CN213030599U - Electric mop cleaning basin - Google Patents

Electric mop cleaning basin Download PDF

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Publication number
CN213030599U
CN213030599U CN202021449368.3U CN202021449368U CN213030599U CN 213030599 U CN213030599 U CN 213030599U CN 202021449368 U CN202021449368 U CN 202021449368U CN 213030599 U CN213030599 U CN 213030599U
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China
Prior art keywords
cleaning platform
water
cleaning
mop
basin
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CN202021449368.3U
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Chinese (zh)
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胡海荣
肖樟斌
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Ningbo Zhekai Electrical Appliance Co ltd
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Ningbo Zhekai Electrical Appliance Co ltd
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Abstract

The utility model provides an electronic mop wash basin which characterized in that: the cleaning platform is arranged on the water storage basin in an involutive mode and located above a water level line, a rotating mechanism capable of enabling the cleaning platform to rotate downwards at a certain angle and reset is arranged at the bottom of the cleaning platform along the length direction, water wiping convex ribs or lugs and water draining holes capable of cleaning and squeezing a mop are distributed in the cleaning platform, when the cleaning platform rotates downwards, the cleaning platform is in an inclined state, the front portion of the cleaning platform is located below the water level line, and the electric mop rotates to clean; when the cleaning platform does not rotate and is in a horizontal state, the electric mop rotates to squeeze and dewater. The utility model has the advantages of simple and reasonable structure, can not only conveniently wash electric mop, have fine wringing, dehydration function simultaneously to with low costs, economical and practical.

Description

Electric mop cleaning basin
Technical Field
The utility model relates to an electric mop washs technical field, concretely relates to electric mop washs basin.
Background
Mopping is always the most annoying housework of people, and the traditional mop is not only labor-consuming but also unclean. The electric mop adopts a rotating or vibrating mode to mop the floor, and the friction force of the electric mop on the floor is larger, so that the electric mop not only saves time and labor, but also has better cleaning effect than the common mop in the cleaning degree.
At present, a plurality of electric mops are available in the market, and especially the electric mop with double-disc rotation is more and more popular among users. However, the electric mop is inconvenient to clean, mop cloth is often required to be detached for cleaning, and although some cleaning basins are designed, dirty water is cleaned repeatedly, so that secondary pollution is serious. The other mop lacks a spin-drying structure, so that the mop is not easy to mop due to water showering after being cleaned.
According to inspection, the traditional Chinese patent No. CN201821805712.0, the electric mop cleaning machine, comprises a cleaning machine box body, a hand basin box body is arranged at the top of the cleaning machine box body, a motor box body and a cleaning box body are arranged at the bottom of the cleaning machine box body, a starting switch is arranged on the side wall of the cleaning machine box body, a driving assembly is arranged in the motor box body and electrically connected to the starting switch, a mop cloth positioning assembly, a rolling assembly and a water outlet pipe are arranged in the cleaning box body, the mop cloth positioning assembly is arranged above the rolling assembly, the water outlet pipe is arranged above the mop cloth positioning assembly, a mop locking assembly and a water inlet pipe are arranged at the top of the cleaning box body, the water inlet pipe is connected to the water outlet pipe through a water inlet valve, a plurality of water spray holes are formed in. The cleaning machine adopts an electric mode to clean and dewater the mop, saves time and labor, but has more complex structure, higher cost and inconvenient maintenance.
Disclosure of Invention
The technical problem to be solved by the utility model is to provide a simple structure, convenient and practical's electric mop washs basin to foretell technical situation, can not only conveniently wash the mop, still has wringing, dehydration function.
The utility model provides a technical scheme that above-mentioned technical problem adopted does: the utility model provides an electronic mop wash basin which characterized in that: the cleaning platform is arranged on the water storage basin in an involutive mode and located above a water level line, a rotating mechanism capable of enabling the cleaning platform to rotate downwards at a certain angle and reset is arranged at the bottom of the cleaning platform along the length direction, water wiping convex ribs or lugs and water draining holes capable of cleaning and squeezing a mop are distributed in the cleaning platform, when the cleaning platform rotates downwards, the cleaning platform is in an inclined state, the front portion of the cleaning platform is located below the water level line, and the electric mop rotates to clean; when the cleaning platform does not rotate and is in a horizontal state, the electric mop rotates to squeeze and dewater.
As an improvement, the rotary mechanism comprises a plurality of arc-shaped rotary blocks, the rotary blocks are arranged at the axial line position at the bottom of the cleaning platform at intervals along the length direction, corresponding rotary supporting seats are convexly arranged in the water storage basin, the upper end face of each rotary supporting seat is formed into a circular arc-shaped concave surface for the rotary blocks to be placed and rotated, the cleaning platform can be rotationally arranged on the water storage basin at a certain angle from front to back through the matching of the rotary blocks and the rotary supporting seats, and limiting ribs or limiting blocks for limiting the rotation of the cleaning platform are arranged in the water storage basin.
And the improvement is carried out again, spacing muscle includes that a plurality of first spacing muscle and the spacing muscle of second that carry out spacing support to both sides around the bottom of cleaning platform, wherein the vertical interval of first spacing muscle is protruding to be established on water storage basin front side inner wall, and the upper end holding surface of first spacing muscle is located the below of the water level line of water storage basin, and the vertical interval of the spacing muscle of second is protruding to be established on water storage basin rear side inner wall, and the upper end holding surface of the spacing muscle of second is located the top of water level line.
Furthermore, a circular boss is respectively arranged on the left side and the right side of the upper end of the cleaning platform and in the middle of the double discs corresponding to the mop, and the water scraping convex ribs are uniformly distributed on the cleaning platform in a radial shape at intervals by taking the circular boss as the center.
And furthermore, the rear half part of the cleaning platform is provided with a plurality of water baffle plates protruding upwards along the outer edge, and a plurality of water drainage holes are respectively arranged between two adjacent water scraping convex ribs and between the rear side of the cleaning platform and the water baffle plates.
Still further, the rotatory piece of cleaning platform bottom is three that left, well, right side distributes, and what correspond, the rotatory supporting seat in the water storage basin is three that left, well, right side distributes.
And finally, the water storage basin is a waist-shaped basin, correspondingly, the cleaning platform is a waist-shaped platform, the middle part of the front side of the cleaning platform is provided with a downward concave plane used as a water level mark in the water storage basin, and the middle part of the plane is provided with a water injection hole.
Compared with the prior art, the utility model has the advantages of: the bottom of the cleaning platform is provided with a rotating block which is matched with a rotating support seat in the water storage basin and can rotate back and forth, when the water storage basin is filled with water to a certain water level as required, and the cleaning platform is inclined, a part of the cleaning platform is below the water level, and the electric mop can be cleaned by rotating; when the cleaning platform does not rotate and is in a horizontal state, the electric mop rotates to perform squeezing and dewatering; the cleaning platform is provided with water scraping convex ribs or convex blocks, and the electric mop can be repeatedly rubbed and washed or spin-dried. The utility model has the advantages of simple and reasonable structure, can not only conveniently wash electric mop, have fine wringing, dehydration function simultaneously, wash the basin body easily and pour water to with low costs, economical and practical.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
fig. 2 is a schematic bottom structure diagram of the cleaning platform in the embodiment of the present invention;
fig. 3 is an exploded view of an embodiment of the present invention;
fig. 4 is an exploded view of an embodiment of the present invention at a different angle;
fig. 5 is a sectional view of the mop in a cleaning state.
Fig. 6 is a sectional view showing the structure of the mop squeezing and dewatering device of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
As shown in fig. 1 to 6, an electric mop cleaning basin comprises a water storage basin 1 and a cleaning platform 2, wherein the cleaning platform 2 is arranged on the water storage basin 1 and located above a water level line H, a rotating mechanism capable of enabling the cleaning platform 2 to rotate downwards at a certain angle and reset is arranged at the bottom of the cleaning platform 2 along the length direction, a wiping convex rib 22 and a water outlet 23 and a water outlet 28 for cleaning and squeezing a mop 3 are distributed on the cleaning platform 2, when the cleaning platform 2 rotates downwards, the cleaning platform 2 is in an inclined state, the front part of the cleaning platform 2 is located below the water level line H, and the electric mop 3 rotates to clean; when the cleaning platform 2 is not rotated and is in a horizontal state, the electric mop 3 rotates to perform squeezing and dewatering.
The concrete structure is as follows: water storage basin 1 is oval basin, it is corresponding, cleaning platform 2 is oval platform, cleaning platform 2's latter half is equipped with bellied breakwater 24 that makes progress along the outward flange, rotary mechanism includes semicircular rotatory piece 25, rotatory piece is left, in, the distribution of the right side is three, set up at 2 bottom axis positions of cleaning platform along 2 length direction intervals of cleaning platform, protruding rotatory supporting seat 11 that corresponds in the water storage basin 1, rotatory supporting seat 11 is for corresponding for left side, in, the distribution of the right side is three, rotatory supporting seat 11's up end shaping is shelved and pivoted semicircular concave surface for supplying rotatory piece 25, cleaning platform 2 sets up on water storage basin 1 through certain angle rotation ground around the cooperation of rotatory piece 25 and rotatory supporting seat 11, be equipped with in the water storage basin 1 and carry out rotation limiting spacing muscle 12 and 13 to cleaning platform. Spacing muscle 12 and 13 include a plurality of first spacing muscle 12 and the spacing muscle 13 of second that carry out spacing support to both sides around the bottom of cleaning platform 1, wherein the vertical interval of first spacing muscle 12 is protruding to be established on water storage basin 1 front side inner wall, the upper end holding surface of first spacing muscle 12 is located the below of water level line H of water storage basin 1, the vertical interval of the spacing muscle 13 of second is protruding to be established on water storage basin 1 rear side inner wall, the upper end holding surface of the spacing muscle 13 of second is located the top of water level line H. The left side and the right side of the upper end of the cleaning platform 2 and the middle part of the double discs corresponding to the electric mop 3 are respectively provided with a circular boss 21, and the water scraping convex ribs 22 are radially and uniformly distributed on the cleaning platform 2 at intervals by taking the circular boss 21 as the center. A plurality of drain holes 23 and 28 are formed between two adjacent wiper ribs 22 and between the rear side of the cleaning platform 2 and the water guard 24, respectively. In addition, a downward concave plane 26 as the mark of the water level line H in the water storage basin 1 is arranged in the middle of the front side of the cleaning platform 2, and a water injection hole 27 is arranged in the middle of the plane 26.
The specific operation process is as follows:
when the electric mop 2 is cleaned, when the electric mop 3 is placed on the cleaning platform 2, the mop handle is forced forwards, as shown in fig. 5, the front part of the cleaning platform 2 is immersed in water, because the first limiting rib 12 is arranged on the front side of the water storage basin 1, the cleaning platform 2 cannot sink after being limited at a certain rotation angle, at the moment, the double-disc part of the electric mop 3 is immersed in water, and all parts of mop cloth are cleaned repeatedly in the rotation process of the electric mop disc;
when the cleaning is finished, the cleaning platform 2 is returned to the horizontal state when the handle of the electric mop is applied with force backwards, as shown in fig. 6, the cleaning platform 2 cannot rotate any more when rotating to the horizontal state due to the second limiting rib 13 arranged at the rear side of the cleaning basin 1, at the moment, the water level is completely below the cleaning platform 2, and when the electric mop 3 rotates on the cleaning platform 2, only water is scraped and dried, and water flows back to the water storage basin 1 from the lower water holes 23 and 28.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the technical principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.

Claims (7)

1. The utility model provides an electronic mop wash basin which characterized in that: the cleaning platform is arranged on the water storage basin in an involutive mode and located above a water level line, a rotating mechanism capable of enabling the cleaning platform to rotate downwards at a certain angle and reset is arranged at the bottom of the cleaning platform along the length direction, water wiping convex ribs or lugs and water draining holes capable of cleaning and squeezing a mop are distributed in the cleaning platform, when the cleaning platform rotates downwards, the cleaning platform is in an inclined state, the front portion of the cleaning platform is located below the water level line, and the electric mop rotates to clean; when the cleaning platform does not rotate and is in a horizontal state, the electric mop rotates to squeeze and dewater.
2. The power mop wash basin of claim 1, wherein: the rotary mechanism comprises a plurality of arc-shaped rotary blocks, the rotary blocks are arranged at the axial line position at the bottom of the cleaning platform at intervals along the length direction, corresponding rotary supporting seats are convexly arranged in the water storage basin, the upper end faces of the rotary supporting seats are formed into arc-shaped concave surfaces for the rotary blocks to be placed and rotated, the cleaning platform can be rotationally arranged on the water storage basin at a certain angle from front to back through the matching of the rotary blocks and the rotary supporting seats, and limiting ribs or limiting blocks for limiting the rotation of the cleaning platform are arranged in the water storage basin.
3. The power mop wash basin of claim 2, wherein: spacing muscle includes that a plurality of bottom front and back both sides to the cleaning platform carry out spacing first spacing muscle and the spacing muscle of second that supports, and wherein the vertical interval of first spacing muscle is protruding to be established on water storage basin front side inner wall, and the upper end holding surface of first spacing muscle is located the below of the waterline of water storage basin, and the vertical interval of the spacing muscle of second is protruding to be established on water storage basin rear side inner wall, and the upper end holding surface of the spacing muscle of second is located the top of waterline.
4. The power mop wash basin of claim 3, wherein: the left side and the right side of the upper end of the cleaning platform and the middle part of the double discs corresponding to the mop are respectively provided with a circular boss, and the water scraping convex ribs are uniformly distributed on the cleaning platform in a radial shape at intervals by taking the circular bosses as centers.
5. The power mop wash basin of claim 4, wherein: the rear half of the cleaning platform is provided with a plurality of water baffle plates protruding upwards along the outer edge, and a plurality of water holes are respectively arranged between two adjacent water scraping convex ribs or/and between the rear side of the cleaning platform and the water baffle plates.
6. An electric mop cleaning basin according to any one of claims 2 to 5, characterized in that: the rotary block at the bottom of the cleaning platform is three in left, middle and right distribution, and correspondingly, the rotary supporting seat in the water storage basin is three in left, middle and right distribution.
7. An electric mop cleaning basin according to any one of claims 1 to 5, characterized in that: the water storage basin is a kidney-shaped basin, the cleaning platform is a kidney-shaped platform correspondingly, a downward concave plane used as a water level mark in the water storage basin is arranged in the middle of the front side of the cleaning platform, and a water injection hole is formed in the middle of the plane.
CN202021449368.3U 2020-07-21 2020-07-21 Electric mop cleaning basin Active CN213030599U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021449368.3U CN213030599U (en) 2020-07-21 2020-07-21 Electric mop cleaning basin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021449368.3U CN213030599U (en) 2020-07-21 2020-07-21 Electric mop cleaning basin

Publications (1)

Publication Number Publication Date
CN213030599U true CN213030599U (en) 2021-04-23

Family

ID=75529406

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021449368.3U Active CN213030599U (en) 2020-07-21 2020-07-21 Electric mop cleaning basin

Country Status (1)

Country Link
CN (1) CN213030599U (en)

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