Shoe making dryer and using method thereof

The shoe dryer, which has a main operating block, a rotating rod, an auxiliary operating block and an air guide hole structure, first performs mechanical air drying and then hot air drying, which solves the problems of short circuit and material damage of the dryer in a humid environment, and achieves rapid drying and improved comfort.

CN116725294BActive Publication Date: 2025-09-12HANGZHOU LUKE SHOES IND CO LTD
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Patent Information

Application Number
CN202310890506.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-20
Publication Date
2025-09-12
Estimated Expiration
2043-07-20

AI Technical Summary

Technical Problem

In wet and humid shoe environments, existing dryers are prone to short circuiting, and hot air or radiant heating can damage shoe materials, resulting in reduced comfort.

Method used

It adopts a main operating block, rotating rod, auxiliary operating block and air guide hole structure, combined with a guide tube and heating block. It is first mechanically air-dried and then hot-air dried. The support plate and support block provide support to ensure that the shoes rotate evenly and are heated.

Benefits of technology

It can achieve quick drying of shoes in a humid environment, avoid material damage, improve the drying efficiency and comfort of shoes, and extend the service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of drying machines, and discloses a shoe drying machine and a method for using the same. In the present invention, a support block is welded to the outer surface of a support plate, a main operating block is welded to the outer surface of one end of the support block away from the support plate, a rotating rod is fixedly connected to the outer surface of the edge of one end of the main operating block, a secondary operating block is rotatably connected to the outer surface of the rotating rod, the main operating block is sleeved on the outer surface of the secondary operating block, a plurality of air guide holes are provided on the upper and lower surfaces of the main operating block, and a plurality of heating blocks are provided on the inner surface of the secondary operating block. When in use, shoes enter the main operating block, the rotating rod, and the secondary operating block respectively through the shoe openings, and under the action of the air guide holes, the moist air in the shoes is sent out through the conduction of the guide tube, so that the air in the shoes reaches a dry state, the support plate and the support block provide support for the whole, ensuring that the shoes can be rotated, so that they can be dried evenly, and the function of the heating block is to heat the equipment, so as to better dry the shoes.
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Description

Technical Field

[0001] The invention belongs to the technical field of drying machines, in particular to a shoe drying machine and a use method thereof. Background Art

[0002] Shoes, a necessity for humans, have a history dating back to primitive times. The earliest shoes were made from animal hides or plant roots, crafted by trapping and skinning animals during hunting. With the continuous development of tools and materials, people began to use a wider range of materials to make shoes, including cloth, satin, and silk. During the Bronze Age, China began using materials such as linen, silk, and straw to make shoes.

[0003] With the continuous development of production and life, the production of shoes has gradually taken into account more aesthetics, durability and practicality. The role of shoe drying is to place wet and damp shoes under hot air or radiant heaters, using the heat to promote rapid evaporation and dehumidification inside the shoes, thereby achieving the effects of sterilization, deodorization and drying the shoes. This not only keeps the shoes dry and clean, but also helps to improve the comfort and durability of the shoes, avoids the adverse effects of wearing wet shoes on human health, and also provides certain help in extending the service life of the shoes. However, mechanical motors are prone to short circuits when working in wet and humid environments, and the durability of the motors is reduced. In addition, the interior of the shoes is made of hydrophilic materials or hair. Direct hot air or radiation will accelerate the oxidation of the original materials or make the materials brittle, resulting in reduced shoe comfort.

[0004] Therefore, the present invention provides a shoe drying machine and a method of using the same by first drying the shoes and then performing hot air or radiation heating in a moist and humid shoe environment. Summary of the Invention

[0005] The object of the present invention is to provide a shoe drying machine and a method of using the same in order to solve the above-mentioned problem of drying shoes first and then heating them with hot air or radiation in a wet and humid shoe environment.

[0006] The technical solution adopted by the present invention is as follows: A shoe drying machine and a method of using the same, comprising a device body, a support plate rotatably connected to the outer surface of the device body, an output end of a built-in motor in the device body fixedly connected to the surface of the support plate, a support block welded to the outer surface of the support plate, a main operation block welded to the outer surface of the support block away from the support plate, a rotating rod fixedly connected to the outer surface of the edge of one end of the main operation block, a secondary operation block rotatably connected to the outer surface of the rotating rod, the main operation block being sleeved on the outer surface of the secondary operation block, and being limited so that the secondary operation block is rotated around the central axis of the rotating rod within an angular range, a plurality of air guide holes are provided on the upper and lower surfaces of the main operation block, a plurality of air guide holes are also provided on the upper and lower outer surfaces of the secondary operation block, the air guide hole at one end of the upper surface of the main operation block is fixedly connected to a guide pipe, and the other air guide holes are connected to the position connected to the guide pipe, the end of the guide pipe away from the main operation block is fixedly connected to the device body, a plurality of heating blocks are provided on the inner surface of the secondary operation block, and a plurality of heating blocks are also provided on the inner surface of the air guide hole.

[0007] By adopting the above technical solution, when in use, the shoes enter the main operating block, the rotating rod, and the auxiliary operating block respectively through the shoe opening. Under the action of the air guide holes, the moist air in the shoes is sent out through the conduction of the guide tube, so that the air in the shoes reaches a dry state. The device body is the main power unit of the entire device. Ensuring the rotation of the device and the control of airflow are prerequisites for the device. The support plate and the support block provide support for the whole to ensure that the shoes can rotate so that they can be dried evenly. The function of the heating block is to heat the device so as to better dry it.

[0008] In a preferred embodiment, the device body is movably connected to a metal shell around the periphery, and the upper surface of the metal shell corresponding to the device body is movably connected to screws, and the screws pass through the metal shell and are connected to the corresponding threaded holes of the device body.

[0009] By adopting the above technical solution, the metal shell provides a relatively sealed external environment for the whole, preventing the exhausted humid air from re-entering and affecting the efficiency. The metal shell adopts a hidden buckle at the lower end of the device body. After being snapped in, the screws are passed through the metal shell and rotated to fix it on the device body to ensure its stability and facilitate disassembly, making it convenient for manual installation of shoes and cleaning of the equipment.

[0010] In a preferred embodiment, the outer surface of the metal shell on the side away from the device body is fixedly connected to a rotating shaft, the outer surface of the rotating shaft is rotatably connected to a monitoring plate, the middle of the outer surface of the monitoring plate on the side away from the rotating shaft is fixedly connected to a door handle, and the metal shell has a built-in magnetic sheet corresponding to the door handle.

[0011] By adopting the above technical solution, the monitoring panel uses tempered glass, which is convenient for users to observe the drying effect. The door handle is convenient to open and enter the equipment for relevant inspection and testing operations, and is also convenient for manual operation.

[0012] In a preferred embodiment, the upper surface of the main operating block is fixedly connected to a cable collecting block next to the support block, a shoe removing rod is provided on the outer surface of the equipment body at a position corresponding to the guide tube, and the outer surface of the support block is movably connected to a limiting rod.

[0013] By adopting the above technical solution, the cable collection block integrates all the cables in the main operation block and the auxiliary operation block to facilitate connection, avoiding safety accidents caused by the continuous rotation and entanglement of the cables. The internal connectors of the equipment body, such as Figure 7 As shown, a layered wire ring is connected to a fixed external brush for power supply, and the outer surfaces on both sides of the shoe removal rod corresponding to the main operating block can be extended and retracted to take out the inserted shoes. The limiting rod can fix the shoes in the main operating block and the auxiliary operating block under the action of the limiting beam, and the shoe removal rod can be pushed out under the force to release the limit on the shoes.

[0014] In a preferred embodiment, a heater is fixedly connected to the outer surface of the lower end of the device body, and a guide frame is provided on the side surface of the metal shell.

[0015] By adopting the above technical solution, the heater provides the prerequisite for external drying. Since the heat is from bottom to top, it is set at the bottom to improve the drying efficiency. Soft materials are set inside the guide frame to prevent too much hot air from flowing out, which will cause unpredictable airflow of the equipment. At the same time, the guide groove of the guide frame ensures the accuracy of mechanical shoe delivery and improves efficiency.

[0016] In a preferred embodiment, the lower surface of the metal shell is movably connected to a bottom plate, the bottom plate is connected to one side of the metal shell by a hinge, and the lower surface of the metal shell is fixedly connected to a limiting member on the side corresponding to the hinge.

[0017] By adopting the above technical solution, a button is built into the bottom plate, which can be switched on and off. Under the action of the hinge, the bottom plate can only rotate in one direction. The limiter provides a limit for the bottom plate. After the shoes are mechanically removed by the equipment, they fall to the bottom plate below by gravity. The tilt angle of the bottom plate facilitates the mechanized water flow, thereby diverting the water.

[0018] In a preferred embodiment, the inner surface of the guide frame is movably connected to a guide shoe frame, and the upper side of one end of the guide shoe frame close to the metal shell is fixedly connected to a limiting beam.

[0019] By adopting the above technical solution, the shoe guide frame fixes the angle of the shoes, making it convenient to send them into the dryer body. The limiting beam better limits the shoes and cooperates with the limiting rod to fix the shoes on the equipment, thereby better performing drying steps.

[0020] In a preferred embodiment, the side surfaces at both ends of the limiting beam are movably connected to a transmission rod, the outer surface of the transmission rod is fixedly connected to a hydraulic press, and the output end of the hydraulic press is connected to the transmission rod.

[0021] By adopting the above technical solution, the hydraulic press provides mechanical power for loading shoes into the dryer, improving work efficiency, and the transmission rod provides power transmission for the shoe guide frame, ensuring that the shoes can be smoothly delivered to the main operation block and auxiliary operation block of the equipment.

[0022] In a preferred embodiment, the base of the hydraulic press is fixedly connected to a shoe conveyor shell, and a conveyor belt is provided between the upper side surfaces of the shoe conveyor shell.

[0023] By adopting the above technical solution, the conveyor belt transports the shoes, thereby performing assembly line mechanical operations and improving efficiency. The shoe conveyor shell provides a limit for the shoes to prevent the shoes from shaking left and right or rolling off the platform, thereby facilitating safe and stable transportation.

[0024] In a preferred embodiment, in step 1, the shoes are placed upside down on the conveyor belt, or transported to the conveyor belt on the industrial production line, and then sent to the shoe guide frame. The hydraulic press extends to send the shoe into the equipment. The shoe opening corresponds to the front end of the auxiliary operation block. The inclination angle of the auxiliary operation block makes it easier to send the shoe in. Then, the guide frame and the transmission rod work together to tilt the shoe guide frame inward until the limit beam touches the limit rod to fix the shoe. Then the hydraulic press contracts and pulls back the shoe guide frame. The built-in motor of the equipment body rotates to load the next shoe.

[0025] Step 2: The air guide holes set in the main operation block and the auxiliary operation block flow air inside the shoes through the blower built into the main body of the equipment to cool them down and dry them naturally. The main operation block and the auxiliary operation block will shape them to ensure that the shoes are in good condition for the final step;

[0026] Step three: Through the operation of the heating block, heat is transferred with the main operation block and the auxiliary operation block to dry the skin-friendly part inside the shoe. Under the action of the blower, the heater and the metal shell create a warm air flow environment to gently dry the outside of the shoe.

[0027] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0028] 1. In the present invention, the main operating block, the rotating rod, and the auxiliary operating block interact with each other to form an adjustable tilt angle. When the hydraulic press pushes the shoe guide frame in, the heel can be well fed into the main operating block. The guide frame and the transmission rod can be adjusted to push in at the required angle. The limiting beam touches the limiting rod to fix the shoe, so that the shoe is fixed in the predetermined working environment, which is a prerequisite for ensuring the drying effect. The support of the main operating block and the auxiliary operating block holds the entire shoe in place to ensure that the outer shape of the shoe upper is not damaged.

[0029] 2. In the present invention, after the shoes are fixed in a predetermined position, a large amount of glue is used to fix the various materials of the shoes in the shoemaking process, and the thermal environment is not conducive to the condensation of the glue. At the same time, the heat generated in the shoemaking process easily attracts water molecules in the air and attaches them to the surface of the shoes. Therefore, mechanical accelerated natural air drying is first adopted. Under the action of the air guide holes, the moist air in the shoes is transported out through the conduction of the guide tube, so that the air in the shoe environment quickly reaches a dry state, the temperature in the shoe environment is quickly cooled, and the moist water vapor in the shoe is extracted to the environment outside the shoe. After the air drying reaches a suitable effect, physical heating and drying are performed.

[0030] 3. In the present invention, the support plate and the support block provide support for the whole, ensuring that the shoes can rotate, so that the water molecules adsorbed by the shoe material are evenly diffused to the surface of the shoe due to gravity, thereby effectively drying the shoes. The function of the heating block is to heat the equipment. Through contact with the main operation block and the auxiliary operation block, the temperature is transferred to the overall environment inside the shoe, thereby better drying. The heater cooperates with the overall equipment to effectively and evenly dry the outside of the shoe. The overall operation enables the shoe drying machine to achieve all-round three-dimensional drying. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is the appearance diagram of the device of the present invention;

[0032] Figure 2 It is a structural schematic diagram of the present invention;

[0033] Figure 3 Schematic diagram of the drying structure in the present invention;

[0034] Figure 4 This is a schematic diagram of the main drying structure of the present invention;

[0035] Figure 5 This is the bottom diagram of the main drying structure in the present invention;

[0036] Figure 6 This is a schematic diagram of the shoe delivery mechanism in the present invention;

[0037] Figure 7 This is a schematic diagram of the connecting parts of the cable collection block in the present invention.

[0038] Markings in the figure: 1. Equipment body; 2. Support plate; 3. Support block; 4. Main operation block; 5. Rotating rod; 6. Auxiliary operation block; 7. Air guide hole; 8. Air guide pipe; 9. Cable collection block; 10. Heating block; 11. Metal shell; 12. Screw; 13. Rotating shaft; 14. Monitoring board; 15. Door handle; 16. Heater; 17. Shoe removal rod; 18. Limit rod; 19. Guide frame; 20. Bottom plate; 21. Limit part; 22. Shoe guide frame; 23. Limit beam; 24. Transmission rod; 25. Hydraulic press; 26. Shoe transfer shell; 27. Conveyor belt. DETAILED DESCRIPTION

[0039] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0040] Example:

[0041] Reference Figure 1-5 A shoe drying machine and its use method include a device body 1, the outer surface of the device body 1 is rotatably connected to a support plate 2, the output end of the built-in motor of the device body 1 is fixedly connected to the surface of the support plate 2, the outer surface of the support plate 2 is welded with a support block 3, the outer surface of the support block 3 away from the support plate 2 is welded with a main operation block 4, the outer surface of the edge of one end of the main operation block 4 is fixedly connected to a rotating rod 5, the outer surface of the rotating rod 5 is rotatably connected to a secondary operation block 6, the main operation block 4 is sleeved on the outer surface of the secondary operation block 6, and has a limited position so that the secondary operation Block 6 rotates around the central axis of the rotating rod 5 with an angle range limit. The upper and lower surfaces of the main operation block 4 are provided with multiple air guide holes 7, and the upper and lower outer surfaces of the auxiliary operation block 6 are also provided with multiple air guide holes 7. The air guide hole 7 at one end of the upper surface of the main operation block 4 is fixedly connected to the guide tube 8, and the other air guide holes 7 are connected to the position connected to the guide tube 8. The end of the guide tube 8 away from the main operation block 4 is fixedly connected to the device body 1. The inner surface of the auxiliary operation block 6 is provided with multiple heating blocks 10, and the inner surface of the air guide hole 7 is also provided with multiple heating blocks 10.

[0042] During use, the shoes enter the main operating block 4, the rotating rod 5, and the auxiliary operating block 6 through the shoe opening respectively. Under the action of the air guide hole 7, the moist air in the shoe is sent out through the conduction of the guide tube 8, so that the air in the shoe reaches a dry state. The device body 1 is the main power unit of the entire device. Ensuring the rotation of the device and the control of the airflow are prerequisites for the device. The support plate 2 and the support block 3 provide support for the whole device to ensure that the shoes can rotate so that they can be dried evenly. The function of the heating block 10 is to heat the device so as to better dry it.

[0043] Reference Figure 1-3 The device body 1 is movably connected to a metal shell 11 around the periphery, and the upper surface of the metal shell 11 corresponding to the device body 1 is movably connected to a screw 12, which passes through the metal shell 11 and is connected to the corresponding threaded hole of the device body 1.

[0044] The metal shell 11 provides a relatively sealed external environment for the whole, preventing the exhausted moist air from re-entering and affecting the efficiency. The metal shell 11 corresponds to the lower end of the device body 1 with a hidden buckle. After being snapped in, the screw 12 is passed through the metal shell 11 and rotated to fix it on the device body 1 to ensure its stability and facilitate disassembly, so that manual installation of shoes and cleaning of the equipment can be convenient.

[0045] Reference Figure 1-3 The outer surface of the metal shell 11 on the side away from the device body 1 is fixedly connected to the rotating shaft 13, and the outer surface of the rotating shaft 13 is rotatably connected to the monitoring board 14. The middle of the outer surface of the monitoring board 14 on the side away from the rotating shaft 13 is fixedly connected to the door handle 15, and the metal shell 11 has a built-in magnetic sheet corresponding to the door handle 15.

[0046] The monitoring panel 14 is made of tempered glass, which is convenient for users to observe the drying effect. The door handle 15 is convenient for opening and entering the equipment for relevant inspection and testing operations, and is also convenient for manual operation.

[0047] Reference Figure 1-5 The upper surface of the main operating block 4 is fixedly connected to a cable collecting block 9 next to the support block 3. A shoe-taking rod 17 is provided on the outer surface of the equipment body 1 corresponding to the position of the guide tube 8, and a limit rod 18 is movably connected to the outer surface of the support block 3.

[0048] The cable collection block 9 is used to integrate all the cables in the main operation block 4 and the auxiliary operation block 6 so as to facilitate the connection and avoid the safety accidents caused by the continuous rotation and entanglement of the cables. Figure 7As shown, a layered wire ring is connected to a fixed external brush for power supply, and the outer surfaces on both sides of the shoe removal rod 17 corresponding to the main operating block 4 can be extended and retracted, so that the inserted shoes can be taken out. The limiting rod 18 can fix the shoes in the main operating block 4 and the auxiliary operating block 6 under the action of the limiting beam 23, and the shoe removal rod 17 can be pushed out under the force to release the limit on the shoes.

[0049] Reference Figure 2 A heater 16 is fixedly connected to the outer surface of the lower end of the device body 1, and a guide frame 19 is provided on the side surface of the metal shell 11.

[0050] The heater 16 provides the prerequisite for external drying, because the heat is from bottom to top, so it is set at the bottom to improve the drying efficiency. Soft materials are set inside the guide frame 19 to prevent too much hot air from flowing out, which will cause unpredictable airflow of the equipment. At the same time, the guide groove of the guide frame 19 ensures the accuracy of the mechanical shoe delivery and improves efficiency.

[0051] Reference Figure 1-3 The lower surface of the metal shell 11 is movably connected to a bottom plate 20 , and the bottom plate 20 is connected to one side of the metal shell 11 by a hinge. The lower surface of the metal shell 11 is fixedly connected to a limiting member 21 on the side corresponding to the hinge.

[0052] The bottom plate 20 has a built-in button that can be turned on and off. Under the action of the hinge, the bottom plate 20 can only rotate in one direction. The limiter 21 provides a limit for the bottom plate 20. After the shoes are mechanically removed by the equipment, they fall to the bottom plate 20 below by gravity. The tilt angle of the bottom plate 20 facilitates the mechanized water flow, thereby diverting the water.

[0053] Reference Figure 1-3 6. The inner surface of the guide frame 19 is movably connected with a guide shoe frame 22, and the upper side of one end of the guide shoe frame 22 close to the metal shell 11 is fixedly connected with a limiting beam 23.

[0054] The shoe guide frame 22 fixes the angle of the shoes to facilitate their entry into the dryer body. The limiting beam 23 better limits the position of the shoes and cooperates with the limiting rod 18 to fix the shoes on the equipment, thereby better performing drying steps.

[0055] Reference Figure 1-3 6. The side surfaces at both ends of the limiting beam 23 are movably connected with a transmission rod 24, and the outer surface of the transmission rod 24 is fixedly connected with a hydraulic press 25, and the output end of the hydraulic press 25 is connected to the transmission rod 24.

[0056] The hydraulic press 25 provides mechanical power for loading shoes into the dryer, improving work efficiency. The transmission rod 24 provides power transmission for the shoe guide frame 22, ensuring that the shoes can be smoothly delivered to the main operation block 4 and the auxiliary operation block 6 of the equipment.

[0057] Reference Figure 1-3 6. The base of the hydraulic press 25 is fixedly connected to a shoe conveying shell 26, and a conveyor belt 27 is provided between the upper side surfaces of the shoe conveying shell 26.

[0058] The conveyor belt 27 conveys the shoes, thereby performing assembly line mechanical operations and improving efficiency. The shoe conveying shell 26 provides a limit for the shoes to prevent the shoes from shaking left and right or rolling off the platform, thereby facilitating safe and stable transportation.

[0059] Reference Figure 1-6 , step 1, put the shoes upside down onto the conveyor belt 27, or transport them to the conveyor belt 27 on the industrial production line, and then send them to the shoe guide frame 22. The hydraulic press 25 extends to send the shoes into the equipment. The shoe opening corresponds to the front end of the auxiliary operation block 6. The inclination angle of the auxiliary operation block 6 makes it easier to send the shoes in. Then, the guide frame 19 and the transmission rod 24 work together to push the shoe guide frame 22 inward until the limiting beam 23 touches the limiting rod 18 to fix the shoe. Then the hydraulic press 25 contracts and pulls back the shoe guide frame 22. The built-in motor of the equipment body 1 rotates to load the next shoe.

[0060] In step 2, the air guide holes 7 set in the main operation block 4 and the auxiliary operation block 6 flow the air inside the shoes through the blower built into the device body 1 to cool down and dry them naturally. The overall operation ensures that the glue just applied inside the shoes is difficult to solidify due to its direct heating and drying, and the hydrophilic materials inside the shoes, such as fur and other materials built into the shoes, will be affected by direct heating. The main operation block 4 and the auxiliary operation block 6 will shape them to ensure that the shoes are in good condition for the last step.

[0061] Step three, through the operation of the heating block 10, heat is transferred with the main operation block 4 and the auxiliary operation block 6 to dry the skin-friendly part inside the shoe, so that the shoes can achieve the best preservation effect and increase the service life of the shoes. The rotation makes the environment inside the shoe dry evenly under the action of gravity. The heater 16, under the action of the blower, and the metal shell 11, create a warm air flow environment to gently dry the shoes, avoid the shape change of the shoes caused by extreme cold or heat, and dry the outside of the shoes.

[0062] The implementation principle of the shoe drying machine and the use method thereof of the present invention is as follows:

[0063] In the present invention, the main operating block 4, the rotating rod 5, and the auxiliary operating block 6 interact with each other to form an adjustable tilt angle. When the hydraulic press 25 pushes the shoe guide frame 22 in, the heel can be well sent into the main operating block 4. The guide frame 19 and the transmission rod 24 can be adjusted to push in at the required angle. The limiting beam 23 touches the limiting rod 18 to fix the shoe, so that the shoe is fixed in the predetermined working environment, which is a prerequisite for ensuring the drying effect. The support of the main operating block 4 and the auxiliary operating block 6 supports the entire shoe to ensure that the shape of its upper is not damaged.

[0064] In the present invention, after the shoes are fixed in a predetermined position, since a large amount of glue is used to fix the various materials of the shoes in the shoemaking process, the thermal environment is not conducive to the condensation of the glue. At the same time, the heat generated in the shoemaking process easily attracts water molecules in the air and attaches them to the surface of the shoes. Therefore, mechanical acceleration of natural air drying is first adopted. Under the action of the air guide holes 7, the moist air in the shoes is transported out through the conduction of the guide tube 8, and the device body 1 sends out the moist air in the shoes, so that the air in the shoes quickly reaches a dry state, quickly cools the environment in the shoes, and at the same time extracts the moist water vapor in the shoes to the environment outside the shoes. After the air drying reaches a suitable effect, physical heating and drying are performed.

[0065] In the present invention, the support plate 2 and the support block 3 provide support for the whole, ensuring that the shoes can rotate, so that the water molecules adsorbed by the shoe material are evenly diffused to the surface of the shoe due to gravity, thereby effectively drying the shoes. The function of the heating block 10 is to heat the equipment. Through contact with the main operation block 4 and the auxiliary operation block 6, the temperature is transferred to the overall environment inside the shoe, thereby better drying. The heater 16 cooperates with the overall equipment to effectively and evenly dry the outside of the shoe. The overall operation enables the shoe dryer to achieve all-round three-dimensional drying.

[0066] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A shoe drying machine, comprising a device body (1), characterized in that: The outer surface of the device body (1) is rotatably connected to a support plate (2); the output end of the built-in motor of the device body (1) is fixedly connected to the surface of the support plate (2); a support block (3) is welded to the outer surface of the support plate (2); a main operating block (4) is welded to the outer surface of one end of the support block (3) away from the support plate (2); a rotating rod (5) is fixedly connected to the outer surface of the edge of one end of the main operating block (4); a secondary operating block (6) is rotatably connected to the outer surface of the rotating rod (5); the main operating block (4) is sleeved on the outer surface of the secondary operating block (6), and is limited so that the secondary operating block (6) can rotate around the circle of the rotating rod (5). The spindle rotation is limited by an angle range. The upper and lower surfaces of the main operation block (4) are provided with a plurality of air guide holes (7). The upper and lower outer surfaces of the auxiliary operation block (6) are also provided with a plurality of air guide holes (7). The air guide hole (7) at one end of the upper surface of the main operation block (4) is fixedly connected to a guide tube (8). The other air guide holes (7) are connected to a position connected to the guide tube (8). The end of the guide tube (8) away from the main operation block (4) is fixedly connected to the device body (1). The inner surface of the auxiliary operation block (6) is provided with a plurality of heating blocks (10). The inner surface of the air guide hole (7) is also provided with a plurality of heating blocks (10). The upper surface of the main operating block (4) is fixedly connected to a cable collecting block (9) beside the support block (3); the outer surface of the equipment body (1) is provided with a shoe taking rod (17) at a position corresponding to the guide tube (8); the outer surface of the support block (3) is movably connected to a limit rod (18); the outer surface of the lower end of the equipment body (1) is fixedly connected to a heater (16); the side surface of the metal shell (11) is provided with a guide frame (19); the inner surface of the guide frame (19) is movably connected to a shoe guide frame (22); the upper side of one end of the guide shoe frame (22) close to the metal shell (11) is fixedly connected to a limit beam (23); the side surfaces of both ends of the guide shoe frame (22) are movably connected to a transmission rod (24); the outer surface of the transmission rod (24) is fixedly connected to a hydraulic press (25), and the output end of the hydraulic press (25) is connected to the transmission rod (24).

2. A shoe drying machine according to claim 1, characterized in that: The four sides of the device body (1) are movably connected to a metal shell (11), and the upper surface of the metal shell (11) corresponding to the device body (1) is movably connected to a screw (12), and the screw (12) passes through the metal shell (11) and is connected to the corresponding threaded hole of the device body (1).

3. A shoe drying machine according to claim 2, characterized in that: The outer surface of the metal shell (11) on the side away from the device body (1) is fixedly connected to a rotating shaft (13), the outer surface of the rotating shaft (13) is rotatably connected to a monitoring plate (14), the middle of the outer surface of the monitoring plate (14) on the side away from the rotating shaft (13) is fixedly connected to a door handle (15), and the metal shell (11) has a built-in magnetic sheet corresponding to the door handle (15).

4. A shoe drying machine according to claim 2, characterized in that: The lower surface of the metal shell (11) is movably connected to a bottom plate (20), the bottom plate (20) is hingedly connected to one side of the metal shell (11), and a limiting member (21) is fixedly connected to the side of the lower surface of the metal shell (11) corresponding to the hinge.

5. A shoe drying machine as claimed in claim 1, characterized in that: The base of the hydraulic press (25) is fixedly connected to a shoe conveying shell (26), and a conveyor belt (27) is provided between the upper side surfaces of the shoe conveying shell (26).

6. A method for using a shoe drying machine according to claims 1-5, characterized in that: The following steps are involved: Step 1: Place the shoes upside down on the conveyor belt (27), or transport them to the conveyor belt (27) on the industrial production line, and then send them to the shoe guide frame (22). The hydraulic press (25) extends to send the shoes into the equipment. The shoe opening corresponds to the front end of the auxiliary operation block (6). The tilt angle of the auxiliary operation block (6) makes it easier to send the shoes in. Then, the guide frame (19) and the transmission rod (24) work together to push the shoe guide frame (22) inward until the limit beam (23) touches the limit rod (18) to fix the shoe. The hydraulic press (25) then contracts and pulls back the shoe guide frame (22). The built-in motor of the equipment body (1) rotates to load the next shoe. In step 2, the air guide holes (7) provided in the main operation block (4) and the auxiliary operation block (6) flow the air inside the shoes through the blower built into the device body (1), thereby cooling and naturally drying the shoes. The main operation block (4) and the auxiliary operation block (6) shape the shoes, ensuring that the shoes are in good condition for the final step. Step three, through the operation of the heating block (10), heat is transferred with the main operation block (4) and the auxiliary operation block (6) to dry the skin-friendly part inside the shoe. Under the action of the blower, the heater (16) and the metal shell (11) create a warm air flow environment to gently dry the outside of the shoe.

Citation Information

Patent Citations

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