This application is based upon and claims priority to Chinese Patent Applications No. 201920924643.3, filed on Jun. 19, 2019, No. 201921773767.2, filed on Oct. 22, 2019, and No. 201921780005.5, filed on Oct. 22, 2019, the entire contents of which are incorporated herein by reference.
The invention relates to a cleaning assembly including a floor scrubber and a self-cleaning device matched with the floor scrubber, and belongs to the technical field of cleaning tools.
A domestic electrical floor scrubber, provided by an existing patent document Publication No. CN106491056A, adopts a double-disc structure to effectively improve the cleaning effect and to bring great convenience to users during cleaning. However, after floors are cleaned, scrubbing discs of the floor scrubber generally have to be manually wiped or have to be disassembled to be washed with water, which causes trouble and inconvenience to users.
The objective of the invention is to overcome the defects of the prior art by providing a floor scrubber which is reasonable in structural design and convenient to clean, and a self-cleaning device matched with the floor scrubber.
The technical solution adopted by the invention is to provide a cleaning assembly including a floor scrubber and a self-cleaning device matched with the floor scrubber. The floor scrubber comprises a housing connected to a handle, wherein a motor is arranged in the housing, and a scrubbing disc is arranged below the housing and is driven by the motor to rotate. The self-cleaning device comprises a barrel, wherein the barrel is connected to a support member used for supporting the floor scrubber, and a wiper member is arranged in the barrel; when the floor scrubber is placed in the barrel to be dried, the support member supports the floor scrubber, and the wiper member abuts against the scrubbing disc; and when the scrubbing disc rotates or the wiper member moves, water and/or dirt on the scrubbing disc are/is wiped off by the wiper member.
Wherein, an even number of scrubbing discs are arranged and are divided into two symmetrical groups, and the two groups of scrubbing discs rotate in opposite directions.
Wherein, the support member is arranged in the barrel.
Wherein, the support member is arranged above the barrel, the handle is provided with a hanging part, and the support member is connected to the hanging part to support the floor scrubber.
Wherein, the scrubbing disc is a circular disc and is able to rotate, and the wiper member is maintained in the barrel.
Wherein, the scrubbing disc is a circular disc, and the wiper member is rotatably arranged with the center of the scrubbing disc as a rotation point.
Wherein, the wiper member is a wiper strip, a roller, or a brush, or any combination of the wiper strip, the roller and the brush.
Wherein, the wiper member is a roller which is rotatably arranged in the barrel with the self axis as a rotation axis and is able to rotate in one direction; when the scrubbing disc rotates forward, the roller rotates synchronously; and when the scrubbing disc rotates reversely, the roller stops rotating.
Wherein, the self-cleaning device further comprises a ratchet mechanism used for realizing unidirectional rotation of the roller.
Wherein, the self-cleaning device further comprises a mounting base, a rotary shaft is arranged at the end of the roller and is provided with ratchet teeth, the mounting base is provided with convex teeth and a cavity, the rotary shaft is arranged in the cavity, and the cavity has a movement space allowing the rotary shaft to move therein; when the scrubbing disc rotates forward, the rotary shaft rolls away from the convex teeth; and when the scrubbing disc rotates reversely, the rotary shaft rolls towards the convex teeth to allow the convex teeth to be inlaid into the ratchet teeth, so that the roller is made to stop rotating.
Wherein, the scrubbing disc comprise a scrubbing part and a mounting disc used for mounting the scrubbing part, the motor is connected to the mounting disc, and the scrubbing part is detachably arranged on the mounting disc.
Wherein, the scrubbing disc comprise a scrubbing part and a mounting disc used for mounting the scrubbing part, the motor is connected to the mounting disc, and scrubbing part is sewn on the mounting disc.
Wherein, the self-cleaning device comprises a water supply device used for supplying water to the scrubbing disc, the water supply device comprises a water pump, and when the scrubbing disc is to be cleaned with water, the water pump operates to pump water from the barrel or from a water storage cavity isolated from the barrel to the scrubbing disc.
Wherein, the self-cleaning device further comprises a water supply device, the water supply device comprises a water receiver connected to the barrel and located above the scrubbing disc, and the water receiver is provided with a water outlet connected to a water valve; when the scrubbing disc is to be cleaned with water, the water valve is opened to supply water to the scrubbing disc via the water outlet; and water and/or dirt wiped off from the scrubbing disc by the wiper member are/is received in the barrel.
Wherein, the water pump operates to pump water from the water storage cavity isolated from the barrel to the scrubbing disc, and water and/or dirt wiped off from the scrubbing disc by the wiper member are/is received in the barrel.
Wherein, the water pump comprises a cylinder provided with a water inlet, a spiral blade which spirally extends along the inner wall of the cylinder from bottom to top is arranged in the cylinder, the cylinder is able to rotate with respect to the barrel, the scrubbing disc is arranged above the cylinder, and the cylinder is driven to rotate when the scrubbing disc rotates.
Wherein, the inner diameter of the cylinder is gradually increased from bottom to top.
Wherein, the support member is fixedly connected to the cylinder.
Wherein, an inner cylinder is arranged in the cylinder, a gap is reserved between the inner cylinder and the cylinder, and the inner cylinder is coaxial with the cylinder and is fixedly or rotatably connected to the cylinder.
Wherein, the inner cylinder is fixedly connected to the cylinder, and the support member is fixedly connected to the inner cylinder.
Compared with the prior art, the invention has the following advantages and effects: the floor scrubber and the self-cleaning device are used in cooperation, so that the problems that the floor scrubber is difficult to clean and difficult to dry after being cleaned are solved.
The invention is further described below in combination with the accompanying drawings.
Referring to
Preferably, an even number of scrubbing discs 3 are arranged and are divided into two symmetrical groups, and the two groups of scrubbing discs 3 rotate in opposite directions. In a specific implementation, the number of the scrubbing discs 3 is two, the two scrubbing discs 3 are driven by one or two motors 4 through gears, one of the two scrubbing discs 3 rotates clockwise, and the other scrubbing disc 3 rotates anticlockwise.
Preferably, the support member 51 is arranged in the barrel 5 and can be specifically implemented as follows: first, the support member 51 is arranged in the barrel 5 and is supported by the bottom of the barrel 5; second, the support member 51 is supported on the side wall of the barrel 5 and extends towards the middle of the barrel 5. Both implementations are feasible. The side wall of the barrel 5 is surrounded by the support member 51, so that water is prevented from splashing out.
As shown in
Preferably, the scrubbing disc 3 is a circular disc and is able to rotate, the wiper member 52 is arranged at a fixed position in the barrel and does not synchronously rotate in the same direction with the scrubbing disc 3, and the scrubbing disc 3 and the wiper member 52 can move relatively.
Preferably, in this embodiment, the scrubbing disc 3 is a circular disc, and the wiper member 52 is rotatably arranged with the center of the scrubbing disc 3 as a rotation point. In another implementation, the wiper member 52 rotates to wipe off water and/or dirt from the scrubbing disc 3, and the wiper member 52 is manually driven to rotate, or the wiper member 52 is driven by another motor 4 to rotate.
Preferably, in this embodiment, the wiper member 52 is a wiper strip, a roller 52′, or a brush, or any combination of the wiper strip, the roller 52′ and the brush, as shown in
Preferably, in this embodiment, the wiper member 52 is a roller 52′, the roller 52′ is arranged in the barrel 5 with the self axis as a rotation axis and is able to rotate in one direction, and when the scrubbing disc 3 rotates forward, the roller 52′ rotates synchronously; and when the scrubbing disc 3 rotates reversely, the roller 52′ stop rotating. In a specific implementation, water is contained in the barrel 5 and exactly reaches the roller 52′, the roller 52′ rotates to bring water onto the scrubbing disc 3 and rubs with the scrubbing disc 3 to clean the scrubbing disc 3 efficiently.
Further preferably, the self-cleaning device further comprises a ratchet mechanism used for realizing unidirectional rotation of the roller 52′. The ratchet mechanism is a structure in the prior art. By adoption of the ratchet mechanism, the roller 52′ can rotate in only one direction. When the roller 52′ rotates, water is supplied to clean the scrubbing disc. The ratchet mechanism can lock the roller 52′ to prevent the roller 52′ from rotating reversely. By adoption of this structure, the scrubbing disc 3 can be cleaned with water when rotating forward and can be dried when rotating reversely.
In another implementation, the self-cleaning device preferably further comprises a mounting base 521, a rotary shaft is arranged at the end of the roller 52′ and is provided with ratchet teeth 522, the mounting base 521 is provided with convex teeth 5211 and a cavity, the rotary shaft is arranged in the cavity, and the cavity has a movement space allowing the rotary shaft to move therein. As shown in
In this embodiment, the scrubbing disc 3 comprise a scrubbing part and a mounting disc used for mounting the scrubbing part, the motor 4 is connected to the mounting disc, and the scrubbing part is detachably arranged on the mounting disc. The mounting disc is provided with a hook-and-loop fastener capable of firmly hooking the scrubbing part, so that replacement is convenient.
In this embodiment, the scrubbing disc 3 comprise a scrubbing part and a mounting disc used for mounting the scrubbing part, the motor 4 is connected to the mounting disc, and the scrubbing part is sewn on the mounting disc. The scrubbing part can be smoothly sewn on the mounting disc.
In this embodiment, the scrubbing part is a microfiber fabric, PVA, a sponge, a cotton fabric, or the like.
Preferably, the self-cleaning device in this embodiment further comprises a water supply device used for supplying water to the scrubbing disc 3. The water supply device comprises a water pump. When the scrubbing disc 3 is to be cleaned with water, the water pump operates to pump water from the barrel 5 or from a water storage cavity isolated from the barrel 5 to the scrubbing disc 3, the scrubbing disc 3 rotates at the same time to abut against the wiper member 52 so as to be completely dried after being cleaned with water, and in this way, the scrubbing disc 3 is completely cleaned. The water pump in this embodiment is an electric pump or manual pump in the prior art and is used for delivering water.
Preferably, as shown in
Further preferably, in this embodiment, as shown in
In this embodiment, as shown in
In this embodiment, the inner diameter of the cylinder 61 is increased from bottom to top, that is, the cylinder 61 is of a big-end-up structure; a slope is formed on the inner wall of the cylinder 61, so that water can be supplied more smoothly.
In this embodiment, the support member 51 is fixedly connected to the cylinder 61.
In this embodiment, an inner cylinder 62 is arranged in the cylinder 61, a gap is reserved between the inner cylinder 62 and the cylinder 61, and the inner cylinder 62 is coaxial with the cylinder 61 and is fixedly or rotatably connected to the cylinder 61.
In this embodiment, the inner cylinder 62 is fixedly connected to the cylinder 61, and the support member 51 is fixedly connected to the inner cylinder 62. In this embodiment, the inner cylinder 62 is used as a stress support point of the support member 51.
Preferably, as shown in
Preferably, as shown in
The embodiments are described by means of ideal schematic diagrams with reference to plane views and/or sectional views. These illustrative views can be modified according to the manufacturing technique and/or tolerance. The embodiments of the invention are not limited to those ones shown in the drawings, and all structural transformations obtained on the basis of the manufacturing process should be included in the invention. Areas shown in the drawings are illustrative, the shapes of the areas shown in the drawings can illustratively represent the shapes of the areas of parts, but the invention is not limited to these details shown in the drawings.
Number | Date | Country | Kind |
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201920924643.3 | Jun 2019 | CN | national |
201921773767.2 | Oct 2019 | CN | national |
201921780005.5 | Oct 2019 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
9907449 | Lu | Mar 2018 | B2 |
20180028040 | Delangue | Feb 2018 | A1 |
20190216287 | Zhu | Jul 2019 | A1 |
20210330166 | Wu | Oct 2021 | A1 |
Number | Date | Country |
---|---|---|
106491056 | Mar 2017 | CN |
106491056 | Mar 2017 | CN |
108852212 | Nov 2018 | CN |
101024627 | Jan 2011 | KR |
WO-2018012912 | Jan 2018 | WO |
WO-2019056997 | Mar 2019 | WO |
Entry |
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Translated description of WO2018012912A1 (Year: 2022). |
Tranlsation of WO-2019056997-A1 (Year: 2022). |
Machine translation CN-106491056-A (Year: 2022). |
Machine translation of CN-108852212-A (Year: 2022). |
Machine translation of KR101024627B1 (Year: 2022). |
Machine translation CN-106491056-A (Year: 2023). |
Machine translation of KR101024627B1 (Year: 2023). |
Number | Date | Country | |
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20200397205 A1 | Dec 2020 | US |