Sole anti-skid structure of badminton sneaker
By designing a removable forefoot and heel anti-slip structure in badminton shoes, the problem of uneven wear of the anti-slip structure leading to shoe failure in existing technologies has been solved. This achieves uniform wear of the sole and continuous anti-slip effect, improving comfort and service life.
Patent Information
- Application Number
- CN202423314272.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The anti-slip structure of existing badminton shoes is usually disposable. Severe wear on the forefoot can render the entire shoe unusable, preventing it from being fully utilized.
Design a detachable anti-slip structure for the sole, including a forefoot pad and a heel pad, which are connected by mounting holes and anti-slip studs. The anti-slip studs are detachable and replaceable. Combine with an air cushion component and shock-absorbing pads to enhance comfort and anti-slip performance.
It achieves even wear on the sole, extends the shoe's lifespan, improves comfort and slip resistance, adapts to the force exertion habits of different athletes, and avoids localized wear affecting overall slip resistance.
Smart Images

Figure CN223489247U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of badminton shoe technology, and in particular to the anti-slip structure of the sole of badminton shoes. Background Technology
[0002] In badminton, the performance of athletic shoes is crucial to the athlete's performance. The anti-slip structure of the sole directly affects the athlete's flexibility, safety, and explosive power. Badminton requires athletes to jump and lean forward frequently, so the forefoot of the sole usually experiences more wear.
[0003] Current badminton shoes have good anti-slip designs, but the anti-slip structure is usually disposable. The forefoot wears more than the heel, so the heel is not worn out yet, but the forefoot is already severely worn, rendering the shoe unusable and preventing it from being fully utilized.
[0004] Therefore, the anti-slip structures of current badminton shoes are usually disposable, with the forefoot experiencing higher wear than the heel. This results in the forefoot being severely worn even before the heel is damaged, rendering the shoe unusable and preventing it from being fully utilized. A new anti-slip structure for badminton shoes could be designed, replacing the main protective structure of the sole to ensure consistent wear on the forefoot and heel, thus maximizing the shoe's usability. Utility Model Content
[0005] To overcome the problem that the anti-slip structure of current badminton shoes is usually disposable, the forefoot wears out more than the heel, resulting in the forefoot being severely worn even before the heel is damaged, rendering the shoes unusable and preventing them from being fully utilized.
[0006] The technical solution of this utility model is as follows: a non-slip structure for the sole of a badminton shoe, comprising a shoe body, a forefoot pad, a heel pad, and an air cushion assembly. The air cushion assembly is located below the shoe body, the forefoot pad is located below the air cushion assembly, and the heel pad is located below the air cushion assembly. The forefoot pad is located on one side of the heel pad. Multiple sets of mounting holes are provided on the surface of both the forefoot pad and the heel pad. Multiple sets of anti-slip studs are provided inside both the forefoot pad and the heel pad. The number of anti-slip pads and mounting holes are the same and correspond to each other. The anti-slip studs are engaged with the forefoot pad through the mounting holes and the anti-slip studs are engaged with the heel pad through the mounting holes.
[0007] Preferably, by installing air cushion components on the forefoot and heel pads, the shoe can absorb the impact of jumping and landing, making the foot more flexible. By dividing the sole into two parts with forefoot and heel pads, it better conforms to the structure of the human foot. Multiple sets of anti-slip studs form the main anti-slip structure of the sole. The anti-slip studs can be installed under the forefoot and heel pads through the mounting holes, and are easy to remove. When an anti-slip stud is severely worn, it can be removed and a new anti-slip stud can be installed through the mounting holes, thus making full use of the badminton shoe.
[0008] Preferably, the bottom of the anti-slip stud has a hexagonal structure and a recessed area.
[0009] Preferably, multiple sets of anti-slip ridges are fixedly installed on the underside of the forefoot pad, with the anti-slip ridges located between the gaps of the multiple sets of anti-slip studs.
[0010] Preferably, the air cushion assembly includes a power cushion and a sole surface. The power cushion is fixedly installed on the underside of the shoe body, and two sets of power cushions are provided. The sole surface is fixedly installed on the underside of the power cushion.
[0011] Preferably, two sets of arch support strips are fixedly installed between the forefoot pad and the heel pad, and the arch support strips are fixedly connected to the sole surface.
[0012] Preferably, four sets of shock-absorbing pads are fixedly installed under the sole, with two sets of shock-absorbing pads located inside the forefoot pad and the heel pad respectively, and the other two sets of shock-absorbing pads located between the forefoot pad and the heel pad.
[0013] Preferably, an anti-slip strip is fixedly installed on the underside of the sole, located on the outer periphery of the forefoot pad and heel pad, and the coefficient of friction of the anti-slip strip is greater than that of the anti-slip studs.
[0014] The beneficial effects of this utility model are:
[0015] This invention divides the sole into two parts by using a forefoot pad and a heel pad, which better conforms to the structure of the human foot and improves the comfort of athletes. Multiple sets of anti-slip studs form the main anti-slip structure of the sole, ensuring a stable anti-slip effect for the athletic shoe. The anti-slip studs can be installed under the forefoot pad and heel pad through mounting holes, and are easy to remove. When a stud is severely worn, it can be removed and a new stud can be installed using the mounting holes, preventing severe localized wear from affecting the overall anti-slip effect of the sole. This ensures good anti-slip performance of the sole and maximizes the utilization of the badminton shoe. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural illustration of the anti-slip structure of the sole of the badminton shoe of this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional schematic of the anti-slip stud structure of the sole of the badminton shoe of this utility model.
[0018] Figure 3 The diagram shown is an exploded three-dimensional structural rendering of the anti-slip structure of the sole of the badminton shoe of this utility model.
[0019] Figure 4 The diagram shown is an exploded three-dimensional structural diagram of the anti-slip structure of the badminton shoe sole of this utility model.
[0020] Explanation of reference numerals in the attached diagram: 1. Shoe body; 2. Forefoot pad; 201. Anti-slip ridge; 3. Heel pad; 401. Mounting hole; 402. Anti-slip stud; 403. Dent; 501. Dynamic pad; 502. Outsole; 6. Arch support strip; 7. Shock-absorbing pad; 8. Anti-slip strip. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-4 This utility model provides an embodiment of an anti-slip structure for the sole of a badminton shoe, comprising a shoe body 1, a forefoot pad 2, a heel pad 3, and an air cushion assembly. The air cushion assembly is located below the shoe body 1, the forefoot pad 2 is located below the air cushion assembly, and the heel pad 3 is located below the air cushion assembly. The forefoot pad 2 is located on one side of the heel pad 3. Multiple sets of mounting holes 401 are formed on the surfaces of both the forefoot pad 2 and the heel pad 3. Multiple sets of anti-slip studs 402 are provided inside both the forefoot pad 2 and the heel pad 3. The number of anti-slip pads and mounting holes 401 are the same and correspond to each other. The anti-slip studs 402 are engaged with the forefoot pad 2 through the mounting holes 401, and the anti-slip studs 402 are engaged with the heel pad 3 through the mounting holes 401. The heel pad 3 is snapped together; the air cushion component is installed on the forefoot pad 2 and the heel pad 3, which can absorb the impact of jumping and falling, making the foot more flexible. The forefoot pad 2 and the heel pad 3 divide the sole into two parts, which is more in line with the human foot structure. Multiple anti-slip studs 402 are set to form the main anti-slip structure of the sole. The anti-slip studs 402 can be installed under the forefoot pad 2 and the heel pad 3 through the mounting holes 401, and are easy to remove. When a certain anti-slip stud 402 is severely worn, it can be removed and a new anti-slip stud 402 can be installed through the mounting holes 401, so as to make full use of the badminton shoe.
[0023] Please see Figures 1-3In this embodiment, the bottom of the anti-slip stud 402 has a hexagonal structure, and a recess 403 is provided on the bottom of the anti-slip stud 402. The hexagonal structure can increase the contact area with the ground and provide strong support. By setting the recess 403, a local adsorption structure can be formed, which increases the adsorption force between the sole and the ground by utilizing the principle of air pressure, thereby providing a better anti-slip effect when moving quickly and stopping suddenly. Multiple sets of anti-slip ridges 201 are fixedly installed under the forefoot pad 2. The anti-slip ridges 201 are located between the gaps of the multiple sets of anti-slip studs 402. By setting the anti-slip ridges 201, the anti-slip effect of the forefoot pad 2 can be increased, which is suitable for the high wear of the forefoot in badminton.
[0024] Please see Figure 4 In this embodiment, the air cushion assembly includes a power pad 501 and a sole surface 502. The power pad 501 is fixedly installed under the shoe body 1, and two sets of power pads 501 are provided. The sole surface 502 is fixedly installed under the power pad 501. By setting the power pad 501, the impact force of jumping and falling can be absorbed, making the foot more flexible. The forefoot pad 2 and the heel pad 3 are installed on the sole surface 502. Two sets of arch support strips 6 are fixedly installed between the forefoot pad 2 and the heel pad 3, and the arch support strips 6 are fixedly connected to the sole surface 502. By setting the arch support strips 6, the torsional resistance and stability of the sole can be enhanced, reducing the risk of ankle sprains. Risks: Four sets of shock-absorbing pads 7 are fixedly installed under the sole 502, two sets of shock-absorbing pads 7 are located inside the forefoot pad 2 and the heel pad 3 respectively, and the other two sets of shock-absorbing pads 7 are located between the forefoot pad 2 and the heel pad 3; by setting the shock-absorbing pads 7, the impact during the bouncing process can be further absorbed, and the arch of the foot between the forefoot pad 2 and the heel pad 3 can be supported, thereby improving the support of the sole 502; an anti-slip strip 8 is fixedly installed under the sole 502, located on the outer periphery of the forefoot pad 2 and the heel pad 3, and the coefficient of friction of the anti-slip strip 8 is greater than that of the anti-slip studs 402; by setting the anti-slip strip 8, the sole 502 can be effectively prevented from lateral slipping.
[0025] When working, the forefoot pad 2 and heel pad 3 divide the sole 502 into two parts, which better conforms to the human foot structure and improves the athlete's comfort.
[0026] The main anti-slip structure of the sole is composed of multiple sets of anti-slip studs 402. The hexagonal structure of the anti-slip studs 402 can increase the contact area with the ground and provide strong support. The pits 403 on the surface of the anti-slip studs 402 can form a local adsorption structure when in contact with the ground. By using the principle of air pressure, the adsorption force between the sole and the ground is increased, thus providing a better anti-slip effect when moving quickly and stopping suddenly.
[0027] The anti-slip stud 402 can be installed under the forefoot pad 2 and heel pad 3 using the mounting hole 401, and it is easy to remove the anti-slip stud 402. When a certain anti-slip stud 402 is severely worn, it can be removed and a new anti-slip stud 402 can be installed using the mounting hole 401. This prevents different athletes from having different force application habits, which may lead to more severe local wear in some parts and affect the overall anti-slip effect of the sole surface 502. Replacing with a new anti-slip stud 402 can ensure that the anti-slip effect of the sole surface 502 is good, and the badminton shoe can be fully utilized.
[0028] Through the above steps, the outsole 502 is divided into two parts by the forefoot pad 2 and the heel pad 3, which better conforms to the structure of the human foot and improves the comfort of athletes. Multiple sets of anti-slip studs 402 form the main anti-slip structure of the outsole, ensuring a stable anti-slip effect for the sports shoe. The anti-slip studs 402 can be installed under the forefoot pad 2 and the heel pad 3 through the mounting holes 401, and it is easy to remove the anti-slip studs 402. When a certain anti-slip stud 402 is severely worn, it can be removed and a new anti-slip stud 402 can be installed through the mounting holes 401 to prevent severe local wear from affecting the overall anti-slip effect of the outsole 502, thereby ensuring a good anti-slip effect of the outsole 502 and making full use of the badminton shoe. This solves the problem that the anti-slip structure of current badminton shoes is usually disposable, and the wear on the forefoot is higher than that on the heel. This results in the forefoot being severely worn before the heel is damaged, leading to the shoe being unusable and not being fully utilized.
[0029] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A non-slip structure for the sole of a badminton shoe, comprising a shoe body (1), characterized in that: It also includes a forefoot pad (2), a heel pad (3) and an air cushion assembly. The air cushion assembly is located below the shoe body (1). The forefoot pad (2) is located below the air cushion assembly. The heel pad (3) is located below the air cushion assembly. The forefoot pad (2) is located on one side of the heel pad (3). The surfaces of the forefoot pad (2) and the heel pad (3) are provided with multiple sets of mounting holes (401). The interiors of the forefoot pad (2) and the heel pad (3) are provided with multiple sets of anti-slip studs (402). The number of anti-slip pads and mounting holes (401) are the same and correspond to each other. The anti-slip studs (402) are engaged with the forefoot pad (2) through the mounting holes (401) and the anti-slip studs (402) are engaged with the heel pad (3) through the mounting holes (401).
2. The anti-slip structure of the sole of the badminton shoe according to claim 1, characterized in that: The bottom of the anti-slip stud (402) has a hexagonal structure, and a recess (403) is provided on the bottom of the anti-slip stud (402).
3. The anti-slip structure of the sole of the badminton shoe according to claim 1, characterized in that: Multiple sets of anti-slip ridges (201) are fixedly installed on the underside of the forefoot pad (2), and the anti-slip ridges (201) are located between the gaps of multiple sets of anti-slip studs (402).
4. The anti-slip structure of the sole of the badminton shoe according to claim 1, characterized in that: The air cushion assembly includes a power cushion (501) and a sole surface (502). The power cushion (501) is fixedly installed under the shoe body (1). There are two sets of power cushions (501). The sole surface (502) is fixedly installed under the power cushion (501).
5. The anti-slip structure of the sole of the badminton shoe according to claim 4, characterized in that: Two sets of arch support strips (6) are fixedly installed between the forefoot pad (2) and the heel pad (3), and the arch support strips (6) are fixedly connected to the sole surface (502).
6. The anti-slip structure of the sole of the badminton shoe according to claim 4, characterized in that: Four sets of shock-absorbing pads (7) are fixedly installed under the sole (502). Two sets of shock-absorbing pads (7) are located inside the forefoot pad (2) and the heel pad (3) respectively, and the other two sets of shock-absorbing pads (7) are located between the forefoot pad (2) and the heel pad (3).
7. The anti-slip structure of the sole of the badminton shoe according to claim 4, characterized in that: An anti-slip strip (8) is fixedly installed on the underside of the sole (502). The anti-slip strip (8) is located on the outer periphery of the forefoot pad (2) and the heel pad (3). The coefficient of friction of the anti-slip strip (8) is greater than that of the anti-slip stud (402).