Hexagonal anti-skid sole pattern device

By designing a hexagonal anti-slip sole pattern device, combined with anti-slip sole components and wear-resistant reinforcement components, the problem of difficult to take into account both the anti-slip and wear-resistant performance of the sole is solved, and the anti-slip performance is improved and the service life is extended.

CN223286673UActive Publication Date: 2025-09-02冯大伟
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422583238.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-02
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The existing soles are difficult to take into account both anti-slip and wear resistance, resulting in insufficient anti-slip performance of the soles with good wear resistance.

Method used

Design a hexagonal anti-slip sole pattern device, including an anti-slip sole assembly and a wear-resistant reinforcement assembly, and the combination of the hexagonal pattern sole and a wear-resistant pad is achieved to take into account both anti-slip and wear-resistant.

Benefits of technology

It improves the anti-slip performance and service life of the sole, while enhancing the grip on the roadside on rainy days, improving walking comfort and stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223286673U_ABST
    Figure CN223286673U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of sole pattern processing, in particular to a hexagonal anti-skid sole pattern device. According to the technical scheme, the hexagonal anti-skid shoe sole pattern device comprises an anti-skid shoe sole assembly and further comprises a wear-resistant reinforcing assembly and a vamp connecting layer. A vamp connecting layer is arranged at the upper end of the anti-skid sole assembly, and the vamp connecting layer and the anti-skid sole assembly are integrally formed. A wear-resistant reinforcing component is arranged at the lower end of the anti-skid sole component. According to the hexagonal pattern sole, the front sole non-slip mat, the heel non-slip mat and the sole acting point non-slip mat of the hexagonal pattern sole are combined with the front sole non-slip mat hole, the heel non-slip mat hole and the acting point non-slip mat hole of the wear-resisting mat to achieve the anti-slip and wear-resisting performance, and the service life is prolonged while the anti-slip performance is effectively improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of sole pattern processing, and particularly relates to a hexagonal anti-skid sole pattern device. Background Art

[0002] Existing soles are mostly made of materials like rubber and polyurethane, which inherently lack excellent anti-slip properties. Furthermore, improper sole texture design, such as patterns that are too flat or too rough, can also compromise the anti-slip effect. Furthermore, poor manufacturing processes can also result in the soles failing to achieve excellent anti-slip and wear-resistant properties.

[0003] In practice, soles with good wear resistance often lack anti-slip properties. This is because to enhance wear resistance, the sole material may need to be harder and smoother, but this reduces friction between the sole and the ground, thus affecting the anti-slip effect. Conversely, if the sole design focuses too much on anti-slip properties, it may sacrifice wear resistance, causing the sole to wear easily during use.

[0004] Therefore, for the above-mentioned existing soles, since the anti-skid and wear-resistant performance of the friction points between the foot and the ground cannot be taken into account at the same time, resulting in the problem that the wear-resistant soles are not anti-skid enough, a hexagonal anti-skid sole pattern device can be designed. Utility Model Content

[0005] In order to overcome the problem that the existing soles cannot achieve both anti-skid and wear-resistant performance at the friction points between the foot and the ground, the soles with good wear resistance are not anti-skid enough.

[0006] The technical solution of the utility model is as follows: a hexagonal anti-skid sole pattern device includes an anti-skid sole component, a wear-resistant reinforcement component, and an upper connecting layer; the upper end of the anti-skid sole component is provided with an upper connecting layer, and the upper connecting layer and the anti-skid sole component are integrally formed; the lower end of the anti-skid sole component is provided with a wear-resistant reinforcement component, and the wear-resistant reinforcement component is fixedly connected to the anti-skid sole component; the anti-skid sole component includes a hexagonal pattern sole, a forefoot anti-skid pad, a heel anti-skid pad, and a foot support point anti-skid pad; the wear-resistant reinforcement component includes a wear-resistant pad, a thickened wear-resistant layer, a forefoot anti-skid pad hole, a heel anti-skid pad hole, a wear-resistant ring, and a support point anti-skid pad hole.

[0007] Preferably, the forefoot anti-skid pad, heel anti-skid pad, sole support point anti-skid pad and the forefoot anti-skid pad holes, heel anti-skid pad holes and support point anti-skid pad holes of the hexagonal pattern sole are combined to achieve both anti-skid and wear-resistant performance, effectively improving the anti-skid performance while increasing the service life, solving the problem of existing soles that are not anti-skid enough because the anti-skid and wear-resistant performance of the friction points between the foot and the ground cannot be taken into account.

[0008] Preferably, a wear-resistant pad is provided at the lower end of the hexagonal pattern sole, and the wear-resistant pad is fitted and fixedly connected to the hexagonal pattern sole.

[0009] Preferably, a thickened wear-resistant layer is provided at the center arch portion of the wear-resistant pad, and the thickened wear-resistant layer and the wear-resistant pad are integrally formed.

[0010] Preferably, the front and rear ends of the thickened wear-resistant layer are respectively provided with a forefoot anti-slip pad hole and a heel anti-slip pad hole; a wear-resistant ring is provided on one side of the forefoot anti-slip pad hole, and the wear-resistant ring and the wear-resistant pad are integrally formed, and the wear-resistant ring is located below the big toe bone; a force point anti-slip pad hole is provided inside the wear-resistant ring, and the force point anti-slip pad hole is integrally formed with the wear-resistant ring.

[0011] Preferably, a forefoot anti-skid pad is provided inside the forefoot anti-skid pad hole, and the forefoot anti-skid pad is integrally formed with the lower end surface of the hexagonal pattern sole.

[0012] Preferably, a heel anti-slip pad is provided inside the heel anti-slip pad hole, and the heel anti-slip pad is integrally formed with the lower end surface of the hexagonal pattern sole.

[0013] Preferably, a sole support point anti-skid pad is provided inside the support point anti-skid pad hole, and the sole support point anti-skid pad is integrally formed with the lower end surface of the hexagonal pattern sole.

[0014] Beneficial effects of the utility model:

[0015] 1. The existing soles cannot achieve both anti-skid and wear-resistant performance at the points of friction between the foot and the ground, resulting in the problem that the wear-resistant soles are not anti-skid enough. The hexagonal patterned soles combine the forefoot anti-skid pads, heel anti-skid pads, and foot support point anti-skid pads with the forefoot anti-skid pad holes, heel anti-skid pad holes, and support point anti-skid pad holes to achieve both anti-skid and wear-resistant performance, effectively improving the anti-skid performance and extending the service life. This solves the problem that the existing soles cannot achieve both anti-skid and wear-resistant performance at the points of friction between the foot and the ground, resulting in the wear-resistant soles not being anti-skid enough.

[0016] 2. The thickened wear-resistant layer is used to improve the wear resistance of the entire arch of the sole, reduce the problem of sole scratches when walking on sharp ground, and protect the overall structure;

[0017] 3. Through the setting of the hexagonal anti-slip pattern on the hexagonal pattern sole, the hexagonal anti-slip pattern on the lower end surface of the hexagonal pattern sole effectively improves the ground grip on the roadside in rainy days, and improves walking comfort and stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1Shown is a schematic diagram of the overall three-dimensional structure of the hexagonal anti-skid sole pattern device of the present invention;

[0019] Figure 2 Shown is a schematic diagram of the overall bottom-up three-dimensional structure of the hexagonal anti-skid sole pattern device of the present invention;

[0020] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the anti-skid sole component and the wear-resistant reinforcement component of the hexagonal anti-skid sole pattern device of the present invention;

[0021] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the forefoot anti-skid pad, heel anti-skid pad, and sole support point anti-skid pad of the hexagonal anti-skid sole pattern device of the present invention.

[0022] The marks in the accompanying drawings are: 1. Anti-slip sole assembly; 2. Wear-resistant reinforcement assembly; 3. Upper connecting layer; 101. Hexagonal pattern sole; 102. Forefoot anti-slip pad; 103. Heel anti-slip pad; 104. Foot support point anti-slip pad; 201. Wear-resistant pad; 202. Thickened wear-resistant layer; 203. Forefoot anti-slip pad hole; 204. Heel anti-slip pad hole; 205. Wear-resistant ring; 206. Support point anti-slip pad hole. DETAILED DESCRIPTION

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] See also Figure 1-4 The utility model provides an embodiment: a hexagonal anti-skid sole pattern device includes an anti-skid sole component 1, a wear-resistant reinforcement component 2, and an upper connecting layer 3; the upper end of the anti-skid sole component 1 is provided with the upper connecting layer 3, and the upper connecting layer 3 and the anti-skid sole component 1 are integrally formed; the lower end of the anti-skid sole component 1 is provided with a wear-resistant reinforcement component 2, and the wear-resistant reinforcement component 2 is fixedly connected to the anti-skid sole component 1; the anti-skid sole component 1 includes a hexagonal pattern sole 101, a forefoot anti-skid pad 102, a heel anti-skid pad 103, and a sole support point anti-skid pad 104; the wear-resistant reinforcement component 2 includes a wear-resistant pad 201, a thickened wear-resistant layer 202, a forefoot anti-skid pad hole 203, a heel anti-skid pad hole 204, a wear-resistant ring 205, and a support point anti-skid pad hole 206.

[0025] See also Figure 1-4In this embodiment, a wear-resistant pad 201 is provided at the lower end of the hexagonal pattern sole 101, and the wear-resistant pad 201 is fixedly connected to the hexagonal pattern sole 101; a thickened wear-resistant layer 202 is provided at the center arch of the wear-resistant pad 201, and the thickened wear-resistant layer 202 is integrally formed with the wear-resistant pad 201; the front and rear ends of the thickened wear-resistant layer 202 are respectively provided with a forefoot anti-skid pad hole 203 and a heel anti-skid pad hole 204; a wear-resistant ring 205 is provided on one side of the forefoot anti-skid pad hole 203, and the wear-resistant ring 205 is integrally formed with the wear-resistant pad 201, and the wear-resistant ring 205 is located below the big toe bone; the wear-resistant ring 205 A force point anti-skid pad hole 206 is set inside, and the force point anti-skid pad hole 206 is integrated with the wear-resistant ring 205; the forefoot anti-skid pad 102 is set inside the forefoot anti-skid pad hole 203, and the forefoot anti-skid pad 102 is integrated with the lower end surface of the hexagonal pattern sole 101; the heel anti-skid pad hole 204 is set inside the heel anti-skid pad 103, and the heel anti-skid pad 103 is integrated with the lower end surface of the hexagonal pattern sole 101; the force point anti-skid pad hole 206 is set inside the sole force point anti-skid pad 104, and the sole force point anti-skid pad 104 is integrated with the lower end surface of the hexagonal pattern sole 101.

[0026] During work, the forefoot anti-skid pad 102, the heel anti-skid pad 103, the foot support point anti-skid pad 104 of the hexagonal pattern sole 101 are combined with the forefoot anti-skid pad holes 203, the heel anti-skid pad holes 204, and the support point anti-skid pad holes 206 of the wear-resistant pad 201 to achieve both anti-skid and wear-resistant performance, effectively improving the anti-skid performance while increasing the service life; solving the problem that the existing soles cannot achieve both anti-skid and wear-resistant performance at the friction points between the foot and the ground, resulting in a good wear-resistant sole not being anti-skid enough;

[0027] Next, the thickened wear-resistant layer 202 is used to improve the wear resistance of the entire arch area of ​​the sole, reduce the problem of sole scratches when walking on sharp ground, and protect the overall structure. The hexagonal anti-slip pattern on the lower end surface of the hexagonal pattern sole 101 effectively improves the ground grip on the roadside in rainy days, thereby improving walking comfort and stability.

[0028] Through the above steps, the forefoot anti-skid pad 102, the heel anti-skid pad 103, the sole traction point anti-skid pad 104 of the hexagonal pattern sole 101 are combined with the forefoot anti-skid pad hole 203, the heel anti-skid pad hole 204, and the traction point anti-skid pad hole 206 of the wear-resistant pad 201 to achieve both anti-skid and wear-resistant performance, effectively improving the anti-skid performance while increasing the service life, avoiding the problem of existing soles that are not anti-skid enough because the anti-skid and wear-resistant performance of the traction point between the foot and the ground cannot be taken into account.

[0029] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A hexagonal anti-skid sole pattern device, comprising an anti-skid sole assembly (1), characterized in that: The invention also includes a wear-resistant reinforcement component (2) and a shoe upper connection layer (3); the upper end of the anti-skid sole component (1) is provided with the shoe upper connection layer (3), and the shoe upper connection layer (3) and the anti-skid sole component (1) are integrally formed; the lower end of the anti-skid sole component (1) is provided with the wear-resistant reinforcement component (2), and the wear-resistant reinforcement component (2) is fixedly connected to the anti-skid sole component (1); the anti-skid sole component (1) includes a hexagonal pattern sole (101), a forefoot anti-skid pad (102), a heel anti-skid pad (103), and a foot support point anti-skid pad (104); the wear-resistant reinforcement component (2) includes a wear-resistant pad (201), a thickened wear-resistant layer (202), a forefoot anti-skid pad hole (203), a heel anti-skid pad hole (204), a wear-resistant ring (205), and a support point anti-skid pad hole (206).

2. The hexagonal anti-skid sole pattern device according to claim 1, characterized in that: A wear-resistant pad (201) is provided at the lower end of the hexagonal pattern sole (101), and the wear-resistant pad (201) is fitted and fixedly connected to the hexagonal pattern sole (101).

3. The hexagonal anti-skid sole pattern device according to claim 2, characterized in that: A thickened wear-resistant layer (202) is provided at the central arch portion of the wear-resistant pad (201), and the thickened wear-resistant layer (202) and the wear-resistant pad (201) are integrally formed.

4. The hexagonal anti-skid sole pattern device according to claim 3, characterized in that: The front and rear ends of the thickened wear-resistant layer (202) are respectively provided with a forefoot anti-skid pad hole (203) and a heel anti-skid pad hole (204); a wear-resistant ring (205) is provided on one side of the forefoot anti-skid pad hole (203), and the wear-resistant ring (205) and the wear-resistant pad (201) are integrally formed, and the wear-resistant ring (205) is located below the big toe phalanx; a force point anti-skid pad hole (206) is provided inside the wear-resistant ring (205), and the force point anti-skid pad hole (206) and the wear-resistant ring (205) are integrally formed.

5. The hexagonal anti-skid sole pattern device according to claim 4, characterized in that: A forefoot anti-skid pad (102) is provided inside the forefoot anti-skid pad hole (203), and the forefoot anti-skid pad (102) and the lower end surface of the hexagonal pattern sole (101) are integrally formed.

6. The hexagonal anti-skid sole pattern device according to claim 4, characterized in that: A heel anti-skid pad (103) is provided inside the heel anti-skid pad hole (204), and the heel anti-skid pad (103) and the lower end surface of the hexagonal pattern sole (101) are integrally formed.

7. The hexagonal anti-skid sole pattern device according to claim 4, characterized in that: A sole support point anti-skid pad (104) is provided inside the support point anti-skid pad hole (206), and the sole support point anti-skid pad (104) is integrally formed with the lower end surface of the hexagonal pattern sole (101).