A shoe washing system and method thereof
By integrating a hygienic, isolated washing machine and a micro-nano bubble generator into a shoe washing system, and combining micro-nano hydrogen bubble and ozone bubble technologies, the system addresses the needs of military personnel for rapid washing and drying in the field, achieving environmentally friendly and efficient washing and drying results, and meeting the washing needs of multiple scenarios.
Patent Information
- Application Number
- CN202410074797.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-18
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2044-01-18
AI Technical Summary
In the current technology, military personnel lack rapid washing and drying equipment during emergency field operations and training exercises, resulting in environmental pollution and water waste caused by chemical detergents, which cannot meet the washing needs of multiple scenarios.
A shoe washing system integrating a hygienic isolation washing machine, a micro-nano hydrogen bubble generator, a micro-nano ozone bubble generator, a shoe dryer, an ironing machine, and a fuel steam generator was designed. The system is controlled by a central control cabinet and combines micro-nano bubble technology to achieve washing, drying, and ironing functions. It adopts a combined washing method of micro-nano hydrogen bubbles and ozone bubbles and recycles water resources.
It achieves a fast and environmentally friendly washing and drying process, reduces environmental pollution from chemical detergents, saves water resources, improves washing efficiency and drying effect, and meets the washing needs of multiple scenarios.
Smart Images

Figure CN117926547B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of shoe washing system technology, specifically to a shoe washing system and method. Background Technology
[0002] To meet the needs of military personnel for rapid washing and drying of clothing during emergency field operations and training exercises, and to ensure daily laundry services in military barracks, a washing system needs to be developed. This system can be configured with equipment such as a micro-nano bubble generator, a hygienic isolation washing machine, a shoe dryer, and an ironing machine, adaptable to different application scenarios, to replace the traditional "mechanical agitation + chemical detergent" washing mode. This washing system effectively solves the environmental pollution problems caused by chemical detergents, using micro-nano hydrogen bubbles to encapsulate and remove stains from clothing. Furthermore, the washing water from the micro-nano hydrogen bubbles can be recycled with minimal treatment, effectively saving water resources. Summary of the Invention
[0003] The purpose of this invention is to provide a shoe washing system and method to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a shoe washing system, comprising a hygienic isolation washing machine, a micro-nano hydrogen bubble generator, a micro-nano ozone bubble generator, a shoe dryer, an ironing machine, a fuel steam generator, and a water softener, and controlled by a central control cabinet; The micro-nano hydrogen bubble generator is connected to the hygienic isolation washing machine via a main wash water inlet pipe and a main wash water outlet pipe. The micro-nano ozone bubble generator is also connected to the hygienic isolation washing machine via a rinse water inlet pipe and a rinse water outlet pipe. A main inlet pipe is connected to the water softener. Soft water pipes from the water softener are connected to the fuel steam generator, the micro-nano hydrogen bubble generator, the micro-nano ozone bubble generator, and the hygienic isolation washing machine, respectively. Steam pipes from the fuel steam generator are connected to the shoe dryer, the ironing machine, the micro-nano hydrogen bubble generator, and the micro-nano ozone bubble generator, respectively.
[0005] Preferably, the drain pipes of the sanitary isolation washing machine, the micro-nano hydrogen bubble generator, the micro-nano ozone bubble generator, the ironing machine, the fuel steam generator, and the shoe dryer are sequentially connected to the main drain pipe.
[0006] Preferably, the shoe drying machine includes a support device, a rotating device, and three sets of shoe hanging devices. The rotating device is located inside the support device, and the three sets of shoe hanging devices are equally spaced on the rotating device. The shoe hanging device located in the middle can rotate around its own axis, thereby staggering the three sets of shoe hanging devices.
[0007] Preferably, the support device includes a shell, an inner wall, and a door; the rotating device includes a column and a base; the shoe hanging device includes a hook, an air duct, an air outlet, and a shoe support frame. The inner cavity of the outer shell is provided with five inner walls, and a door is provided on the front. Each of the five inner walls has a number of air vents. The chassis is fixedly installed inside the outer shell cavity, and a drainage groove is opened on the chassis. The column has a through hole and is connected to the chassis. The column can rotate around its own axis. The shoe support frame is connected to the column of the rotating device through an air duct. The hook is connected to the air duct and has several air outlets. The tip of the hook is connected to six shoe support frames.
[0008] A shoe drying method for a shoe washing system, characterized by the following steps: Step a: Hang up the shoes; hang the clean shoes one layer at a time. The hooks in the middle layer of the column can rotate to allow for staggered hanging of shoes, saving space. Step b: Close the door, start the shoe dryer; after starting, the rotating device will begin to rotate. Step c: Steam output, drying begins; High-temperature steam generated by the fuel steam generator is transmitted from the top to the bottom of the shoe dryer through a steam pipe, and then from the chassis upwards into the column. The steam in the column is transmitted into the shoe hanging device through the air guide pipe, and finally dissipates from the air outlet, drying the inside of the shoe; At the same time, steam also dissipates from the air outlet on the inner wall, drying the outside of the shoe; The shoe support frame at the tip of the hook separates the inner surface of the shoe from the air outlet to ensure drying efficiency; Step d: Remove the shoes and turn off the device.
[0009] A method for operating a shoe washing system includes the following steps: Step 1: Start the machine, put the shoes to be washed into the sanitary isolation washing machine through the front door, and close the front door; Step 2: The micro-nano hydrogen bubble generator introduces the main wash water into the sanitary isolation washing machine through the main wash water inlet pipe to start the main wash process; Step 3: After the main wash is completed, the main wash water returns from the main wash water outlet pipe to the micro-nano hydrogen bubble generator. The micro-nano ozone bubble generator then introduces the rinse water from the rinse water outlet pipe into the sanitary isolation washing machine to begin the rinsing process. Step 4: After rinsing, remove the clean shoes from the back door of the sanitary isolation washing machine, close the back door, and hang the shoes on the shoe support rack in the shoe dryer; Step 5: Start the shoe dryer. The fuel steam generator will introduce high-temperature steam into the shoe dryer through the steam pipe. Step Six: After a period of time, the shoe drying and shoe washing processes are complete.
[0010] A method for controlling a shoe washing system includes the following steps: Step 1: Connect the power supply, and the main control cabinet will start working; Step 2: Manually place the shoes / clothes to be washed into the hygienic washing machine and click the "Start" button on the left screen, then wait for the instructions to work; the valve of the main water inlet pipe is opened, and tap water enters the water softener and begins the tap water softening process; Step 3: After the softening process is completed, the water softener sends the softened water into the inlet valves of the fuel vapor generator, the micro-nano ozone bubble generator, and the micro-nano hydrogen bubble generator. Step 4: The inlet valves of the fuel steam generator, the micro-nano ozone bubble generator, and the micro-nano hydrogen bubble generator are opened, and softened water enters each device. Each device's water tank is set with high, medium, and low liquid levels. When the water level in the device reaches the high liquid level, the inlet valve of the device is closed. The fuel steam generator begins to generate high-temperature steam. At the same time, the micro-nano ozone bubble generator and the micro-nano hydrogen bubble generator begin to generate rinsing water and main wash water, respectively. Step 5: When the pressure gauge of the fuel vapor generator reaches 0.4 MPa, the fuel vapor generator stops producing high-temperature steam and delivers the prepared high-temperature steam to the steam pipe inlet valves of the shoe dryer, ironing machine, micro-nano ozone bubble generator, and micro-nano hydrogen bubble generator; when the rinsing water prepared by the micro-nano ozone bubble generator reaches the middle liquid level, the inlet valve of the steam pipe leading to it opens, and high-temperature steam enters the micro-nano ozone bubble generator; when the thermometer in the micro-nano ozone bubble generator reaches 40°C, the inlet valve closes; when the main wash water prepared by the micro-nano hydrogen bubble generator reaches the middle liquid level, the inlet valve of the steam pipe leading to it opens, and high-temperature steam enters the micro-nano hydrogen bubble generator; when the thermometer in the micro-nano hydrogen bubble generator reaches 40°C, the inlet valve closes. Step 6: After the micro-nano hydrogen bubble generator has prepared the main wash water, the valve of the main wash water inlet pipe is opened, and the main wash water enters the sanitary isolation washing machine. When the water level reaches the high level, the valve of the main wash water inlet pipe is closed, and the sanitary isolation washing machine starts to work. Step 7: After the main wash cycle of the hygienic isolation washing machine is completed, the valve of the main wash water outlet pipe is opened, and the main wash water returns to the micro-nano hydrogen bubble generator to begin filtration and disinfection. When the water level of the hygienic isolation washing machine drops to the low level, the valve of the main wash water outlet pipe is closed, and the valve of the rinse water inlet pipe is opened, allowing rinse water to enter the hygienic isolation washing machine. When the water level of the hygienic isolation washing machine reaches the high level, the valve of the rinse water inlet pipe is closed, and the rinsing process begins. If the main wash cycle of the hygienic isolation washing machine is completed but the rinse water generated by the micro-nano ozone bubble generator has not yet been prepared, the hygienic isolation washing machine will wait for instructions until the rinse water is prepared before proceeding to Step 7. Step 8: After the rinsing process is completed, open the valve of the rinse water outlet pipe, and the rinse water returned to the micro-nano ozone bubble generator for filtration and disinfection; manually remove the washed shoes / clothes from the back door of the hygienic isolation washing machine. S1: Place the shoes into the shoe dryer, close the outer door of the shoe dryer and press the "Start" button on the left screen. The shoe dryer will start and open the air inlet valve. High-temperature steam will enter the shoe dryer. After a period of time, the shoe dryer will automatically stop working and the air inlet valve will close. S2: Place the dried bedding into the ironing machine and press the "Start" button on the left screen. The ironing machine will start and open the air inlet valve, allowing high-temperature steam to enter the ironing machine. When there is no bedding on the ironing machine, the ironing machine will close the air inlet valve. When bedding is placed back into the ironing machine, the ironing machine will open the air inlet valve. If no bedding is placed in the ironing machine within a few minutes, the ironing machine will automatically stop operating. Step 9: When the softened water stored in the water softener is less than % of the total volume, the valve of the main inlet pipe of the water softener opens; when the softened water stored in the water softener reaches % of the total volume, the valve of the main inlet pipe closes. When the pressure value of the fuel vapor generator is below 0.4 MPa, the machine starts; when it is above 0.6 MPa, the machine stops. When the water level in the micro-nano ozone bubble generator is below the medium level, the machine replenishes water, and the valve of the rinse water outlet pipe closes. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. When the water level in the micro-nano hydrogen bubble generator is below the medium level, the machine replenishes water, and the valve of the main wash water outlet pipe closes. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. Step 10: When the shoes are removed from the shoe dryer, the screen on the left side of the shoe dryer will ask whether to continue washing. If you want to continue washing, select "Yes". The programs of each device will run normally, and the sanitary isolation washing machine will wait to put in the clothes to be washed. If you want to finish washing, select "No". The programs of each device will stop running and wait for the next start-up. Manually turn off the power switch. Each device has a drain valve at the bottom. When the device needs to drain, open the drain valve.
[0011] The shoe washing system and method proposed in this invention have the following advantages: 1. The shoe drying machine of the present invention adopts a combination of internal and external rotary drying. The design of the internal shoe support frame is similar to that of the inner surface of the shoe, which increases the contact area between the support and the shoe, ensuring that the shoes will not shake or fall off during the rotary drying process. It also separates the steam vent from the inner surface of the shoe by a certain distance, thereby improving the drying efficiency. 2. The hygienic isolation washing machine of the present invention uses a main wash water combining "micro-nano hydrogen bubbles + ozone bubbles" for the first wash, and uses "micro-nano ozone bubbles" for the second wash. Washing and sterilization are carried out simultaneously, ensuring the washing effect. 3. This system integrates the functions of washing clothes and shoes, ironing clothes, and drying shoes, which can meet the washing requirements of multiple scenarios and needs. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the shoe drying machine of the present invention; Figure 2 This is a schematic diagram of the hook structure for the shoe dryer of the present invention; Figure 3 This is a three-dimensional view of the overall shoe washing system of the present invention; Figure 4 This is an overall layout diagram of the shoe washing system of the present invention; Figure 5 This is a schematic diagram of the drainage system of the present invention.
[0013] In the diagram: 11. Rinse water outlet pipe; 12. Rinse water inlet pipe; 13. Soft water pipe; 14. Main inlet pipe; 15. Steam pipe; 16. Main wash water outlet pipe; 17. Main wash water inlet pipe; 18. Main drain pipe; 21. Sanitary isolation washing machine; 22. Micro-nano ozone bubble generator; 23. Main control cabinet; 24. Ironing machine; 25. Shoe dryer; 251. Outer shell; 252. Inner wall; 253. Column; 254. Hook; 255. Chassis; 256. Air duct; 257. Air outlet; 258. Shoe support rack; 26. Water softener; 27. Fuel vapor generator; 28. Micro-nano hydrogen bubble generator. Detailed Implementation
[0014] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0015] For examples, please refer to Figure 1-5This invention provides a technical solution: a shoe washing system, comprising a hygienic isolation washing machine 21, a micro-nano hydrogen bubble generator 28, a micro-nano ozone bubble generator 22, a shoe dryer 25, an ironing machine 24, a fuel steam generator 27, and a water softener 26, and controlled by a main control cabinet 23; the micro-nano hydrogen bubble generator 28 is connected to the hygienic isolation washing machine 21 by a main wash water inlet pipe 17 and a main wash water outlet pipe 16, and the micro-nano ozone bubble generator 22 is connected to the hygienic isolation washing machine 21 by a main wash water inlet pipe 17 and a main wash water outlet pipe 16. The machine 21 is connected by a rinsing water inlet pipe 12 and a rinsing water outlet pipe 11. The water softener 26 is connected to a main water inlet pipe 14. The soft water pipe 13 from the water softener 26 is connected to the fuel steam generator 27, the micro-nano hydrogen bubble generator 28, the micro-nano ozone bubble generator 22 and the sanitary isolation washing machine 21 respectively. The steam pipe 15 from the fuel steam generator 27 is connected to the shoe dryer 25, the ironing machine 24, the micro-nano hydrogen bubble generator 28 and the micro-nano ozone bubble generator 22 respectively.
[0016] The drain pipes of the sanitary isolation washing machine 21, the micro-nano hydrogen bubble generator 28, the micro-nano ozone bubble generator 22, the ironing machine 24, the fuel steam generator 27, and the shoe dryer 25 are sequentially connected to the main drain pipe 18.
[0017] The shoe drying machine 25 includes a support device, a rotating device, and three sets of shoe hanging devices. The rotating device is located inside the support device, and the three sets of shoe hanging devices are equally spaced on the rotating device. The shoe hanging device located in the middle can rotate around its own axis, thereby staggering the three sets of shoe hanging devices.
[0018] The support device includes an outer shell 251, an inner wall 252, and a door; the rotating device includes a column 253 and a base 255; the shoe hanging device includes a hook 254, an air duct 256, an air outlet 257, and a shoe support frame 258; the inner cavity of the outer shell 251 is provided with five inner walls 232, and a door is provided on the front, and each of the five inner walls 232 has several air outlets; the base 255 is fixedly installed in the inner cavity of the outer shell 251, and a drainage groove is provided on the base 255; the column 253 has a through hole and is connected to the base 255, and the column 253 can rotate around its own axis; the shoe support frame 258 is connected to the column 253 of the rotating device through the air duct 256, the hook 254 is connected to the air duct 256, and the hook 254 has several air outlets 257, and the tip of the hook 254 is connected to six shoe support frames 258.
[0019] The washing device consists of a hygienic isolation washing machine 21 and a micro-nano bubble generator. The micro-nano bubble generator includes a micro-nano hydrogen bubble generator 28 and a micro-nano ozone bubble generator 22. The micro-nano hydrogen bubble generator 28 can generate hydrogen bubbles and ozone bubbles, which are responsible for washing and sterilization. The micro-nano ozone bubble generator 22 can generate ozone bubbles, which are responsible for further rinsing and sterilization. The main wash water and the rinse water wash the clothes in sequence.
[0020] The fuel steam generator 27 is responsible for burning diesel to generate steam, which is then delivered to various devices through steam pipes to increase the washing temperature, thereby improving the washing effect and providing a heat source for the shoe dryer 25 and the ironing machine 24. The soft water 26 is used to soften the tap water connected to the system to prevent the micro-nano bubble generator and drying equipment from being damaged by the sediment and dirt in the tap water.
[0021] A shoe drying method for a shoe washing system includes the following steps: Step a: Hang up the shoes; hang the clean shoes one layer at a time. The middle layer of hooks 254 on the upright 253 can rotate to allow for staggered hanging of shoes, saving space. Step b: Close the door and start the shoe dryer 25. After starting, the rotating device will begin to rotate. Step c: Steam output, drying begins; High-temperature steam generated by fuel steam generator 27 is transferred from the top to the bottom of shoe dryer 25 through steam pipe 15, and then from the chassis 255 upwards into column 253. The steam in column 253 is transferred into shoe hanging device through air guide pipe 256, and finally discharged from air outlet 257 to dry the inside of the shoe; At the same time, steam is also discharged from air outlet 257 on the inner wall to dry the outside of the shoe; The shoe support frame 258 at the tip of hook 254 separates the inner surface of the shoe from the air outlet 257 by a distance to ensure drying efficiency; Step d: Remove the shoes and turn off the device.
[0022] A method for operating a shoe washing system includes the following steps: Step 1: Start the machine, put the shoes to be washed into the sanitary isolation washing machine 21 through the front door, and close the front door; Step 2: The micro-nano hydrogen bubble generator 28 introduces the main wash water into the sanitary isolation washing machine 21 through the main wash water inlet pipe 17 to start the main wash operation; Step 3: After the main wash is completed, the main wash water returns from the main wash water outlet pipe 16 to the micro-nano hydrogen bubble generator 28. The micro-nano ozone bubble generator 22 introduces the rinsing water from the rinsing water outlet pipe 11 into the sanitary isolation washing machine 21 to start the rinsing process. Step 4: After rinsing, remove the cleaned shoes from the back door of the sanitary isolation washing machine 21, close the back door, and hang the shoes on the shoe support rack 258 in the shoe dryer 25; Step 5: Start the shoe dryer 25. The fuel steam generator 27 introduces high-temperature steam into the shoe dryer 25 through the steam pipe 15. Step Six: After a period of time, the shoe drying and shoe washing processes are complete.
[0023] A method for controlling a shoe washing system includes the following steps: Step 1: Connect the power supply, and the main control cabinet 23 will start working; Step 2: Manually place the shoes / clothes to be washed into the sanitary isolation washing machine 21 and click the "Start" button on the left screen, and wait for the instructions to work; the valve of the main water inlet pipe 14 is opened, the tap water enters the water softener 26 and the tap water softening process begins; Step 3: After the softening process is completed, the water softener 26 sends the softened water into the inlet valves of the fuel vapor generator 27, the micro-nano ozone bubble generator 22, and the micro-nano hydrogen bubble generator 28. Step 4: The inlet valves of the fuel steam generator 27, the micro-nano ozone bubble generator 22, and the micro-nano hydrogen bubble generator 28 are opened, and softened water enters each device. Each device's water tank is equipped with high, medium, and low liquid levels. When the water level in the device reaches the high liquid level, the inlet valve of the device is closed. The fuel steam generator 27 begins to generate high-temperature steam. At the same time, the micro-nano ozone bubble generator 22 and the micro-nano hydrogen bubble generator 28 begin to generate rinsing water and main wash water, respectively. Step 5: When the pressure gauge of the fuel vapor generator 27 reaches 0.4 MPa, the fuel vapor generator 27 stops generating high-temperature steam and delivers the generated high-temperature steam to the inlet valve of the steam pipe 15 of the shoe dryer 25, ironing machine 24, micro-nano ozone bubble generator 22, and micro-nano hydrogen bubble generator 28; when the rinsing water generated by the micro-nano ozone bubble generator 22 reaches the middle liquid level, the inlet valve of the steam pipe 15 leading to it opens, and high-temperature steam enters the micro-nano ozone bubble generator 22; when the thermometer in the micro-nano ozone bubble generator 22 reaches 40°C, the inlet valve closes; when the main rinsing water generated by the micro-nano hydrogen bubble generator 28 reaches the middle liquid level, the inlet valve of the steam pipe 15 leading to it opens, and high-temperature steam enters the micro-nano hydrogen bubble generator 28; when the thermometer in the micro-nano hydrogen bubble generator 28 reaches 40°C, the inlet valve closes. Step 6: After the micro-nano hydrogen bubble generator 28 has prepared the main wash water, the valve of the main wash water inlet pipe 17 is opened, and the main wash water enters the sanitary isolation washing machine. When the water level reaches the high level, the valve of the main wash water inlet pipe 17 is closed, and the sanitary isolation washing machine 21 starts to work. Step 7: After the main wash cycle of the hygienic isolation washing machine 21 is completed, the valve of the main wash water outlet pipe 16 is opened, and the main wash water returns to the micro-nano hydrogen bubble generator 28 for filtration and disinfection. When the water level of the hygienic isolation washing machine 21 drops to the low level, the valve of the main wash water outlet pipe 16 is closed, and the valve of the rinse water inlet pipe 12 is opened, allowing rinse water to enter the hygienic isolation washing machine 21. When the water level of the hygienic isolation washing machine 21 reaches the high level, the valve of the rinse water inlet pipe 12 is closed, and the rinsing process begins. If the main wash cycle of the hygienic isolation washing machine 21 is completed but the rinse water in the micro-nano ozone bubble generator 28 has not yet been prepared, the hygienic isolation washing machine 21 waits for instructions until the rinse water is prepared before proceeding to step 7. Step 8: After the rinsing process is completed, the valve of the rinsing water outlet pipe 11 is opened, and the rinse water after washing returns to the micro-nano ozone bubble generator 28 for filtration and disinfection; the washed shoes / clothes are manually removed from the back door of the hygienic isolation washing machine 21. S1: Place the shoes into the shoe dryer 25, close the outer door of the shoe dryer 25 and press the "Start" button on the left screen. The shoe dryer 25 will start and open the air inlet valve. High-temperature steam will enter the shoe dryer 25. After a period of time, the shoe dryer 25 will automatically stop working and the air inlet valve will close. S2: Place the dried bedding into the ironing machine 24, press the "Start" button on the left screen, the ironing machine 24 will start and open the air inlet valve, and high-temperature steam will enter the ironing machine 24. When there is no bedding on the ironing machine 24, the ironing machine 24 will close the air inlet valve. When bedding is put back into the ironing machine 24, the ironing machine 24 will open the air inlet valve. If no bedding is put in within 5 minutes, the ironing machine 24 will automatically stop running. Step 9: When the softened water stored in the water softener 26 is less than 70% of the total volume, the valve of the main inlet pipe 14 of the water softener 26 is opened. When the softened water stored in the water softener 26 reaches 100% of the total volume, the valve of the main inlet pipe 14 is closed. When the pressure value of the fuel vapor generator 27 is lower than 0.4 MPa, the machine starts; when it is higher than 0.6 MPa, the machine stops. When the water level in the micro-nano ozone bubble generator 22 is lower than the medium level, the machine replenishes water, and the valve of the rinse water outlet pipe 11 is closed. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. When the water level in the micro-nano hydrogen bubble generator 28 is lower than the medium level, the machine replenishes water, and the valve of the main wash water outlet pipe 16 is closed. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. Step 10: When the shoes are removed from the shoe dryer 25, the screen on the left side of the shoe dryer 25 will ask whether to continue washing. If you want to continue washing, select "Yes". The programs of each device will run normally, and the sanitary isolation washing machine 21 will wait to put in the clothes to be washed. If you want to finish washing, select "No". The programs of each device will stop running and wait for the next start-up. Manually turn off the power switch. Each device has a drain valve at the bottom. When the device needs to drain water, the drain valve will be opened.
[0024] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A shoe washing system, characterized in that, It includes a sanitary isolation washing machine (21), a micro-nano hydrogen bubble generator (28), a micro-nano ozone bubble generator (22), a shoe dryer (25), an ironing machine (24), a fuel steam generator (27), and a water softener (26), and is controlled by a main control cabinet (23); The micro-nano hydrogen bubble generator (28) is connected to the hygienic isolation washing machine (21) by a main wash water inlet pipe (17) and a main wash water outlet pipe (16). The micro-nano ozone bubble generator (22) is connected to the hygienic isolation washing machine (21) by a rinse water inlet pipe (12) and a rinse water outlet pipe (11). The water softener (26) is connected to a main inlet pipe (14). The soft water pipe (13) from the water softener (26) is connected to the fuel steam generator (27), the micro-nano hydrogen bubble generator (28), the micro-nano ozone bubble generator (22) and the hygienic isolation washing machine (21) respectively. The steam pipe (15) from the fuel steam generator (27) is connected to the shoe dryer (25), the ironing machine (24), the micro-nano hydrogen bubble generator (28) and the micro-nano ozone bubble generator (22) respectively. The drain pipes of the sanitary isolation washing machine (21), the micro-nano hydrogen bubble generator (28), the micro-nano ozone bubble generator (22), the ironing machine (24), the fuel steam generator (27), and the shoe dryer (25) are sequentially connected to the main drain pipe (18); The shoe drying machine (25) includes a support device, a rotating device and three sets of shoe hanging devices. The rotating device is inside the support device. The three sets of shoe hanging devices are arranged at equal intervals on the rotating device. The shoe hanging device in the middle can rotate around its own axis, so that the three sets of shoe hanging devices can be staggered. The support device includes an outer shell (251), an inner wall (252), and a door; the rotating device includes a column (253) and a chassis (255); the shoe hanging device includes a hook (254), an air duct (256), an air outlet (257), and a shoe support frame (258); The inner cavity of the outer shell (251) is provided with five inner walls (232), and a door is provided on the front. Each of the five inner walls (232) has a number of air vents. The chassis (255) is fixedly installed in the inner cavity of the outer shell (251). A drainage groove is opened on the chassis (255). The column (253) has a through hole and is connected to the chassis (255). The column (253) can rotate around its own axis. The shoe support frame (258) is connected to the column (253) of the rotating device through the air pipe (256). The hook (254) is connected to the air pipe (256), and the hook (254) has several air holes (257). The tip of the hook (254) is connected to six shoe support frames (258).
2. The shoe drying method of a shoe washing system according to claim 1, characterized in that: Includes the following steps: Step a: Hang up the shoes; hang the clean shoes one by one, the middle layer of hooks (254) on the column (253) can rotate to hang the shoes in an alternating manner, saving space; Step b: Close the door and start the shoe dryer (25). After starting, the rotating device will begin to rotate. Step c: Steam output, drying begins; the high-temperature steam generated by the fuel steam generator (27) is transmitted from the top to the bottom of the shoe dryer (25) through the steam pipe (15), and then from the chassis (255) upwards to the column (253). The steam in the column (253) is transmitted into the shoe hanging device through the air guide pipe (256), and finally discharged from the air outlet (257) to dry the inside of the shoe; at the same time, steam is also discharged from the air outlet (257) on the inner wall to dry the outside of the shoe; the shoe support frame (258) at the tip of the hook (254) separates the inner surface of the shoe from the air outlet (257) by a distance to ensure the drying efficiency; Step d: Remove the shoes and turn off the device.
3. The working method of the shoe washing system according to claim 2, characterized in that: Includes the following steps: Step 1: Start the machine, put the shoes to be washed into the sanitary isolation washing machine (21) through the front door, and close the front door; Step 2: The micro-nano hydrogen bubble generator (28) introduces the main wash water into the sanitary isolation washing machine (21) through the main wash water inlet pipe (17) to start the main wash operation; Step 3: After the main wash is completed, the main wash water returns from the main wash water outlet pipe (16) to the micro-nano hydrogen bubble generator (28). The micro-nano ozone bubble generator (22) introduces the rinsing water from the rinsing water outlet pipe (11) into the sanitary isolation washing machine (21) to start the rinsing process. Step 4: After rinsing, remove the cleaned shoes from the back door of the sanitary isolation washing machine (21), close the back door, and hang the shoes on the shoe support rack (258) in the shoe dryer (25); Step 5: Start the shoe dryer (25), and the fuel steam generator (27) will introduce high-temperature steam into the shoe dryer (25) through the steam pipe (15); Step Six: After a period of time, the shoe drying and washing processes are complete.
4. The control method for a shoe washing system according to claim 3, characterized in that: Includes the following steps: Step 1: Connect the power supply, and the main control cabinet (23) will start working; Step 2: Manually place the shoes / clothes to be washed into the sanitary isolation washing machine (21) and click the "Start" button on the left screen, and wait for the instructions to work; the valve of the main water inlet pipe (14) is opened, the tap water enters the water softener (26) and the tap water softening process begins; Step 3: After the softening process is completed, the water softener (26) sends the softened water into the inlet valves of the fuel vapor generator (27), the micro-nano ozone bubble generator (22), and the micro-nano hydrogen bubble generator (28); Step 4: The inlet valves of the fuel steam generator (27), the micro-nano ozone bubble generator (22), and the micro-nano hydrogen bubble generator (28) are opened, and softened water enters each device. Each device's water tank is equipped with high, medium, and low liquid levels. When the water level in the device reaches the high liquid level, the inlet valve of the device is closed. The fuel steam generator (27) begins to generate high-temperature steam. At the same time, the micro-nano ozone bubble generator (22) and the micro-nano hydrogen bubble generator (28) begin to generate rinsing water and main wash water, respectively. Step 5: When the pressure gauge of the fuel steam generator (27) reaches 0.4 MPa, the fuel steam generator (27) stops generating high-temperature steam and delivers the generated high-temperature steam to the inlet valve of the steam pipe (15) of the shoe dryer (25), ironing machine (24), micro-nano ozone bubble generator (22), and micro-nano hydrogen bubble generator (28); when the rinsing water generated by the micro-nano ozone bubble generator (22) reaches the middle liquid level, the inlet valve of the steam pipe (15) leading to it is opened. When the gas valve is opened, high-temperature steam enters the micro-nano ozone bubble generator (22). When the thermometer in the micro-nano ozone bubble generator (22) reaches 40°C, the gas inlet valve is closed. When the main washing water prepared by the micro-nano hydrogen bubble generator (28) reaches the middle liquid level, the gas inlet valve of the steam pipe (15) leading to it is opened, and high-temperature steam enters the micro-nano hydrogen bubble generator (28). When the thermometer in the micro-nano hydrogen bubble generator (28) reaches 40°C, the gas inlet valve is closed. Step 6: After the micro-nano hydrogen bubble generator (28) has prepared the main wash water, the valve of the main wash water inlet pipe (17) is opened, and the main wash water enters the sanitary isolation washing machine. When the water level reaches the high level, the valve of the main wash water inlet pipe (17) is closed, and the sanitary isolation washing machine (21) starts to work. Step 7: After the main wash of the sanitary isolation washing machine (21) is completed, the valve of the main wash water outlet pipe (16) is opened, and the main wash water returns to the micro-nano hydrogen bubble generator (28) and begins to filter and disinfect. When the water level of the sanitary isolation washing machine (21) drops to the low level, the valve of the main wash water outlet pipe (16) is closed, and the valve of the rinse water inlet pipe (12) is opened, and the rinse water enters the sanitary isolation washing machine (21). When the water level of the sanitary isolation washing machine (21) reaches the high level, the valve of the rinse water inlet pipe (12) is closed, and the rinsing work begins. If the main wash of the sanitary isolation washing machine (21) is completed, but the rinse water of the micro-nano ozone bubble generator (22) has not yet been prepared, the sanitary isolation washing machine (21) waits for instructions. After the rinse water is prepared, the work of step 7 is carried out. Step 8: After rinsing is completed, the valve of the rinse water outlet pipe (11) is opened, and the rinse water returns to the micro-nano ozone bubble generator (22) for filtration and disinfection; the washed shoes / clothes are manually removed from the back door of the hygienic isolation washing machine (21). S1: Place the shoes into the shoe dryer (25), close the outer door of the shoe dryer (25) and press the "Start" button on the left side screen. The shoe dryer (25) will start and open the air inlet valve. High-temperature steam will enter the shoe dryer (25). After a period of time, the shoe dryer (25) will automatically stop working and the air inlet valve will close. S2: Place the dried bedding into the ironing machine (24), press the "Start" button on the left screen, the ironing machine (24) will start and open the air inlet valve, and high-temperature steam will enter the ironing machine (24). When there is no bedding on the ironing machine (24), the ironing machine (24) will close the air inlet valve. When bedding is put back into the ironing machine (24), the ironing machine (24) will open the air inlet valve. If no bedding is put in within 5 minutes, the ironing machine (24) will automatically stop running. Step 9: When the softened water stored in the water softener (26) is less than 70% of the total amount, the valve of the main water inlet pipe (14) of the water softener (26) is opened. When the softened water stored in the water softener (26) reaches 100% of the total amount, the valve of the main water inlet pipe (14) is closed. When the pressure value of the fuel steam generator (27) is lower than 0.4 MPa, the machine starts and stops when it is higher than 0.6 MPa. When the water level in the micro-nano ozone bubble generator (22) is lower than the medium level, the machine replenishes water and the valve of the rinse water outlet pipe (11) is closed. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. When the water level in the micro-nano hydrogen bubble generator (28) is lower than the medium level, the machine replenishes water and the valve of the main wash water outlet pipe (16) is closed. When the water level reaches the high level, the machine stops replenishing water and waits for the washing command. Step 10: When the shoes are taken out of the shoe dryer (25), the left screen of the shoe dryer (25) will issue a request to continue washing. If you want to continue washing, select "Yes". The programs of each device will run normally and the sanitary isolation washing machine (21) will wait to put in the clothes to be washed. If you want to finish washing, select "No". The programs of each device will stop running and wait for the next start-up. Manually turn off the power switch. Each device has a drain valve at the bottom. When the device needs to drain, the drain valve will be opened.
Citation Information
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