Novel shoe sole waterproof detection device for shoe material production

By designing a sole waterproof detection device including a detection water tank, a double-axis motor and a gear system, the problems of inconvenience and poor stability in the prior art are solved, and efficient and stable sole waterproof detection is achieved.

CN222913428UActive Publication Date: 2025-05-27ZHONGSHAN WEIAI SHOE MATERIALS CO LTD
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Patent Information

Application Number
CN202420828687.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-22
Publication Date
2025-05-27
Estimated Expiration
2034-04-22

AI Technical Summary

Technical Problem

The existing sole waterproof detection device for shoe material production is inconvenient to operate and has poor stability, making it difficult to effectively detect the waterproof performance of sole materials.

Method used

设计了一种包括检测水箱、双轴电机、正螺纹柱、反螺纹柱和测水纸的鞋底防水检测装置,通过双轴电机带动齿轮系统,使活动框稳定下降,鞋底材料与水接触,观察测水纸表面即可检测防水性能。

Benefits of technology

It realizes waterproof detection of sole with simple and convenient operation and high stability, and can effectively evaluate the waterproof performance of sole materials.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222913428U_ABST
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Abstract

The utility model discloses a novel shoe sole waterproof detection device for shoe material production, which belongs to the technical field of shoe sole waterproof detection and comprises a detection water tank, the top of the detection water tank is fixedly connected with two fixing shells, and the tops of the two fixing shells are fixedly connected with the same top shell. The device has the beneficial effects that two first bevel gears are respectively driven by a double-shaft motor, so that the two first bevel gears respectively drive two second bevel gears to rotate, and the two second bevel gears respectively drive a right-hand threaded column and a left-hand threaded column to rotate in two threaded cylinders through second rotating shafts; the two threaded cylinders simultaneously drive the movable frame to descend through the two connecting blocks, the stability of the movable frame in the moving process is improved, the movable frame drives the shoe sole material to make contact with water in the detection water tank, the waterproof performance of the shoe sole material is conveniently detected by observing the surface of the water detection paper, and operation is easy and convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of sole waterproof detection, and more specifically, it relates to a sole waterproof detection device for new shoe material production. Background Technique

[0002] The sole is an extremely important part of a shoe, and its structure is relatively complex. Generally, it consists of an outsole, a midsole and a heel. It needs to be in contact with the ground in different environments for a long time. Therefore, the common characteristics of general sole materials should include wear resistance, water resistance, oil resistance, heat resistance, pressure resistance, impact resistance, good elasticity, easy to fit the foot shape, not easy to deform after shaping, heat preservation, easy to absorb moisture, etc. At the same time, it should cooperate with the midsole to have a braking effect when walking and changing feet so as not to slip and be easy to stop, etc. In particular, the water resistance performance is an important basis for testing whether the sole is qualified. However, the existing sole waterproof detection devices for shoe material production are inconvenient to operate and have poor stability. Content of the Utility Model

[0003] (1) Technical Problems to be Solved

[0004] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a sole waterproof detection device for new shoe material production, which has the characteristics of convenient operation and high stability.

[0005] (2) Technical Solutions

[0006] To achieve the above object, the utility model provides a sole waterproof detection device for new shoe material production, including a detection water tank. A fixed shell is fixedly connected to the top of the detection water tank. The number of the fixed shells is two. The same top shell is fixedly connected to the tops of the two fixed shells. A double-shaft motor is fixedly connected to the inner wall of the top shell. The two output shafts of the double-shaft motor are both fixedly connected with a first rotating shaft. A first bevel gear is fixedly connected to one end of each of the two first rotating shafts. Second bearings are arranged on the inner walls of the two fixed shells, and the number of the second bearings is four. A second rotating shaft is inserted into each of the four second bearings. The opposite ends of every two second rotating shafts are fixedly connected with the same positive threaded column and reverse threaded column. A second bevel gear is fixedly connected to one end of each of the two second rotating shafts. The two first bevel gears are respectively meshed with the two second bevel gears. Threaded cylinders are threadedly connected to the surfaces of the positive threaded column and the reverse threaded column. Rectangular through holes are formed in the opposite surfaces of the two fixed shells. A connecting block is fixedly connected to each of the two threaded cylinders. The two connecting blocks respectively pass through the two rectangular through holes and are fixedly connected with the same movable frame. The same support net is fixedly connected to the opposite inner walls of the movable frame. A sole material is arranged on the top of the support net. A water detection paper is arranged on the top of the sole material. Second fixing plates are fixedly connected to the opposite inner walls of the movable frame. Thread holes are formed in the tops of the two second fixing plates. Bolts are threadedly connected to the interiors of the two thread holes. A third bearing is sleeved on the bottom end of each of the two bolts. A limiting plate is fixedly connected to the bottom of each of the two third bearings. The bottoms of the two limiting plates are lapped with the surface of the water detection paper.

[0007] When using the sole waterproof detection device for new shoe material production of this technical solution, by rotating the bolts, the bolts rotate inside the threaded holes, and the bolts drive the limiting plates to lap with the surface of the water detection paper, which is convenient for limiting the water detection paper and the sole material. And by driving the two first bevel gears respectively through the double-shaft motor, the two first bevel gears respectively drive the two second bevel gears to rotate, and the two second bevel gears respectively drive the positive threaded column and the reverse threaded column to rotate inside the two threaded cylinders through the second rotating shafts, so that the two threaded cylinders drive the movable frame to descend simultaneously through the two connecting blocks, improving the stability of the movable frame during movement, and the movable frame drives the sole material to contact the water in the detection water tank. By observing the surface of the water detection paper, it is convenient to detect the waterproof property of the sole material, and the operation is simple and convenient.

[0008] Furthermore, the same first fixing plate is fixedly connected to the opposite inner walls of the top shell. The number of the first fixing plates is two. First bearings are arranged on the opposite surfaces of the two first fixing plates. The two first rotating shafts are respectively inserted into the interiors of the two first bearings.

[0009] Further, a drain pipe is fixedly connected to the side of the detection water tank, and a valve is arranged on the drain pipe.

[0010] Further, a rubber pad is arranged at the bottom of the limiting plate.

[0011] Further, a control switch is arranged on the surface of the top shell.

[0012] (3) Beneficial effects

[0013] In summary, the present utility model has the following beneficial effects:

[0014] 1. For the sole waterproof detection device for new shoe material production, by setting bolts, threaded holes and limiting plates, by rotating the bolts, the bolts rotate inside the threaded holes, and the bolts drive the limiting plates to lap with the surface of the water detection paper, which is convenient for limiting the water detection paper and the sole material;

[0015] 2. For the sole waterproof detection device for new shoe material production, by setting a double-shaft motor, a positive threaded column, a reverse threaded column and water detection paper, the double-shaft motor drives two first bevel gears respectively, so that the two first bevel gears drive two second bevel gears to rotate respectively, and the two second bevel gears drive the positive threaded column and the reverse threaded column to rotate inside the two threaded cylinders respectively through the second rotating shafts, so that the two threaded cylinders drive the movable frame to descend simultaneously through two connecting blocks, improving the stability of the movable frame during movement, and the movable frame drives the sole material to contact the water in the detection water tank. By observing the surface of the water detection paper, it is convenient to detect the waterproof property of the sole material, and the operation is simple and convenient. Description of the drawings

[0016] In order to more clearly illustrate the specific implementation manners of the present utility model or the technical solutions in the prior art, the following will briefly introduce the drawings required for describing the specific implementation manners or the prior art. Obviously, the drawings in the following description are only one implementation manner of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0017] Figure 1 It is a schematic structural diagram of a three-dimensional section of the present utility model;

[0018] Figure 2 For the present utility model Figure 1 It is an enlarged structural diagram of part A in the present utility model;

[0019] Figure 3 It is a schematic three-dimensional structural diagram of the present utility model.

[0020] The marks in the drawings are:

[0021] 1. Detection water tank; 2. Fixed shell; 3. Top shell; 4. Biaxial motor; 5. First rotating shaft; 6. First fixing plate; 7. First bevel gear; 8. Second rotating shaft; 9. Positive threaded column; 10. Reverse threaded column; 11. Threaded cylinder; 12. Rectangular through hole; 13. Connecting block; 14. Movable frame; 15. Support net; 16. Sole material; 17. Water test paper; 18. Second fixing plate; 19. Threaded hole; 20. Bolt; 21. Limiting plate; 22. Drain pipe; 23. Valve; 24. Control switch. Detailed implementation manner

[0022] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the technical solutions in the specific implementation manners of the present utility model are clearly and completely described below to further elaborate the present utility model. Obviously, the described specific implementation manners are only a part of the implementation manners of the present utility model, rather than all the styles.

[0023] Embodiment:

[0024] The following is further described in detail with reference to the attached Figures 1-3 This utility model is further described in detail.

[0025] Please refer to Figures 1-3, the present utility model provides a technical solution: a sole waterproof detection device for new shoe material production, including a detection water tank 1. A fixed shell 2 is fixedly connected to the top of the detection water tank 1. The number of fixed shells 2 is two. The tops of the two fixed shells 2 are fixedly connected to the same top shell 3. A dual-axis motor 4 is fixedly connected to the inner wall of the top shell 3. First rotating shafts 5 are fixedly connected to both output shafts of the dual-axis motor 4. First bevel gears 7 are fixedly connected to one ends of the two first rotating shafts 5. Second bearings are arranged on the inner walls of the two fixed shells 2, and the number of second bearings is four. Second rotating shafts 8 are respectively passed through the interiors of the four second bearings. The opposite ends of every two second rotating shafts 8 are fixedly connected to the same positive threaded column 9 and reverse threaded column 10. Second bevel gears are fixedly connected to one ends of the two second rotating shafts 8. The two first bevel gears 7 are respectively meshed with the two second bevel gears. Threaded cylinders 11 are threadedly connected to the surfaces of the positive threaded column 9 and the reverse threaded column 10. Rectangular through holes 12 are respectively opened on the opposite surfaces of the two fixed shells 2. Connecting blocks 13 are fixedly connected to the two threaded cylinders 11. The two connecting blocks 13 respectively pass through the two rectangular through holes 12 and are fixedly connected to the same movable frame 14. A support net 15 is fixedly connected to the opposite inner walls of the movable frame 14. A sole material 16 is arranged on the top of the support net 15. A water detection paper 17 is arranged on the top of the sole material 16. Second fixing plates 18 are fixedly connected to the opposite inner walls of the movable frame 14. Thread holes 19 are respectively opened on the tops of the two second fixing plates 18. Bolts 20 are threadedly connected to the interiors of the two thread holes 19. Third bearings are sleeved on the bottom ends of the two bolts 20. Limiting plates 21 are fixedly connected to the bottoms of the two third bearings. The bottoms of the two limiting plates 21 are lapped with the surface of the water detection paper 17. By setting the bolts 20, the thread holes 19 and the limiting plates 21, by rotating the bolts 20, the bolts 20 rotate in the interiors of the thread holes 19, and the bolts 20 drive the limiting plates 21 to lap with the surface of the water detection paper 17, which is convenient for limiting the water detection paper 17 and the sole material 16. By setting the dual-axis motor 4, the positive threaded column 9, the reverse threaded column 10 and the water detection paper 17, the dual-axis motor 4 drives the two first bevel gears 7 respectively, the two first bevel gears 7 drive the two second bevel gears to rotate respectively, the two second bevel gears drive the positive threaded column 9 and the reverse threaded column 10 to rotate in the two threaded cylinders 11 respectively through the second rotating shafts 8, the two threaded cylinders 11 drive the movable frame 14 to descend simultaneously through the two connecting blocks 13, improving the stability of the movable frame 14 during movement, the movable frame 14 drives the sole material 16 to contact the water in the detection water tank 1, and by observing the surface of the water detection paper 17, it is convenient to detect the waterproof property of the sole material 16, and the operation is simple and convenient.

[0026] Specifically, the same first fixing plate 6 is fixedly connected to the relative inner walls of the top shell 3. The number of the first fixing plates 6 is two. First bearings are arranged on the relative surfaces of the two first fixing plates 6, and the two first rotating shafts 5 are respectively arranged inside the two first bearings.

[0027] By adopting the above technical solution, the two first rotating shafts 5 rotate inside the two first bearings respectively, making the two first rotating shafts 5 more stable when rotating.

[0028] Specifically, a drain pipe 22 is fixedly connected to the side of the detection water tank 1, and a valve 23 is arranged on the drain pipe 22.

[0029] By adopting the above technical solution, by opening the valve 23, it is convenient to replace the water in the detection water tank 1 through the drain pipe 22.

[0030] Specifically, a rubber pad is arranged at the bottom of the limiting plate 21.

[0031] By adopting the above technical solution, the rubber pad increases the overlap between the limiting plate 21 and the surface of the water detection paper 17, facilitating the limitation of the water detection paper 17 and the sole material 16.

[0032] Specifically, a control switch 24 is arranged on the surface of the top shell 3.

[0033] The working principle of the present utility model is as follows:

[0034] When the present utility model is in use, first connect the external power supply. Place the sole material 16 to be detected on the support net 15, and place the water detection paper 17 on the sole material 16. By rotating the bolt 20, the bolt 20 rotates inside the threaded hole 19, so that the bolt 20 drives the limiting plate 21 to overlap with the surface of the water detection paper 17, limiting the water detection paper 17 and the sole material 16. Then start the double-shaft motor 4 through the control switch 24, so that the double-shaft motor 4 drives the two first bevel gears 7 respectively, so that the two first bevel gears 7 drive the two second bevel gears to rotate respectively, so that the two second bevel gears drive the positive threaded column 9 and the reverse threaded column 10 to rotate inside the two threaded cylinders 11 respectively through the second rotating shafts 8, so that the two threaded cylinders 11 drive the movable frame 14 to descend simultaneously through the two connecting blocks 13, ensuring the stability of the movable frame 14 during movement, so that the movable frame 14 drives the sole material 16 to contact the water in the detection water tank 1. By observing the surface of the water detection paper 17, the waterproof property of the sole material 16 can be detected.

[0035] This specific embodiment is only an explanation of the present utility model, and it is not a limitation to the present utility model. Those skilled in the art can make modifications without creative contributions to this embodiment according to needs after reading this specification, but as long as they are within the scope of the claims of the present utility model, they are protected by the patent law.

Claims

1. A novel sole waterproof testing device for shoe material production, comprising a testing water tank (1), characterized in that: The top of the detection water tank (1) is fixedly connected to a fixed shell (2), and the number of the fixed shells (2) is two. The tops of the two fixed shells (2) are fixedly connected to the same top shell (3). The inner wall of the top shell (3) is fixedly connected to a double-axis motor (4). The two output shafts of the double-axis motor (4) are fixedly connected to a first rotating shaft (5). One end of the two first rotating shafts (5) is fixedly connected to a first bevel gear (7). The inner walls of the two fixed shells (2) are provided with a second bearing, and the number of the second bearings is four. A second rotating shaft (8) is penetrated inside the four second bearings. The opposite ends of every two second rotating shafts (8) are fixedly connected to the same positive thread column (9) and reverse thread column (10). One end of the two second rotating shafts (8) is fixedly connected to a second bevel gear. The two first bevel gears (7) are respectively meshed with the two second bevel gears. The surfaces of the positive thread column (9) and the reverse thread column (10) are threadedly connected to a threaded cylinder (11). The two fixed shells (2) are provided with rectangular through holes (12) on opposite surfaces, the two threaded cylinders (11) are fixedly connected with connecting blocks (13), the two connecting blocks (13) respectively pass through the two rectangular through holes (12) and are fixedly connected with a same movable frame (14), the opposite inner walls of the movable frame (14) are fixedly connected with a same supporting net (15), the top of the supporting net (15) is provided with a sole material (16), the top of the sole material (16) is provided with The movable frame (14) is provided with a water measuring paper (17), and the second fixing plates (18) are fixedly connected to the opposite inner walls of the movable frame (14), the tops of the two second fixing plates (18) are provided with threaded holes (19), the insides of the two threaded holes (19) are threadedly connected with bolts (20), the bottom ends of the two bolts (20) are sleeved with third bearings, the bottoms of the two third bearings are fixedly connected with limit plates (21), and the bottoms of the two limit plates (21) overlap with the surface of the water measuring paper (17).

2. A new type of sole waterproof detection device for shoe material production according to claim 1, characterized in that: The same first fixing plate (6) is fixedly connected to the opposite inner walls of the top shell (3), the number of the first fixing plates (6) is two, the opposite surfaces of the two first fixing plates (6) are provided with first bearings, and the two first rotating shafts (5) are respectively passed through the insides of the two first bearings.

3. A new type of sole waterproof detection device for shoe material production according to claim 1, characterized in that: A drainage pipe (22) is fixedly connected to the side of the detection water tank (1), and a valve (23) is provided on the drainage pipe (22).

4. A new type of sole waterproof detection device for shoe material production according to claim 1, characterized in that: A rubber pad is provided at the bottom of the limiting plate (21).

5. A new type of sole waterproof detection device for shoe material production according to claim 1, characterized in that: A control switch (24) is provided on the surface of the top shell (3).