CN218572107U - Convenient to use's surface cleaner - Google Patents

Convenient to use's surface cleaner Download PDF

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Publication number
CN218572107U
CN218572107U CN202222380866.2U CN202222380866U CN218572107U CN 218572107 U CN218572107 U CN 218572107U CN 202222380866 U CN202222380866 U CN 202222380866U CN 218572107 U CN218572107 U CN 218572107U
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China
Prior art keywords
magnet
collection box
garbage collection
filter
piece
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CN202222380866.2U
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Chinese (zh)
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朱泽春
魏云杰
王国强
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Sharkninja China Technology Co Ltd
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Sharkninja China Technology Co Ltd
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Abstract

The utility model discloses a surface cleaning machine belongs to cleaning device technical field, including the organism that is equipped with into dirt mouth, the control panel and locate the dust absorption subassembly in the organism, the dust absorption subassembly includes that the air current takes place a and garbage collection box, demountable installation has the filtration piece on the lid of garbage collection box, the air current takes place a controlled in control panel, the garbage collection box is equipped with and takes place a butt joint complex air outlet with the air intake that advances dirt mouth butt joint intercommunication and with the air current, be equipped with the detection structure between garbage collection box and the organism, detect the structure including locating the magnet on the garbage collection box and locating the magnetic induction element in the organism, magnetic induction element electricity connects in the control panel, filter piece and magnet and link each other, the garbage collection box triggers magnetic induction element with the organism assembly, so that the control panel acquires the installation status signal of the interior filtration piece of garbage collection box. Only after the garbage collection box provided with the filter piece is arranged in the machine body, the magnetic induction element can be triggered, and the control panel obtains a detection identification signal to start the airflow generation piece.

Description

Convenient to use's surface cleaner
Technical Field
The utility model relates to a cleaning device technical field especially relates to a convenient to use's surface cleaning machine.
Background
In recent years, various cleaning apparatuses are widely used in daily life of people, and the various cleaning apparatuses reduce daily cleaning workload of people and bring great convenience to life of users, and among them, surface cleaning machines such as floor washers, dust collectors, and self-moving cleaning robots are increasingly favored by users through intelligent control. In order to meet the cleaning requirements of users, a dust collection assembly for collecting dirt such as dust, hair and debris is arranged in some surface cleaning machines, the dust collection assembly works according to the working principle that a motor drives fan blades to rotate at a high speed to form dust collection airflow which is discharged after the dust enters a dust collection box and flows through the dust collection box, and the dirt or the garbage at the bottom of the surface cleaning machine flows into the dust collection box along with the dust collection airflow and is collected. Because surface cleaning machine's inside is equipped with electronic component such as motor, control panel, in order to avoid filth such as dust to get into inside the motor or get into inside surface cleaning machine and cause harmful effects to electronic component, generally demountable installation has the filter screen that is used for filtering filth such as dust in the rubbish collection box. In order to prevent that the user from neglected loading the filter screen or neglected loading garbage collection box, all be equipped with comparatively complicated mechanical structure between filter screen and the garbage collection box, between garbage collection box and the organism, only the garbage collection box of having installed the filter screen can only push away to the settlement position through a series of mechanical structure triggers that are used for triggering the detection sensor. The structure of garbage collection box is comparatively complicated, and the user is comparatively arduous when installing the filter screen, is unfavorable for improving user's use and experiences.
SUMMERY OF THE UTILITY MODEL
In order to solve the shortcoming and the deficiency that exist among the above-mentioned prior art, the utility model provides a convenient to use's surface cleaning machine plays when rationally reducing the installation degree of difficulty and prevents to filter the purpose that filter piece neglected loading or garbage collection box neglected loading.
In order to realize the technical purpose, the utility model provides a pair of convenient to use's surface cleaning machine, including organism, the control panel that is equipped with into dirt mouth and locating the dust absorption subassembly in the organism, the dust absorption subassembly includes that the air current takes place a and the garbage collection box, and demountable installation has a filtration piece on the lid of garbage collection box, and the air current takes place a controlled by control panel, and the garbage collection box is equipped with and advances the air intake of dirt mouth butt joint intercommunication and takes place a butt joint complex air outlet with the air current, be equipped with between garbage collection box and the organism and detect the structure, detect the magnet on the garbage collection box and locate the magnetic induction element in the organism including locating, the magnetic induction element electricity is connected in the control panel, filter with magnet inter link, the garbage collection box triggers magnetic induction element with the organism assembly, so that the control panel acquires the installation status signal of the filtration piece in the garbage collection box.
Preferably, filter the piece and include the support and locate the filter unit on the support, on magnet located the support, with filter an organic whole linkage.
Preferably, the filter unit is detachably arranged on the bracket.
Preferably, the magnet can be movably arranged on the garbage collection box, the magnet is provided with a deviation position staggered with the magnetic induction element and a trigger position corresponding to the magnetic induction element, the filtering piece is arranged in the garbage collection box to enable the magnet to move from the deviation position to the trigger position, and the filtering piece is separated from the garbage collection box to enable the magnet to move from the trigger position to the deviation position.
Preferably, the garbage collection box is provided with a rotating frame, the magnet is arranged on the rotating frame, the filtering piece is arranged in the garbage collection box, so that the rotating frame drives the magnet to rotate from the deviation position to the triggering position, and the filtering piece is separated from the garbage collection box, so that the rotating frame drives the magnet to rotate from the triggering position to the deviation position.
Preferably, the rotating frame comprises two frame parts which are arranged at an angle, and the magnet is arranged on one of the frame parts.
Preferably, the garbage collection box is provided with a cavity for installing the rotating frame, the rotating frame is rotatably arranged at the cavity, at least part of the rotating frame extends out of the cavity when the magnet is at a deviated position, and the filtering piece is abutted against the part of the rotating frame extending out of the cavity when being installed in the garbage collection box so that the rotating frame drives the magnet to rotate.
Preferably, a limiting and matching structure used for limiting the range of the rotation angle of the rotating frame is arranged between the rotating frame and the garbage collecting box.
Preferably, magnet is portable to be located on the garbage collection box, detects the structure and includes that one end location sets up, the other end contacts in the elastic component of magnet, filters and install in the garbage collection box and contradict with magnet and make magnet from the off-set position translation to the trigger position and make the elastic component atress warp, filters and breaks away from the garbage collection box and makes the elastic component drive magnet from the off-set position translation to the off-set position.
Preferably, a fool-proof structure for preventing the filter piece from being mistakenly mounted is arranged between the filter piece and the garbage collection box.
After the technical scheme is adopted, the utility model has the advantages of as follows:
1. the utility model provides a convenient to use's surface cleaning machine sets up between garbage collection box and the organism and detects the structure, detects the structure and adopts magnet and magnetic induction element complex structure, and the magnetic induction element electricity is connected in the control panel. Because filter piece and magnet linkage each other, install the garbage collection box that filters piece and trigger magnetic induction element when the organism assembles, the control panel judges that the garbage collection box installation targets in place and filters the piece installation according to magnetic induction element's trigger signal, the control panel can make the air current take place a start-up, the air current takes place a during operation and forms the dust absorption air current that flows to the garbage collection box from dust inlet, filter the piece and filter the dust absorption air current, avoid dirt such as dust to flow into the inside that the air current takes place the piece or the inside of organism causes harmful effects to electron device, make the whole function stability that keeps of surface cleaning machine. During the installation, at first will filter and install the lid inboard at the garbage collection box, then close the lid on the box body of garbage collection box, realize will filtering and install in the garbage collection box. Set up the lid on the garbage collection box and can make things convenient for the cleanness in the box body on the one hand, on the other hand can make things convenient for the installation of filtering the piece fixed. When the garbage collection box is not provided with a filtering piece or the garbage collection box is not arranged in the machine body, the magnetic induction element cannot be triggered, the control panel cannot obtain a detection identification signal, and the control panel cannot enable the airflow generation piece to be started. Only can trigger magnetic induction element after the box-packed organism of garbage collection who has installed and filter piece, filter between piece and the garbage collection box, need not to set up complicated mechanical structure between garbage collection box and the organism, be favorable to rationally reducing the structure degree of difficulty of garbage collection box, also be favorable to rationally reducing the degree of difficulty that the user will filter the degree of difficulty of packing into the garbage collection box in and pack the garbage collection box into the organism, be favorable to improving user's use and experience.
2. On magnet can locate the support of filtering a piece, with filter an organic whole linkage, make magnet can trigger magnetic induction element after installing the rubbish collection box-packed organism that filters a piece, rationally set up the mounted position of magnet, make the requirement that the detection structure satisfies whether the detection user neglected loading filters piece or neglected loading rubbish collection box.
3. The filter unit can be dismantled and locate on the support, makes the user wash or tear filter unit open as required, can guarantee to filter the filtering quality of piece when reducing use cost, prevents that the filter unit from piling up the condition that the filtering quality worsens that too much caused because of using the dust for a long time.
4. The magnet also can be movably arranged on the garbage collection box, the magnet moves to the triggering position from the deviation position when the filtering piece is arranged in the garbage collection box, the magnet moves to the deviation position from the triggering position when the filtering piece is separated from the garbage collection box, and the magnetic induction element can be triggered smoothly only after the filtering piece is arranged in place and the garbage collection box with the magnet at the triggering position is arranged in the machine body. The reasonable installation position that sets up magnet makes the detection structure satisfy and detects whether neglected loading filter piece or neglected loading garbage collection box's of user requirement.
5. On rotatable rotating turret was located to magnet, filter and make the rotating turret take place to rotate when installing in the rubbish collection box, the rotating turret drives magnet and rotates to the trigger position from the off position. When the filtering piece is separated from the garbage collection box, the rotating frame rotates and resets to drive the magnet to return to the deviation position from the triggering position. The specific installation structure of the magnet is reasonably arranged, so that the magnet can be in a triggering position when the filter piece is installed in place.
6. At least part of the rotating frame extends out of the concave cavity when the magnet is in the deviation position, when the filtering piece is arranged in the garbage collection box, the filtering piece is abutted against the part of the rotating frame extending out of the concave cavity, so that the filtering piece arranged in the garbage collection box can drive the rotating frame to rotate, and the rotating frame can smoothly drive the magnet to rotate to the triggering position from the deviation position.
7. Set up spacing cooperation structure between rotating turret and the garbage collection box, through the turned angle scope of this spacing cooperation structure restriction rotating turret, avoid the rotating turret to rotate the condition that excessively leads to the skew trigger position of magnet, also avoid the rotating turret to rotate excessively to lead to filtering piece can not conflict smoothly and drive the rotating turret pivoted condition when the installation.
8. Magnet also can be through the elastic component can round trip movement locate the garbage collection box on, filter when installing in the garbage collection box, filter and contradict the effort that makes magnet overcome the elastic component from the deviation position translation to triggering the position with magnet, the elastic component atress warp. When the filtering piece is separated from the garbage collection box, the elastic piece which recovers deformation drives the magnet to automatically translate and reset to the deviation position from the triggering position. The specific installation structure of the magnet is reasonably arranged, so that the magnet can be in a triggering position when the filter piece is installed in place.
9. Set up between filtering piece and the garbage collection box and prevent slow-witted structure, prevent through preventing slow-witted structure that the user from adorning by mistake and filter the piece, make the user can relax, the exact installation filter piece, ensure to filter the piece and can carry out abundant, effectual filtration to the dust absorption air current that flows through the garbage collection box at surface cleaner during operation.
Drawings
FIG. 1 is a schematic diagram of a self-moving cleaning robot according to an embodiment;
FIG. 2 is a partial internal structure view of a self-moving cleaning robot according to an embodiment;
FIG. 3 is a schematic diagram of a dust collecting assembly of the self-propelled cleaning robot according to an embodiment;
FIG. 4 is a cross-sectional view of a waste collection bin of a self-propelled cleaning robot in accordance with an embodiment;
FIG. 5 is a schematic view of the garbage collection box, the detection structure and the control board of the self-moving cleaning robot according to the embodiment;
FIG. 6 is a schematic view of a filter unit in a self-moving cleaning robot according to an embodiment;
FIG. 7 is a schematic structural view of a garbage collection box of the self-moving cleaning robot according to the second embodiment, wherein the magnet is in the activated position;
FIG. 8 is an enlarged view taken at A in FIG. 7;
FIG. 9 is a partial structural view of the self-moving cleaning robot according to the second embodiment in which the magnet is located at an offset position;
FIG. 10 is a partial structural view of a magnet of a self-moving cleaning robot according to a third embodiment in a trigger position;
fig. 11 is a partial configuration diagram of the self-moving cleaning robot according to the third embodiment in which the magnet is located at a deviated position.
In the figure, 100-machine body, 110-dust inlet, 120-installation cavity, 131-rolling brush, 132-rolling brush motor, 141-side brush motor, 142-side brush, 151-mopping motor, 152-mopping component, 160-air inlet channel, 200-control panel, 300-air flow generating component, 310-dust collecting motor, 320-volute, 400-garbage collecting box, 410-filtering component, 411-bracket, 412-filtering unit, 413-foolproof boss, 414-cylinder, 420-air inlet, 430-air outlet, 440-box body, 441-cavity, 442-first step surface, 443-concave hole, 444-blocking rib, 445-convex column, 450-box cover, 510-magnet, 520-magnetic induction element, 530-rotating bracket, 531-first frame body part, 532-second frame, 533-pin shaft, 534-second step surface, and 540-spring.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments. It is to be understood that the following terms "upper," "lower," "left," "right," "longitudinal," "lateral," "inner," "outer," "vertical," "horizontal," "top," "bottom," and the like, which refer to orientations or positional relationships, are based only on the orientations or positional relationships illustrated in the drawings and are used only for convenience in describing the present invention and to simplify the description, but are not intended to indicate or imply that the device/component so referred to must have a particular orientation or be constructed and operated in a particular orientation and therefore are not to be construed as limiting the present invention.
The surface cleaning machine of the present invention may be a self-moving cleaning robot, a floor cleaning machine, a vacuum cleaner, etc., and the following embodiments are described in detail with respect to structural improvements of the self-moving cleaning robot, the floor cleaning machine, and the vacuum cleaner, but not limited to these three surface cleaning machines.
Example one
As shown in fig. 1 to 6, a surface cleaning machine provided by the first embodiment of the present invention is a self-moving cleaning robot, including a machine body 100 provided with a dust inlet 110, a control panel 200 and a dust collection assembly arranged in the machine body 100, the dust collection assembly includes an airflow generation element 300 and a garbage collection box 400 detachably mounted inside with a filter element 410, the airflow generation element 300 is controlled by the control panel 200, and the garbage collection box 400 is provided with an air inlet 420 communicated with the dust inlet 110 in a butt joint manner and an air outlet 430 matched with the airflow generation element 300 in a butt joint manner. Be equipped with between rubbish collection box 400 and the organism 100 and detect the structure, detect the structure including locating magnet 510 on rubbish collection box 400 and locating the magnetic induction element 520 in the organism 100, magnetic induction element 520 electricity is connected in control panel 200, filters piece 410 and the mutual linkage of magnet 510, and rubbish collection box 400 and the assembly of organism 100 trigger magnetic induction element 520 to make control panel 200 acquire the installation status signal of the interior filtration piece of rubbish collection box.
Because filter piece and magnet linkage each other, when installing the rubbish collection box that filters and installing in the organism, magnet triggers magnetic induction element, the control panel judges that the installation of rubbish collection box targets in place and filters the piece installation and targets in place according to magnetic induction element's triggering signal, the control panel can make the air current take place a start-up, the air current takes place a during operation to form the dust absorption air current that flows to the rubbish collection box from the dust inlet, filter and filter the piece and filter the dust absorption air current, avoid dirt such as dust to flow into the inside that the air current takes place the piece or the inside of organism causes harmful effects to electron device, make the whole function stability that keeps of self-moving cleaning robot. When the garbage collection box is not provided with a filtering piece or the garbage collection box is not arranged in the machine body, the magnetic induction element cannot be triggered, the control panel cannot obtain a detection identification signal, and the control panel cannot enable the airflow generation piece to be started. Only can trigger magnetic induction element after the machine body is packed into to the garbage collection box who has installed filtering piece, filter between piece and the garbage collection box, need not to set up complicated mechanical structure between garbage collection box and the machine body, be favorable to rationally reducing the structure degree of difficulty of garbage collection box, also be favorable to rationally reducing the degree of difficulty that the user will filter the piece and pack into the garbage collection box in the garbage collection box and pack into the machine body with the garbage collection box in the degree of difficulty, be favorable to improving user's use and experience.
Referring to fig. 1 and 2, in this embodiment, an installation cavity 120 with an open bottom side is disposed at a substantially middle portion of the machine body 100 in the front-rear direction, the dust inlet 110 is located at the bottom side of the installation cavity 120, an air inlet channel 160 for communicating the installation cavity 120 with an air inlet 420 is further disposed in the machine body 100, one end of the air inlet channel 160 is communicated with the installation cavity 120, and the other end is detachably communicated with the air inlet 420 in a butt joint manner. A rolling brush 131 driven by a rolling brush motor 132 is arranged in the installation cavity 120, two side brushes 142 which are symmetrically distributed left and right and driven by a side brush motor 141 are arranged on the front side of the bottom of the machine body 100, two mopping pieces 152 which are symmetrically distributed left and right and driven by a mopping motor 151 are arranged on the rear side of the bottom of the machine body 100, and the rolling brush motor 132, the side brush motor 141 and the mopping motor 151 are all controlled by a control board 200.
Referring to fig. 3 and 4, the garbage collection box 400 is detachably installed in the garbage collection box 100, the garbage collection box 400 includes a box body 440 and a box cover 450 for covering the box body 440, the air inlet 420 is disposed on a side wall of the box body 440 facing the air inlet passage 160, and the air outlet 430 is disposed on a side wall of the box body 440 facing the airflow generating member 300. The airflow generating member 300 includes a dust collection motor 310 and a volute 320 disposed outside the dust collection motor 310, an air inlet end of the volute 320 is disposed toward the garbage collection box 400, an air outlet end of the volute 320 is disposed toward a sidewall of the machine body 100, and the dust collection motor 310 is controlled by the control board 200.
Referring to fig. 5 and 6, the filter element 410 includes a bracket 411 and a filter unit 412 disposed on the bracket 411, and the magnet 510 is disposed on the bracket 411. In this embodiment, the bracket 411 is provided with a mounting hole for mounting the magnet 510, the magnet 510 is fixed in the mounting hole, and the magnetic sensing element 520 is a hall element and is fixed in the machine body 100. The filtering unit 412 can be detachably arranged on the bracket 411, so that a user can clean or disassemble the filtering unit 412 as required, the use cost can be reduced, the filtering performance of the filtering piece 410 can be ensured, and the situation that the filtering performance of the filtering unit 412 is deteriorated due to excessive dust accumulation caused by long-term use can be prevented.
In order to prevent the user from mistakenly installing the filter element 410, a fool-proof structure is arranged between the filter element 410 and the garbage collection box 400, so that the user can easily and correctly install the filter element 410 through the fool-proof structure, and the filter element 410 can fully and effectively filter the dust suction airflow flowing through the garbage collection box 400 when the self-moving cleaning robot works. In this embodiment, the bracket 411 of the filter element 410 is provided with a fool-proof boss 413 protruding outwards, the inner wall of the box body 440 is provided with a fool-proof groove matching with the fool-proof boss 413, and the mounting hole for mounting the magnet 510 is provided on the fool-proof boss 413. When the filtering member 410 is installed, the filtering member 410 can be smoothly installed in the box body 440 only when the fool-proof boss 413 faces the direction matched with the fool-proof groove, otherwise the fool-proof boss 413 interferes with the side wall of the box body 440, and the filtering member 410 cannot be smoothly installed in the box body 440.
When the garbage collection box is used, a user firstly puts the filter element 410 into the box body 440, then covers the box body 440 by the box cover 450, and puts the garbage collection box 400 into the machine body 100, so that the magnet 510 corresponds to the magnetic induction element 520. After the self-moving cleaning robot is started, the control board 200 determines that the garbage collection box 400 and the filter 410 are installed in place according to the signal fed back by the magnetic induction element 520, and can command the dust collection motor 410 to start. When the dust suction motor 410 operates, a dust suction airflow is formed, which flows into the garbage collection box 400 from the dust inlet 110 and flows into the garbage collection box 400 through the installation cavity 120, the communication passage 160, and the air inlet 420, dirt such as dust, hair, etc. from the bottom of the mobile cleaning robot is sucked into the garbage collection box 400 under the action of the dust suction airflow, and the dust suction airflow flows into the scroll 320 after being filtered by the filter element 410 and then is discharged out of the machine body 100. The filter element 410 is used for effectively filtering the dust suction airflow flowing to the volute 320, so that the condition that the dust suction motor 310 is scrapped due to the fact that dirt flows into the dust suction motor 310 along with the dust suction airflow is avoided.
It will be appreciated that the mop member 152 includes a turntable and a mop swab removably secured to the bottom of the turntable.
It is understood that the magnetic induction element 520 may also be a reed switch or other electronic element capable of outputting an induction signal according to a magnetic change.
It will be appreciated that the filter element 412 may also be secured directly to the bracket 411, and that the filter element 410 may be replaced periodically by the user.
It should be understood that the fool-proof structure between the filtering member 410 and the garbage collection box 400 is not limited to the structure of the fool-proof boss 413 matching with the fool-proof groove as described above and shown in the drawings, but other reasonable fool-proof structures can be adopted, for example, a special-shaped matching structure is adopted between the filtering member 410 and the garbage collection box 400, and the filtering member 410 can be smoothly installed in the garbage collection box 400 only according to a specific orientation.
It is understood that the mounting hole for mounting the magnet 510 may be disposed at other positions of the bracket 411 besides the fool-proof boss 413.
It will be appreciated that the support 411 of the filter element 410 may be integrally formed with the cover 450 to cover the box body 440 with the cover 450 and to allow the filter element 410 to be installed.
It should be understood that the cleaning structure of the bottom of the machine body 100 is not limited to the rolling brush 131, the side brush 142 and the mop 152 described above and shown in the drawings, and other reasonable structures can be provided, such as eliminating the side brush 142, replacing the mop 152 with a cleaning roller, etc.
It will be appreciated that other configurations of the self-moving cleaning robot may be referred to in the art.
Example two
Referring to fig. 7, 8 and 9, in the present embodiment, the magnet 510 is movably disposed on the garbage collection box 400, and the magnet 510 has a deviation position dislocated from the magnetic sensor 520 and a trigger position corresponding to the magnetic sensor 520. The filter element 410, when installed in the waste collection bin 400, moves the magnet 510 from the deflected position to the activated position. The filter element 410, when disengaged from the waste collection bin 400, moves the magnet 510 from the activated position to the deflected position.
Referring to fig. 9, the garbage collection box 400 is provided with a rotating frame 530, and the magnet 510 is provided on the rotating frame 530. When the filter element 410 is installed in the waste collection box 400, the rotating frame 530 rotates the magnet 510 from the biased position to the activated position. When the filter element 410 is detached from the waste collection box 400, the rotating frame 530 rotates the magnet 510 from the triggering position to the offset position. Specifically, the rotating frame 530 includes a first frame portion 531 and a second frame portion 532 arranged at a right angle, the first frame portion 531 is provided with a hole for mounting the magnet 510, and the magnet 510 is embedded in the hole. The side wall of the box body 440 is provided with a cavity 441 for installing the rotating frame 530, the second frame portion 532 is hinged to the side wall of the box body 440 through a pin shaft 533, and the rotating frame 530 is arranged at the cavity 441.
Referring to fig. 9, when the filter element 410 is not loaded into the housing 440, the rotating frame 530 is tilted to position the magnet 510 in a biased position, and the end of the second housing portion 532 remote from the first housing portion 531 extends out of the cavity 441, so that the magnet 510 cannot trigger the magnetic sensor 520 even when the garbage collection box 400 is loaded into the body 100.
Referring to fig. 8, when the filter element 410 is loaded into the garbage collection box 400, the side wall of the filter element 410 abuts against the end of the second frame portion 532 extending out of the cavity 441, and applies a force to the rotating frame 530 to rotate the rotating frame 530, the rotating frame 530 drives the magnet 510 to rotate to the triggering position shown in fig. 8, and after the garbage collection box 400 is loaded into the machine body 100, the magnet 510 can trigger the magnetic sensing element 520 smoothly.
In order to limit the range of the rotation angle of the rotating frame 530 when the filter 410 is loaded in the garbage collection box 400, a limit fitting structure is provided between the rotating frame 530 and the garbage collection box 400. Referring to fig. 9, in this embodiment, the side of the cavity 441 facing the filter 410 is provided with a first step surface 442, the second frame portion 532 is provided with a second step surface 534 cooperating with the first step surface 442, and when the rotating frame 530 rotates until the second step surface 534 collides with the first step surface 442, the rotating frame 530 rotates to a proper position and maintains a stable structure, and at this time, the magnet 510 is in the triggering position.
The other structures of the second embodiment are the same as those of the first embodiment, and are not described in detail here.
It is understood that the first frame portion 531 and the second frame portion 532 may be disposed at an acute angle or an obtuse angle.
It can be understood that in the second embodiment, the angle of the rotation of the magnet 510 along with the rotating frame 530 between the deviation position and the triggering position may be set to a reasonable value such as 45 °, 50 °, 55 °, 60 °, 65 °, 70 °, 75 °, 80 °, 85 °, 90 °, 95 °,100 °, etc.
It is to be understood that the limit engagement structure is not limited to the structure in which the first step surface 442 and the second step surface 534 cooperate with each other as described above and shown in the drawings, and other reasonable structures are also possible, such as a stopper provided on the cavity wall of the cavity 441 for limiting the range of the rotation angle of the second frame portion 532, and the rotating frame 530 rotates to the position when the second frame portion 532 rotates to contact the stopper.
EXAMPLE III
Referring to fig. 10 and 11, in this embodiment, the magnet 510 is movably disposed on the garbage collection box 400, and the detecting structure includes an elastic member having one end positioned and the other end contacting the magnet 510. The filter element 410 abuts the magnet 510 when installed in the waste collection bin 400, causing the magnet 510 to translate from the deflected position to the activated position and the resilient element to deform under force. When the filter element 410 is detached from the waste collection box 400, the resilient element that recovers its deformation drives the magnet 510 to return from the triggering position and translate to the offset position.
Specifically, be equipped with one end on the lateral wall of box body 440 and seal and the open shrinkage pool 443 of the other end, be equipped with round fender muscle 444 on the pore wall of shrinkage pool 443, magnet 510 locates in the shrinkage pool 443 and is the thin stairstepping column of the thick one end of one end, the elastic component adopts spring 540, be equipped with on the pore wall of the sealed end in the shrinkage pool 443 towards the convex projection 445 of opening end, the outside of projection 445 and the conflict realization location setting with the pore wall of shrinkage pool 443 are located to the pot head of spring 540, the other end and the magnet 510 conflict of spring 540, spring 540 is in the compression state and supports magnet 510 to the open end of shrinkage pool 443. The magnet 510 does not come out of the recess 443 due to the blocking action of the rib 444. The support 411 of the filter element 410 is provided with an outwardly protruding post 414, which post 414 is inserted into the recess 443 and abuts against the magnet 510 when the filter element 410 is loaded into the waste collection box 400, thereby moving the magnet 510 towards the closed end of the recess 443 and compressing the spring 540 under force.
Referring to fig. 11, when the filter member 410 is not loaded in the waste collection box 400, the magnet 510 collides with the rib 444 by the spring 540, and the magnet 510 is in a deviated position, so that the magnet 510 cannot trigger the magnetic sensor 520 even if the waste collection box 400 is loaded in the machine body 100.
Referring to fig. 10, when the filter element 410 is loaded into the waste collection box 400, the cylinder 414 is inserted into the recess 443 to collide with the magnet 510 and move the magnet 510 toward the closed end of the recess 443 by a distance to reach the triggering position, and the spring 540 is further compressed by the collision of the cylinder 414. When the garbage collection box 400 with the filter member 410 is mounted in the machine body 100, the magnet 510 activates the magnetic induction element 520.
Upon removal of the waste collection bin 400 and removal of the filter element 410, the return spring 540, which is deformed, causes the magnet 510 to automatically return and translate from the activated position to the deflected position.
The other structures of the third embodiment are the same as those of the first embodiment, and are not described in detail here.
It is understood that the distance that the magnet 510 moves between the offset position and the trigger position in the third embodiment can be set to a reasonable size such as 5mm, 6mm, 7mm, 8mm, 9mm, 10mm, 11mm, 12mm, 13mm, 14mm, 15mm, etc.
It will be appreciated that other resilient members may be used to move the magnet 510 between the deflected position and the activated position.
Example four
The surface cleaning machine of this embodiment is the floor cleaning machine, and the floor cleaning machine is including dragging head and handle, drags the head to be equipped with into dirty mouthful, control panel and locates the dirt suction subassembly that drags in the head, and the dirt suction subassembly includes that the air current takes place a garbage collection box that has a filtration piece and inside demountable installation, and the air current takes place a control panel that is controlled by, and the garbage collection box is equipped with and advances the air intake of dirty mouthful butt joint intercommunication and takes place a butt joint complex air outlet with the air current. Garbage collection box with drag and be equipped with the detection structure between the head, detect the structure including locating the magnet on the garbage collection box and locating the magnetic induction element who drags in the head, magnetic induction element electricity is connected in the control panel, filters piece and the mutual linkage of magnet, and the garbage collection box triggers magnetic induction element with dragging the head assembly to make the control panel acquire the installation status signal of the interior filter piece of garbage collection box.
It is same, because it links each other with magnet to filter the piece, when installing the garbage collection box that filters in dragging the head, magnet trigger magnetic induction element, the control panel judges that the garbage collection box installation targets in place and filters the piece installation according to magnetic induction element's triggering signal, the control panel can make the air current take place a start-up, the air current takes place a during operation to form from the dirt suction air current that advances dirty mouthful to the garbage collection box, filter the piece and filter the dirt air current, avoid the hair, dirty inflow air current such as piece takes place the inside of piece or the inside of dragging the head and lead to the fact harmful effects to electron device, make floor cleaning machine wholly keep the function stable. When the garbage collection box is not provided with a filtering piece or the garbage collection box is not arranged in the mop head, the magnetic induction element cannot be triggered, the control panel cannot obtain a detection identification signal, and the control panel cannot enable the airflow generation piece to be started. Only can trigger magnetic induction element after the box-packed head that drags of refuse collection who has installed a filter piece, filter between piece and the refuse collection box, need not to set up complicated mechanical structure between refuse collection box and the head, be favorable to rationally reducing the structure degree of difficulty of refuse collection box, also be favorable to rationally reducing the degree of difficulty that the user will filter the piece degree of difficulty of packing into the refuse collection box and with the box-packed degree of difficulty that drags the head of packing into of refuse collection, be favorable to improving user's use and experience.
It will be appreciated that other configurations of the scrubber may be referred to in the art.
EXAMPLE five
The surface cleaning machine that this embodiment provided is the dust catcher, and the dust catcher includes that suction head, air current take place the piece and can make the air current take place the control panel that the piece started, sets up the garbage collection box in the suction head, and garbage collection box demountable installation has a filtration piece, and filtration piece filters dirty air current, avoids dirt such as dust, hair to flow into the inside that the air current takes place the piece or the inside of suction head causes harmful effects to electron device. Similarly, be equipped with between garbage collection box and suction head and detect the structure, detect the structure including locating the magnet on the garbage collection box and locating the magnetic induction element in the suction head, magnetic induction element electricity is connected in the control panel, filters a piece and magnet and links each other, and the garbage collection box triggers magnetic induction element with the suction head assembly to make the control panel acquire the installation status signal of the interior filter piece of garbage collection box, and then confirm whether control air current takes place a start. Because filter piece and magnet and link each other, only can trigger magnetic induction element after the box-packed suction head of garbage collection who has installed a filter piece, filter between piece and the garbage collection box, need not to set up complicated mechanical structure between garbage collection box and the suction head, be favorable to rationally reducing the structure degree of difficulty of garbage collection box, also be favorable to rationally reducing the degree of difficulty that the user will filter the piece and pack the degree of difficulty in the box-packed suction head of garbage collection in the garbage collection box and with the garbage collection, be favorable to improving user's use and experience.
It will be appreciated that other configurations of the cleaner can be referred to in the art.
In addition to the above preferred embodiments, the present invention has other embodiments, and those skilled in the art can make various changes and modifications according to the present invention without departing from the spirit of the present invention, which should fall within the scope defined by the appended claims.

Claims (10)

1. The utility model provides a convenient to use's surface cleaning machine, is including organism, the control panel that is equipped with into dirt mouth and locating the dust absorption subassembly in the organism, and the dust absorption subassembly includes that the air current takes place a and garbage collection box, demountable installation has a filter piece on the lid of garbage collection box, and the air current takes place a controlled control panel, and the garbage collection box is equipped with and takes place a butt joint complex air outlet with the air current with the air intake of entering dirt mouth butt joint intercommunication and take place a butt joint, its characterized in that, be equipped with between garbage collection box and the organism and detect the structure, detect the structure including locating the magnet on the garbage collection box and locating the magnetic induction element in the organism, magnetic induction element electricity is connected in the control panel, filter piece with magnet inter-linkage, the garbage collection box triggers magnetic induction element with the organism assembly, so that the control panel acquires the installation status signal of the interior filter piece of garbage collection box.
2. A surface cleaning machine according to claim 1, wherein the filter element includes a support and a filter unit mounted on the support, and the magnet is mounted on the support and integrally coupled to the filter element.
3. A user-friendly surface cleaning machine as claimed in claim 2 wherein the filter unit is removably mounted on the frame.
4. A user-friendly surface cleaning machine as claimed in claim 1 wherein the magnet is movably mounted on the waste collection bin, the magnet is provided with a biased position which is offset from the magnetic induction element and a triggering position which corresponds to the magnetic induction element, the filter element is mounted in the waste collection bin such that the magnet moves from the biased position to the triggering position, and the filter element is detached from the waste collection bin such that the magnet moves from the triggering position to the biased position.
5. A user-friendly surface cleaning machine as claimed in claim 4, wherein the waste collection bin is provided with a turret on which the magnet is mounted, and wherein the filter element is mounted in the waste collection bin such that the turret carries the magnet for rotation from the off position to the activated position, and wherein disengagement of the filter element from the waste collection bin causes the turret to carry the magnet for rotation from the activated position to the off position.
6. A user-friendly surface cleaning machine as claimed in claim 5 wherein the turret includes two angularly disposed frame portions, a magnet being provided on one of the frame portions.
7. A user-friendly surface cleaning machine as claimed in claim 5, wherein the waste collection bin is provided with a cavity for receiving the turret, the turret being rotatably mounted in the cavity, at least part of the turret extending out of the cavity when the magnet is in the offset position, and the filter element when mounted in the waste collection bin abutting the part of the turret extending out of the cavity causing the turret to rotate the magnet.
8. A surface cleaning machine as claimed in claim 5 which is convenient in use, and wherein a limit engagement formation is provided between the turret and the bin to limit the range of rotation of the turret.
9. A surface cleaning machine according to claim 4, wherein the magnet is movably disposed on the waste collection box, the detecting structure comprises an elastic member having one end positioned and the other end contacting the magnet, the filtering member is disposed in the waste collection box and abutted against the magnet to translate the magnet from the deflection position to the trigger position and deform the elastic member, and the filtering member is detached from the waste collection box to cause the elastic member to drive the magnet to translate from the trigger position to the deflection position.
10. A user-friendly surface cleaning machine as claimed in any one of claims 1 to 9, wherein a foolproof structure is provided between the filter element and the waste collection bin for preventing mis-installation of the filter element.
CN202222380866.2U 2022-09-06 2022-09-06 Convenient to use's surface cleaner Active CN218572107U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222380866.2U CN218572107U (en) 2022-09-06 2022-09-06 Convenient to use's surface cleaner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222380866.2U CN218572107U (en) 2022-09-06 2022-09-06 Convenient to use's surface cleaner

Publications (1)

Publication Number Publication Date
CN218572107U true CN218572107U (en) 2023-03-07

Family

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Family Applications (1)

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Country Status (1)

Country Link
CN (1) CN218572107U (en)

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