Dust collector system
By introducing non-cyclone and cyclone separation mechanisms into the vacuum cleaner system and utilizing the dust collection station to achieve automatic cleaning of the dust cup, the problem of users manually cleaning the dust cup is solved, improving the convenience and user experience of the vacuum cleaner.
Patent Information
- Application Number
- CN202423190288.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-23
AI Technical Summary
In existing technologies, vacuum cleaners without cyclone separators require users to manually clean the dust cup, resulting in poor ease of use and affecting the user experience.
The system employs a vacuum cleaner system that includes both non-cyclone and cyclone separation mechanisms. Dust is separated twice in the dust cup, and the dust cup is automatically cleaned through a dust collection station, with the dust collected into the dust collection chamber.
This improves the vacuum cleaner's dust separation efficiency, reduces the need for users to manually clean the dust cup, and enhances ease of use and user experience.
Smart Images

Figure CN223627425U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to dust collector technical field especially relates to a dust collector system. BACKGROUND
[0002] In the related art, the dust collector with non-cyclone separator needs user to clean the dust cup manually, which results in poor convenience of the dust collector and affects user experience. SUMMARY
[0003] The utility model discloses at least one of the technical problems in the prior art is solved, and therefore the utility model provides a dust collector system, which can realize automatic cleaning of the dust cup and improve user experience.
[0004] The dust collector system according to the utility model embodiment comprises a dust collector main body, a cyclone separation mechanism and a dust cup, the cyclone separation mechanism is located downstream of the non-cyclone separation mechanism, dust separated by the cyclone separation mechanism and the non-cyclone separation mechanism can be collected in the dust cup, a dust collecting station is provided with a dust collecting cavity, the dust collecting station can be used to carry and dock the dust collector main body, and the dust collecting cavity is suitable for collecting dust in the dust cup when the dust collecting station is docked with the dust collector main body.
[0005] The dust collector system according to the utility model embodiment can realize twice separation of dust by the dust collector main body, effectively improve the separation effect of the dust collector main body, further set the dust collecting station which can be docked with the dust collector main body, when the dust collector main body is docked with the dust collecting station, dust collected in the dust cup can be further collected in the dust collecting cavity to realize automatic cleaning of the dust cup, without manual operation of the user, which is conducive to improving the convenience of the dust collector system and user experience.
[0006] According to some embodiments of the utility model, the dust collector main body further comprises a handheld part, a dust collection pipe in fluid communication with the dust cup and a fan assembly for providing suction force, the axis of the dust collection pipe, the axis of the dust cup and the axis of the fan assembly are arranged in parallel, and the axis of the handheld part and the axis of the dust cup are arranged at an angle.
[0007] According to some embodiments of the present application, the non-cyclone separation mechanism is in a substantially "U" shape along a cross section perpendicular to the axis direction of the dust cup, a filter mesh is arranged on the surface of the middle recess of the "U" shape, and the dust cup body comprises a dust suction pipe in communication with the dust cup.
[0008] According to some embodiments of the present application, a first interface is arranged on the sidewall of the dust cup, the dust suction pipe is in fluid communication with the interior of the dust cup through the first interface, and the first interface is directly opposite the middle recess of the non-cyclone separation mechanism.
[0009] According to some embodiments of the present application, a first dust chamber is formed between the non-cyclone separation mechanism and the inner wall of the dust cup, the non-cyclone separation mechanism comprises a second dust chamber on both sides of the middle recess, and the second dust chamber is used for collecting dust separated by the cyclone separation mechanism.
[0010] According to some embodiments of the present application, a second interface is arranged on one end of the dust cup away from the cyclone separation mechanism in the axis direction, a dust discharging port is arranged on one side of the second dust chamber facing the second interface, and a cover plate is arranged on the dust cup and used for simultaneously opening or closing the second interface and the dust discharging port.
[0011] According to some embodiments of the present application, the dust cup comprises a locking assembly and a cup body, the locking assembly is arranged on the cup body and / or the cover plate, and the cover plate and the cup body are locked and matched through the locking assembly.
[0012] According to some embodiments of the present application, the dust collecting station is provided with an unlocking member, the unlocking member is in contact with the locking assembly and releases the locking state of the locking assembly, and the cover plate is adapted to open the second interface when the locking assembly releases the locking state.
[0013] According to some embodiments of the present application, the dust collecting station is provided with a negative pressure device, and the negative pressure device can form a negative pressure in the dust collecting chamber.
[0014] According to some embodiments of the present application, the dust collecting station comprises a seat body, the seat body is used for carrying the dust collector body, and the seat body is provided with a positioning portion used for positioning and matching with the dust cup.
[0015] According to some embodiments of the present application, the seat body is provided with an opening, the opening is in communication with the dust collecting chamber, and the opening is used for butting the second interface of the dust cup.
[0016] The second object of the present application is to provide a dust collector system.
[0017] The dust collector system according to the embodiment of the utility model, including: dust collector main part, dust collector main part includes non cyclone separation mechanism, cyclone separation mechanism and dust cup, cyclone separation mechanism is located downstream of non cyclone separation mechanism, dust separated by non cyclone separation mechanism and cyclone separation mechanism can be collected in dust cup;Dust collecting station, dust collecting station is butt joint with dust collector main part, dust collecting station is arranged in one side of dust cup in axial direction, and be used for collecting dust in dust cup;Handheld part, handheld part is arranged in the outside of dust collector main part in radial direction;Wherein, when dust collector main part is butt joint with dust collecting station, dust cup is arranged along vertical direction.
[0018] The dust collector system according to the embodiment of the utility model, by making dust collector main part include non cyclone separation mechanism and cyclone separation mechanism, can realize twice separation of dust collector main part to dust, effectively improve the separation effect of dust collector main part to dust, by further setting dust collecting station that can be butt joint with dust collector main part, when dust collector main part is butt joint with dust collecting station, dust collected in dust cup can be further collected into dust collecting station, to realize the automatic cleaning of dust cup, without manual operation of user, it is favorable to improve the use convenience of dust collector system, to improve the user's use experience, by making dust collecting station be arranged in one side of dust cup in axial direction, and making dust cup be arranged along vertical direction when dust collector main part is butt joint with dust collecting station, it is favorable to improve the convenience of dust in dust cup into dust collecting station, and it is favorable to improve the space utilization of dust collector system in axial direction, reduce the size of dust collector system in radial direction, by arranging handheld part in the radial outside of dust collector main part, it is favorable to improve the convenience of user holding handle, and it is favorable to improve the control flexibility of dust collector main part, facilitate user driving dust collector main part to carry out dust cleaning work of various angles.
[0019] According to some embodiments of the utility model, the dust collector main part further includes a dust suction pipe, which extends along the radial direction of the dust cup and is in communication with the first interface on the side of the dust cup away from the handheld part.
[0020] The third object of the utility model is to provide a dust collector system.
[0021] The dust collector system according to the embodiment of the utility model, including: dust collector main part, dust collector main part includes non cyclone separation mechanism, cyclone separation mechanism and dust cup, cyclone separation mechanism is located downstream of non cyclone separation mechanism, dust separated by non cyclone separation mechanism and cyclone separation mechanism can be collected in dust cup;Dust collecting station, dust collecting station is butt joint with dust collector main part, dust collecting station is arranged in one side of dust cup in axial direction, and be used for collecting dust in dust cup;Handheld part, handheld part is arranged in the outside of dust collector main part in radial direction;Wherein, when dust collector main part is butt joint with dust collecting station, dust cup is arranged along vertical direction.
[0022] According to the dust collector system of the embodiment of the utility model, the dust collector main body comprises a non-cyclone separation mechanism and a cyclone separation mechanism, so that the dust collector main body can separate dust twice, the separation effect of the dust collector main body on dust is effectively improved, the dust collecting station can be docked with the dust collector main body, when the dust collector main body is docked with the dust collecting station, the dust collected in the dust cup can be further collected in the dust collecting station, so that the dust cup is automatically cleaned without manual operation, the use convenience of the dust collector system is improved, so that the use experience of the user is improved, the handheld part is arranged on one side of the dust collector main body in the axial direction, the space utilization of the dust collector system in the axial direction is improved, so that the size of the dust collector system in the radial direction is reduced, the burden of the user's arm when using the dust collector main body is reduced, and the use experience of the user is improved.
[0023] According to some embodiments of the utility model, the dust collector main body further includes a dust collecting pipe, the dust cup includes: a cup main body, the cup main body is formed with a cavity, and one end of the cup main body in the axial direction is provided with a first interface and a second interface, the first interface is communicated with the dust collecting pipe, and the second interface is used for docking with a dust collecting cavity of the dust collecting station, and the second interface is arranged on the radial outer side of the first interface in the cup main body;A cover plate is connected with the cup main body for opening and closing the second interface.
[0024] According to some embodiments of the utility model, the dust collector main body further includes a fan assembly, wherein the dust cup, the fan assembly and the handheld part are arranged in a substantially linear type along the central axis direction of the dust collecting pipe.
[0025] Additional aspects and advantages of the utility model will be partially given in the following description, some will become obvious from the following description, or be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0026] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, wherein:
[0027] Figure 1 Structure diagram of the dust collector system of the first embodiment of the utility model is described;
[0028] Figure 2 For Figure 1 Sectional view at A-A;
[0029] Figure 3 Partial sectional view of the dust collector system of the first embodiment of the utility model is described;
[0030] Figure 4 Structure diagram of dust collecting station according to the embodiment of the present application;
[0031] Figure 5 Assembly diagram of dust cup and pre-filter according to the embodiment of the present application Figure 1 ;
[0032] Figure 6 Assembly diagram of dust cup and pre-filter according to the embodiment of the present application Figure 2 ;
[0033] Figure 7 Assembly diagram of dust cup and main machine according to the embodiment of the present application;
[0034] Figure 8 Structure diagram of dust collector system according to the second embodiment of the present application; Figure 7 Cross-sectional view at dust cup;
[0035] Figure 9 Structure diagram of dust collector system according to the second embodiment of the present application;
[0036] Figure 10 Cross-sectional view of dust collector system according to the second embodiment of the present application;
[0037] Figure 11 Exploded view of dust collector system according to the second embodiment of the present application;
[0038] Figure 12 Structure diagram of dust collector system according to the third embodiment of the present application;
[0039] Figure 13 Cross-sectional view of dust collector system according to the third embodiment of the present application;
[0040] Figure 14 Assembly diagram of hand-held part, dust cup and dust collecting tube according to the third embodiment of the present application.
[0041] Reference signs:
[0042] Dust collector system 100,
[0043] Dust collector main body 10,
[0044] Non-cyclone separation mechanism 11, intermediate recess 111, filter mesh 112, second dust chamber 113, dust discharging port 1131, connecting port 114, connecting channel 115,
[0045] Cyclone separation mechanism 12, dust discharging port 121,
[0046] Dust cup 13, first interface 131, first dust chamber 132, second interface 133,
[0047] locking assembly 134, locking portion 1341, locking piece a, abutting portion b,
[0048] locking matching portion 1342,
[0049] cup body 135,
[0050] hand-held portion 14, suction pipe 15, fan assembly 16, cover plate 17, main machine 18, front filter 19,
[0051] dust collecting station 20, dust collecting cavity 21, unlocking piece 22,
[0052] seat body 23, positioning portion 231, opening 232, communication opening 233, first supporting portion 234, second supporting portion 235, avoiding groove 236,
[0053] negative pressure device 24, dust collecting bag 25. DETAILED DESCRIPTION
[0054] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.
[0055] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "length", "thickness", "upper", "lower", "vertical", "inner", "outer", "axial", "radial", "circumferential" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the features limited as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0056] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication inside 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.
[0057] Reference will be made to Figures 1-14A dust collector system 100 according to an embodiment of the present application is described.
[0058] In combination Figures 1 to 3 According to the dust collector system 100 of the present application, the dust collector main body 10 can clean the dust on the surface to be cleaned by suction to realize the cleaning function of the dust collector main body 10. The dust collector main body 10 comprises a non-cyclone separation mechanism 11, a cyclone separation mechanism 12 and a dust cup 13. The cyclone separation mechanism 12 is located downstream of the non-cyclone separation mechanism 11, and the dust separated by the cyclone separation mechanism 12 and the non-cyclone separation mechanism 11 can be collected in the dust cup 13.
[0059] That is, the dust sucked by the dust collector main body 10 is first separated by the non-cyclone separation mechanism 11. The non-cyclone separation system can separate part of the dust sucked by the dust collector main body 10 and collect it in the dust cup 13. At the same time, the airflow still carrying part of the dust further enters the cyclone separation mechanism 12 and rotates under the action of the cyclone separation mechanism 12. The dust can be separated from the airflow under the action of centrifugal force, and the separated dust falls into the dust cup 13 and is collected by the dust cup 13.
[0060] Therefore, by arranging the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 in the dust collector main body 10, the dust collector main body 10 can realize twice separation of the dust, effectively improving the separation effect of the dust collector main body 10.
[0061] Further, in combination Figures 1 to 3 The dust collector system 100 further comprises a dust collecting station 20, which is provided with a dust collecting cavity 21. The dust collecting station 20 can be used to carry and dock the dust collector main body 10, and the dust collecting cavity 21 is adapted to collect the dust in the dust cup 13 when the dust collecting station 20 is docked with the dust collector main body 10.
[0062] For example, after using the dust collector main body 10 to complete the dust cleaning, the dust is separated and collected in the dust cup 13 in the dust collector main body 10. At this time, the dust collector main body 10 can be docked with the dust collecting station 20. The dust collecting station 20 can support and fix the dust collector main body 10, which is beneficial to prevent the dust collector main body 10 from being damaged due to improper placement. When the dust collector main body 10 is docked with the dust collecting station 20, the dust collecting cavity 21 can be in communication with the dust cup 13, and the dust collected in the dust cup 13 can be further collected in the dust collecting cavity 21 to realize the automatic cleaning of the dust cup 13.
[0063] In the related art, the dust collector with a non-cyclone separator needs to be manually cleaned by the user, which results in poor convenience of the dust collector and affects the user experience.
[0064] The dust collector body 10 can realize twice separation of dust, effectively improve the separation effect of the dust collector body 10 on dust, and further set the dust collecting station 20 which can be connected with the dust collector body 10, so that the dust collected in the dust cup 13 can be further collected into the dust collecting cavity 21 after the dust collector body 10 is connected with the dust collecting station 20, so as to realize automatic cleaning of the dust cup 13, without manual operation of the user, which is beneficial to improve the use convenience of the dust collector system 100, thereby improving the use experience of the user.
[0065] In combination Figures 1 to 3 In some embodiments of the utility model, the dust collector body 10 further comprises a handheld part 14, so as to facilitate the user to hold when using the dust collector body 10 to clean dust, and facilitate the user to drive the dust collector body 10 to move, which is beneficial to improve the use experience of the user.
[0066] Further, the dust collector body 10 further comprises a dust suction pipe 15 in fluid communication with the dust cup 13 and a fan assembly 16 for providing suction force.
[0067] Exemplarily, the fan assembly 16 can rotate at high speed to generate negative pressure in the dust cup 13, thereby generating suction force, the dust cup 13 is in fluid communication with the dust suction pipe 15, so that dust can be sucked into the dust cup 13 through the dust suction pipe 15 along with airflow, the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 are arranged in the dust cup 13, and the airflow carrying dust passes through the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 in sequence to separate dust from the airflow.
[0068] In combination Figure 1 and Figure 2 The axis of the dust suction pipe 15, the axis of the dust cup 13 and the axis of the fan assembly 16 are arranged in a substantially parallel manner, which is beneficial to reduce the size of the dust collector body 10 in the radial direction of the dust cup 13, thereby saving the space for placing the dust collector body 10.
[0069] In combination Figures 1 to 3 The axis of the handheld part 14 and the axis of the dust cup 13 are arranged at an angle, which is beneficial to offset the gravity of the dust collector body 10 and the force of the user acting on the dust collector body 10 through the handheld part 14 to make it upward, thereby reducing the burden of the user's arm, thereby improving the use experience of the user.
[0070] In combination Figures 5 to 8In some embodiments of the utility model, non whirlwind separation mechanism 11 is along the cross section perpendicular to the axis direction of dust cup 13 and is generally "U" shape, non whirlwind separation mechanism 11 is located the surface of "U" shape intermediate recess 111 is provided with filter screen hole 112, dust catcher main body 10 includes dust suction pipe 15 communicated with dust cup 13, the airflow of dust suction pipe 15 into dust cup 13 flows into whirlwind separation mechanism 12 through filter screen hole 112.
[0071] That is, non whirlwind separation mechanism 11 is along the cross section perpendicular to the axis direction of dust cup 13 and is "U" shape extension in its length direction, and in the length direction of non whirlwind separation mechanism 11, the bottom of "U" shape intermediate is intermediate recess 111 of non whirlwind separation mechanism 11, at least one side surface of intermediate recess 111 is provided with filter screen hole 112, filter screen hole 112 is provided through the surface of intermediate recess 111, the airflow carrying dust flows to filter screen hole 112 after entering dust cup 13 through dust suction pipe 15, filter screen hole 112 can carry out primary filtration to the airflow carrying dust, part of dust is separated from airflow and is collected in dust cup 13, another part of dust enters whirlwind separation mechanism 12 along with airflow and is separated by whirlwind separation mechanism 12.
[0072] Optionally, one side surface of intermediate recess 111 in width direction is provided with filter screen hole 112, to facilitate the processing production of non whirlwind separation mechanism 11, or both side surfaces of intermediate recess 111 in width direction are provided with filter screen hole 112, to improve the separation filtration efficiency of non whirlwind separation mechanism 11 to the airflow carrying dust, of course, it can be understood that the specific arrangement of filter screen hole 112 on intermediate recess 111 can be determined according to actual production requirement, which is not limited here.
[0073] As Figure 8 Indicated in further embodiments of the utility model, non whirlwind separation mechanism 11 is provided with connecting channel 115 and connecting port 114, connecting channel 115 is communicated with filter screen hole 112 and connecting port 114 respectively, the airflow passing through filter screen hole 112 can flow to connecting port 114 through connecting channel 115, connecting port 114 is communicated with whirlwind separation mechanism 12, to make the airflow passing through filter screen hole 112 can flow into whirlwind separation mechanism 12.
[0074] Combining Figure 3 And Figures 5 to 8 In some embodiments of the utility model, the sidewall of dust cup 13 is provided with first interface 131, dust suction pipe 15 is fluidly communicated with the inside of dust cup 13 through first interface 131, first interface 131 is opposite intermediate recess 111 of non whirlwind separation mechanism 11.
[0075] Specifically, the side wall of the dust cup 13 is provided with a first interface 131 penetrating through the thickness direction of the side wall, the first interface 131 is used for connecting the dust suction pipe 15 and the dust cup 13 in communication, by arranging the first interface 131 opposite to the middle recess 111 of the non-cyclone separation mechanism 11, so as to facilitate the airflow carrying dust flowing from the dust suction pipe 15 into the dust cup 13 to flow through the filter screen hole 112 arranged on the middle recess 111, which is beneficial to shorten the flow path of the airflow flowing to the filter screen hole 112, thereby facilitating to improve the separation and filtration efficiency of the non-cyclone separation mechanism 11 on dust.
[0076] In the related art, the dust suction pipe is usually arranged on the cover of the dust cup, which leads to a complex structure of the dust cup, and the first interface 131 is arranged on the side wall of the dust cup 13 in the application, so that the dust suction pipe 15 can be directly communicated with the dust cup 13, without considering the influence of the opening and closing of the cover on the dust suction pipe 15, which is beneficial to simplify the structure of the dust collector main body 10, and since the dust suction pipe 15 is connected to the side wall of the dust cup 13, it is beneficial to prevent the dust collector main body 10 from being affected by the mutual interference between the dust suction pipe 15 and the dust collection station 20 when the dust collector main body 10 is docked with the dust collection station 20.
[0077] In combination with Figure 3 , Figure 7 and Figure 8 , in some embodiments of the application, the first dust chamber 132 is formed between the non-cyclone separation mechanism 11 and the inner wall of the dust cup 13, the non-cyclone separation mechanism 11 includes a second dust chamber 113 located on both sides of the middle recess 111, and the second dust chamber 113 is used for collecting dust separated by the cyclone separation mechanism 12.
[0078] Specifically, the first dust chamber 132 is defined between the outer peripheral wall of the non-cyclone separation mechanism 11 and the inner wall of the dust cup 13, the first interface 131 is in communication with the first dust chamber 132, the airflow carrying dust in the dust suction pipe 15 flows into the first dust chamber 132 through the first interface 131, and further passes through the filter screen hole 112, the connecting channel 115 and the connecting port 114 to enter the cyclone separation mechanism 12.
[0079] Further, the second dust chamber 113 is formed on the non-cyclone separation mechanism 11 at positions on both sides of the middle recess 111, the second dust chamber 113 is arranged in the connecting channel 115 and in communication with the cyclone separation mechanism 12, and the dust separated by the cyclone separation mechanism 12 can fall into the second dust chamber 113.
[0080] In combination with Figure 7 and Figure 8In some specific embodiments, on the side wall surface of the cyclone separation mechanism 12 opposite to the non-cyclone separation mechanism 11 in the axial direction of the dust cup 13, a dust falling port 121 is arranged, the dust falling port 121 is located on both sides of the connecting port 114 and communicates with the second dust chamber 113, and the dust entering the cyclone separation mechanism 12 and separated by the cyclone separation mechanism 12 can fall into the second dust chamber 113 through the dust falling port 121, so that the second dust chamber 113 can collect the dust separated by the cyclone separation mechanism 12.
[0081] In combination Figure 2 And Figures 5 to 8 In some embodiments of the utility model, the dust cup 13 is provided with a second interface 133 at one end away from the cyclone separation mechanism 12 in the axial direction, the second dust chamber 113 is provided with a dust discharging port 1131 on the side facing the second interface 133, and the dust cup 13 is provided with a cover plate 17, which is used to simultaneously open or close the second interface 133 and the dust discharging port 1131.
[0082] Specifically, the second interface 133 communicates with the first dust chamber 132, and simultaneously, the second interface 133 can communicate with the second dust chamber 113 through the dust discharging port 1131, when the cover plate 17 closes the second interface 133 and the dust discharging port 1131, the dust separated by the non-cyclone separation mechanism 11 can accumulate in the first dust chamber 132, and the dust separated by the cyclone separation mechanism 12 falls into the second dust chamber 113 and accumulates in the second dust chamber 113, and the cover plate 17 can simultaneously receive the dust in the first dust chamber 132 and the second dust chamber 113.
[0083] When the cover plate 17 simultaneously opens the second interface 133 and the dust discharging port 1131, the second interface 133 communicates with the dust collecting chamber 21, and the dust received on the cover plate 17 can fall into the dust collecting chamber 21, and simultaneously, the dust accumulated in the first dust chamber 132 and the second dust chamber 113 can fall into the dust collecting chamber 21 through the second interface 133, so as to realize the dust collecting chamber 21 collecting the dust in the dust cup 13.
[0084] In combination Figure 5 And Figure 6 In some embodiments of the utility model, the dust cup 13 comprises a locking assembly 134 and a cup body 135, the locking assembly 134 is arranged on the cup body 135 and / or the cover plate 17, and the cover plate 17 is locked and matched with the cup body 135 through the locking assembly 134.
[0085] Exemplarily, in the radial direction of the dust cup 13, a side of the cup body 135 away from the first dust cavity 132 is provided with a hinged portion, the cover plate 17 is rotatably connected to the cup body 135 through the hinged portion, and the cover plate 17 can be rotated towards the dust collecting cavity 21, the cup body 135 and / or the cover plate 17 is provided with a locking assembly 134, the cup body 135 can be locked and matched with the cover plate 17 through the locking assembly 134, so that the cover plate 17 can close the second interface 133 and the dust outlet 1131, and the sealing performance of the dust cup 13 is ensured, when it is needed to collect the dust in the dust cup 13 by the dust collecting station 20, the state that the cup body 135 is locked and matched with the cover plate 17 can be released, so as to open the second interface 133 and the dust outlet 1131 by the cover plate 17.
[0086] Optionally, the locking assembly 134 can be separately arranged on the cup body 135 or the cover plate 17, or the cup body 135 and the cover plate 17 can be respectively provided with the locking assembly 134, and the arrangement mode of the specific locking assembly 134 can be determined according to actual production requirements, which is not limited here.
[0087] As shown in the drawings, Figure 4 In some embodiments of the utility model, the dust collecting station 20 is provided with an unlocking piece 22, the unlocking piece 22 can be in contact and matched with the locking assembly 134 and release the locking state of the locking assembly 134, and the cover plate 17 is suitable for opening the second interface 133 when the locking assembly 134 releases the locking state.
[0088] Specifically, after the dust collector main body 10 is connected with the dust collecting station 20, the unlocking piece 22 is in contact with the locking assembly 134 to drive the locking assembly 134 to release the state of locking the cover plate 17 and the cup body 135, after the locking assembly 134 is unlocked, the cover plate 17 can be rotated towards the dust collecting cavity 21 under the action of gravity, so as to simultaneously open the second interface 133 and the dust outlet 1131, so that the dust collected by the dust cup 13 can fall into the dust collecting cavity 21, and the automatic collection of the dust in the dust cup 13 by the dust collecting station 20 is realized.
[0089] In combination Figures 5 to 7 In some specific embodiments of the utility model, the locking assembly 134 comprises a locking portion 1341 and a locking matching portion 1342, the locking portion 1341 is arranged on the cup body 135, the locking matching portion 1342 is arranged on the cover plate 17, and the locking portion 1341 can be locked and matched with the locking matching portion 1342 to realize the locking of the cup body 135 and the cover plate 17.
[0090] Specifically, the locking portion 1341 is rotatably arranged on the sidewall of the dust cup 13, the locking portion 1341 comprises a locking piece a which can be formed as a hook extending towards the side of the cover plate 17, and a locking matching portion 1342 is formed as a hook extending towards the side of the cup body 135, when the cover plate 17 closes the second interface 133 and the dust outlet 1131, the locking piece a and the locking matching portion 1342 are hookingly matched to realize the locking of the cup body 135 and the cover plate 17.
[0091] In combination Figures 4 to 7 In the direction parallel to the axis of the dust cup 13, the unlocking piece 22 is arranged on the side of the dust collecting station 20 close to the dust cup 13, and the unlocking piece 22 is configured as a convex column extending from the dust collecting station 20 towards the dust cup 13 in the axis direction of the dust cup 13, the locking portion 1341 further comprises an abutting portion b, when the dust cup 13 and the dust collecting station 20 are in abutment, the unlocking piece 22 and the abutting portion b are in abutting cooperation, and the unlocking piece 22 can drive the locking portion 1341 to rotate through the abutting portion b to release the hooking cooperation of the locking piece a and the locking matching portion 1342, thereby releasing the locking of the cover plate 17 and the cup body 135, thus realizing the function of the dust collecting station 20 automatically collecting the dust in the dust cup 13.
[0092] With reference to Figure 2 In some embodiments of the present application, the dust collecting station 20 is provided with a negative pressure device 24, which can form a negative pressure in the dust collecting cavity 21.
[0093] Exemplarily, after the dust collecting station 20 is in abutment with the dust collector main body 10, the negative pressure device 24 starts to operate to form a negative pressure in the dust collecting cavity 21, and after the cover plate 17 is unlocked with the cup body 135, the cover plate 17 can be quickly rotated towards the direction of the dust collecting cavity 21 under the action of the negative pressure to quickly open the second interface 133 and the dust outlet 1131, which is conducive to improving the efficiency of the dust collecting station 20 collecting the dust in the dust cup 13.
[0094] In addition, after the cover plate 17 opens the second interface 133 and the dust outlet 1131, the dust collecting cavity 21 is simultaneously communicated with the first dust cavity 132, the second dust cavity 113 and the cyclone separation mechanism 12, and the dust left in the first dust cavity 132, the second dust cavity 113 and the cyclone separation mechanism 12 can be sucked into the dust collecting cavity 21 under the action of the negative pressure in the dust collecting cavity 21, which is conducive to improving the cleaning effect of the dust collecting station 20 on the dust cup 13.
[0095] As Figure 4 shown, in some embodiments of the present application, the dust collecting station 20 comprises a seat body 23 for carrying the dust collector main body 10, and the seat body 23 is provided with a positioning portion 231 for positioning cooperation with the dust cup 13.
[0096] Exemplarily, the seat body 23 forms the dust collecting cavity 21, and the seat body 23 can be docked with and bear the dust collector main body 10, and a positioning portion 231 is formed on the side of the seat body 23 which is docked with the dust cup 13 in the direction parallel to the axis of the dust cup 13, the positioning portion 231 can be formed as a groove body to avoid the hinged portion on the dust cup 13, and can realize the positioning function of the dust cup 13, which is beneficial to improve the convenience of docking the dust cup 13 with the seat body 23, and when the dust cup 13 is docked with the seat body 23, the hinged portion can be located in the positioning portion 231, the positioning portion 231 can limit the dust cup 13 in the circumferential direction of the dust cup 13 through the hinged portion, so as to prevent the dust cup 13 from rotating relative to the seat body 23, and the reliability of docking the dust cup 13 with the seat body 23 is improved.
[0097] In combination Figure 4 and Figure 5 In some embodiments of the utility model, the seat body 23 is further provided with a first supporting portion 234 and a second supporting portion 235, the first supporting portion 234 is arranged adjacent to the positioning portion 231, and in the direction parallel to the axis of the dust cup 13, the first supporting portion 234 is located on the side of the positioning portion 231 close to the dust collecting cavity 21, and the first supporting portion 234 can be used to support the hinged portion, which is beneficial to improve the supporting stability of the dust cup 13 by the seat body 23.
[0098] The second supporting portion 235 is arranged opposite to the first supporting portion 234 in the radial direction of the seat body 23, and the first supporting portion 234 is used to arrange the unlocking piece 22, and the unlocking piece 22 can be raised from the first supporting portion 234 in the direction away from the first supporting portion 234 in the direction parallel to the axis of the dust cup 13.
[0099] In combination Figure 4 and Figure 5 In some embodiments of the utility model, in the radial direction of the seat body 23, the side of the second supporting portion 235 close to the dust collecting cavity 21 is provided with an avoiding groove 236, the avoiding groove 236 is recessed in the direction away from the dust collecting cavity 21 in the radial direction of the seat body 23, the avoiding groove 236 is used to avoid the locking cooperation portion 1342 and the locking portion 1341, so as to facilitate the locking cooperation of the locking portion 1341 and the locking cooperation portion 1342, and it is beneficial to prevent the dust cup 13 and the seat body 23 from being docked due to the interference between the locking assembly 134 and the seat body 23 during the docking process of the dust cup 13 and the seat body 23.
[0100] In combination Figures 2 to 4 In some embodiments of the utility model, the seat body 23 is provided with an opening 232, and the opening 232 is communicated with the dust collecting cavity 21 and is used to be docked with the second interface 133 of the dust cup 13.
[0101] Exemplarily, an opening 232 is formed on the side of the seat body 23 for abutting with the dust cup 13 in the direction parallel to the axis of the dust cup 13, when the dust cup 13 is abutted with the seat body 23 completely, the unlocking piece 22 unlocks the locking assembly 134, the cover plate 17 can be rotated into the dust collecting cavity 21 through the opening 232 to open the second interface 133 and the dust discharging port 1131, the second interface 133 is abutted with the opening 232, and the second interface 133 and the dust discharging port 1131 can communicate with the dust collecting cavity 21 through the opening 232, so that the dust in the dust cup 13 can be collected into the dust collecting cavity 21.
[0102] Referring to Figure 2 In some embodiments of the present application, the dust collecting station 20 further comprises a dust collecting bag 25, which is arranged between the seat body 23 and the negative pressure device 24 and communicates with the dust collecting cavity 21 in the seat body 23, when the negative pressure device 24 works, negative pressure is generated in the dust collecting bag 25, and the dust in the dust collecting cavity 21 can be collected into the dust collecting bag 25 under the action of the negative pressure, so as to realize the collection of the dust in the dust collecting cavity 21.
[0103] Referring to Figure 4 In the direction parallel to the axis of the dust cup 13, the side of the seat body 23 away from the opening 232 is provided with a communication port 233 for connecting the dust collecting cavity 21 and the dust collecting bag 25.
[0104] Optionally, the material of the dust collecting bag 25 can be selected as a material with air permeable filtering function, for example, the dust collecting bag 25 can be a cotton mesh bag, a filter paper mesh bag or the like, and the material of the dust collecting bag 25 can be determined according to actual production requirements or user's own use requirements, which is not limited here.
[0105] Referring to Figure 1 , Figure 2 , Figure 7 and Figure 8 In some embodiments of the present application, the dust collector main body 10 comprises a main machine 18, in the direction parallel to the axis of the dust cup 13, the main machine 18 is arranged on the side of the dust cup 13 away from the second interface 133, and the fan assembly 16 can be arranged in the main machine 18, and an electric control assembly is further arranged in the main machine 18, which can control the power of the fan assembly 16, so as to realize the control of the dust collecting power of the dust collector main body 10 and the start and stop of the dust collector main body 10.
[0106] As shown in Figure 3 In some embodiments of the present application, a pre-filter 19 is arranged between the main machine 18 and the dust cup 13, which can further filter the dust to prevent the dust from entering the main machine 18 and affecting the operation of the electric control assembly and the fan assembly 16 in the main machine 18, which is beneficial to improve the service life of the dust collector main body 10.
[0107] The pre-filter 19 can be configured as a HEPA (High-Efficiency Particulate Air) filter.
[0108] In combination Figures 9 to 11 According to the dust collector system 100, the dust collector main body 10 can clean dust on a surface to be cleaned by suction to realize the cleaning function of the dust collector main body 10. The dust collector main body 10 comprises a non-cyclone separation mechanism 11, a cyclone separation mechanism 12, and a dust cup 13. The cyclone separation mechanism 12 is located downstream of the non-cyclone separation mechanism 11. Dust separated by the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 can be collected in the dust cup 13.
[0109] That is, the dust sucked by the dust collector main body 10 is first separated by the non-cyclone separation mechanism 11. The non-cyclone separation mechanism 11 can separate part of the dust sucked by the dust collector main body 10 and collect it in the dust cup 13. At the same time, the airflow still carrying part of the dust further enters the cyclone separation mechanism 12 and rotates under the action of the cyclone separation mechanism 12. The dust can be separated from the airflow under the action of centrifugal force, and the separated dust falls into the dust cup 13 and is collected by the dust cup 13.
[0110] Therefore, by arranging the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 in the dust collector main body 10, the dust collector main body 10 can realize twice separation of dust, effectively improving the separation effect of the dust collector main body 10 on dust.
[0111] Further, the dust collector system 100 further comprises a dust collecting station 20. The dust collecting station 20 is connected to the dust collector main body 10. The dust collecting station 20 is arranged on one side of the dust cup 13 in the axial direction and is used to collect dust of the dust cup 13. When the dust collector main body 10 is connected to the dust collecting station 20, the dust cup 13 is arranged vertically.
[0112] It should be noted that the "vertical direction" can be understood as parallel to the axis direction of the dust collecting station 20.
[0113] For example, after using the dust collector main body 10 to complete dust cleaning, the dust is separated and collected in the dust cup 13. At this time, the dust collector main body 10 can be connected to the dust collecting station 20. The dust collecting station 20 can support and fix the dust collector main body 10, which is conducive to preventing damage caused by improper placement of the dust collector main body 10. When the dust collector main body 10 is connected to the dust collecting station 20, the dust collecting station 20 can be connected to the dust cup 13. The dust collected in the dust cup 13 can be further collected in the dust collecting station 20 to realize automatic cleaning of the dust cup 13.
[0114] The dust cup 13 is arranged on one side of the dust cup 13 in the axial direction, and the dust cup 13 is arranged in the vertical direction when the dust collector main body 10 is docked with the dust collecting station 20, so that the dust in the dust cup 13 can be poured into the dust collecting station 20 after the dust collector main body 10 is docked with the dust collecting station 20, the convenience of the dust in the dust cup 13 entering the dust collecting station 20 is improved, and the space utilization of the dust collector system 100 in the axial direction is improved, the size of the dust collector system 100 in the radial direction is reduced, and the radial space for placing the dust collector system 100 is saved.
[0115] Further combined Figures 9 to 11 The dust collector system 100 further comprises a handheld part 14 arranged on the radial outer side of the dust collector main body 10, which improves the convenience of the user holding the handheld part 14 and improves the control flexibility of the dust collector main body 10, and facilitates the user to drive the dust collector main body 10 to perform dust cleaning work at various angles.
[0116] According to the dust collector system 100 of the embodiment of the utility model, the dust collector main body 10 comprises the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12, so that the dust collector main body 10 can realize twice separation of dust, effectively improve the separation effect of the dust collector main body 10, further set the dust collecting station 20 which can be docked with the dust collector main body 10, when the dust collector main body 10 is docked with the dust collecting station 20, the dust collected in the dust cup 13 can be further collected into the dust collecting station 20 to realize the automatic cleaning of the dust cup 13, without manual operation of the user, which improves the use convenience of the dust collector system 100, thereby improving the user's use experience, the dust cup 13 is arranged on one side of the dust cup 13 in the axial direction, and the dust cup 13 is arranged in the vertical direction when the dust collector main body 10 is docked with the dust collecting station 20, which improves the convenience of the dust in the dust cup 13 entering the dust collecting station 20, and improves the space utilization of the dust collector system 100 in the axial direction, reduces the size of the dust collector system 100 in the radial direction, and saves the radial space for placing the dust collector system 100.
[0117] Combined Figures 9 to 11 In some embodiments of the utility model, the dust collector main body 10 further comprises a dust collecting pipe 15 extending in the radial direction of the dust cup 13 and communicating with the first interface 131 on the side of the dust cup 13 away from the handheld part 14.
[0118] Specifically, in the radial direction of the dust cup 13, the side of the dust cup 13 away from the hand-held part 14 (i.e. the side of the dust cup 13 close to the dust collection station 20 after the dust collector main body 10 is docked with the dust collection station 20) is provided with a first interface 131, the first interface 131 is arranged on the side wall of the dust cup 13, and the first interface 131 is used for communication with the dust collection pipe 15, the dust collection pipe 15 extends in the radial direction of the dust cup 13, so that the airflow carrying dust into the dust collection pipe 15 can directly enter the dust cup 13 along the direction in which the dust collection pipe 15 extends, without changing the flow path during the flow of the airflow, which is beneficial to prevent dust accumulation or even blockage at the first interface 131, thereby facilitating reduction of the frequency of cleaning the dust collector main body 10.
[0119] In combination Figures 12 to 14 , the dust collector system 100 according to the embodiments of the present application comprises: a dust collector main body 10, which can clean dust on a surface to be cleaned by suction to realize the cleaning function of the dust collector main body 10, and comprises a non-cyclone separation mechanism 11, a cyclone separation mechanism 12 and a dust cup 13, the cyclone separation mechanism 12 is located downstream of the non-cyclone separation mechanism 11, and dust separated by the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 can be collected in the dust cup 13.
[0120] That is, the dust sucked into the dust collector main body 10 is first subjected to primary separation by the non-cyclone separation mechanism 11, the non-cyclone separation system can separate part of the dust sucked into the dust collector main body 10 and collect it in the dust cup 13, and at the same time, the airflow still carrying part of the dust further enters the cyclone separation mechanism 12 and rotates under the action of the cyclone separation mechanism 12, and the dust can be separated from the airflow under the action of centrifugal force, and the separated dust falls into the dust cup 13 and is collected by the dust cup 13.
[0121] Therefore, by arranging the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 in the dust collector main body 10, twice separation of dust by the dust collector main body 10 can be realized, and the separation effect of the dust collector main body 10 on dust is effectively improved.
[0122] Further, in combination Figures 12 to 14 , the dust collector system 100 further comprises a dust collection station 20, the dust collection station 20 is docked with the dust collector main body 10, the dust collection station 20 is arranged on one side of the dust cup 13 in the axial direction and is used for collecting dust in the dust cup 13.
[0123] Exemplarily, after the dust cleaning is completed by using the dust cleaner main body 10, the dust is separated in the dust cleaner main body 10 and collected in the dust cup 13, at this time, the dust cleaner main body 10 can be docked with the dust collecting station 20, the dust collecting station 20 can support and fix the dust cleaner main body 10, which is beneficial to prevent the dust cleaner main body 10 from being damaged due to improper placement, after the dust cleaner main body 10 is docked with the dust collecting station 20, the dust collecting station 20 can be communicated with the dust cup 13, and the dust collected in the dust cup 13 can be further collected in the dust collecting station 20, so as to realize the automatic cleaning of the dust cup 13.
[0124] Further, in combination with Figures 12 to 14 The dust cleaner system 100 further comprises a handheld part 14 arranged on one side of the dust cleaner main body 10 in the axial direction, which is beneficial to improve the space utilization of the dust cleaner system 100 in the axial direction, thereby being beneficial to reduce the size of the dust cleaner system 100 in the radial direction, and further being beneficial to reduce the radial space required for placing the dust cleaner system 100, and being beneficial to reduce the burden of the user's arm when using the dust cleaner main body 10, and being beneficial to improve the user's experience.
[0125] According to the dust cleaner system 100 of the embodiment of the utility model, by making the dust cleaner main body 10 comprising the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12, the dust cleaner main body 10 can realize twice separation of dust, effectively improve the separation effect of the dust cleaner main body 10 on dust, by further arranging the dust collecting station 20 which can be docked with the dust cleaner main body 10, after the dust cleaner main body 10 is docked with the dust collecting station 20, the dust collected in the dust cup 13 can be further collected in the dust collecting station 20, so as to realize the automatic cleaning of the dust cup 13, without the need for manual operation of the user, which is beneficial to improve the use convenience of the dust cleaner system 100, thereby being beneficial to improve the user's experience, by arranging the handheld part 14 on one side of the dust cleaner main body 10 in the axial direction, which is beneficial to improve the space utilization of the dust cleaner system 100 in the axial direction, thereby being beneficial to reduce the size of the dust cleaner system 100 in the radial direction, and further being beneficial to reduce the burden of the user's arm when using the dust cleaner main body 10, and improving the user's experience.
[0126] In combination with Figures 12 to 14 In some embodiments of the utility model, the dust cleaner main body 10 further comprises a dust suction pipe 15, and the dust cup 13 comprises a cup main body 135, the cup main body 135 is formed with a cavity, and the cup main body 135 is provided with a first interface 131 and a second interface 133 at one end in the axial direction, the first interface 131 is communicated with the dust suction pipe 15, and the second interface 133 is used for docking with the dust collecting cavity 21 of the dust collecting station 20, in the cup main body 135, the second interface 133 is arranged on the radial outer side of the first interface 131.
[0127] Exemplarily, the cup body 135 is formed with a cavity to facilitate the arrangement of the non-cyclone separation mechanism 11 and the cyclone separation mechanism 12 in the cup body 135, the cup body 135 is provided with a first interface 131 and a second interface 133 on the side away from the handheld part 14 in the axial direction, in the axial projection plane of the cup body 135, the orthographic projection plane of the first interface 131 falls within the orthographic projection range of the cavity formed by the cup body 135, and the orthographic projection plane of the second interface 133 is located on the radial outer side of the cavity, that is, the second interface 133 is arranged on the radial outer side of the first interface 131 to achieve the spaced arrangement of the first interface 131 and the second interface 133, which is beneficial to prevent interference between the dust suction pipe 15 in communication with the first interface 131 and the dust collection station 20 when the dust collector main body 10 is docked with the dust collection station 20, and is beneficial to improve the convenience of docking the dust collector main body 10 with the dust collection station 20.
[0128] Further combined Figure 13 And Figure 14 The dust cup 13 further comprises a cover plate 17 connected with the cup body 135 for opening and closing the second interface 133.
[0129] Exemplarily, during the dust cleaning work using the dust collector main body 10, the second interface 133 is closed to achieve the sealing of the dust cup 13, and after the docking of the dust collector main body 10 with the dust collection station 20 is completed, the cover plate 17 can open the second interface 133, so that the second interface 133 can be docked with the dust collection cavity 21, and the dust collected in the dust cup 13 can be discharged into the dust collection cavity 21 to achieve the function of collecting the dust in the dust cup 13 by the dust collection station 20.
[0130] Combined Figures 12 to 14 In some embodiments of the utility model, the dust collector main body 10 further comprises a fan assembly 16, wherein the dust cup 13, the fan assembly 16 and the handheld part 14 are arranged in a substantially linear type along the central axis direction of the dust suction pipe 15.
[0131] Exemplarily, the fan assembly 16 can be arranged at one end of the dust cup 13 close to the handheld part 14, the fan assembly 16 works to generate negative pressure in the dust cup 13 and suck the dust into the dust cup 13 through the dust suction pipe 15, and the axis of the dust cup 13, the axis of the fan assembly 16 and the axis of the handheld part 14 can be arranged in a substantially collinear manner along the central axis of the dust suction pipe 15 to achieve the arrangement of the dust cup 13, the fan assembly 16 and the handheld part 14 in a substantially linear type along the central axis direction of the dust suction pipe 15, which is beneficial to further improve the space utilization of the dust collector system 100 in the axial direction, thereby further reducing the size of the dust collector system 100 in the radial direction, and further reducing the radial space required for placing the dust collector system 100.
[0132] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0133] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. A dusting system, characterized in that The dust collector system comprises: a dust collector main body comprising a non-cyclone separation mechanism, a cyclone separation mechanism downstream of the non-cyclone separation mechanism, and a dust cup, wherein dust separated by the non-cyclone separation mechanism and the cyclone separation mechanism can be collected in the dust cup; a dust collecting station provided with a dust collecting cavity, wherein the dust collecting station can be used to carry and dock the dust collector main body, and the dust collecting cavity is adapted to collect dust in the dust cup when the dust collecting station is docked with the dust collector main body.
2. The dusting system of claim 1, wherein, The dust collector main body further comprises a hand-held part, a dust suction pipe in fluid communication with the dust cup, and a fan assembly for providing suction force, wherein the axis of the dust suction pipe, the axis of the dust cup, and the axis of the fan assembly are arranged in a substantially parallel manner, and the axis of the hand-held part is arranged at an angle with the axis of the dust cup.
3. The dusting system of claim 1, wherein, The non-cyclone separation mechanism has a generally "U" shape in a cross section perpendicular to the axis of the dust cup, and the surface of the middle recess of the "U" shape is provided with filter mesh holes, the dust collector main body comprises a dust suction pipe in communication with the dust cup, and the airflow entering the dust cup from the dust suction pipe flows into the cyclone separation mechanism through the filter mesh holes.
4. The dusting system of claim 3, wherein, A first interface is formed in the sidewall of the dust cup, the dust suction pipe is in fluid communication with the interior of the dust cup through the first interface, and the first interface is directly opposite the middle recess of the non-cyclone separation mechanism.
5. The dusting system of claim 3, wherein, A first dust cavity is formed between the non-cyclone separation mechanism and the inner wall of the dust cup, the non-cyclone separation mechanism comprises second dust cavities on both sides of the middle recess, and the second dust cavities are used to collect dust separated by the cyclone separation mechanism.
6. The dust collector system according to claim 5, wherein a second interface is formed in the end of the dust cup away from the cyclone separation mechanism in the axis direction, a dust discharge port is formed in the side of the second dust cavity facing the second interface, and a cover plate is arranged on the dust cup, wherein the cover plate is used to simultaneously open or close the second interface and the dust discharge port. The dust cup comprises a locking assembly and a cup main body, the locking assembly is arranged on the cup main body and / or the cover plate, and the cover plate and the cup main body are locked and matched by the locking assembly.
7. The dusting system of claim 6, wherein, The dust collecting station is provided with an unlocking member, the unlocking member can be in contact with the locking assembly and release the locking state of the locking assembly, and the cover plate is adapted to open the second interface when the locking assembly releases the locking state.
8. The dusting system of claim 7, wherein, The dust collecting station is provided with a negative pressure device, and the negative pressure device can form a negative pressure in the dust collecting cavity.
9. The dusting system of claim 1, wherein, The dust collecting station comprises a seat body for carrying the dust collector main body, and the seat body is provided with a positioning part for positioning and matching with the dust cup.
10. The dusting system of claim 1, wherein, The seat body is provided with an opening, the opening is in communication with the dust collecting cavity, and the opening is used to dock with the second interface of the dust cup.
11. The dusting system of claim 10, wherein, The dust collector system comprises:
12. A dusting system characterized by a dust collector main body comprising a non-cyclone separation mechanism, a cyclone separation mechanism downstream of the non-cyclone separation mechanism, and a dust cup, wherein dust separated by the non-cyclone separation mechanism and the cyclone separation mechanism can be collected in the dust cup; A dust collecting station is arranged on one side of the dust cup in the axial direction and is used to collect dust in the dust cup. A hand-held part is arranged on the outside of the dust collector main body in the radial direction. When the dust collector main body is connected with the dust collecting station, the dust cup is arranged vertically.
13. The dusting system of claim 12, wherein, The dust collector main body further comprises a dust collecting pipe which extends along the radial direction of the dust cup and is in communication with the first interface on the side of the dust cup away from the hand-held part.
14. A dusting system characterized by The dust collector main body comprises: a dust collector main body comprising a non-cyclone separation mechanism, a cyclone separation mechanism downstream of the non-cyclone separation mechanism, and a dust cup, dust separated by the non-cyclone separation mechanism and the cyclone separation mechanism being collected in the dust cup; a dust collecting station connected with the dust collector main body, the dust collecting station being arranged on one side of the dust cup in the axial direction and being used to collect dust in the dust cup; a hand-held part arranged on one side of the dust collector main body in the axial direction.
15. The dusting system of claim 14, wherein, The dust collector main body further comprises a dust collecting pipe, and the dust cup comprises: a cup main body formed with a cavity, one end of the cup main body being provided with a first interface and a second interface in the axial direction, the first interface being in communication with the dust collecting pipe, and the second interface being used to connect with a dust collecting cavity of the dust collecting station, the second interface being arranged on the outside of the first interface in the radial direction in the cup main body; a cover plate connected with the cup main body for opening and closing the second interface.
16. The dusting system of claim 15, wherein, The dust collector main body further comprises a fan assembly, and the dust cup, the fan assembly, and the hand-held part are arranged in a substantially linear shape along the central axis of the dust collecting pipe.