CN216797603U - Automatic shoe washing machine capable of being installed under floor - Google Patents

Automatic shoe washing machine capable of being installed under floor Download PDF

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Publication number
CN216797603U
CN216797603U CN202220215112.9U CN202220215112U CN216797603U CN 216797603 U CN216797603 U CN 216797603U CN 202220215112 U CN202220215112 U CN 202220215112U CN 216797603 U CN216797603 U CN 216797603U
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cleaning
water storage
water
washing
storage tank
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CN202220215112.9U
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陈建
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Individual
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Abstract

The utility model discloses an automatic shoe washing machine capable of being installed under a floor, which comprises a washing panel, two water storage tanks, a plurality of washing rollers and a rotary driving component, wherein the washing panels are arranged on the two water storage tanks; inside the floor is inlayed and is located to the washing panel, the upper surface and the floor of washing panel are located the coplanar, it includes washing district and drying zone to wash the panel, the drying zone is located directly over the washing district, it is provided with a supporting block to wash the district middle part, two catch basins set up in the washing district below of washing panel, and be located the supporting shoe both sides, the opening of catch basin is located the upper surface of washing panel, the catch basin includes water inlet and delivery port, a plurality of cleaning roller set up in the catch basin inside along the horizontal direction, the rotation driving subassembly sets up in washing panel below, and lie in between two catch basins, the rotation driving subassembly is connected with the cleaning roller and drives the cleaning roller and rotate, the drying zone is provided with a sponge that absorbs water, the sponge that absorbs water is located directly over the supporting shoe. The floor area is reduced, and simultaneously, the cleaning effect is ensured.

Description

Automatic shoe washing machine capable of being installed under floor
Technical Field
The utility model belongs to the technical field of the shoe washing machine technique and specifically relates to an automatic shoe washing machine which can be installed under the floor.
Background
In daily life, people require more and more high to the living quality, people generally attach attention to family's health, also can guarantee healthy living environment when guaranteeing neatly, people often can make dirty shoes going out work and trip, especially, the sole, can be infected with various dust and filth, can make the floor dirty when returning to the family, consequently, along with the development of cleaning technique, shoe washer is also more and more commonly used and current shoe washer is the great box structure of structure mostly, the space occupancy is great, make indoor cloth office not pleasing to the eye enough, and need combine the water source to accomplish more thoroughly clean mostly in shoes cleaning engineering, and current shoe washer can only set up the water storage part in the device is inside, make overall structure comparatively complicated, and need frequently change the water source, the troublesome poeration.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects and provides an automatic shoe washing machine which can be installed under the floor.
In order to solve the technical problems, the utility model adopts the following technical scheme:
comprises a cleaning panel, two water storage tanks, a plurality of cleaning rollers and a rotary driving component;
the utility model discloses a cleaning device, including the panel of washing, the panel of washing inlays inside locating the floor, the upper surface of washing panel is located the coplanar with the floor, it includes washing district and dry district to wash the panel, the dry district is located directly over the washing district, the dry district middle part is provided with a supporting block, two catch basins set up in the washing district below of washing the panel, and be located the supporting block both sides, the opening of catch basin is located the upper surface of washing the panel, the catch basin includes water inlet and delivery port, a plurality of cleaning rollers set up in the catch basin inside along the horizontal direction, the rotation driving subassembly sets up in washing panel below, and lie in between two catch basins, the rotation driving subassembly is connected with the cleaning roller and drives the cleaning roller and rotate, the dry district is provided with a water absorption sponge, the water absorption sponge is located directly over the supporting block.
Further, every cistern is inside to be provided with four cleaning rollers, and the surface of cleaning roller is provided with a plurality of clean brushes.
Furthermore, a supporting rod is arranged between every two adjacent cleaning rollers and is positioned above the cleaning rollers and parallel to the cleaning rollers, and one end, far away from the cleaning rollers, of the cleaning hairbrush is positioned above the supporting rod.
Further, the rotation driving assembly comprises a first double output shaft synchronous motor and two first driving gears, two first driven gears, first gear chain and rotary rod, first pair play axle synchronous machine sets up between two catch basins along vertical direction, two drive shafts of first pair play axle synchronous machine set up towards the catch basin respectively and are parallel with the cleaning roller, first driving gear one end and first pair play axle synchronous machine's drive shaft fixed connection, the other end passes through a cleaning roller fixed connection of rotary rod and cistern inside, first driven gear sets up in one side that drying zone was kept away from to first driving gear and lies in same straight line with first driving gear, first driven gear passes through first gear chain and first driving gear connection and synchronous rotation, one end that first driven gear is close to the catch basin is passed through rotary rod and a cleaning roller fixed connection of cistern inside.
Furthermore, the rotary driving assembly also comprises a second double output shaft synchronous motor and two second driving gears, the second double-output-shaft synchronous motor is arranged between the two water storage tanks in the vertical direction and is positioned on one side, close to the drying area, of the first double-output-shaft synchronous motor, two driving shafts of the second double-output-shaft synchronous motor are respectively arranged towards the water storage tanks and are parallel to the cleaning rollers, one end of the second driving gear is fixedly connected with the driving shaft of the second double-output-shaft synchronous motor, the other end of the second driving gear is fixedly connected with one cleaning roller inside the water storage tank through the rotary rod, the second driven gear is arranged on one side, close to the drying area, of the second driving gear and is positioned on the same straight line with the second driving gear, the second driven gear is connected with the second driving gear through the second gear chain and synchronously rotates, and one end, close to the water storage tanks, of the second driven gear is fixedly connected with one cleaning roller inside the water storage tank through the rotary rod.
Furthermore, the water inlets of the water storage tanks are positioned at one end of the water storage tank close to the drying area, the water outlets of the water storage tanks are positioned on one side wall of the water storage tank far away from the rotary driving assembly, the water inlets of the two water storage tanks are connected through a liquid guide pipeline, and a three-way connector is arranged on the liquid guide pipe.
Furthermore, one side of each water storage tank close to the rotary driving assembly is provided with a communicating opening, and a flow guide pipeline is arranged between the two communicating openings.
Further, an oil seal device is arranged on the communication port and the water outlet.
Furthermore, the opening part of catch basin is provided with preceding water deflector and back water deflector, leads the water deflector and is located the one end that the cleaning roller is close to the drying zone, and back water deflector is located the one end that the cleaning roller is kept away from the drying zone, and preceding water deflector and back water deflector set up towards the inside slope of catch basin.
Furthermore, a plurality of anti-skid protrusions are arranged on the upper surface of the supporting block.
Advantageous effects
Compared with the prior art, the utility model has at least the following beneficial effects:
according to the automatic shoe washing machine capable of being installed under the floor, the cleaning panel is embedded in the bottom plate, when a user walks onto the supporting blocks of the cleaning area, the shoe soles are prevented from slipping through the anti-slipping protrusions, then the shoe soles are respectively placed on the supporting rods in the water storage tank, then the rotary driving assembly drives the cleaning brushes on the cleaning rollers to clean the shoe soles, and after cleaning is respectively completed, the user moves to the water absorption sponge in the drying area, so that water stains on the shoe soles are cleared. The utility model realizes the rotation of the cleaning roller by driving the gear and the gear chain through the double-output-shaft synchronous motor, reduces the occupied area of the device by embedding the cleaning roller under the ground, is connected with the water storage tank through the water pipe, realizes more thorough cleaning, and simultaneously arranges the pipeline under the ground and is connected with the indoor water pipe. Compact structure, clean effect is excellent.
Drawings
FIG. 1 is a schematic view of an automatic underfloor shoe washing machine according to the present invention;
FIG. 2 is a bottom view of the automatic underfloor shoe washing machine of the present invention;
fig. 3 is a schematic view of an oil seal device of the present invention.
In the figure, 1, cleaning a panel; 11. a drying zone; 12. a cleaning zone; 2. a support block; 3. a water storage tank; 31. a water inlet; 32. a water outlet; 33. a communication port; 34. a front water guide plate; 35. a rear water guide plate; 4. cleaning the roller; 41. cleaning the brush; 51. a first double output shaft synchronous motor; 511. a first drive gear; 512. a first driven gear; 513. a first gear chain; 52. a second double output shaft synchronous motor; 521. a second driving gear; 522. a second driven gear; 523. a second gear chain; 53. rotating the rod; 6. a support bar; 7. an oil seal device.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the utility model and are not to be construed as limiting the utility model. It should be further noted that, for the convenience of description, only some but not all of the relevant aspects of the present invention are shown in the drawings.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present.
Several specific examples are given below for describing the technical solution of the present application in detail. The following several specific embodiments may be combined with each other, and details of the same or similar concepts or processes may not be repeated in some embodiments.
As shown in fig. 1, 2 and 3, in one embodiment, the automatic shoe washing machine capable of being installed under the floor according to the present invention comprises a washing panel 1, two water storage tanks 3, a plurality of washing rollers 4 and a rotary driving assembly, wherein the washing panel 1 is embedded inside a floor, the upper surface of the washing panel 1 and the floor are located on the same plane, the washing panel 1 comprises a washing area 12 and a drying area 11, the drying area 11 is located right above the washing area 12, a supporting block 2 is arranged in the middle of the washing area 12, a plurality of anti-slip protrusions are arranged on the upper surface of the supporting block 2, the two water storage tanks 3 are arranged below the washing area 12 of the washing panel 1 and are located on both sides of the supporting block 2, the openings of the water storage tanks 3 are located on the upper surface of the washing panel 1, the water storage tanks 3 comprise water inlets 31 and water outlets 32, the plurality of washing rollers 4 are arranged inside the water storage tanks 3 along the horizontal direction, the rotary driving assembly is arranged below the cleaning panel 1 and located between the two water storage tanks 3, the rotary driving assembly is connected with the cleaning roller 4 and drives the cleaning roller 4 to rotate, the drying area 11 is provided with a water absorption sponge, and the water absorption sponge is located right above the supporting block 2.
In the above embodiment, four washing rollers 4 are provided inside each of the water reservoirs, and a plurality of cleaning brushes 41 are provided on the outer surfaces of the washing rollers 4. A supporting rod 6 is arranged between every two adjacent cleaning rollers 4, the supporting rod 6 is positioned above the cleaning rollers 4 and is parallel to the cleaning rollers 4, and one end, far away from the cleaning rollers 4, of the cleaning hairbrush 41 is positioned above the supporting rod 6. Preferably, the water inlet 31 of the water storage tank 3 is located at one end of the water storage tank 3 close to the drying area 11, the water outlet 32 is located on one side wall of the water storage tank 3 far away from the rotary driving assembly, the water inlets 31 of the two water storage tanks 3 are connected through a liquid guide pipe, and a three-way connector is arranged on the liquid guide pipe. One side of each water storage tank 3 close to the rotary driving assembly is provided with a communicating port 33, and a flow guide pipeline is arranged between the two communicating ports 33. In order to ensure that water leakage does not occur in the water inlet 31, the water outlet 32 and the communication port 33, oil seal devices 7 are arranged inside the water inlet 31, the water outlet 32 and the communication port 33.
In the above embodiment, in order to prevent water in the reservoir 3 from accumulating around the opening of the reservoir 3, the opening of the reservoir 3 is provided with the front water deflector 34 and the rear water deflector 35, the front water deflector 34 is located at one end of the cleaning roller 4 close to the drying area 11, the rear water deflector 35 is located at one end of the cleaning roller 4 far from the drying area 11, and the front water deflector 34 and the rear water deflector 35 are inclined toward the inside of the reservoir 3.
In the above embodiment, the rotation driving assembly includes a first double-output-shaft synchronous motor 51, two first driving gears 511, two first driven gears 512, a first gear chain 513 and a rotating rod 53, the first double-output-shaft synchronous motor 51 is disposed between the two water storage tanks 3 along the vertical direction, two driving shafts of the first double-output-shaft synchronous motor 51 are respectively disposed toward the water storage tanks 3 and parallel to the cleaning roller 4, one end of the first driving gear 511 is fixedly connected with the driving shaft of the first double-output-shaft synchronous motor 51, the other end of the first driving gear is fixedly connected with one cleaning roller 4 inside the reservoir through the rotating rod 53, the first driven gear 512 is disposed on one side of the first driving gear 511 away from the drying zone 11 and is located on the same straight line with the first driving gear 511, the first driven gear 512 is connected with the first driving gear 511 through the first gear chain 513 and synchronously rotates, one end of the first driven gear 512 close to the water storage tank 3 is fixedly connected with one cleaning roller 4 inside the reservoir through the rotating rod 53 And (4) fixing connection.
The rotary driving assembly further comprises a second double-output-shaft synchronous motor 52, two second driving gears 521, two second driven gears 522, a second gear chain 523 and a rotary rod 53, the second double-output-shaft synchronous motor 52 is vertically arranged between the two water storage tanks 3 and is positioned on one side of the first double-output-shaft synchronous motor 51 close to the drying area 11, two driving shafts of the second double-output-shaft synchronous motor 52 are respectively arranged towards the water storage tanks 3 and are parallel to the cleaning rollers 4, one end of the second driving gear 521 is fixedly connected with the driving shaft of the second double-output-shaft synchronous motor 52, the other end of the second driving gear 521 is fixedly connected with one cleaning roller 4 inside the water storage tank through the rotary rod 53, the second driven gear 522 is arranged on one side of the second driving gear 521 close to the drying area 11 and is positioned on the same straight line with the second driving gear 521, and the second driven gear 522 is connected with the second driving gear 521 through the second gear chain 523 and synchronously rotates, one end of the second driven gear 522 close to the reservoir 3 is fixedly connected with a cleaning roller 4 in the reservoir through a rotating rod 53.
According to the automatic shoe washing machine capable of being installed under the floor, the washing panel 1 is embedded in the bottom plate, when a user walks onto the supporting block 2 of the washing area 12, the user is prevented from slipping through the anti-slipping protrusions, then the shoe soles are respectively placed on the supporting rods 6 in the water storage tank 3, then the rotary driving assembly drives the cleaning brushes 41 on the washing roller 4 to clean the shoe soles, and after the cleaning is respectively completed, the user moves to the water absorption sponge in the drying area 11, so that water stains on the shoe soles are clear. The cleaning device realizes the rotation of the cleaning roller 4 by driving the gear and the gear chain through the double-output-shaft synchronous motor, reduces the occupied area of the device by embedding the cleaning roller under the ground, is connected with the water storage tank through the water pipe, realizes more thorough cleaning, and simultaneously arranges the pipeline under the ground and is connected with the indoor water pipe. Compact structure, clean effect is excellent.
Although the utility model has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this disclosure. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (10)

1. An automatic shoe washing machine capable of being installed under the floor is characterized in that:
comprises a cleaning panel (1), a water storage tank (3), a cleaning roller (4) and a rotary driving component;
the cleaning panel (1) is embedded inside the floor, the upper surface of the cleaning panel (1) and the floor are positioned on the same plane, the cleaning panel (1) comprises a cleaning area (12) and a drying area (11), the drying area (11) is positioned right above the cleaning area (12), a supporting block (2) is arranged in the middle of the cleaning area (12), water storage tanks (3) are respectively arranged below the cleaning area (12) of the cleaning panel (1) and are positioned on two sides of the supporting block (2), openings of the water storage tanks (3) are positioned on the upper surface of the cleaning panel (1), each water storage tank (3) comprises a water inlet (31) and a water outlet (32), a plurality of cleaning rollers (4) are arranged inside the water storage tanks (3) along the horizontal direction, a rotary driving assembly is arranged below the cleaning panel (1) and is positioned between the two water storage tanks (3), and the rotary driving assembly is connected with the cleaning rollers (4) and drives the cleaning rollers (4) to rotate, and the drying area (11) is provided with a water absorption sponge which is positioned right above the supporting block (2).
2. The underfloor mountable automatic shoe washing machine according to claim 1, wherein:
four cleaning rollers (4) are arranged inside each water storage tank, and a plurality of cleaning brushes (41) are arranged on the outer surfaces of the cleaning rollers (4).
3. The underfloor mountable automatic shoe washing machine according to claim 2, wherein:
a supporting rod (6) is arranged between every two adjacent cleaning rollers (4), the supporting rod (6) is located above the cleaning rollers (4) and is parallel to the cleaning rollers (4), and one end, far away from the cleaning rollers (4), of the cleaning brush (41) is located above the supporting rod (6).
4. The underfloor mountable automatic shoe washing machine according to claim 3, wherein:
the rotary driving assembly comprises a first double-output-shaft synchronous motor (51), two first driving gears (511), two first driven gears (512), a first gear chain (513) and a rotary rod (53), wherein the first double-output-shaft synchronous motor (51) is arranged between the two water storage tanks (3) along the vertical direction, two driving shafts of the first double-output-shaft synchronous motor (51) are respectively arranged towards the water storage tanks (3) and are parallel to the cleaning roller (4), one end of the first driving gear (511) is fixedly connected with the driving shaft of the first double-output-shaft synchronous motor (51), the other end of the first driving gear is fixedly connected with one cleaning roller (4) in the water storage tank through the rotary rod (53), the first driven gear (512) is arranged on one side of the first driving gear (511) far away from the drying area (11) and is positioned on the same straight line with the first driving gear (511), the first driven gear (512) is connected with the first driving gear (511) through the first gear chain (513) and synchronously rotates, one end of the first driven gear (512) close to the water storage tank (3) is fixedly connected with a cleaning roller (4) in the water storage tank through a rotating rod (53).
5. The underfloor mountable automatic shoe washing machine according to claim 4, wherein:
the rotary driving assembly further comprises a second double-output-shaft synchronous motor (52), two second driving gears (521), two second driven gears (522), a second gear chain (523) and a rotary rod (53), wherein the second double-output-shaft synchronous motor (52) is arranged between the two water storage tanks (3) in the vertical direction and is positioned on one side, close to the drying area (11), of the first double-output-shaft synchronous motor (51), two driving shafts of the second double-output-shaft synchronous motor (52) are respectively arranged towards the water storage tanks (3) and are parallel to the cleaning rollers (4), one end of the second driving gear (521) is fixedly connected with the driving shaft of the second double-output-shaft synchronous motor (52), the other end of the second driving gear is fixedly connected with one cleaning roller (4) inside the water storage tank through the rotary rod (53), the second driven gear (522) is arranged on one side, close to the drying area (11), of the second driving gear (521) and is positioned on the same straight line with the second driving gear (521), the second driven gear (522) is connected with the second driving gear (521) through a second gear chain (523) and synchronously rotates, and one end of the second driven gear (522) close to the water storage tank (3) is fixedly connected with a cleaning roller (4) in the water storage tank through a rotating rod (53).
6. The underfloor mountable automatic shoe washing machine according to claim 1, wherein:
the water inlet (31) of the water storage tank (3) is positioned at one end of the water storage tank (3) close to the drying area (11), the water outlet (32) is positioned on one side wall of the water storage tank (3) far away from the rotary driving assembly, the water inlets (31) of the two water storage tanks (3) are connected through a liquid guide pipeline, and a three-way connector is arranged on the liquid guide pipe.
7. The underfloor mountable automatic shoe washing machine according to claim 6, wherein:
one side of each water storage tank (3) close to the rotary driving assembly is provided with a communicating opening (33), and a flow guide pipeline is arranged between the two communicating openings (33).
8. The underfloor mountable automatic shoe washing machine according to claim 7, wherein:
the communication port (33) and the water outlet (32) are provided with an oil seal device (7).
9. The underfloor mountable automatic shoe washing machine according to claim 8, wherein:
the opening of catch basin (3) is provided with preceding water deflector (34) and back water deflector (35), and preceding water deflector (34) are located the one end that cleaning roller (4) is close to drying region (11), and back water deflector (35) are located the one end that cleaning roller (4) is kept away from drying region (11), and preceding water deflector (34) and back water deflector (35) are towards the inside slope setting of catch basin (3).
10. The underfloor mountable automatic shoe washing machine according to claim 1, wherein:
the upper surface of the supporting block (2) is provided with a plurality of anti-skid bulges.
CN202220215112.9U 2022-01-26 2022-01-26 Automatic shoe washing machine capable of being installed under floor Active CN216797603U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220215112.9U CN216797603U (en) 2022-01-26 2022-01-26 Automatic shoe washing machine capable of being installed under floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220215112.9U CN216797603U (en) 2022-01-26 2022-01-26 Automatic shoe washing machine capable of being installed under floor

Publications (1)

Publication Number Publication Date
CN216797603U true CN216797603U (en) 2022-06-24

Family

ID=82065029

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220215112.9U Active CN216797603U (en) 2022-01-26 2022-01-26 Automatic shoe washing machine capable of being installed under floor

Country Status (1)

Country Link
CN (1) CN216797603U (en)

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