CN217090659U - Shoe washing device - Google Patents

Shoe washing device Download PDF

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Publication number
CN217090659U
CN217090659U CN202220350907.0U CN202220350907U CN217090659U CN 217090659 U CN217090659 U CN 217090659U CN 202220350907 U CN202220350907 U CN 202220350907U CN 217090659 U CN217090659 U CN 217090659U
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shoe
cage
shoe washing
washing
wall
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解见初
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Qingdao Xiaolu Intelligent Technology Co ltd
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Qingdao Xiaolu Intelligent Technology Co ltd
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Abstract

The utility model discloses a shoe washing device, which comprises a machine body, a shoe washing cabin arranged in the machine body, a shoe cage component which is rotationally connected with the inner wall of the shoe washing cabin and is used for containing shoes, and a spraying mechanism arranged on the inner wall of the shoe washing cabin, wherein a high-pressure spray head used for spraying washing water is fixedly arranged on the spraying mechanism; the shoe cage assembly comprises a fixed shaft plate in transmission connection with the rotary driving mechanism and shoe cages respectively fixed on the fixed shaft plate, the shoe cages are cage-shaped frame bodies arranged in a shoe-shaped hollow mode, cleaning protrusions used for washing the surfaces of the shoe bodies are densely distributed on the inner walls of the cage-shaped frame bodies, a plurality of cleaning holes for liquid to enter and exit are distributed in the cage-shaped frame bodies, and the high-pressure spray heads are arranged towards the direction of the shoe cages. The shoe washing device automatically realizes flexible brushing of the vamps in the shoe cage rotating process through the cleaning protrusions on the inner wall of the shoe cage, effectively reduces abrasion of the vamps in the cleaning process, and is simple in structure, convenient to use, highly integrated in function, and capable of achieving cleaning and spin-drying functions.

Description

Shoe washing device
Technical Field
The utility model relates to a shoe washing equipment technical field especially relates to a shoe washing device.
Background
Along with the rapid development of science and technology and the improvement of the living standard of people, the degree of automation of the household appliance is higher and higher, and a lot of convenience is brought to the daily life of people. The development of the washing machine which is frequently used is fast, various washing machines appear on the market at present, the problems of washing, spin-drying and drying of various clothes are solved, and the full-automatic washing requirement of the clothes is met.
And as shoes which are frequently used in daily life and have higher cleaning requirements, shoe washing machines gradually appear in the market. Because shoes contact with the environment complicatedly and are easy to be polluted, the cleaning difficulty of the shoes is higher than that of clothes. The traditional manual cleaning method is to brush by using a shoe brush by hands, so that the efficiency is low, and the work of draining, spin-drying and the like is difficult to realize. The existing shoe washing machine on the market also refers to the traditional cleaning mode, a hairbrush is arranged in the shoe washing machine, and the shoes are washed through the relative rotation of the hairbrush and the surfaces of the shoes. For example, the rotary shoe washer disclosed in the patent application No. CN91233252.2 comprises a support frame, a rotating shaft, a rotary disc, a shoe hanging rack, etc., wherein a shoe washing frame with brush hairs is mounted on the support frame, the shoe hanging rack comprises two rack bodies capable of moving relative to each other, when the shoe washer is put into a washing machine for washing, the rotary disc drives the shoe hanging rack to rotate, on one hand, the brush hairs on the shoe washing frame clean the front and back sides of the shoe, and on the other hand, the shoe hanging rack with brush hairs cleans the interior of the shoe. Also, for example, patent No. CN201120465256.1 discloses a novel shoe washing machine, in which at least two brushes are arranged on the inner side wall of the roller; the shoe cleaning device is also provided with a foot model brush which moves in the shoe and is used for washing the shoe, the surface of the foot model brush is provided with a hairbrush, and the shoe is cleaned through the hairbrush.
However, the above-mentioned shoe washing machines are liable to wear the surface of the shoes during operation, and it is difficult to achieve the desired cleaning effect at low working intensity. Moreover, the shoe washing machine has a complex structure, is usually provided with a brush cleaning mechanism, a shoe body fixing mechanism, a spin-drying mechanism and other structures, and has the disadvantages of complex device, high cost and large volume.
Therefore, the existing shoe washing machine is yet to be further developed.
SUMMERY OF THE UTILITY MODEL
To the technical problem, the utility model provides a simple structure and clean efficient shoe washing device establishes clean prominent shoe cage in the use and replaces traditional brush structure, should wash shoe device and have the cleaning performance good and not wearing and tearing vamp.
The utility model provides a following technical scheme:
a shoe washing device comprises a machine body, a shoe washing cabin arranged in the machine body, a shoe cage assembly which is rotatably connected to the inner wall of the shoe washing cabin and used for containing shoes, and a spraying mechanism arranged on the inner wall of the shoe washing cabin, wherein a high-pressure spray head used for spraying washing water is fixedly arranged on the spraying mechanism; the shoe cage assembly comprises a fixed shaft plate in transmission connection with the rotary driving mechanism and shoe cages respectively fixed on the fixed shaft plate, each shoe cage is a hollow cage-shaped frame body in a shoe shape, cleaning bulges used for washing the surfaces of the shoe bodies are densely distributed on the inner wall of each cage-shaped frame body, and a plurality of cleaning holes for liquid to enter and exit are distributed in each cage-shaped frame body; the high-pressure spray head is arranged towards the direction of the shoe cage.
Preferably, the shoe washing device further comprises a shoe washing liquid spray head fixed on the inner wall of the shoe washing cabin; the shoe washing liquid spray heads are independently arranged singly or are composed of at least two spray heads which are distributed along the length direction of the shoe cage in a group.
Preferably, the spraying mechanism comprises a spraying fixed seat and at least two high-pressure spray heads arranged on the fixed seat, and the high-pressure spray heads are arranged in the direction parallel to the length direction of the shoe cage; the number of the spraying mechanisms is at least one, or a plurality of spraying mechanisms are symmetrically arranged along the inner wall of the shoe washing cabin.
Preferably, the shoe washing device further comprises a liquid storage box for containing shoe washing liquid, one end of the liquid storage box is communicated with a liquid adding opening in the surface of the machine body through a connected liquid inlet pipe, and the liquid storage box is further communicated with a shoe washing liquid spray head through a connecting pipe and a liquid pump.
Preferably, in the shoe washing device, the fixed shaft plate comprises a fixed shaft for transmission connection with a rotary driving mechanism and connecting plates arranged at two sides of the fixed shaft, the connecting plates are fixedly connected with bottom plates of shoe cages, and a group of shoe cages are respectively fixed at two sides of the fixed shaft through the connecting plates; the fixed shaft is perpendicular to the inner wall of the shoe washing cabin.
Preferably, in the shoe washing device, a movable fan is arranged on the shoe cage, one side of the movable fan is fixedly connected with the cage-shaped frame body or integrally formed, and the other side of the movable fan is detachably connected with a corresponding part of the cage-shaped frame body or the movable side of the other movable fan; the movable fan is arranged at the tail part, the head part or the side surface of the cage-shaped frame body; a cabin door is hinged on the shoe washing cabin, and a movable fan of the shoe cage is arranged towards the direction of the cabin door.
Preferably, in the shoe washing device, the shoe cage mainly comprises a cage-shaped inner framework and an outer framework, wherein the inner surface of the cage-shaped inner framework is provided with cleaning protrusions, the outer framework is wrapped and connected outside the inner framework, and the hardness of the outer framework is higher than that of the inner framework; the movable fan is arranged at the tail part or the side part of the inner framework, and the movable side of the movable fan is clamped or screwed with the opposite side of the inner framework or the outer framework.
Preferably, in the shoe washing device, the inner framework comprises an inner bottom plate, an inner side plate and end plates positioned at the head and the tail, the side plates are integrally formed by a plurality of connecting strips which are arranged in a staggered manner, and cleaning holes are formed between the adjacent connecting strips; the inner framework is provided with at least one second fixture block for fixing the outer framework; the outer framework comprises an outer bottom plate and an outer side portion connected with the outer bottom plate, and a clamping portion matched with the second clamping block is arranged on the outer side portion in a corresponding mode.
Preferably, in the shoe washing device, the outer frame further comprises a head connecting part used for wrapping the head of the inner frame, and the head connecting part is connected with the outer bottom plate; a third clamping block is arranged on the outer surface of the head of the inner framework, a third clamping hole is formed in the head connecting part of the outer framework, and the third clamping hole is in clamping fit with the third clamping block; the structure of the outer skeleton is overlapped with the structure of the adjacent inner skeleton.
Preferably, in the shoe washing device, a dust collecting box is arranged on the inner wall of the shoe washing cabin; a water outlet is arranged on the bottom wall of the shoe washing cabin, and a filter screen is covered on the water outlet; the shoe washing device also comprises a control panel arranged on the surface of the shoe washing device body, and the control panel is in control connection with the rotary driving mechanism, the spraying mechanism and the liquid pump for driving shoe washing liquid.
The utility model provides a shoe washing device has following beneficial effect:
1. the utility model discloses a shoe washing device simple structure, convenient to use, the function is high integrated, greatly reduces the whole volume of device, reduces the manufacturing and the cost of maintenance of device by a wide margin.
2. The shoe washing device has the advantages that the shoe cage with the cleaning protrusions arranged inside is used for replacing a traditional brush structure, the shoe washing device is good in washing effect, and the vamp is not abraded. The shoe cage is simple in structure and diversified in functions: the shoe cage not only serves as a fixing mechanism of the shoe body, but also has the functions of cleaning and spin-drying after being matched with the rotating mechanism; still saved conventional brush structure, realized brushing to the vamp through the cleanness on the cage inner wall is protruding at the rotation in-process automatically, effectively reduced the wearing and tearing of clean in-process vamp.
3. The shoe washing device has wide application range and can be applied to household, commercial and industrial shoe washing machines. The application range of the shoe cage component is wide, and the shoe cage component is suitable for the conventional shoes with various sizes. The shoe cage allows the shoes to move in the cage-shaped frame to a certain extent, so that the shoes with various sizes are used without the need of just matching the sizes of the shoes with the specifications of the shoe cage.
Drawings
FIG. 1 is a schematic perspective view of a shoe washing device according to an embodiment of the present invention in example 1;
FIG. 2 is a cross-sectional view showing a structure of a shoe washing device according to embodiment 1 of the present invention;
FIG. 3 is a sectional view of the shoe washing device according to another angle in embodiment 1 of the present invention;
FIG. 4 is a schematic structural view of two embodiments of a shoe cage;
FIG. 5 is a schematic view of an alternative footwear cage;
FIG. 6 is a cross-sectional view of the footwear cage of FIG. 5;
FIG. 7 is a perspective view of the exoskeleton of the shoe cage of FIG. 5;
FIG. 8 is a schematic perspective view of an alternate angle of the exoskeleton of the footwear cage of FIG. 5;
FIG. 9 is a schematic structural view of the cage inner frame of FIG. 5;
FIG. 10 is a schematic structural view of the footwear cage assembly of example 3;
fig. 11 is a schematic structural view of a fixed shaft plate according to an implementation manner of embodiment 3.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those skilled in the art without creative efforts belong to the protection scope of 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 be present. As used herein, the terms "vertical," "horizontal," "left," "right," "upper," "lower," "inner," "outer," "bottom," and the like are used in an orientation or positional relationship that is based on the orientation or positional relationship as shown in the drawings, merely to facilitate the description of the invention and to simplify the description, and are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be construed as limiting the invention. Furthermore, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items. Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
Example 1
As shown in fig. 1-3, the present embodiment provides a shoe washing device, which includes a machine body 1, a shoe washing compartment 2 disposed in the machine body, a shoe cage assembly rotatably connected to an inner wall of the shoe washing compartment for containing shoes, and a spraying mechanism 4 disposed on the inner wall of the shoe washing compartment, wherein a high pressure nozzle 41 for spraying washing water is fixedly disposed on the spraying mechanism 4, and the high pressure nozzle is disposed toward the shoe cage.
The shoe cage assembly comprises a fixed shaft plate in transmission connection with the rotary driving mechanism and shoe cages X fixed on the fixed shaft plate respectively, each shoe cage is a hollow cage-shaped frame body X1 in a shoe shape, cleaning protrusions X2 used for washing the surfaces of the shoe bodies are densely distributed on the inner walls of the cage-shaped frame bodies, and a plurality of cleaning holes X3 for liquid to enter and exit are distributed in the cage-shaped frame body X1. The rotary driving mechanism is a motor.
The working principle of the shoe washing device is as follows:
before the washing, pack into each shoes cage of shoes cage subassembly respectively with each shoes earlier, fix a position the back with shoes, carry out following shoe washing process through setting up full-automatic mode, semi-automatic or manual operation mode:
a high-pressure washing stage: rotatory actuating mechanism drives the shoe cage through fixed axletree board and rotates, and simultaneously, high pressure nozzle is to shoe cage blowout high-pressure rivers, and high-pressure rivers pass the washing hole and erode the shoes surface in the rotatory shoe cage, carry out preliminary high pressure to shoes whole surface and wash, and the sewage of washing is in time drained away.
After one or more times of high-pressure washing, high-pressure water flow is accumulated in the shoe washing cabin, so that water is injected into the shoe washing cabin. The shoe washing liquid can be sprayed into the shoe washing cabin together with high-pressure water flow, and the shoe washing liquid can also be added separately by a single spray head.
And (3) rinsing: because the washing water is accumulated at the middle lower part of the shoe washing cabin, the shoe body continuously shakes in the shoe cage in the rotation process of the shoe cage, the cleaning protrusions in all directions on the inner wall of the shoe cage fully rub all positions on the surface of the shoe body in the shaking process to realize washing, the washing water in the shoe washing cabin continuously enters and exits the shoe cage in the rotation process of the shoe cage to wash out stains washed by the shoe body, and therefore the shoes are rinsed. And discharging the sewage in the shoe washing cabin.
A spin-drying stage: after the shoe is rinsed and dried, accumulated water in the shoe washing cabin is discharged, and the shoe cage rotates at a high speed to gradually throw out moisture on the inner shoe body, so that the shoes are dried.
In order to improve the cleaning effect, multiple rinses may be performed. The cleaning time and times of different stages, the rotating speed of the shoe cage and the like can be set according to the structural characteristics of the shoes or the cleaning difficulty of stains and the like.
The shoe washing device in the embodiment is a small-size shoe washing device, and can meet the requirements of household or commercial use. Specifically, in the shoe washing device, a shoe washing cabin 2 is arranged on the machine body, and a shoe cage assembly 3 is arranged in the center of the shoe washing cabin. In other embodiments, a plurality of shoe washing cabins which are arranged in parallel can be additionally arranged on the machine body, and each shoe washing cabin is independently cleaned, so that the problem of cross infection among different shoes is avoided.
In the embodiment, in order to separately control the addition of the shoe washing liquid, the inner wall of the shoe washing cabin is fixedly provided with the shoe washing liquid spray head 5. Preferably, the shoe washing liquid spray heads are a group of (at least two) spray heads distributed along the parallel direction of the length direction of the shoe cage, and the shoe washing liquid spray heads arranged in this way spray the shoe washing liquid to the shoes to be treated, so that the high-concentration shoe washing liquid can better react with stains on the vamps, and the cleaning effect is improved. In other embodiments, the shoe washing liquid spray head is arranged independently.
In this embodiment, in order to improve the high-pressure washing effect, the spraying mechanism 4 includes a spraying fixing seat and a high-pressure nozzle 41 disposed on the fixing seat, and at least two high-pressure nozzles are disposed in the parallel direction of the length direction of the shoe cage. In order to facilitate installation and integration of the structure, the shoe washing liquid spray head is preferably fixed on the spray fixing seat.
In order to simplify the structure, reduce cost, the quantity that sprays mechanism 4 is one, and high pressure nozzle is 3 that even in bank distributes, sets up like this and makes high pressure nozzle spun water column pressure stronger, and the washing effect is better. In other embodiments, a plurality of spraying mechanisms 4 can be arranged symmetrically along the inner wall of the shoe washing chamber.
Preferably, the shoe washing device further comprises a liquid storage box 6 used for containing shoe washing liquid, one end of the liquid storage box 6 is communicated with a liquid adding opening in the surface of the machine body through a connected liquid inlet pipe, and the liquid storage box 6 is further communicated with a shoe washing liquid spray head 5 through a connecting pipe and a liquid pump. A liquid level sensor 61 for detecting the liquid level of the shoe washing liquid is arranged in the liquid storage box. When the shoe washing liquid of the liquid storage box is nearly used up and the warning liquid level is reached, the liquid level sensor sends a signal to the controller so that an operator can add the shoe washing liquid in time.
On the basis, the inner wall of the shoe washing cabin of the shoe washing device can be further provided with a dust collecting box 7 for collecting larger stains in sewage to prevent the larger stains from blocking the water outlet. The bottom wall of the shoe washing cabin is provided with a water outlet, and a filter screen 8 is covered on the water outlet to avoid the water outlet from being blocked.
Preferably, a control panel is arranged on the surface of the shoe washing device body and is in control connection with the rotary driving mechanism, the spraying mechanism, the liquid pump for driving shoe washing liquid, the liquid level sensor and the like. The washing mode of the shoe washing device and the specific parameters (such as rotating speed, running time, water quantity, rinsing times and the like) of each program can be set through the control panel.
The shoe washing device can be used as a core structure of the shoe washing machine, and other structures such as a drying box and the like are additionally arranged on the basis, so that the functions of the shoe washing machine are more complete.
Shoe cage assembly
As shown in fig. 10, the embodiment provides a shoe cage assembly, which comprises a fixed shaft plate X5 and at least two shoe cages fixedly connected to the fixed shaft plate X5, wherein the outer wall of the bottom of each shoe cage is provided with a positioning groove X6 (shown in fig. 6) which is embedded with the fixed shaft plate. The shoe cage adopts the structure of the previous embodiment.
In this embodiment, as shown in fig. 11, the fixed shaft plate includes a fixed shaft X51 for driving connection with the driving mechanism, and connecting plates X52 disposed at two sides of the fixed shaft, and the connecting plates are fixedly connected with the bottom plate of the shoe cage (in this embodiment, screw connection is adopted). In this embodiment, two shoes cages are fixed respectively in the both sides of fixed axletree board, and two shoes cages can be the setting of crossing, also can be the symmetry setting. The arrangement can greatly reduce the volume of the shoe cage assembly, and the practicability is stronger.
In other embodiments, the fixed shaft plate of the shoe cage assembly is longer, a plurality of groups of shoe cages can be arranged along the axial direction of the fixed shaft plate, and when the shoe cage assembly is applied to a household shoe washing machine, the work efficiency of the shoe washing machine can be greatly improved, and the cleaning and the spin-drying of a plurality of pairs of shoes can be simultaneously completed.
The cage X, as a core component of the cage assembly described above, has a number of different implementations, as will be explained below:
embodiment mode (1)
As shown in figure 4, the shoe cage for the shoe washing machine comprises a cage-shaped frame body X1 which is in a shoe-shaped appearance, and cleaning protrusions X2 for washing the surface of a shoe body are densely distributed on the inner wall of the cage-shaped frame body; a large number of cleaning holes X3 for liquid to enter and exit are distributed in the cage-shaped frame X1.
The cage-shaped frame body that the fretwork set up is formed by crisscross connecting strip integrated into one piece or fixed connection who distributes, encloses synthetic washing hole 3 between the adjacent connecting strip. The shape of the cleaning holes can be square, diamond, circle, triangle or any other shape. In other embodiments, the frame is not limited to the above-mentioned connecting strip. On one hand, the inner walls of the connecting strips for forming the frame body are used for arranging the cleaning protrusions, and on the other hand, the connecting strips which are arranged in a staggered mode are used for preventing the shoe bodies in the frame body from leaking out, so that the shoe bodies are stably limited in the cage-shaped frame body while being fully contacted with water or cleaning liquid entering from the outside.
Because the sole is dirtier, the cleaning difficulty of the sole is greater than that of the vamp, and preferably, the coverage area of the cleaning protrusions on the inner wall of the bottom surface (the side opposite to the sole) of the cage-shaped frame body is greater than that of the side wall of the cage-shaped frame body; or further, the density of the distribution of the cleaning protrusions on the inner wall of the bottom surface of the cage (the side opposite to the sole) is also greater than the density of the distribution of the cleaning protrusions on the side wall of the cage. The shoe cage can greatly improve the cleaning effect of the shoe cage on the sole.
The during operation is fixed in the pivot of shoe washing machine washing intracavity with above-mentioned shoe cage, the shoes body of fixing in the shoe cage is under the drive of pivot, rotate along with the shoe cage together, at this in-process, the shoes body constantly rocks in the shoe cage, the cleanness in each position is protruding to fully scrub each position on shoes body surface at the in-process of rocking on the shoes cage inner wall, and wash the in-process of the washing water in washing intracavity in the continuous business turn over shoe cage washing hole, wash out the spot that comes down with the shoes body washing, and the detergent also can fully use on the shoes body in the shoe cage, improve the washing effect. In addition, after washing is finished, the shoe cage rotates at a high speed to spin shoes.
Therefore, the shoe cage is simple in structure and has multiple functions, not only serves as a fixing mechanism of the shoe body, but also has the functions of cleaning and spin-drying when being matched with the rotating mechanism, and the diversification of the functions is realized; the conventional brush structure is omitted, the shoe upper is automatically brushed in the rotating process through the cleaning protrusions on the inner wall of the shoe cage, and abrasion to the shoe upper in the cleaning process is effectively reduced.
In addition, the shoe cage allows the shoes to move in the frame body to a certain degree (the shoes and the inner walls of the shoe cage frame body move relatively to realize the cleaning of the vamps of the shoes), and the sizes of the shoes are not required to be matched with the specification of the shoe cage, so that the application range of the shoe cage is wide, and the specification of the shoe cage is suitable for the shoes with all conventional sizes.
On the basis, in order to further improve the convenience of the shoe body to be installed in the shoe cage, the following improved scheme is provided:
in one embodiment, the shoe cage is provided with a movable fan X4 which is convenient for loading or taking out the shoe body, one side (namely a fixed side) of the movable fan is fixedly connected with the frame body or integrally formed, and the other side (namely a movable side) of the movable fan is detachably connected with the corresponding part of the frame body. As shown in fig. 4 (1), the movable fan X4 is disposed at the tail of the frame, and the outer side (i.e., the movable side) of the movable fan is engaged with the corresponding side of the frame. The shoes are put in or taken out by opening the movable fan; the shoes are limited in the shoe cage by closing the movable fan.
In other variants, the movable leaf of the shoe cage can be arranged at the head or at the side of the cage-shaped frame.
The detachable connection of the corresponding part of the movable fan and the frame body can also be splicing, screwing, magic tape type bonding except clamping and connecting through a zipper, and can also be connected through a clamp.
In another kind of embodiment, the quantity of activity fan is 2, and adjacent setting carries out the removable connection between the outside of two activity fans to the realization is to closing of shoe cage.
In another embodiment, as shown in fig. 4 (2), the cage-shaped frame is formed by connecting two parts of a left frame and a right frame, one side of the left frame and one side of the right frame are non-detachably connected (e.g., bonded, integrally formed, or screwed), the openable movable sides of the left frame and the right frame are detachably connected, and a joint F is formed at the joint. Specifically, the detachable connection is insertion, clamping, screwing, hook and loop type adhesion, connection through a zipper or a hoop, and the like (fig. 4 (2) and the connecting piece at the crack is omitted).
Preferably, to further reduce wear on the shoe upper, the cleaning protrusions X2 in the cage are flexible cleaning protrusions.
In order to achieve a flexible arrangement of the cleaning protrusions, it is preferred that the cleaning protrusions in the cage-shaped frame are made of rubber or plastic. Preferably, the cage is also made of rubber, silicone or plastic. In order to improve the strength of the cage-shaped frame body, the structure of the cage-shaped frame body is more stable, the service life of the cage-shaped frame body is longer, and rubber or plastic or nylon with higher hardness is adopted.
In this embodiment, the cleaning protrusions are in the shape of spikes or columns, and in other embodiments, the cleaning protrusions may be in any other shape that is convenient for cleaning.
The cleaning protrusions are densely distributed on more than half of the area of the inner wall of the cage-shaped frame body, and preferably distributed on all the area of the inner wall of the cage-shaped frame body; the distribution of the cleaning protrusions on the inner wall of the frame body can be flexibly arranged. The cleaning protrusion and the inner wall of the frame body are vertically arranged or arranged at other angles. Since the angle between the cleaning protrusion and the inner wall of the frame body is changed during operation, the requirement for the angle to be set is not high.
Embodiment mode (2)
As shown in fig. 5-9, the shoe cage of the present embodiment is assembled by an inner and an outer layer structure, and the cage-shaped frame body includes an inner frame X11 and an outer frame X12 wrapped outside the inner frame, and the hardness of the outer frame is higher than that of the inner frame; the outer framework is clamped or screwed with the inner framework; the inner surface of the inner frame is provided with cleaning protrusions X2. The inner wall of the outer framework is not provided with a bulge, or the inner side of the overlapped position of the outer framework and the inner framework is not provided with a cleaning protrusion.
In the embodiment, the inner framework and the cleaning protrusions integrally formed on the inner wall are made of rubber (or silica gel) with certain elasticity and used for reducing the abrasion of the shoe cage on the shoes, and in addition, the inner framework is used for forming a basic cage-shaped structure; the outer framework is used for improving the overall structural strength of the shoe cage, so that the shoe cage is not easy to deform or damage, and the shoe cage is conveniently and stably fixed on other structures (such as the fixed shaft plate in the embodiment 3).
Preferably, as shown in fig. 10, the inner frame includes an inner bottom plate X11a, an inner side plate X11b and two end plates X11c, the side plates are integrally formed by a plurality of connecting strips arranged in a staggered manner, and a cleaning hole X3 is formed between the adjacent connecting strips.
In the preferred embodiment, the end plate at the tail of the inner frame forms a movable fan X4, and the movable side of the movable fan is clamped with the opposite side of the outer frame or the inner frame. Specifically, in this embodiment, as shown in fig. 10, a first engaging hole X41 is provided on an outer side of the movable fan, and a first engaging block X42 engaged with the first engaging hole is provided on an opposite side of the inner frame or the outer frame.
In other embodiments, the movable fan and the inner frame or the outer frame may be detachably connected as described above. In other embodiments, the fixed side of the movable fan X4 can also be disposed at one end of the outer frame, and the movable side of the movable fan is clamped (or otherwise detachably connected) with the opposite side of the inner frame or the outer frame.
In this embodiment, the movable fan is provided on the inner frame in accordance with various modifications of the movable fan in the cage of embodiment 1.
Preferably, in the shoe cage, a second clip X11d for fixing the outer frame is arranged on the inner frame, and in this embodiment, the second clip is arranged at the top of the inner frame.
As shown in fig. 7 to 8, the outer frame X12 includes an outer bottom plate X12a and an outer side portion X12b connected to the outer bottom plate, and the outer side portion is provided with a snap-fit portion X12c corresponding to the second snap-fit block X11 d. Preferably, the outer side portions are two pieces arranged on the left and right, a U-shaped clamping portion is formed at the top of the outer side portions, and the inner edge of the U-shaped clamping portion is clamped on the periphery of the second clamping block of the inner frame. The inner edge of the U-shaped clamping part is also provided with other auxiliary clamping lugs for enhancing the connection between the clamping part X12c and the second fixture block. During the installation, fix the joint portion of two outside portions of outer skeleton respectively behind the corresponding second fixture block of inner frame, be about to inner frame and outer skeleton carry out fixed connection. In this embodiment, the outer portion is formed by connecting at least two reinforcing connecting strips.
In other embodiments, the outer portion is integrally formed, and the top portion thereof is formed with a locking portion (e.g., a locking hole) for locking with the second latch X11 d.
On the basis, in order to further enhance the stability of the connection between the inner skeleton and the outer skeleton, the outer skeleton further comprises a head connecting part X12d which is connected with the outer bottom plate X12a and is used for wrapping the head X11c of the inner skeleton.
In order to facilitate the hollow area maximization of the inner frame, the shielding of the outer frame to the cleaning hole of the inner frame is avoided, and the structure of the outer frame is overlapped with the structure of the adjacent inner frame.
Specifically, set up third fixture block X11e on the inner frame head X11c surface, be provided with third card hole X12e on the head connecting portion X12d of exoskeleton, the third card hole carries out the joint cooperation with the third fixture block.
During practical application function, can be as required with the horizontal or fore-and-aft setting of above-mentioned shoe cage subassembly in washing the shoes cabin to the rotatory and angle of being convenient for get and put shoes of shoe cage all is in the mode of installing the utility model discloses a within range.
Example 2
The embodiment provides a shoe washing device which can be applied to an industrial shoe washing machine. In this embodiment, the shoe washing device includes the organism, set up the shoe washing cabin in the organism, rotate and connect in the shoe cage subassembly that is used for splendid attire shoes of shoe washing cabin inner wall and set up the mechanism that sprays on the shoe washing cabin inner wall, spray the fixed high pressure nozzle that is used for the blowout washing water that is provided with in the mechanism, high pressure nozzle sets up towards the direction of shoe cage subassembly to guarantee the washing effect of the interior shoes body of high pressure nozzle to the shoe cage. The mechanism of the shoe cage assembly in this embodiment can be referred to the structure of the shoe cage assembly in embodiment 1.
In this embodiment, in order to satisfy the requirement for industrial high-efficiency and large-batch cleaning, the following settings may be performed:
in one embodiment, the plurality of shoe washing cabins can be independently arranged or synchronously arranged through arranging the plurality of shoe washing cabins on the shoe washing machine so as to meet the requirement of industrial large-batch cleaning. The shoe washing cabin can also be classified according to the types of shoes (such as sole types, shoe material types and classification according to shoe structure differences) so as to set a better washing program and achieve a better washing effect.
In other embodiments, the shoe washing cabin can be set to be square, round or in other shapes, after the specification of the shoe washing cabin is expanded, the shoe cage assembly is set to be multiple and parallel to each other, so that multiple pairs of shoes can be washed in one shoe washing cabin, and the work efficiency of the shoe washing machine is greatly improved. Meanwhile, corresponding spraying mechanisms are arranged corresponding to the plurality of shoe cages.
In addition, the problem of cross contamination among different shoes can be effectively solved by adding bactericides and the like in the shoe washing process.
The above-described embodiments of the apparatus are merely illustrative, and the units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the present embodiment. It should be understood that equivalent alterations and modifications can be made by those skilled in the art according to the technical solution of the present invention and the inventive concept, and all such alterations and modifications shall fall within the scope of the appended claims.

Claims (10)

1. A shoe washing device is characterized by comprising a machine body (1), a shoe washing cabin (2) arranged in the machine body, a shoe cage assembly which is rotatably connected to the inner wall of the shoe washing cabin and used for containing shoes, and a spraying mechanism (4) arranged on the inner wall of the shoe washing cabin, wherein a high-pressure spray head (41) used for spraying washing water is fixedly arranged on the spraying mechanism (4); the shoe cage assembly comprises a fixed shaft plate in transmission connection with the rotary driving mechanism and a shoe cage (X) which is respectively fixed on the fixed shaft plate, the shoe cage is a hollow cage-shaped frame body (X1) in a shoe shape, cleaning protrusions (X2) for washing the surface of a shoe body are densely distributed on the inner wall of the cage-shaped frame body, and a plurality of cleaning holes (X3) for liquid to enter and exit are distributed on the cage-shaped frame body (X1); the high-pressure spray head is arranged towards the direction of the shoe cage.
2. The shoe washing device according to claim 1, wherein the spraying mechanism (4) comprises a spraying fixing seat and at least two high-pressure spray heads (41) arranged on the fixing seat, and the high-pressure spray heads are arranged in the direction parallel to the length direction of the shoe cage; the number of the spraying mechanisms (4) is at least one, or a plurality of spraying mechanisms (4) are symmetrically arranged along the inner wall of the shoe washing cabin.
3. The shoe washing device according to claim 1 or 2, further comprising a shoe washing liquid spray head (5) fixed on the inner wall of the shoe washing compartment; the shoe washing liquid spray heads are independently arranged singly or are composed of at least two spray heads which are distributed along the length direction of the shoe cage in a group.
4. The shoe washing device according to claim 3, characterized by further comprising a liquid storage box (6) for containing shoe washing liquid, wherein one end of the liquid storage box (6) is communicated with a liquid filling opening on the surface of the machine body through a connected liquid inlet pipe, and the liquid storage box (6) is also communicated with the shoe washing liquid spray head (5) through a connecting pipe and a liquid pump.
5. The shoe washing apparatus of claim 4, wherein the fixed shaft plate comprises a fixed shaft (X51) for driving connection with a rotary driving mechanism, and connecting plates (X52) disposed at both sides of the fixed shaft, the connecting plates being fixedly connected with the bottom plates of the shoes cages, a set of the shoes cages being fixed at both sides of the fixed shaft by the connecting plates, respectively; the fixed shaft is perpendicular to the inner wall of the shoe washing cabin.
6. The shoe washing device according to claim 5, characterized in that a movable fan (X4) is arranged on the shoe cage, one side of the movable fan is fixedly connected with the cage-shaped frame body or integrally formed, and the other side of the movable fan is detachably connected with the corresponding part of the cage-shaped frame body or the movable side of the other movable fan; the movable fan is arranged at the tail part, the head part or the side surface of the cage-shaped frame body; a cabin door is hinged on the shoe washing cabin, and a movable fan of the shoe cage is arranged towards the direction of the cabin door.
7. The shoe washing device of claim 6, wherein the shoe cage is mainly composed of a cage-shaped inner frame (X11) provided with cleaning protrusions (X2) on an inner surface thereof and an outer frame (X12) wrapped and coupled to an outside of the inner frame, the outer frame having a higher hardness than the inner frame; the movable fan (X4) is arranged at the tail or the side part of the inner framework, and the movable side of the movable fan is clamped or screwed with the opposite side of the inner framework or the outer framework.
8. The shoe washing apparatus of claim 7, wherein the inner frame comprises an inner bottom plate (X11 a), an inner side plate (X11 b) and end plates (X11 c) at the head and tail, the side plates are integrally formed by a plurality of alternately arranged connecting strips, and the cleaning holes (X3) are formed between the adjacent connecting strips; at least one second fixture block (X11 d) for fixing the outer framework is arranged on the inner framework; the outer framework (X12) comprises an outer bottom plate (X12 a) and an outer side part (X12 b) connected with the outer bottom plate, and a matched clamping part (X12 c) is arranged on the outer side part corresponding to the second clamping block.
9. The shoe washing apparatus of claim 7 or 8, wherein the outer frame further comprises a head connection part (X12 d) for wrapping the head of the inner frame, the head connection part (X12 d) being connected with the outer bottom plate; a third clamping block (X11 e) is arranged on the outer surface of the head of the inner framework, a third clamping hole (X12 e) is arranged on the head connecting part (X12 d) of the outer framework, and the third clamping hole is in clamping fit with the third clamping block; the structure of the outer skeleton is overlapped with the structure of the adjacent inner skeleton.
10. The shoe washing device of claim 9, wherein a dust collecting box (7) is provided on the inner wall of the shoe washing compartment; a water outlet is arranged on the bottom wall of the shoe washing cabin, and a filter screen (8) is covered on the water outlet; the shoe washing device also comprises a control panel arranged on the surface of the shoe washing device body, and the control panel is in control connection with the rotary driving mechanism, the spraying mechanism and the liquid pump for driving shoe washing liquid.
CN202220350907.0U 2022-02-21 2022-02-21 Shoe washing device Active CN217090659U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220350907.0U CN217090659U (en) 2022-02-21 2022-02-21 Shoe washing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220350907.0U CN217090659U (en) 2022-02-21 2022-02-21 Shoe washing device

Publications (1)

Publication Number Publication Date
CN217090659U true CN217090659U (en) 2022-08-02

Family

ID=82598605

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220350907.0U Active CN217090659U (en) 2022-02-21 2022-02-21 Shoe washing device

Country Status (1)

Country Link
CN (1) CN217090659U (en)

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