A shoe washing machine and a control method thereof
Patent Information
- Application Number
- CN202210152525.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-18
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2042-02-18
AI Technical Summary
这种洗鞋机可以同时清洗大量鞋子,效率高,但经常出现刷洗不干净的情况
[0027]与现有技术相比,本发明的优点和积极效果是: 通过设置洗鞋机的洗涤状态和浸洗状态,保证了在刷洗状态下的刷洗干净,在浸洗状态下可以大量鞋子同时浸洗状态,有利于提高洗涤效率。在洗涤状态下,可以通过将鞋子固定到鞋架上,通过内桶与鞋架之间的相对旋转运动,实现循环水道可以在喷淋的同时,相对于鞋架的旋转,使得水流可以周向旋转的喷淋到鞋子上,保证了对于鞋子的全面喷淋;刷洗部与鞋架之间的相对旋转运动,使得鞋子被全面的刷洗到,有利于刷洗的全面性和洁净度。通过设置浸洗状态,可以实现多双鞋子同时进行洗涤,并且鞋子被洗涤水浸没,有利于提高清洗效率和提高洁净度。
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Figure CN114635252B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of shoe washing machine technology, specifically relating to a shoe washing machine and a control method for the shoe washing machine. Background Technology
[0002] As people's living standards continue to improve, their demands for cleaning results are also increasing. Shoes are an indispensable part of people's lives. Due to rapid economic development, shoe-making materials have become more diverse, and styles are becoming more numerous, thus increasing the difficulty of cleaning. Usually, people use brushes to scrub shoes, which is time-consuming, laborious, and the cleaning effect is not satisfactory, far from meeting people's requirements. In this context, shoe cleaning machines have emerged. Currently, the main types of shoe cleaning machines on the market include: Firstly, there is the brush wheel shoe washing machine. This type of shoe washing machine consists of a chassis, shoe clamps, a slide, a brush wheel connector, brush wheels, a motor, a transmission component, and a control circuit. The shoe clamps are installed inside the chassis, fixing the shoes with the heels and toes facing the front and back of the chassis respectively. The shoe clamps can rotate around the toe-to-heel direction under manual or motor drive. The slide is installed inside or outside the chassis, or part of the slide is installed inside the chassis, and reciprocates along the front and back direction of the chassis under manual or motor drive. The slide is connected to one end of the brush wheel connector. Disc-shaped brush wheels are installed symmetrically on both sides of the other end of the brush wheel connector. The outer circular surface and outer end face of the two disc-shaped brush wheels have bristles. The motor is installed on the chassis or slide and drives the two disc-shaped brush wheels to rotate through the transmission component. The shoe clamps of the brush wheel shoe washing machine drive the shoes to rotate, and the motor and slide drive the brush wheels on the brush wheel connector to rotate and move while brushing the inside and outside of the shoes. This type of shoe washing machine has a simple structure and saves manpower, but its function is limited, its cleaning efficiency is low, and it cannot clean a large number of shoes at the same time; moreover, it only achieves the cleaning purpose by rubbing the shoes with a brush, which is not thorough.
[0003] Secondly, there's the pulsator shoe washer. This type of shoe washer is an improvement on the existing pulsator washing machine. It mainly consists of a casing, a washing tub inside the casing, a main shaft inside the washing tub, a pulsator connected to the main shaft, a transmission mechanism, and a control mechanism that works in conjunction with the transmission mechanism. Brushes are added to the pulsator shaft and the inside of the inner tub. During machine operation, the friction between the brushes and the shoes achieves the washing effect. This type of shoe washer can wash a large number of shoes simultaneously and is highly efficient, but it often fails to thoroughly clean the shoes.
[0004] The information disclosed in this background section is only intended to enhance the understanding of the background technology of this application, and therefore may include prior art that is not known to those skilled in the art. Summary of the Invention
[0005] This invention addresses the aforementioned problems in the prior art by proposing a shoe washing machine that ensures thorough cleaning during brushing and allows for the simultaneous washing of a large number of shoes during immersion, thereby improving washing efficiency.
[0006] To achieve the above-mentioned objectives, the present invention employs the following technical solution: A shoe washing machine, comprising: The outer tub is used to hold the washing water; The inner tub is rotatably disposed within the outer tub; A shoe rack, which is detachably disposed in the inner tub and has relative rotational movement with respect to the inner tub; A circulating water channel, which is fixed on the inner tank, is used to realize the circulating water channel; A washing unit, which is fixedly mounted on the inner tub; The shoe washing machine has a spray brush state with shoe racks installed and an immersion washing state with shoe racks removed.
[0007] Furthermore, the circulating water channel has a first water channel plate fixed to the side wall of the inner barrel, and a spray nozzle is provided on the first water channel plate. The scrubbing part is disposed on the first water channel plate.
[0008] Furthermore, the spray nozzle is an elongated strip extending in the vertical direction.
[0009] Furthermore, the first water channel plate is an inwardly convex arc-shaped plate, and the brushing part consists of multiple brush bristles disposed on both sides of the spray nozzle.
[0010] Furthermore, the bottom wall of the inner tub is provided with a water-pushing structure that can push the washing water into the circulating water channel during the rotation of the inner tub.
[0011] Furthermore, the water-dispelling structure has multiple downwardly extending water-dispelling ribs, a water-dispelling area formed between two adjacent water-dispelling ribs, and a water-collecting area connected to the circulating water channel; during the rotation of the inner tub, the washing water in the water-dispelling area can be pushed to the water-collecting area.
[0012] Furthermore, the water collection area is located inside the water diversion area, and the circumferential dimension of the water diversion area gradually decreases in the inward direction.
[0013] Furthermore, the water collection area has an inner ring wall and an outer ring wall that extend downward and are spaced apart, and an inlet that communicates with the water diversion area is provided on the outer ring wall.
[0014] Furthermore, the water-repellent rib is an arc-shaped plate connected to the outer ring wall.
[0015] Furthermore, the circulating water channel also has a second water channel plate fixed to the bottom of the inner tank.
[0016] Furthermore, when the shoe washing machine is working in the brushing state, the inner tub rotates and moves relative to the shoe rack, and the washing water in the circulating water channel is sprayed onto the shoes on the shoe rack, and the brushing part brushes the shoes on the shoe rack.
[0017] Furthermore, the bottom of the inner tub is provided with a water-pushing structure that can push the washing water into the circulating water channel during the rotation of the inner tub, and the water level of the washing water in the outer tub is higher than or equal to the bottom wall of the inner tub.
[0018] Furthermore, the water level in the outer tub is lower than or equal to a position 20mm above the bottom wall of the inner tub.
[0019] Furthermore, when the shoe washing machine is operating in the soaking state, multiple pairs of shoes in the inner tub are submerged in washing water, and the shoes are cleaned by rotating the inner tub.
[0020] Furthermore, the water level in the outer bucket is higher than the shoes in the inner bucket.
[0021] Based on the above-mentioned shoe washing machine, the present invention also provides a control method for the shoe washing machine, which ensures that the brushing is thorough and that a large number of shoes can be washed simultaneously in the soaking state, thereby improving washing efficiency.
[0022] A control method for the above-mentioned shoe washing machine includes the following steps: S10. Install the shoe rack into the inner tub and begin the washing process; S11. Secure the shoes to be cleaned to the shoe rack and fill the outer bucket with water; S12. The inner tub rotates relative to the shoe rack, causing the circulating water channel and the washing section to rotate relative to the shoe rack; the washing water in the circulating water channel is sprayed onto the shoes on the shoe rack, and the washing section washes the shoes on the shoe rack. S13. Remove the shoes from the shoe rack after washing; S14. The other shoes to be cleaned are brushed in sequence, repeating steps S11 to S13; S20. Disassemble the shoe rack and put it into the soaking and washing state; S21. Place the washed shoes onto the inner bucket and fill the outer bucket with water; S22. Multiple pairs of shoes in the inner tub are submerged in washing water, and the immersion state is achieved by rotating the inner tub; S23. Drain the washing water from the outer tub and dehydrate the inner tub by rotating it.
[0023] Furthermore, in step S11, the water level of the washing water in the outer tub is higher than or equal to the bottom wall position of the inner tub.
[0024] Furthermore, in step S11, the water level of the washing water in the outer tub is lower than or equal to a position 20mm above the bottom wall of the inner tub.
[0025] Furthermore, in step S21, the water level of the washing water in the outer tub overflows the shoes in the inner tub.
[0026] Furthermore, it also includes step S24: adding water to the outer tub again for rinsing.
[0027] Compared with existing technologies, the advantages and positive effects of this invention are as follows: By setting the washing and soaking states of the shoe washing machine, thorough cleaning is ensured in the brushing state, and a large number of shoes can be soaked simultaneously in the soaking state, which helps improve washing efficiency. In the washing state, by fixing the shoes to the shoe rack, the relative rotational movement between the inner tub and the shoe rack allows the circulating water channel to spray water onto the shoes in a circumferential rotation relative to the shoe rack, ensuring comprehensive spraying. The relative rotational movement between the brushing unit and the shoe rack ensures that the shoes are thoroughly brushed, which is beneficial for the comprehensiveness and cleanliness of the brushing. By setting the soaking state, multiple pairs of shoes can be washed simultaneously, and the shoes are submerged in the washing water, which helps improve cleaning efficiency and cleanliness.
[0028] Other features and advantages of the present invention will become clearer after reading the detailed embodiments of the invention in conjunction with the accompanying drawings. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0030] Figure 1 This is a schematic diagram of the structure of an embodiment of the shoe washing machine proposed in this invention; Figure 2 for Figure 1 A schematic diagram of the vertical sectional structure; Figure 3 for Figure 2 Enlarged structural diagram of region A in the middle; Figure 4 for Figure 2 Schematic diagram of the central water-repellent structure; Figure 5 for Figure 1 A schematic diagram of the transverse cross-sectional structure; Figure 6 for Figure 5 A magnified structural diagram of region B in the middle; Figure 7 for Figure 1 A schematic diagram of the structure after the shoe rack has been disassembled. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0032] In the description of this invention, it should be noted that the terms "upper," "lower," "left," and "right," etc., indicate the orientation or positional relationship based on the positional relationship shown in the accompanying drawings, with the direction closer to the inner cylinder axis being "inner," and the opposite being "outer." These terms are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; features defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0033] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0034] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0035] The following disclosure provides many different embodiments or examples for implementing various structures of the invention. To simplify the disclosure, specific examples of components and arrangements are described below. These are merely examples and are not intended to limit the invention. Furthermore, reference numerals and / or letters may be repeated in different examples; such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed. In addition, examples of various specific processes and materials are provided, but those skilled in the art will recognize the application of other processes and / or the use of other materials.
[0036] See Figures 1-7 This is an embodiment of the shoe washing machine proposed in this invention. The shoe washing machine includes: an outer tub 10, an inner tub 20, and a shoe rack 30. The outer tub 10 is used to hold washing water. The inner tub 20 is rotatably disposed in the outer tub 10, preferably with the inner tub 20 and the outer tub 10 coaxially arranged. The shoe rack 30 is detachably disposed in the inner tub 20, but there is no assembly relationship between the shoe rack 30 and the inner tub 20. The shoe rack 30 can be installed or removed as needed. The shoe rack 30 is used to fix the shoes. Fixing the shoes is beneficial for applying force to the shoes and for all parts of the shoes to be brushed, which helps to increase the cleanliness of the brushing. The shoe rack 30 and the inner tub 20 have relative rotational movement. The shoe washing machine has a spray brush state with the shoe rack 30 installed and an immersion state with the shoe rack 30 removed. A circulating water channel 21 and a brushing part 22 are fixed on the inner tub 20. The circulating water channel 21 is used to circulate the washing water and spray water onto the shoes for brushing. The circulating water channel 21 and the brushing part 22 can rotate relative to the inner tub 20 by the relative rotational movement of the shoe rack 30 and the inner tub 20.
[0037] In this embodiment, by setting the washing and soaking states of the shoe washing machine, thorough cleaning is ensured in the brushing state, while the soaking state allows for the simultaneous soaking of a large number of shoes, improving washing efficiency. In the washing state, by fixing the shoes to the shoe rack 30, the relative rotational movement between the inner tub 20 and the shoe rack 30 allows the circulating water channel 21 to rotate relative to the shoe rack 30 while spraying, ensuring that the water flow is sprayed circumferentially onto the shoes, guaranteeing comprehensive spraying. The relative rotational movement between the brushing unit 22 and the shoe rack 30 ensures that the shoes are thoroughly brushed, improving both the comprehensiveness and cleanliness of the brushing. By setting the soaking state, multiple pairs of shoes can be washed simultaneously, with the shoes completely submerged in the washing water, further improving cleaning efficiency and cleanliness.
[0038] In some embodiments of this application, the inner tub 20 can rotate while the shoe rack 30 does not rotate. The shoe rack 30 can be fixed to the outer tub 10, achieving relative rotation between the inner tub 20 and the shoe rack 30. Alternatively, the inner tub 20 can rotate while the shoe rack 30, mounted on a drive shaft, also rotates, but at a lower speed than the inner tub 20, achieving relative rotation between the inner tub 20 and the shoe rack 30. Alternatively, the inner tub 20 can remain stationary while the shoe rack 30 rotates, achieving relative rotation between the inner tub 20 and the shoe rack 30.
[0039] In some embodiments of this application, see Figure 2 and Figure 6 As shown, the circulating water channel 21 has a first water channel plate 211 fixed to the side wall 201 of the inner tank 20. Spray nozzles 212 are provided on the first water channel plate 211, and a scrubbing part 22 is disposed on the first water channel plate 211. By providing the first water channel plate 211, the circulating water channel 21 serves to guide water; the spray nozzles 212 on the first water channel plate 211 provide a spraying function; and the scrubbing part 22 provides a scrubbing function. This gives the first water channel plate 211 multiple functions and benefits the compactness of the structure.
[0040] In some embodiments of this application, the spray nozzle 212 is an elongated strip extending vertically, which allows for the spraying of a sheet-like water curtain, thereby increasing the impact of the water flow on the shoes and improving cleanliness and cleaning efficiency. The spray nozzle 212 can also be configured as a circular hole.
[0041] In some embodiments of this application, the spray nozzle 212 may be configured to have the same width in the inner and outer directions, or the width of the spray nozzle 212 in the inner direction may be reduced. This is beneficial to increasing the pressure in the inner direction after the water flows into the spray nozzle 212, which is beneficial to increasing the jet impact force of the water flow.
[0042] In some embodiments of this application, the first water channel plate 211 is an inwardly convex arc-shaped plate, and the spray nozzle 212 is opened in the middle of the arc-shaped plate; the brushing part 22 is a plurality of bristles arranged on both sides of the spray nozzle 212; so that the brushing part 22 also brushes while the water is sprayed onto the shoes, and the brushing part 22 brushes the part where the water is being sprayed, which is beneficial to improving the cleanliness of the brushing.
[0043] In order to achieve circulating spraying, a water-pushing structure 23 is provided at the bottom wall 202 of the inner tub 20, which can push the washing water into the circulating water channel 21 during the rotation of the inner tub 20. By rotating the inner tub 20, the water-pushing structure 23 pushes the washing water into the circulating water channel 21, so that the water flow entering the circulating water channel 21 has a large speed, and the spraying is achieved from the spray nozzle 212.
[0044] The water-dispensing structure 23 has multiple downwardly extending water-dispensing ribs 231, a water-dispensing area 232 formed between two adjacent water-dispensing ribs 231, and a water-collecting area 233 connected to the circulation water channel 21. During the rotation of the inner tub 20, the washing water in the water-dispensing area 232 can be pushed to the water-collecting area 233. During the rotation of the inner tub 20, the washing water in the water-dispensing area 232 is pushed to the water-collecting area 233, and then enters the circulation water channel 21 from the water-collecting area 233.
[0045] In some embodiments of this application, see Figures 2-4 As shown, the water collection area 233 is located inside the water diversion area 232. The circumferential dimension of the water diversion area 232 gradually decreases in the inward direction, causing the pressure to increase as the water flows inward in the water diversion area 232. The water diversion rib 231 is a radially extending arc-shaped plate. The arc-shaped bending direction of the water diversion rib 231 allows the water diversion rib 231 to divert the washing water in the water collection area 233 inward when the inner tub 20 rotates.
[0046] The water collection area 233 has an inner ring wall 1331 and an outer ring wall 1332 that extend downwards and are spaced apart. Water-dispersing ribs 231 are connected to the outer ring wall 1332. Multiple water-dispersing ribs 231 are spaced apart on the outer ring wall 1332, dividing the outer side of the outer ring wall 1332 into multiple water-dispersing areas 232. All water-dispersing areas 232 are connected to the water collection area 233. Multiple water inlets 1333 are provided on the outer ring wall 1332, communicating with the water-dispersing areas 232. A connecting port 1334 is provided in the water collection area 233, communicating with the circulating water channel 21.
[0047] In order for the water-spraying structure 23 to have the function of propelling water flow, the water level in the outer tub cannot be too low, and the water level in the outer tub 10 is higher than that of the water-spraying structure 23; at the same time, the water level cannot be too high, so that the sprayed water flow can impact the shoes and not submerge them in the washing water; therefore, the water level in the outer tub 10 is set to be higher than or equal to the bottom wall 202 of the inner tub 20, or the water level in the outer tub 10 is higher than or equal to the bottom wall 202 of the inner tub 20; the water level in the outer tub 10 is lower than or equal to a position 20mm above the bottom wall 202 of the inner tub 20.
[0048] In some embodiments of this application, the water-repelling structure 23 can be directly disposed on the lower side of the bottom wall of the inner tub 20; alternatively, a bottom plate fixed to the lower side of the bottom wall of the inner tub 20 can be provided, and the water-repelling structure 23 can be disposed on the bottom plate.
[0049] In some embodiments of this application, when the shoe washing machine is working in the brushing state, that is, the shoe rack 30 is installed in the inner tub 20 and the inner tub 20 rotates and moves relative to the shoe rack 30, so that the circulating water channel 21 and the brushing part 22 also rotate and move relative to the shoe rack 30. The washing water in the circulating water channel 21 is sprayed onto the shoes of the shoe rack 30 in a relatively rotating manner, and the brushing part 22 brushes the shoes of the shoe rack 30 in a relatively rotating manner.
[0050] When the shoe washing machine is operating in soaking mode, multiple pairs of shoes in the inner tub 20 are submerged in washing water, and the shoes are cleaned by the rotation of the inner tub 20. At this time, the water level in the outer tub 10 is higher than that in the inner tub 10.
[0051] In some embodiments of this application, a control method for a shoe washing machine includes a brushing state with the shoe rack 30 installed and an immersion state with the shoe rack 30 removed. This is beneficial for cleaning in the brushing state and for washing a large number of shoes simultaneously in the immersion state, which is beneficial for improving washing efficiency.
[0052] A method for controlling a shoe washing machine includes the following steps: S10. Install the shoe rack 30 into the inner tub 20 and begin the washing process; S11. Secure the shoes to be cleaned to the shoe rack 30 and pour water into the outer bucket 10; Based on the number of shoes that can be fixed on the shoe rack 30, fix the shoes; for example, if the shoe rack 30 can fix one pair of shoes, fix one pair of shoes to the shoe rack 30. Then fill the outer tub 10 with water. The water level in the outer tub should not be too low, and should be higher than the water-spraying structure 23; at the same time, the water level should not be too high, so that the sprayed water will impact the shoes and not submerge them in the washing water; therefore, the water level in the outer tub 10 is set to be higher than or equal to the bottom wall 202 of the inner tub 20, or the water level in the outer tub 10 is higher than or equal to the bottom wall 202 of the inner tub 20; the water level in the outer tub 10 is lower than or equal to a position 20mm above the bottom wall 202 of the inner tub 20.
[0053] S12. The inner tub 20 rotates relative to the shoe rack 30, causing the circulating water channel 21 and the washing section 22 to rotate relative to the shoe rack 30; the washing water in the circulating water channel 21 is sprayed onto the shoes on the shoe rack 30, and the washing section 22 washes the shoes on the shoe rack 30.
[0054] The relative rotational movement between the inner tub 20 and the shoe rack 30 allows the circulating water channel 21 to rotate relative to the shoe rack 30 while spraying, so that the water flow can be sprayed onto the shoes in a circumferential rotation, ensuring that the shoes are sprayed thoroughly; the relative rotational movement between the brushing section 22 and the shoe rack 30 ensures that the shoes are thoroughly brushed, which is beneficial to the thoroughness and cleanliness of the brushing.
[0055] S13. Remove the shoes from the shoe rack after washing. (30) S14. The other shoes to be cleaned are brushed in sequence, repeating steps S11 to S13; Depending on the quantity of shoes to be cleaned, they can be washed multiple times in the shoe washing machine's brushing mode, which means repeating steps S11 to S13. This ensures that each pair of shoes removed in step S13 is thoroughly washed. When repeatedly executing steps S11 to S13, the washing water does not need to be drained; it can simply be added back in as needed. This allows for the full utilization of the detergent in the washing water. Alternatively, the washing water can be drained depending on the washing progress.
[0056] S20. Disassemble shoe rack 30 and put it into the soaking and washing state; S21. Place the washed shoes onto the inner bucket 10 and fill the outer bucket 10 with water; Placing multiple pairs of shoes into the inner tub 10 simultaneously improves washing efficiency and reduces water waste. The water level in the outer tub 10 overflows the shoes in the inner tub 20, and this soaking process enhances cleanliness.
[0057] S22. Multiple pairs of shoes in the inner tub 20 are submerged in washing water. By rotating the inner tub, the brushing section 22 brushes the shoes on the shoe rack 30, achieving a soaking state. S23. Drain the washing water from the outer tub 10 and dehydrate the inner tub 20 by rotating it.
[0058] In some embodiments of this application, the washing water in the outer tub 10 can be drained before entering S20. Step S24 may also be included: refilling the outer tub 10 with water for rinsing. Multiple rinsing cycles may be performed as needed.
[0059] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions claimed by the present invention.
Claims
1. A shoe washing machine, characterized in that, include: The outer tub is used to hold the washing water; The inner tub is rotatably disposed within the outer tub; A shoe rack, which is detachably disposed in the inner tub and has relative rotational movement with respect to the inner tub; A circulating water channel, which is fixed on the inner tank and has a first water channel plate fixed on the side wall of the inner tank; The washing unit is fixedly mounted on the first water channel plate; A spray nozzle is provided on the first water channel plate; a water-dispelling structure is provided on the bottom wall of the inner tub, which pushes the washing water into the circulating water channel when the inner tub rotates and sprays it out from the spray nozzle. The shoe washing machine has a spray brush state with shoe racks installed and an immersion state with shoe racks removed. The water-dispersing structure has multiple downwardly extending water-dispersing ribs, a water-dispersing area formed between two adjacent water-dispersing ribs, and a water-collecting area connected to the circulating water channel; during the rotation of the inner tub, the washing water in the water-dispersing area can be pushed to the water-collecting area; the water-collecting area has an inner ring wall and an outer ring wall that extend downward and are spaced apart; the multiple water-dispersing ribs are spaced apart and connected to the outer ring wall, dividing the outer side of the outer ring wall into multiple water-dispersing areas; the multiple water-dispersing areas are connected to the water-collecting area.
2. The shoe washing machine according to claim 1, characterized in that, The first water channel plate is an inwardly convex arc-shaped plate, and the brushing part consists of multiple brush bristles arranged on both sides of the spray nozzle.
3. The shoe washing machine according to claim 1 or 2, characterized in that, When the shoe washing machine is in the brushing state, the inner tub rotates and moves relative to the shoe rack, the washing water in the circulating water channel is sprayed onto the shoes on the shoe rack, and the brushing part brushes the shoes on the shoe rack.
4. The shoe washing machine according to claim 3, characterized in that, The water level in the outer tub is higher than the bottom wall of the inner tub but lower than the position 20mm above the bottom wall of the inner tub.
5. The shoe washing machine according to claim 3, characterized in that, The water level in the outer tub is equal to the bottom wall level of the inner tub.
6. The shoe washing machine according to claim 3, characterized in that, The water level in the outer tub is equal to 20mm above the bottom wall of the inner tub.
7. The shoe washing machine according to claim 1 or 2, characterized in that, When the shoe washing machine is in soaking mode, multiple pairs of shoes in the inner tub are submerged in washing water, and the shoes are cleaned by rotating the inner tub; the water level in the outer tub is higher than that in the inner tub.
8. A control method for a shoe washing machine according to any one of claims 1 to 7, characterized in that, Includes the following steps: S10. Install the shoe rack into the inner tub and begin the washing process; S11. Secure the shoes to be cleaned to the shoe rack and fill the outer bucket with water; S12. The inner tub rotates relative to the shoe rack, causing the circulating water channel and the washing section to rotate relative to the shoe rack; the washing water in the circulating water channel is sprayed onto the shoes on the shoe rack, and the washing section washes the shoes on the shoe rack. S13. Remove the shoes from the shoe rack after washing; S14. The other shoes to be cleaned are brushed in sequence, repeating steps S11 to S13; S20. Disassemble the shoe rack and put it into the soaking and washing state; S21. Place the washed shoes onto the inner bucket and fill the outer bucket with water; S22. Multiple pairs of shoes in the inner tub are submerged in washing water, and the immersion state is achieved by rotating the inner tub; S23. Drain the washing water from the outer tub and dehydrate the inner tub by rotating it.
Citation Information
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