit and the cover in the dust cup structure, the problem of the dust cup cover being easily opened under heavy objects or impacts is solved, achieving higher reliability and ease of operation.

CN223731322UActive Publication Date: 2025-12-30ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202423322021.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The dust cup cover in the related technology is easily opened when there are heavy objects inside the dust cup or when it is subjected to impact, resulting in low reliability.

Method used

By setting the drive unit to rotate under the action of external force, the first cover body is moved to open the dust discharge port. The opening and closing of the dust discharge port is controlled by the coordinated movement of the first cover body and the second cover body. Combined with the elastic reset component, the reliability of the cover body is ensured.

Benefits of technology

The reliability of the dust cup cover has been improved, preventing accidental opening under heavy objects or impacts, and enhancing the opening and closing efficiency and ease of operation of the dust outlet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a dust cup structure, cleaning equipment and a cleaning system, the dust cup structure comprises a dust cup and a cup cover assembly, the dust cup is provided with a dust discharge port, and the dust discharge port is located at one end of the dust cup. The cup cover assembly is arranged at the end, provided with the dust discharging opening, of the dust cup and comprises a first cover body and a first rod piece, the first rod piece is provided with a first connecting part, a second connecting part and a driving part, the first connecting part is rotationally connected with the first cover body, the second connecting part is rotationally connected with the dust cup, and the driving part rotates under the action of external force. And the first connecting part drives the first cover body to translate towards the outer side of the dust cup so as to open the dust discharge port. The cup cover assembly in the dust cup structure is high in reliability.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of environmental cleaning equipment, and in particular to a dust cup structure, a cleaning device and a cleaning system. BACKGROUND

[0002] The dust collector has good ground cleaning efficiency. After the dust collector performs a dust collection operation on the ground, a lot of dust and impurities will be deposited inside the dust cup of the dust collector. If not promptly emptied, bacteria can easily breed. In the related art, the dust collector is provided with a self-dust collecting base station. The dust collector is placed on the self-dust collecting base station after use, the dust cup cover of the dust collector is opened, and the self-dust collecting base station collects the dust in the dust cup into a dust bag. Among them, one end of the dust cup cover is hinged to the dust cup, and the other end of the dust cup cover is clamped to the dust cup. After the dust cup cover and the dust cup are disengaged from the clamping, the dust cup cover is flipped towards the outside of the dust cup, thereby opening the dust cup to discharge the dust and impurities.

[0003] However, the dust cup cover in the related art is easily opened by a heavy object in the dust cup, thereby causing the reliability of the dust cup cover to be relatively low. CONTENT OF THE UTILITY MODEL

[0004] The dust cup structure, the cleaning device and the cleaning system provided by the embodiments of the present application solve the problems in the related art.

[0005] In a first aspect, the embodiments of the present application provide a dust cup structure, which comprises:

[0006] a dust cup, the dust cup having a dust discharge port, the dust discharge port being located at one end of the dust cup;

[0007] a cup cover assembly, the cup cover assembly being arranged at the end of the dust cup having the dust discharge port, the cup cover assembly comprising a first cover body and a first rod member, the first rod member having a first connecting portion, a second connecting portion and a driving portion, the first connecting portion being rotationally connected to the first cover body, the second connecting portion being rotationally connected to the dust cup, and the driving portion being configured to, under the action of an external force, rotate the first connecting portion to drive the first cover body to translate towards the outside of the dust cup, so as to open the dust discharge port.

[0008] The dust cup structure provided by the present application is configured to discharge dust and impurities outside the dust cup when cleaning the dust cup by arranging the dust discharge port, to close or open the dust discharge port by arranging the first cover body, to rotationally connect the first rod member and the first cover body by arranging the first connecting portion, to rotationally connect the first rod member and the dust cup by arranging the second connecting portion, and to apply an external force to rotate the first rod member relative to the dust cup by arranging the driving portion, so as to drive the first rod member to move together with the first cover body, thereby opening the dust discharge port by the first cover body. In addition, the first cover body performs a translational movement relative to the dust cup. When the gravity of the dust and impurities in the dust cup acts on the first cover body, the first cover body will not be opened, thereby improving the reliability of the cup cover assembly.

[0009] In a possible implementation, the cup cover assembly further comprises a second cover body, the first cover body and the second cover body are located on two sides of the dust discharging port, and at least one of the first cover body and the second cover body is translated away from the other to open the dust discharging port.

[0010] The first cover body and the second cover body are combined to jointly close the dust discharging port.

[0011] In this way, the opening and closing state of the dust discharging port can be jointly controlled by the first cover body and the second cover body, and when the first cover body and the second cover body are simultaneously translated, the opening time and the closing time of the dust discharging port can be shortened, thereby improving the opening and closing efficiency of the dust discharging port. Moreover, the first cover body and the second cover body are arranged on two sides of the dust discharging port, and after the dust discharging port is completely opened, the first cover body and the second cover body will not move out of the dust cup structure, so that when the dust cup structure is installed on the cleaning base station, the cleaning base station will not interfere with the first cover body or the second cover body to cause them to be unable to open.

[0012] In a possible implementation, the cup cover assembly further comprises a second rod member, the first rod member further comprises a first engaging portion, and the second rod member comprises a third connecting portion, a fourth connecting portion and a second engaging portion, the third connecting portion is rotationally connected with the second cover body, and the fourth connecting portion is rotationally connected with the dust cup.

[0013] The first engaging portion is engaged with the second engaging portion.

[0014] In this way, when the driving portion is rotated under the action of an external force, the first cover body is translated by the first rod member towards the outside of the dust cup, at the same time, the second engaging portion is rotated by the first engaging portion, thereby driving the second rod member to rotate relative to the dust cup, and thereby causing the second cover body to be translated by the second rod member towards the outside of the dust cup, so that the first cover body and the second cover body are synchronously translated. When neither the first cover body nor the second cover body covers the dust discharging port, the dust discharging port can be completely opened to facilitate the dust and impurities to be discharged through the dust discharging port.

[0015] In a possible implementation, the translation direction of the first cover body and the translation direction of the second cover body are parallel to a reference plane.

[0016] The reference plane is perpendicular to the height direction of the dust cup.

[0017] In this way, the first cover body and the second cover body can perform a translation movement in the same plane, and thereby the first cover body and the second cover body can be reliably combined together after moving close to each other, thereby completely closing the dust discharging port.

[0018] In a possible implementation, the translation direction of the first cover body and the translation direction of the second cover body are consistent.

[0019] In this way, the translation direction of the first cover body and the translation direction of the second cover body are consistent, so that when the first cover body and the second cover body are translated towards each other, the first cover body and the second cover body can be combined, thereby jointly closing the dust discharge port, and when the first cover body and the second cover body are translated away from each other, the first cover body and the second cover body can open the dust discharge port.

[0020] In a possible implementation, at least one of the first cover body and the second cover body is in sliding connection with the dust cup.

[0021] In this way, after the first cover body or the second cover body is in sliding connection with the dust cup, the translation direction of the first cover body or the second cover body can be limited, thereby ensuring that the translation direction of the first cover body or the second cover body is consistent each time.

[0022] In a possible implementation, the dust cup has at least one sliding part, and at least one of the first cover body and the second cover body is in sliding connection with the sliding part, and the extension direction of the sliding part is consistent with the translation direction of the first cover body.

[0023] In this way, the first cover body and the second cover body can be in sliding connection with the dust cup, thereby ensuring that the translation direction of the first cover body and the second cover body is consistent each time, and thereby enabling the first cover body and the second cover body to smoothly open and close the dust discharge port, thereby improving the reliability of the dust cup assembly.

[0024] In a possible implementation, the sliding part includes a first sliding part and a second sliding part, the first sliding part and the second sliding part are located on both sides of the translation direction of the first cover body, and both sides of the translation direction of the first cover body are in sliding connection with the first sliding part and the second sliding part respectively, and both sides of the translation direction of the second cover body are in sliding connection with the first sliding part and the second sliding part respectively.

[0025] In this way, both sides of the translation direction of the first cover body can be in sliding connection with the dust cup, and both sides of the translation direction of the second cover body can be in sliding connection with the dust cup, thereby ensuring that the translation direction of the first cover body and the translation direction of the second cover body are consistent.

[0026] In a possible implementation, the cup cover assembly further includes a first elastic return member, one end of the elastic force direction of the first elastic return member is connected with the dust cup, and the other end of the elastic force direction of the first elastic return member is configured to elastically abut against the first cover body to drive the first cover body to translate towards the inner side of the dust cup.

[0027] In this way, when the external force acting on the driving part disappears, for example, after the driving part is manually released, or after the dust cup structure is detached from the cleaning base station, the first elastic return member can provide elastic force for the first cover body, thereby driving the first cover body to translate towards the inner side of the dust cup, so that the first cover body closes the dust discharge port.

[0028] In a possible implementation, the cup cover assembly further comprises a second elastic reset member, one end of an elastic force direction of the second elastic reset member is connected with the dust cup, and the other end of the elastic force direction of the second elastic reset member is configured to elastically abut against the second cover body to drive the second cover body to translate towards the inner side of the dust cup.

[0029] In this way, when the external force acting on the driving part disappears, the second elastic reset member can provide the second cover body with an elastic force, and then drive the second cover body to translate towards the inner side of the dust cup, so as to close the dust discharging port.

[0030] In a possible implementation, the dust cup comprises a cup body and a cup cover fixing member, the cup cover fixing member is connected to one end of the cup body, the first rod member and the second rod member are both connected with the cup cover fixing member, and the dust discharging port is located at the cup cover fixing member.

[0031] In this way, it is beneficial to connect the cup body and the cup cover fixing member after the cup body and the cup cover fixing member are respectively machined to form the dust cup, and it is beneficial to connect the first rod member and the second rod member to the cup cover fixing member, so as to facilitate the first rod member and the second rod member to make planar motion parallel to the reference plane, and then facilitate the first cover body and the second cover body to translate parallel to the reference plane.

[0032] In a second aspect, the present application further provides a cleaning device, comprising a device host and the dust cup structure provided in the first aspect.

[0033] In a third aspect, the present application further provides a cleaning system, comprising a cleaning base station and the cleaning device provided in the second aspect, and the cleaning base station is configured to perform self dust collection on the cleaning device.

[0034] In a possible implementation, the cleaning device has a first working state and a second working state, when the cleaning device is in the first working state, the dust cup structure is connected with the cleaning base station, and when the cleaning device is in the second working state, the dust cup structure is connected with the device host.

[0035] In a possible implementation, the cleaning base station has a spiral abutting surface, and the driving part abuts against the spiral abutting surface to drive the driving part to rotate.

[0036] In this way, when the dust cup structure is installed to the cleaning base station and the driving part abuts against the spiral abutting surface, the spiral abutting surface can apply an external force to the driving part, and then drive the driving part to rotate, so as to drive the first cover body to translate to open the dust discharging port, and the installation of the dust cup structure and the opening of the dust discharging port can be performed synchronously, thereby improving the operation convenience.

[0037] In addition to the technical problems solved by the embodiments of the present application, the technical features constituting the technical solutions, and the beneficial effects brought by the technical features, other technical problems solved by the dust cup structure, the cleaning device and the cleaning system provided by the present application, other technical features included in the technical solutions, and the beneficial effects brought by the technical features will be further described in detail in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0038] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate embodiments consistent with the present application and, together with the description, further serve to explain the principles of the application.

[0039] Figure 1 A structural schematic diagram of a cleaning system provided by an embodiment of the present application is shown in FIG. 1.

[0040] Figure 2 Another structural schematic diagram of a cleaning system provided by an embodiment of the present application is shown in FIG. 2.

[0041] Figure 3 An internal structural schematic diagram of the cleaning system of FIG. 1 is shown in FIG. 3. Figure 2

[0042] Figure 4 A structural schematic diagram of a dust cup structure provided by an embodiment of the present application is shown in FIG. 4.

[0043] Figure 5 A working state schematic diagram of the dust cup structure provided by an embodiment of the present application is shown in FIG. 5.

[0044] Figure 6 An internal structural schematic diagram of the dust cup structure of FIG. 4 is shown in FIG. 6. Figure 5

[0045] Figure 7 Another working state schematic diagram of the dust cup structure provided by an embodiment of the present application is shown in FIG. 7.

[0046] Figure 8 An internal structural schematic diagram of the dust cup structure of FIG. 4 is shown in FIG. 6. Figure 7

[0047] REFERENCE NUMERALS:

[0048] ​​​10 - dust cup structure; 100 - dust cup; 100a - cup body; 100b - cup cover fixing member; 110 - dust discharging port; 120 - air inlet; 130 - sliding part; 131 - first sliding part; 132 - second sliding part; 200 - cup cover assembly; 210 - first cover body; 220 - first rod member; 221 - first connecting part; 222 - second connecting part; 223 - driving part; 224 - first engaging part; 230 - second cover body; 240 - second rod member; 241 - third connecting part; 242 - fourth connecting part; 243 - second engaging part; 250 - first elastic return member; 260 - second elastic return member;

[0049] 20 - cleaning base station; 201 - helical abutting surface.

[0050] The specific embodiments of the present application have been shown and described in the above drawings, and will be described in more detail hereinafter. The drawings and the written description are not intended to restrict the scope of the present application in any way, but to explain the present application by referring to specific embodiments. DETAILED DESCRIPTION

[0051] In order to make the purpose, technical solutions and advantages of the present application clearer, the technical solutions in the embodiments of the present application will be described in more detail below with reference to the drawings of the preferred embodiments of the present application. In the drawings, the same or similar notations represent the same or similar parts or parts having the same or similar functions throughout. The described embodiments are some of the embodiments of the present application, not all the embodiments. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts fall within the scope of protection of the present application. The embodiments of the present application will be described in detail below with reference to the drawings.

[0052] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting" should be understood in a broad sense, for example, can be fixedly connected, can be indirectly connected through an intermediate medium, can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0053] In the description of the present application, it needs to be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0054] The terms "first", "second", "third" (if any) in the specification and claims of the present application and the above drawings are used to distinguish similar objects, and do not necessarily describe a particular order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0055] In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or display including a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or displays.

[0056] The dust collector has good ground cleaning efficiency. After the dust collector performs the dust collection operation on the ground, a lot of dust impurities will be deposited inside the dust cup of the dust collector, and bacteria can easily breed if not promptly emptied. In the related art, the dust collector is provided with a self-dust collecting base station. The dust collector is placed on the self-dust collecting base station after use, the dust cup cover of the dust collector is opened, and the self-dust collecting base station collects the dust in the dust cup into a dust bag. Among them, one end of the dust cup cover is hinged to the dust cup, and the other end of the dust cup cover is clamped with the dust cup. After the dust cup cover and the dust cup are disengaged from the clamping, the dust cup cover is turned over towards the outside of the dust cup, and then the dust cup is opened to discharge the dust impurities.

[0057] However, the dust cup cover in the related art is easily opened when there is a heavy object in the dust cup or when it is subjected to an impact force, thereby causing the reliability of the dust cup cover to be relatively low.

[0058] Therefore, the embodiments of the present application provide a dust cup structure, a cleaning device and a cleaning system. The driving part of the dust cup structure is rotated under the action of an external force, thereby driving the first cover body to translate, so as to open the dust discharge port. In this way, the reliability of the dust cup cover assembly can be improved, so as to prevent the first cover body from opening the dust discharge port when there is a heavy object in the dust cup structure or when it is subjected to an impact force.

[0059] The dust cup structure 10, the cleaning device and the cleaning system provided by the embodiments will be described in detail below in combination with the drawings.

[0060] Referring toFigures 1 to 3 As shown, the embodiment of the present application provides a cleaning system, the cleaning system comprising a cleaning base station 20 and a cleaning device, the cleaning base station 20 being configured to perform self-dust collection on the cleaning device.

[0061] The cleaning device can be a vacuum cleaner, a floor washing machine, etc., and the embodiment is not limited thereto. When the cleaning device completes the cleaning work, the cleaning base station 20 can perform self-dust collection on the cleaning device, thereby cleaning the dust and impurities collected by the cleaning device, so as to restore the cleaning device to a clean state.

[0062] Alternatively, the cleaning base station 20 can also perform charging and other operations on the cleaning device. That is, after the cleaning device is connected to the cleaning base station 20, the cleaning base station 20 can clean the cleaning device, and the cleaning base station 20 can charge the cleaning device. In this way, the cleaning base station 20 can free the hands, thereby making the cleaning system more convenient to use.

[0063] Referring to Figure 4 As shown, on the basis of the above embodiment, the embodiment of the present application further provides a cleaning device, the cleaning device comprising a device host and a dust cup structure 10, the dust cup structure 10 being connected to the device host.

[0064] It can be understood that the device host can provide negative pressure suction for the cleaning device, thereby sucking the dust and impurities on the surface to be cleaned into the dust cup structure 10. The dust cup structure 10 can perform dust-gas separation, thereby separating the dust and impurities from the airflow and collecting the dust and the like in the dust cup structure 10.

[0065] In a possible implementation, the cleaning device has a first working state and a second working state. When the cleaning device is in the first working state, the dust cup structure 10 is connected to the cleaning base station 20. When the cleaning device is in the second working state, the dust cup structure 10 is connected to the device host.

[0066] That is, when the surface to be cleaned needs to be cleaned, the dust cup structure 10 can be connected to the device host, so that the cleaning device is in the second working state. The device host can provide negative pressure suction for the dust cup structure 10, so as to perform dust suction and other operations on the surface to be cleaned.

[0067] After the cleaning work on the surface to be cleaned is completed, the dust cup structure 10 can be separated from the device host and installed to the cleaning base station 20, so that the cleaning device is in the first working state, thereby recycling and processing the dust in the dust cup structure 10 by the cleaning base station 20. In this way, the user does not need to clean the dust cup structure 10, thereby reducing the workload of the user.

[0068] Referring to Figures 4 to 8As shown, on the basis of the above-mentioned embodiments, the dust cup structure 10 provided by the embodiments of the present application further includes a dust cup 100 and a cup cover assembly 200, the dust cup 100 has a dust discharging port 110 and an air inlet 120, and the dust discharging port 110 is located at one end of the dust cup 100.

[0069] The cup cover assembly 200 is arranged at the end of the dust cup 100 having the dust discharging port 110, and the cup cover assembly 200 includes a first cover body 210 and a first rod member 220, the first rod member 220 has a first connecting portion 221, a second connecting portion 222 and a driving portion 223, the first connecting portion 221 is rotationally connected with the first cover body 210, the second connecting portion 222 is rotationally connected with the dust cup 100, and when the driving portion 223 is rotated under the action of an external force, the first connecting portion 221 drives the first cover body 210 to translate towards the outside of the dust cup 100, so as to open the dust discharging port 110.

[0070] In the embodiments, the dust cup 100 can separate dust from air flow, and the dust cup 100 can temporarily store the separated dust, so as to facilitate continuous operation of the cleaning equipment. The air flow can enter the dust cup 100 through the air inlet 120 and be separated from dust, and the separated dust can be discharged from the dust cup 100 through the dust discharging port 110.

[0071] The cup cover assembly 200 can open or close the dust cup 100. Specifically, the cup cover assembly 200 can include the first cover body 210 and the first rod member 220, when the first cover body 210 covers the dust discharging port 110, the dust discharging port 110 can be partially closed or completely closed. When the first cover body 210 does not cover the dust discharging port 110, the dust discharging port 110 can be exposed, so as to discharge the dust in the dust cup 100.

[0072] The first rod member 220 can include the first connecting portion 221, the second connecting portion 222 and the driving portion 223, the second connecting portion 222 is rotationally connected with the dust cup 100, so that the first rod member 220 can rotate relative to the dust cup 100. The first connecting portion 221 is connected with the first cover body 210, so that when the first rod member 220 rotates, the first cover body 210 can be driven to move, and the first connecting portion 221 is rotationally connected with the first cover body 210, so that the first cover body 210 can translate relative to the dust cup 100.

[0073] In this way, when the driving part 223 is subjected to an external force, the driving part 223 rotates relative to the dust cup 100, and further causes the first rod 220 to rotate relative to the dust cup 100, so as to drive the first cover 210 to translate towards the outside of the dust cup 100, so as to open the dust outlet 110. When the external force acting on the driving part 223 disappears, the driving part 223 rotates relative to the dust cup 100 and returns to the original position, and further drives the first cover 210 to translate towards the inside of the dust cup 100, so as to close the dust outlet 110.

[0074] When the dust cup structure 10 is subjected to an impact force, or when the dust cup structure 10 is vertically placed, if there is a large amount of dust and impurities in the dust cup 100, and the mass of the dust and impurities is large, the gravity of the dust and impurities acts on the first cover 210. Since the movement mode of the first cover 210 in the embodiment is translation, the force of the dust and impurities on the first cover 210 will not cause the first cover 210 to open, thereby improving the reliability of the cup cover assembly 200.

[0075] It can be understood that when the dust cup structure 10 is installed to the cleaning base station 20 when the cleaning device is in the first working state, the cleaning base station 20 can provide an external force to the driving part 223, thereby driving the driving part 223 to rotate, so as to cause the first cover 210 to open the dust outlet 110.

[0076] Alternatively, the user can manually rotate the driving part 223, thereby applying an external force to the driving part 223, thereby driving the driving part 223 to rotate, so as to drive the first rod 220 to drive the first cover 210 to open the dust outlet 110.

[0077] The dust cup structure 10 provided by the embodiment of the present application comprises a dust cup 100 and a cup cover assembly 200. The dust cup 100 comprises a dust discharging port 110 and an air inlet 120. The cup cover assembly 200 comprises a first cover body 210 and a first rod 220. The first rod 220 comprises a first connecting portion 221, a second connecting portion 222 and a driving portion 223. The air inlet 120 is arranged to allow air flow to enter the dust cup 100, so as to drive dust and impurities on the surface to be cleaned to enter the dust cup 100. The dust discharging port 110 is arranged to allow dust and impurities to be discharged out of the dust cup 100 when the dust cup 100 is cleaned. The first cover body 210 is arranged to close or open the dust discharging port 110. The first connecting portion 221 is arranged to rotatably connect the first rod 220 and the first cover body 210. The second connecting portion 222 is arranged to rotatably connect the first rod 220 and the dust cup 100. The driving portion 223 is arranged to apply an external force, so as to drive the first rod 220 to rotate relative to the dust cup 100, and then drive the first cover body 210 to move together with the first rod 220, so as to open the dust discharging port 110 by the first cover body 210. Since the first cover body 210 moves in translation relative to the dust cup 100, the first cover body 210 will not be opened when the gravity of the dust and impurities in the dust cup 100 acts on the first cover body 210. Thus, the reliability of the cup cover assembly 200 is improved.

[0078] With reference to Figures 6 to 8 In a possible implementation, the cup cover assembly 200 further comprises a second cover body 230. The first cover body 210 and the second cover body 230 are located on two sides of the dust discharging port 110. At least one of the first cover body 210 and the second cover body 230 moves in translation away from the other, so as to open the dust discharging port 110. The first cover body 210 and the second cover body 230 are combined together to jointly close the dust discharging port 110.

[0079] That is, when the first cover body 210 and the second cover body 230 move in translation away from each other, the first cover body 210 and the second cover body 230 can open the dust discharging port 110. When the first cover body 210 and the second cover body 230 move in translation towards each other and are combined together, the first cover body 210 and the second cover body 230 can close the dust discharging port 110.

[0080] Alternatively, the second cover body 230 is stationary. When the first cover body 210 moves in translation away from the second cover body 230, the first cover body 210 can open part of the dust discharging port 110. When the first cover body 210 moves in translation towards the second cover body 230 and the first cover body 210 and the second cover body 230 are combined together, the first cover body 210 and the second cover body 230 can close the dust discharging port 110.

[0081] Alternatively, the first cover 210 is stationary, and when the second cover 230 translates away from the first cover 210, the second cover 230 can open the partial dust outlet 110, and when the second cover 230 translates toward the first cover 210, and the first cover 210 and the second cover 230 are combined together, the first cover 210 and the second cover 230 can close the dust outlet 110.

[0082] In this way, the opening and closing state of the dust outlet 110 can be jointly controlled by the first cover 210 and the second cover 230, and when the first cover 210 and the second cover 230 simultaneously translate, the opening time and the closing time of the dust outlet 110 can be shortened, thereby improving the opening and closing efficiency of the dust outlet 110. Moreover, the first cover 210 and the second cover 230 are arranged on both sides of the dust outlet 110, and after the dust outlet 110 is completely opened, the first cover 210 and the second cover 230 will not move out of the dust cup structure 10, so that when the dust cup structure 10 is installed on the cleaning base station 20, the cleaning base station 20 will not interfere with the first cover 210 or the second cover 230 to cause them to fail to open.

[0083] Referring to Figures 6 to 8 In some embodiments, the cup cover assembly 200 further includes a second rod member 240, the first rod member 220 further includes a first engaging portion 224, and the second rod member 240 includes a third connecting portion 241, a fourth connecting portion 242, and a second engaging portion 243, the third connecting portion 241 is rotationally connected with the second cover 230, and the fourth connecting portion 242 is rotationally connected with the dust cup 100. The first engaging portion 224 engages with the second engaging portion 243.

[0084] In this way, when the driving portion 223 rotates under the action of an external force, the first rod member 220 drives the first cover 210 to translate toward the outside of the dust cup 100, and at the same time, the first engaging portion 224 drives the second engaging portion 243 to rotate, thereby driving the second rod member 240 to rotate relative to the dust cup 100, and thereby causing the second rod member 240 to drive the second cover 230 to translate toward the outside of the dust cup 100, so that the first cover 210 and the second cover 230 synchronously translate. When neither the first cover 210 nor the second cover 230 covers the dust outlet 110, the dust outlet 110 can be completely opened to facilitate the dust and impurities to be discharged through the dust outlet 110.

[0085] The side of the first engaging portion 224 and the second engaging portion 243 facing each other can be provided with engaging teeth.

[0086] In a possible implementation, the translation direction of the first cover 210 and the translation direction of the second cover 230 are both parallel to a reference plane. The reference plane is perpendicular to the height direction of the dust cup 100.

[0087] In this way, the first cover 210 and the second cover 230 can perform translational movement in the same plane, and then the first cover 210 and the second cover 230 can be reliably combined together after moving close to each other, and then the dust discharge port 110 is completely closed.

[0088] It can be understood that the dust cup 100 can be provided with a cyclone barrel for dust-gas separation, and the height direction of the dust cup 100 is consistent with the axial direction of the cyclone barrel.

[0089] In a possible implementation, the translational direction of the first cover 210 is consistent with the translational direction of the second cover 230.

[0090] In this way, the translational direction of the first cover 210 is consistent with the translational direction of the second cover 230, so that when the first cover 210 and the second cover 230 move towards each other, the first cover 210 and the second cover 230 can be combined, and then the dust discharge port 110 is closed together, and when the first cover 210 and the second cover 230 move away from each other, the first cover 210 and the second cover 230 can open the dust discharge port 110.

[0091] In some embodiments, at least one of the first cover 210 and the second cover 230 is in sliding connection with the dust cup 100. In this way, when the first cover 210 or the second cover 230 is in sliding connection with the dust cup 100, the translational direction of the first cover 210 or the second cover 230 can be limited, and then the translational direction of the first cover 210 or the second cover 230 can be guaranteed to be consistent each time.

[0092] For example, the first cover 210 can be in sliding connection with the dust cup 100, or the second cover 230 can be in sliding connection with the dust cup 100, or the first cover 210 and the second cover 230 can be in sliding connection with the dust cup 100.

[0093] Referring to Figure 6 and Figure 8 It can be understood that the dust cup 100 can be provided with a cyclone barrel for dust-gas separation, and the height direction of the dust cup 100 is consistent with the axial direction of the cyclone barrel.

[0094] In this way, the first cover 210 and the second cover 230 can perform translational movement in the same plane, and then the first cover 210 and the second cover 230 can be reliably combined together after moving close to each other, and then the dust discharge port 110 is completely closed.

[0095] Referring to Figure 6 andFigure 8 As shown, in specific implementation, the sliding part 130 includes a first sliding part 131 and a second sliding part 132, the first sliding part 131 and the second sliding part 132 are located at both sides of the translation direction of the first cover body 210, both sides of the translation direction of the first cover body 210 are respectively in sliding connection with the first sliding part 131 and the second sliding part 132, both sides of the translation direction of the second cover body 230 are respectively in sliding connection with the first sliding part 131 and the second sliding part 132.

[0096] In this way, both sides of the translation direction of the first cover body 210 can be in sliding connection with the dust cup 100, both sides of the translation direction of the second cover body 230 can be in sliding connection with the dust cup 100, and thus the translation direction of the first cover body 210 and the translation direction of the second cover body 230 can be guaranteed to be consistent.

[0097] Referring to Figure 6 With Figure 8 As shown, in some embodiments, the cup cover assembly 200 further includes a first elastic reset member 250, one end of the elastic force direction of the first elastic reset member 250 is connected with the dust cup 100, the other end of the elastic force direction of the first elastic reset member 250 is configured to elastically abut against the first cover body 210 to drive the first cover body 210 to translate towards the inner side of the dust cup 100.

[0098] In this way, when the external force acting on the driving part 223 disappears, for example, after the driving part 223 is manually loosened, or after the dust cup structure 10 is detached from the cleaning base station 20, the first elastic reset member 250 can provide elastic force for the first cover body 210, and thus drive the first cover body 210 to translate towards the inner side of the dust cup 100, so as to make the first cover body 210 close the dust discharge port 110.

[0099] Referring to Figure 6 With Figure 8 As shown, in some embodiments, the cup cover assembly 200 further includes a second elastic reset member 260, one end of the elastic force direction of the second elastic reset member 260 is connected with the dust cup 100, the other end of the elastic force direction of the second elastic reset member 260 is configured to elastically abut against the second cover body 230 to drive the second cover body 230 to translate towards the inner side of the dust cup 100.

[0100] In this way, when the external force acting on the driving part 223 disappears, the second elastic reset member 260 can provide elastic force for the second cover body 230, and thus drive the second cover body 230 to translate towards the inner side of the dust cup 100, so as to make the second cover body 230 close the dust discharge port 110.

[0101] Referring to Figure 4 , Figure 6 With Figure 8As shown in the possible implementation, the dust cup 100 includes a cup body 100a and a cup cover fixing member 100b connected to one end of the cup body 100a, the first rod member 220 and the second rod member 240 are both connected to the cup cover fixing member 100b, and the dust discharging port 110 is located on the cup cover fixing member 100b, and the air inlet 120 is located on the side wall of the cup body 100a.

[0102] It can be understood that, by dividing the dust cup 100 into the cup body 100a and the cup cover fixing member 100b, the cup body 100a and the cup cover fixing member 100b can be respectively machined and formed, and then the cup body 100a and the cup cover fixing member 100b are connected to constitute the dust cup 100, and the first rod member 220 and the second rod member 240 are connected to the cup cover fixing member 100b, which is beneficial to the plane movement of the first rod member 220 and the second rod member 240 parallel to the reference plane, and further beneficial to the translation of the first cover body 210 and the second cover body 230 parallel to the reference plane.

[0103] Referring to Figure 1 With Figure 2 As shown in some embodiments, the cleaning base station 20 has a spiral abutting surface 201, and the driving part 223 abuts against the spiral abutting surface 201 to drive the driving part 223 to rotate.

[0104] When the dust cup structure 10 is installed to the cleaning base station 20, and the driving part 223 abuts against the spiral abutting surface 201, the spiral abutting surface 201 can apply an external force to the driving part 223, and further drive the driving part 223 to rotate, thereby driving the first cover body 210 to translate to open the dust discharging port 110. In this process, the installation of the dust cup structure 10 and the opening of the dust discharging port 110 can be performed synchronously, thereby improving the operation convenience.

[0105] It should be noted that the spiral advancing direction of the spiral abutting surface 201 can be consistent with the installation direction of the dust cup structure 10, and the spiral abutting surface 201 can spiral upward in the height direction of the dust cup 100, so that when the dust cup structure 10 is installed to the cleaning base station 20 along the height direction thereof, the driving part 223 abuts against different parts of the spiral abutting surface 201, thereby driving the driving part 223 to rotate.

[0106] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A dust cup structure characterized by, The dust cup (100) has a dust discharge port (110) at one end of the dust cup (100). The cup cover assembly (200) is provided at the end of the dust cup (100) with the dust discharge port (110), and the cup cover assembly (200) includes a first cover body (210) and a first rod member (220), the first rod member (220) has a first connecting portion (221), a second connecting portion (222) and a driving portion (223), the first connecting portion (221) is rotatably connected with the first cover body (210), the second connecting portion (222) is rotatably connected with the dust cup (100), and when the driving portion (223) is rotated under the action of an external force, the first connecting portion (221) drives the first cover body (210) to translate towards the outside of the dust cup (100) to open the dust discharge port (110). The first cover body (210) and the second cover body (230) are located on both sides of the dust discharge port (110), and at least one of the first cover body (210) and the second cover body (230) translates away from the other to open the dust discharge port (110).

2. The dust cup structure of claim 1, wherein The first cover body (210) and the second cover body (230) are combined to jointly close the dust discharge port (110). The first rod member (220) further includes a first engaging portion (224), and the second rod member (240) includes a third connecting portion (241), a fourth connecting portion (242) and a second engaging portion (243), the third connecting portion (241) is rotatably connected with the second cover body (230), and the fourth connecting portion (242) is rotatably connected with the dust cup (100).

3. The dust cup structure of claim 2, wherein, The first engaging portion (224) is engaged with the second engaging portion (243). The translation direction of the first cover body (210) and the translation direction of the second cover body (230) are both parallel to a reference plane.

4. The dust cup structure according to claim 2 or 3, characterized in that, The reference plane is perpendicular to the height direction of the dust cup (100). The translation direction of the first cover body (210) and the translation direction of the second cover body (230) are consistent.

5. The dust cup structure of claim 4, wherein At least one of the first cover body (210) and the second cover body (230) is slidably connected with the dust cup (100).

6. The dust cup structure according to claim 2 or 3, characterized by The dust cup (100) has at least one sliding portion (130), at least one of the first cover body (210) and the second cover body (230) is slidably connected with the sliding portion (130), and the extension direction of the sliding portion (130) is consistent with the translation direction of the first cover body (210).

7. The dust cup structure of claim 6, wherein ​ 8. The dust cup structure of claim 7, wherein, The sliding part (130) comprises a first sliding part (131) and a second sliding part (132), the first sliding part (131) and the second sliding part (132) are located on both sides of the translation direction of the first cover body (210), and the first sliding part (131) and the second sliding part (132) are respectively in sliding connection with both sides of the translation direction of the first cover body (210), and the first sliding part (131) and the second sliding part (132) are respectively in sliding connection with both sides of the translation direction of the second cover body (230).

9. The dust cup structure according to any one of claims 1 to 3, characterized by The cup cover assembly (200) further comprises a first elastic reset member (250), one end of the elastic force direction of the first elastic reset member (250) is connected with the dust cup (100), and the other end of the elastic force direction of the first elastic reset member (250) is configured to be in elastic abutment with the first cover body (210) to drive the first cover body (210) to translate towards the inner side of the dust cup (100).

10. The dust cup structure according to claim 2 or 3, characterized by The cup cover assembly (200) further comprises a second elastic reset member (260), one end of the elastic force direction of the second elastic reset member (260) is connected with the dust cup (100), and the other end of the elastic force direction of the second elastic reset member (260) is configured to be in elastic abutment with the second cover body (230) to drive the second cover body (230) to translate towards the inner side of the dust cup (100).

11. The dust cup structure of claim 3, wherein The dust cup (100) comprises a cup body (100a) and a cup cover fixing member (100b), the cup cover fixing member (100b) is connected to one end of the cup body (100a), the first rod member (220) and the second rod member (240) are both connected with the cup cover fixing member (100b), and the dust discharging port (110) is located on the cup cover fixing member (100b).

12. A cleaning apparatus, characterized by The dust cup structure (10) is connected with the device host.

13. A cleaning system characterized by, The cleaning device has a first working state and a second working state, when the cleaning device is in the first working state, the dust cup structure (10) is connected with the cleaning base station (20), and when the cleaning device is in the second working state, the dust cup structure (10) is connected with the device host.

14. The cleaning system of claim 13, wherein, The cleaning base station (20) has a spiral abutment surface (201), and the driving part (223) abuts against the spiral abutment surface (201) to drive the driving part (223) to rotate.

15. The cleaning system of claim 14, wherein, ​