Shoe material storage rack for shoe material processing

CN224612055UActive Publication Date: 2026-08-11张天宝
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-08
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0006]本实用新型的目的在于:为了解决热量不均匀造成鞋材开裂以及存放受高度影响,使其操作较为困难的问题,提供一种鞋材加工用鞋材存放架

Benefits of technology

1、通过设置的环形的第一电磁滑道和第二电磁滑道,使其在电力作用下携带存放架顺时针上移,然后在拐角处倾斜并将位于存放架上的鞋材导至接料架303上,然后再在第三电磁滑道和第四电磁滑道的作用下逆时针移动,从而使位于该移动范围的鞋材依次从下到上预先经过了预热,在经过了喷水管加湿,然后再从上到下依次烘干,从而保证了每次烘干后的鞋材不易开裂,同时保证了其加热的均匀性,每组鞋材皆受热均匀。

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Abstract

This utility model discloses a shoe material storage rack for shoe material processing, relating to the field of shoe material processing technology. It includes a protective component, with a discharge component extending to the other side of one side of the protective component at its bottom. A feeding component is located at one end inside the protective component, and a discharging component is located at the inner end of the feeding component and inside the protective component. The feeding component includes a first electromagnetic slide. This utility model allows the storage rack to move clockwise upwards, then tilt at a corner to guide the shoe materials on the rack to a receiving rack 303. Then, under the action of the third and fourth electromagnetic slides, it moves counterclockwise, ensuring that the shoe materials within this movement range are preheated sequentially from bottom to top, humidified by a water spray pipe, and then dried sequentially from top to bottom. This ensures that the shoe materials are less prone to cracking after each drying process and guarantees uniform heating, with each group of shoe materials receiving even heating.
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Description

Technical Field

[0001] This utility model relates to the field of shoe material processing technology, specifically a shoe material storage rack for shoe material processing. Background Technology

[0002] With the booming development of the footwear market, consumers have put forward increasingly stringent requirements for the quality, design and comfort of shoes, prompting the footwear material processing industry to continuously innovate and transform. As a key piece of equipment for the storage and management of footwear materials, footwear material storage racks play an important role in the efficient operation of the entire processing process. This also means that footwear material storage racks face higher performance requirements and more complex application scenarios.

[0003] To improve production efficiency, a shoe material storage rack for shoe material processing has been developed (see patent number: 202322987113.2). The rack includes a base with two sets of support plates on its upper surface, and multiple sets of support plates evenly distributed between the support plates. Fixed rods are located at the four corners of the upper surface of the base, and a servo motor is fixedly installed below the two sets of fixed rods on the same side within the base. One end of the output shaft of the servo motor is connected to a first screw via a coupling, and a drive gear is fitted onto the first screw. Under the action of the servo motor, the receiving plate of the shoe material storage rack forms a limiting sliding structure with the first screw, slide rod, movable block, and fixed rod, thereby driving the receiving plate to rise and fall on the storage rack. This facilitates the placement and removal of shoe materials on higher support plates. The concave push plate of the device, under the action of an electric push rod, forms a horizontal pushing structure with the receiving plate via a telescopic arm, thereby pushing shoe materials onto and off the support plates.

[0004] However, existing shoe material storage racks for shoe material processing, even if they have a drying function, suffer from uneven heating because the drying nozzles are fixed. This can lead to overheating and cracking of the shoe materials, resulting in poor storage performance and reduced utilization. Furthermore, ladders are needed to adjust the placement of shoe materials at different heights, further reducing utilization.

[0005] To address the aforementioned issues, a shoe material storage rack for shoe material processing has been proposed. Utility Model Content

[0006] The purpose of this utility model is to provide a shoe material storage rack for shoe material processing in order to solve the problems of uneven heat causing cracking of shoe materials and the difficulty of operation due to the influence of height during storage.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a shoe material storage rack for shoe material processing, comprising a protective component, wherein a discharge component extending to the other side of the interior is provided at the bottom end of one side of the protective component, a feeding component is provided at one end inside the protective component, and a discharging component is provided at the end inside the feeding component and located inside the protective component. The feeding component includes a first electromagnetic slide, and one end of the first electromagnetic slide and the second electromagnetic slide are evenly and movably connected to multiple sets of storage racks. Multiple sets of first locking teeth are evenly arranged on the side of the storage racks near the unloading component. The feeding assembly includes a third electromagnetic slide, and a fourth electromagnetic slide is provided on the inner side of the third electromagnetic slide. Multiple sets of receiving racks are evenly and movably connected to one end of the third and fourth electromagnetic slides. A baffle plate is provided on the top of the receiving rack on the side away from the first electromagnetic slide. Sliding blocks are provided on both sides of the storage rack and the receiving rack near the end of the first electromagnetic slide.

[0008] As a further embodiment of this utility model: the protective component includes a protective frame, a conveying hole extending into the bottom of one side of the protective frame, a water tank at the bottom of the other side of the protective frame, a water pump installed on the top of the water tank, a delivery pipe at the output end of the water pump, a spray pipe extending into the top of the protective frame on one side of the delivery pipe, a support frame on the other side of the protective frame, multiple sets of hot air nozzles evenly arranged on the side of the support frame near the first electromagnetic slide, a blower installed at the bottom of one end of the water tank, and the output end of the blower extending into the side of the protective frame and communicating with the hot air nozzles.

[0009] As a further embodiment of this utility model: the discharge assembly includes a bracket, and the number of brackets is two sets. One end of one set of brackets is equipped with a motor. Rollers are rotatably connected to the adjacent ends of both sets of brackets and the other side of the bottom inside the protective frame. A conveyor belt is sleeved on the outside of the two sets of rollers. A baffle is provided on the top of the conveyor belt near the water tank and at the bottom inside the protective frame.

[0010] As a further embodiment of this utility model: the first and second locking teeth are misaligned, and one end of the first, second, third, and fourth electromagnetic slides is provided with a groove that matches the sliding block. The storage rack is slidably connected to the first and second electromagnetic slides through the cooperation of the sliding block and the groove. The receiving rack is slidably connected to the third and fourth electromagnetic slides through the cooperation of the sliding block and the groove.

[0011] As a further improvement of this utility model: multiple sets of water spray nozzles are evenly arranged at the bottom of the water spray pipe, and the water spray nozzles are located above one end of the first electromagnetic slide, the second electromagnetic slide, the third electromagnetic slide and the fourth electromagnetic slide, near the water tank.

[0012] As a further embodiment of this utility model: the output end of the motor is connected to one end of one of the sets of rollers, and the conveyor belt extends through the conveying hole to the other side of the protective frame and is movably connected to the protective frame.

[0013] Compared with the prior art, the beneficial effects of this utility model are: 1. The first and second electromagnetic slides in a ring shape move the storage rack clockwise upwards under the action of electricity. Then, at the corner, the rack tilts and guides the shoe materials on the storage rack to the receiving rack 303. Then, under the action of the third and fourth electromagnetic slides, the rack moves counterclockwise. This allows the shoe materials within the moving range to be preheated from bottom to top, humidified by water spray pipes, and then dried from top to bottom. This ensures that the shoe materials are not prone to cracking after each drying process and also ensures the uniformity of heating, so that each group of shoe materials is heated evenly.

[0014] 2. The first and second electromagnetic slides, arranged in a ring, can directly transfer shoe materials located at the bottom to higher positions. The third and fourth electromagnetic slides can directly transfer shoe materials stored at higher positions to the bottom. This eliminates the need for ladders to assist in adjusting the placement of shoe materials at different heights, thus reducing utilization. Furthermore, the relatively slow driving speed of the first, second, third, and fourth electromagnetic slides allows the shoe materials to stay on the storage rack for a longer period, resulting in longer drying and humidification times and ensuring better stability of the shoe materials obtained later. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a side view of the feeding and unloading components of this utility model; Figure 3 For the present utility model Figure 1 Enlarged view of A in the middle; Figure 4 For the present utility model Figure 2 A magnified view of B in the middle.

[0016] In the diagram: 1. Protective components; 101. Protective frame; 102. Conveying hole; 103. Water tank; 104. Water pump; 105. Conveying pipe; 106. Water spray pipe; 107. Blower; 108. Support frame; 109. Hot air nozzle; 2. Feeding components; 201. First electromagnetic slide; 202. Second electromagnetic slide; 203. Storage rack; 204. First clamping tooth; 3. Discharging components; 301. Third electromagnetic slide; 302. Fourth electromagnetic slide; 303. Receiving rack; 304. Second clamping tooth; 305. Baffle plate; 306. Sliding block; 4. Discharge components; 401. Bracket; 402. Roller; 403. Conveyor belt; 404. Motor; 405. Baffle. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figures 1-4 In this embodiment of the present invention, a shoe material storage rack for shoe material processing includes a protective component 1. A discharge component 4 extending to the other side of the interior is provided at the bottom end of one side of the protective component 1. A feeding component 2 is provided at one end inside the protective component 1. A discharging component 3 is provided at the end inside the feeding component 2 and located inside the protective component 1. The feeding component 2 includes a first electromagnetic slide 201. One end of the first electromagnetic slide 201 and the second electromagnetic slide 202 are evenly connected to multiple sets of storage racks 203. Multiple sets of first locking teeth 204 are evenly arranged on the side of the storage racks 203 near the unloading component 3.

[0019] The feeding component 3 includes a third electromagnetic slide 301, and a fourth electromagnetic slide 302 is provided on the inner side of the third electromagnetic slide 301. Multiple sets of receiving racks 303 are evenly and movably connected to one end of the third electromagnetic slide 301 and the fourth electromagnetic slide 302. A baffle plate 305 is provided on the top side of the receiving rack 303 away from the first electromagnetic slide 201. Sliding blocks 306 are provided on both sides of the storage rack 203 and the receiving rack 303 near the end of the first electromagnetic slide 201.

[0020] In this embodiment, the electromagnetic slide is a device that uses electromagnetic principles and a sliding track to achieve linear motion. It consists of an electromagnet, a sliding track, a guide mechanism, etc. When energized, a magnetic field is generated inside the electromagnet, causing the magnetic poles on the iron core to move towards the iron core under the action of attraction. Under the action of electromagnetic force, the magnetic poles detach from the iron core and move towards the sliding track. When the magnetic poles move into the range of the magnets on the sliding track, they will be attracted by another magnetic pole and continue to move along the sliding track. By changing the direction and magnitude of the energization of the electromagnet, the attraction and repulsion forces of the magnets can be controlled, thereby changing the moving speed and direction of the magnetic poles.

[0021] Please refer to this carefully. Figure 1 The protective component 1 includes a protective frame 101. A conveying hole 102 extending into the bottom of one side of the protective frame 101 is provided. A water tank 103 is provided at the bottom of the other side of the protective frame 101. A water pump 104 is installed on the top of the water tank 103. A delivery pipe 105 is provided at the output end of the water pump 104. A water spray pipe 106 extending into the top of the interior of the protective frame 101 is provided on one side of the delivery pipe 105. A support frame 108 is provided on the other side of the interior of the protective frame 101. Multiple sets of hot air nozzles 109 are evenly arranged on the side of the support frame 108 near the first electromagnetic slide 201. A blower 107 is installed at the bottom of one end of the water tank 103. The output end of the blower 107 extends into the interior of the protective frame 101 and communicates with the hot air nozzles 109.

[0022] In this embodiment: the first electromagnetic slide 201 and the second electromagnetic slide 202 move clockwise under the action of electricity, driving the storage rack 203 to move. The third electromagnetic slide 301 and the fourth electromagnetic slide 302 move counterclockwise under the action of electricity, driving the receiving rack 303 to move. The first locking tooth 204 on the storage rack 203 and the second locking tooth 304 on the receiving rack 303 are just staggered and intersecting, which can ensure that the shoe material moves from the surface of the storage rack 203 to the surface of the receiving rack 303. At the same time, it can also ensure that there is no obstruction between the counterclockwise movement of the third electromagnetic slide 301 and the clockwise movement of the second electromagnetic slide 202.

[0023] Please refer to this carefully. Figure 1 The discharge assembly 4 includes a bracket 401, and there are two sets of brackets 401. One end of one set of brackets 401 is equipped with a motor 404. Rollers 402 are rotatably connected to the adjacent ends of the two sets of brackets 401 and the other side of the bottom inside the protective frame 101. A conveyor belt 403 is sleeved on the outside of the two sets of rollers 402. A baffle 405 is provided on the top of the conveyor belt 403 near the water tank 103 and at the bottom inside the protective frame 101.

[0024] In this embodiment: the two ends of the two sets of rollers 402 are first rotatably connected to the bottom end of the protective frame 101 and the end face connected to the two sets of brackets 401 through the mutual cooperation of bearings and bearing seats, so that the conveyor belt 403 and rollers 402 rotate more effortlessly during rotation, reducing the frictional resistance generated during rotation, and making it easier for the conveyor belt 403 to transport shoe materials.

[0025] Please refer to this carefully. Figure 1 and Figure 4 The first locking tooth 204 and the second locking tooth 304 are staggered. One end of the first electromagnetic slide 201, the second electromagnetic slide 202, the third electromagnetic slide 301 and the fourth electromagnetic slide 302 are all provided with a sliding groove that matches the sliding block 306. The storage rack 203 is slidably connected to the first electromagnetic slide 201 and the second electromagnetic slide 202 through the mutual cooperation of the sliding block 306 and the sliding groove. The receiving rack 303 is slidably connected to the third electromagnetic slide 301 and the fourth electromagnetic slide 302 through the mutual cooperation of the sliding block 306 and the sliding groove.

[0026] Please refer to this carefully. Figure 1 Multiple sets of water spray nozzles are evenly arranged at the bottom of the water spray pipe 106, and the water spray nozzles are located above one end of the first electromagnetic slide 201, the second electromagnetic slide 202, the third electromagnetic slide 301 and the fourth electromagnetic slide 302 near the side of the water tank 103.

[0027] In this embodiment: the input end of the water pump 104 draws out the liquid inside the water tank 103, and sprays it out from the nozzle at the bottom of the spray pipe 106 through the delivery pipe 105 and the spray pipe 106 to humidify the shoe material. As the third electromagnetic slide 301 and the fourth electromagnetic slide 302 move down, the shoe material is dried again by the hot air sprayed out by the hot air nozzle 109. This avoids the shoe material from cracking due to excessive heat during the drying process, improves the quality of the shoe material, and avoids waste of resources.

[0028] Please refer to this carefully. Figure 1 The output end of the motor 404 is connected to one end of one set of rollers 402, and the conveyor belt 403 extends through the conveyor hole 102 to the other side of the protective frame 101 and is movably connected to the protective frame 101.

[0029] The working principle of this utility model is as follows: When in use, the shoe material is placed on top of a set of storage racks 203 at the bottom of one end of the first electromagnetic slide 201 and the second electromagnetic slide 202. Then, the first electromagnetic slide 201 and the second electromagnetic slide 202 generate a surrounding magnetic field under the action of electricity. The magnetic field drives the storage rack 203 to move clockwise upward along the first electromagnetic slide 201 and the second electromagnetic slide 202, so that the shoe material passes through multiple sets of hot air nozzles 109 in sequence. At the same time, the blower 107 generates hot air under the action of electricity, so that the hot air passes through the hot air nozzles 109 to dry and heat the shoe material placed on top of the storage rack 203. When the shoe material at the top of the storage rack 203 moves to the corner of the top along the first electromagnetic slide 201 and the second electromagnetic slide 202, the storage rack 203 tilts clockwise by 45° at the corner of the first electromagnetic slide 201 and the second electromagnetic slide 202 under the action of the sliding block 306, and the shoe material placed on the surface of the storage rack 203 slides down to the receiving rack 303 located below the storage rack 203 on the third electromagnetic slide 301 and the fourth electromagnetic slide 302. The baffle 305 provided on the receiving rack 303 prevents the shoe material from sliding out of the receiving rack 303. Then, the third electromagnetic slide 301 and the fourth electromagnetic slide 302 move downward under the action of electricity, and carry the receiving rack 303 containing the shoe material down, until the receiving rack 303 carrying the shoe material moves to the top of the conveyor belt 403. When the receiving rack 303 moves to the arc-shaped track at the bottom left of the third electromagnetic slide 301 and the fourth electromagnetic slide 302, the receiving rack 303 tilts counterclockwise, so that the shoe material slides down the tilted receiving rack 303 and the baffle 405 onto the surface of the conveyor belt 403. The output end of the motor 404 drives one set of rollers 402 to rotate under the action of electricity, and drives another set of rollers 402 and the conveyor belt 403 to rotate. The rotation is clockwise, which makes it easier to guide the shoe material located at the top of the conveyor belt 403 out of the protective frame 101 along the conveyor hole 102. When the shoe material is at the top left of the first electromagnetic slide 201, the input end of the water pump 104 draws out the liquid inside the water tank 103 and sprays it out from the nozzle at the bottom of the spray pipe 106 through the delivery pipe 105 and the spray pipe 106 to humidify the shoe material at the top of one end of the first electromagnetic slide 201. After humidification, the shoe material is dried again by the hot air sprayed out by the hot air nozzle 109 as it moves down with the receiving rack 303 along with the third electromagnetic slide 301 and the fourth electromagnetic slide 302. This avoids the shoe material from cracking due to excessive heat during the drying process, thus ensuring the integrity of the shoe material surface.

[0030] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A shoe material storage rack for shoe material processing, comprising a protective component (1), characterized in that, The bottom end of one side of the protective component (1) is provided with a discharge component (4) extending to the other side of its interior. One end of the interior of the protective component (1) is provided with a feeding component (2). The inner side of the feeding component (2) and the end located inside the protective component (1) is provided with a discharging component (3). The feeding component (2) includes a first electromagnetic slide (201), and one end of the first electromagnetic slide (201) and the second electromagnetic slide (202) are evenly connected to multiple sets of storage racks (203). Multiple sets of first locking teeth (204) are evenly arranged on the side of the storage rack (203) near the unloading component (3). The feeding component (3) includes a third electromagnetic slide (301), and a fourth electromagnetic slide (302) is provided on the inner side of the third electromagnetic slide (301). Multiple sets of receiving racks (303) are evenly and movably connected to one end of the third electromagnetic slide (301) and the fourth electromagnetic slide (302). A baffle plate (305) is provided on the side of the top of the receiving rack (303) away from the first electromagnetic slide (201). Sliding blocks (306) are provided on both sides of the storage rack (203) and the receiving rack (303) near the end of the first electromagnetic slide (201).

2. The shoe material storage rack for shoe material processing according to claim 1, characterized in that, The protective component (1) includes a protective frame (101). A conveying hole (102) extending into the bottom of one side of the protective frame (101) is provided. A water tank (103) is provided at the bottom of the other side of the protective frame (101). A water pump (104) is installed on the top of the water tank (103). A conveying pipe (105) is provided at the output end of the water pump (104). A water spray pipe (106) extending into the top of the inside of the protective frame (101) is provided on one side of the conveying pipe (105). A support frame (108) is provided on the other side inside the protective frame (101). Multiple sets of hot air nozzles (109) are evenly arranged on the side of the support frame (108) near the first electromagnetic slide (201). A blower (107) is installed at the bottom of one end of the water tank (103). The output end of the blower (107) extends into the inside of the protective frame (101) and communicates with the hot air nozzle (109).

3. The shoe material storage rack for shoe material processing according to claim 1, characterized in that, The discharge assembly (4) includes a bracket (401), and there are two sets of brackets (401). One end of one set of brackets (401) is equipped with a motor (404). Rollers (402) are rotatably connected to the adjacent ends of the two sets of brackets (401) and the other side of the bottom inside the protective frame (101). A conveyor belt (403) is sleeved on the outside of the two sets of rollers (402). A baffle (405) is provided on the top of the conveyor belt (403) near the water tank (103) and at the bottom inside the protective frame (101).

4. A shoe material storage rack for shoe material processing according to claim 1, characterized in that, The first locking tooth (204) and the second locking tooth (304) are misaligned. One end of the first electromagnetic slide (201), the second electromagnetic slide (202), the third electromagnetic slide (301) and the fourth electromagnetic slide (302) are all provided with a sliding groove that matches the sliding block (306). The storage rack (203) is slidably connected to the first electromagnetic slide (201) and the second electromagnetic slide (202) through the mutual cooperation of the sliding block (306) and the sliding groove. The receiving rack (303) is slidably connected to the third electromagnetic slide (301) and the fourth electromagnetic slide (302) through the mutual cooperation of the sliding block (306) and the sliding groove.

5. A shoe material storage rack for shoe material processing according to claim 2, characterized in that, The bottom of the water spray pipe (106) is uniformly provided with multiple sets of water spray nozzles, and the water spray nozzles are located above the side of the first electromagnetic slide (201), the second electromagnetic slide (202), the third electromagnetic slide (301) and the fourth electromagnetic slide (302) near the water tank (103).

6. A shoe material storage rack for shoe material processing according to claim 3, characterized in that, The output end of the motor (404) is connected to one end of one of the sets of rollers (402), and the conveyor belt (403) extends through the conveyor hole (102) to the other side of the protective frame (101) and is movably connected to the protective frame (101).

Citation Information

Patent Citations

  • Shoe material storage rack for shoe material processing

    CN221082922U