A rubber shoe material with anti-slip structure
By incorporating wear-resistant blocks, drainage channels, and support plates into the rubber sole, the problems of rubber sole wear, slippage, and insufficient support are solved, achieving wear resistance, slip resistance, and shock absorption, making it suitable for use as sports shoes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN GANGRUO NEW MATERIAL TECHNOLOGY CO LTD
- Filing Date
- 2025-08-28
- Publication Date
- 2026-07-03
AI Technical Summary
Existing rubber soles are prone to wear and tear during wear, slip when wet, and lack sufficient foot support, resulting in a short lifespan and poor comfort, making them particularly unsuitable for use as athletic shoes.
High-density abrasion-resistant blocks are set on the outer periphery of the rubber shoe material, large-diameter drainage channels are provided at the bottom, an arch support block is added, and a stable support plate is provided at the ball of the foot and heel. Foamed rubber material is used to improve abrasion resistance and drainage, and a built-in carbon plate support plate is used to provide support and shock absorption.
It improves the abrasion resistance, drainage and support of the sole, has a significant anti-slip effect, reduces wear and the risk of slipping on wet surfaces, increases service life and comfort, and is suitable for use as an athletic shoe.
Smart Images

Figure CN224440531U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rubber technology, and more specifically to a rubber shoe material with an anti-slip structure. Background Technology
[0002] As people's living standards continue to improve, their pursuit of shoes is also increasing. Existing shoe soles, especially running shoe soles, mostly increase friction through decorative patterns or grooves to prevent slipping on dry surfaces. To achieve wear resistance, existing soles generally use a single piece of rubber material to balance slip resistance and durability. However, rubber soles often encounter two problems in actual wear: First, when wearing shoes, the outer edge of the sole generally bears more force and friction with the floor, making it prone to wear and reducing the overall lifespan of the shoe. Second, when encountering puddles, water cannot drain quickly, reducing friction between the sole and the floor and increasing the risk of slipping. Third, insufficient arch support is lacking; during running and jumping, the arch does not receive enough support, leading to ankle sprains and poor comfort. These factors represent the limitations of rubber shoe materials. To address the aforementioned shortcomings, the inventors propose a rubber shoe material with an anti-slip structure. This material features high-density abrasion-resistant blocks along its outer periphery to enhance abrasion resistance. Additionally, the bottom of the shoe material has several drainage channels with large apertures to improve drainage. Furthermore, an arch support block is added to the arch area to improve support and comfort, resulting in better performance of the rubber shoe material.
[0003] To improve the anti-slip effect of rubber pads and give rubber shoe materials good anti-slip function, Chinese Patent (Authorization Announcement No.: CN216438642U) discloses a rubber shoe material with an anti-slip pattern structure. This utility model includes a shoe material body with an anti-slip layer on its surface. The anti-slip layer includes anti-slip units evenly distributed on the surface of the shoe material body and drainage grooves located between adjacent anti-slip units. The anti-slip units are staggered in both longitudinal and transverse directions, and each anti-slip unit is divided into several anti-slip blocks with right-angled edges. This utility model, through its unique pattern structure, enhances the roughness and friction between the sole and the ground after the sole is manufactured, effectively increasing anti-slip and drainage effects and extending the service life of the sole.
[0004] This solution still has some shortcomings in application. When rubber shoe materials are designed to have high abrasion resistance, a high-density rubber material is required. However, high-density rubber materials do not provide sufficient friction when rubbing against the floor. On the other hand, rubber materials with sufficient friction generally have average abrasion resistance. Therefore, it is necessary to use rubber materials of different densities in different sections of the sole to make the rubber shoe material have both abrasion resistance and anti-slip function. In addition, when rubber shoe materials are used as soles, they are frequently used for running and jumping, so they need to have good support and stability, especially for arch support. Therefore, the structure of the rubber shoe material needs to be improved to make it anti-slip and abrasion resistant, as well as shock absorption and stable support, making it suitable for use as a material for sports shoes. Utility Model Content
[0005] This utility model discloses a rubber shoe material with an anti-slip structure, the main purpose of which is to overcome the above-mentioned deficiencies and shortcomings of the existing technology.
[0006] The technical solution adopted in this utility model is as follows:
[0007] A rubber shoe material with an anti-slip structure includes a shoe material body, the shoe material body being foamed rubber, the bottom of which is provided with anti-slip protrusions, and a plurality of drainage grooves are provided between the anti-slip protrusions. The drainage grooves extend outward to form drainage gaps. A front abrasion-resistant sheet and a rear abrasion-resistant sheet are respectively bonded to the front and rear sides of the shoe material body. The front abrasion-resistant sheet has an "L" shape and extends inward to the forefoot. The rear abrasion-resistant sheet has a "U" shape. The forefoot and heel areas at the top of the shoe material body are provided with stabilizing support plates.
[0008] Furthermore, the arch portion at the top of the shoe material body is provided with a raised block, which has an arc-shaped structure that matches the curvature of the arch portion for a proper fit.
[0009] Furthermore, the front and rear wear-resistant pads are made of wear-resistant rubber material with a density of 1.15-1.35 g / cm³. The front and rear wear-resistant pads are provided with transverse anti-slip patterns that extend to the left and right sides in a continuous structure.
[0010] Furthermore, the drainage groove has a semi-cylindrical structure with a diameter of 1.5cm, and the front wear-resistant plate and the rear wear-resistant plate are respectively covered on the drainage opening.
[0011] Furthermore, there are a total of 5 drainage channels, arranged horizontally from front to back.
[0012] Furthermore, the anti-slip bumps have an irregular structure and anti-slip particles on the bottom, and the anti-slip bumps are at the same height as the transverse anti-slip texture.
[0013] Furthermore, the outer surface of the stabilizing support sheet is made of soft silicone, and a carbon plate support sheet is embedded within the soft silicone.
[0014] As can be seen from the above description of this utility model, compared with the prior art, the advantages of this utility model are as follows:
[0015] This invention firstly features front and rear abrasion-resistant plates on the front and rear sides of the shoe material, respectively. These plates are made of abrasion-resistant rubber and correspond to the friction points on the sole during wear, giving the shoe material excellent abrasion resistance and preventing easy wear due to ground friction, thus significantly extending its service life. Secondly, the main body of the shoe material is made of foamed rubber, providing good resilience. Furthermore, the shoe material features five semi-cylindrical transverse drainage channels from front to back, each 1.5cm in diameter and extending outwards. The drainage gaps in this invention, compared to existing soles with smaller diameter and narrower drainage channels, allow for the absorption of more water and faster drainage, preventing slippery soles and further improving slip resistance. Finally, the toe and heel areas of the shoe body are equipped with stabilizing support plates. The soft silicone surrounding these support plates provides shock absorption, while the built-in carbon fiber support plate provides support, preventing ankle sprains when jumping. Therefore, this invention features a novel structure, ingenious design, excellent slip resistance and wear resistance, and good shock absorption, making it suitable for widespread application. Attached Figure Description
[0016] Figure 1 This is a bottom view of the structure of this utility model.
[0017] Figure 2 This is a schematic diagram of the structure of this utility model.
[0018] Figure 3 This is a top view of the structure of this utility model. Detailed Implementation
[0019] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings.
[0020] like Figures 1 to 3 As shown, a rubber shoe material with an anti-slip structure includes a shoe material body 1, which is made of foamed rubber. The bottom of the foamed rubber is provided with anti-slip protrusions 2, and a plurality of drainage grooves 3 are provided between the anti-slip protrusions 2. The drainage grooves 3 extend outward to form drainage gaps 4. A front abrasion-resistant sheet 5 and a rear abrasion-resistant sheet 6 are respectively bonded to the front and rear sides of the shoe material body 1. The front abrasion-resistant sheet 5 has an "L" shape and extends to the ball of the foot on the inner side. The rear abrasion-resistant sheet 6 has a "U" shape. The ball of the foot and the heel of the top of the shoe material body 1 are provided with stabilizing support pieces 7.
[0021] Furthermore, the arch portion at the top of the shoe material body 1 is provided with a padding block 8, which has an arc-shaped structure that matches the curvature of the arch portion for a proper fit.
[0022] Furthermore, the front wear-resistant sheet 5 and the rear wear-resistant sheet 6 are made of wear-resistant rubber material with a density of 1.15-1.35 g / cm³. The front wear-resistant sheet 5 and the rear wear-resistant sheet 6 are provided with transverse anti-slip texture 9, which extends to the left and right sides in a continuous structure.
[0023] Furthermore, the drainage groove 3 has a semi-cylindrical structure with a diameter of 1.5cm, and the front wear-resistant plate 5 and the rear wear-resistant plate 6 are respectively covered on the drainage gap 4.
[0024] Furthermore, there are a total of 5 drainage channels 3, arranged horizontally from front to back.
[0025] Furthermore, the anti-slip bump 2 has an irregular structure and anti-slip particles 21 at the bottom, and the anti-slip bump 2 and the transverse anti-slip texture 9 are at the same height.
[0026] Furthermore, the outer surface of the stabilizing support sheet 7 is made of soft silicone 71, and a carbon plate support sheet 72 is built into the soft silicone 71.
[0027] Example: First, when the shoe body 1 is worn, the stress points of the sole are the forefoot, outer side, and heel, which are prone to wear. Therefore, the forefoot and heel of the shoe body 1 are bonded with a front abrasion plate 5 and a rear abrasion plate 6. The density of the front abrasion plate 5 and the rear abrasion plate 6 is 1.15-1.35g / cm³, which has good abrasion resistance. The front abrasion plate 5 and the rear abrasion plate 6 are provided with anti-slip patterns to improve the anti-slip effect. Next, when encountering waterlogged sections, the water first enters the drainage channel 3. There are 5 drainage channels 3 with a diameter of 1.5cm. After entering the drainage channel, the water is quickly discharged from the drainage hole 4 on the outside to prevent the sole from becoming slippery and affecting the anti-slip effect. Finally, when running and jumping, the forefoot and heel are provided with a stabilizing support plate 7. The outer surface of the stabilizing support plate 7 is made of soft silicone 71 to provide shock absorption, and the built-in carbon plate support plate 72 provides stable support to prevent ankle sprains.
[0028] As can be seen from the above description of this utility model, compared with the prior art, the advantages of this utility model are as follows:
[0029] This invention firstly features front and rear abrasion-resistant plates on the front and rear sides of the shoe material, respectively. These plates are made of abrasion-resistant rubber and correspond to the friction points on the sole during wear, giving the shoe material excellent abrasion resistance and preventing easy wear due to ground friction, thus significantly extending its service life. Secondly, the main body of the shoe material is made of foamed rubber, providing good resilience. Furthermore, the shoe material features five semi-cylindrical transverse drainage channels from front to back, each 1.5cm in diameter and extending outwards. The drainage gaps in this invention, compared to existing soles with smaller diameter and narrower drainage channels, allow for the absorption of more water and faster drainage, preventing slippery soles and further improving slip resistance. Finally, the toe and heel areas of the shoe body are equipped with stabilizing support plates. The soft silicone surrounding these support plates provides shock absorption, while the built-in carbon fiber support plate provides support, preventing ankle sprains when jumping. Therefore, this invention features a novel structure, ingenious design, excellent slip resistance and wear resistance, and good shock absorption, making it suitable for widespread application.
[0030] The above are merely specific embodiments of this utility model, but the design concept of this utility model is not limited thereto. Any non-substantial improvements made to this utility model using this concept should be considered as infringing on the protection scope of this utility model.
Claims
1. A rubber shoe material having a slip-resistant structure, characterized by: The shoe includes a shoe material body, which is made of foamed rubber. The bottom of the foamed rubber has anti-slip protrusions, and several drainage grooves are provided between the anti-slip protrusions. The drainage grooves extend outward to form drainage gaps. A front abrasion plate and a rear abrasion plate are respectively bonded to the front and rear sides of the shoe material body. The front abrasion plate has an "L" shape and extends to the ball of the foot on the inside. The rear abrasion plate has a "U" shape. The ball of the foot and the heel of the top of the shoe material body are provided with stabilizing support plates.
2. The rubber shoe material having an anti-slip structure according to claim 1, characterized in that: The arch portion at the top of the shoe material body is provided with a raised block, which has an arc-shaped structure that matches the curvature of the arch portion for a proper fit.
3. The rubber shoe material with anti-slip structure according to claim 1, characterized in that: The front and rear wear-resistant pads are made of wear-resistant rubber material with a density of 1.15-1.35 g / cm³. The front and rear wear-resistant pads are provided with transverse anti-slip patterns that extend to the left and right sides in a continuous structure.
4. The rubber shoe material with anti-slip structure according to claim 1, characterized in that: The drainage channel has a semi-cylindrical structure with a diameter of 1.5cm, and the front and rear wear-resistant plates are respectively installed on the drainage opening.
5. The rubber shoe material with anti-slip structure according to claim 1, characterized in that: There are a total of 5 drainage channels, arranged horizontally from front to back.
6. The rubber shoe material with anti-skid structure according to claim 3, characterized in that: The anti-slip bumps have an irregular structure and anti-slip particles on the bottom. The anti-slip bumps are at the same height as the horizontal anti-slip texture.
7. The rubber shoe material having an anti-slip structure according to claim 1, characterized in that: The outer surface of the stabilizing support sheet is made of soft silicone, and a carbon plate support sheet is embedded in the soft silicone.
Citation Information
Patent Citations
CN216438642U