Sneaker with damping middle bottom plate
Through multi-layer shock absorption components and anti-slip structural design, the problem of insufficient shock absorption in high-intensity sports is solved, achieving better foot protection and comfort.
Patent Information
- Application Number
- CN202422540077.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing sports shoes lack effective shock absorption performance during high-intensity sports and cannot effectively protect the joints and bones of the feet.
Designed with multi-layer shock absorbing components, including shock absorbing layers made of EVA, PU, TPE and rubber, as well as shock absorbing mesh and anti-slip groove structures, combined with anti-slip balls to enhance friction and stabilize grip.
Effectively absorb and disperse impact forces, reduce vibrations to feet and joints, improve exercise comfort and reduce fatigue, and extend the service life of sports shoes.
Smart Images

Figure CN223081186U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sports goods, in particular to a sports shoe with a shock-absorbing midsole. Background Art
[0002] With the improvement of people's living standards and the enhancement of health awareness, sports have become an indispensable part of people's daily lives. As an essential piece of equipment for sports, the performance and quality of sports shoes directly affect the effect and comfort of sports. During exercise, the feet are subjected to impact forces from the ground. Especially during high-intensity exercises such as running and jumping, such impact forces can cause greater harm to the foot joints, bones, and muscles. To reduce such impact forces and improve the shock-absorbing performance of sports shoes, continuous improvements and innovations have been made in the design and manufacture of sports shoes.
[0003] In fitness sports, the more intense the exercise, the more obvious the damage to human tissues. When people are exercising, they should have sufficient protection measures. However, some sports shoes on the market currently do not have strong elasticity and good buffering effects, and cannot provide good protection for the feet of sports personnel.
[0004] Therefore, there is an urgent need to provide a sports shoe with a shock-absorbing midsole to solve the above problems. Summary of the Utility Model
[0005] The technical problem to be solved by the utility model is to overcome the above-mentioned disadvantages of the prior art and provide a sports shoe with a shock-absorbing midsole.
[0006] To solve the above technical problem, a technical solution adopted by the utility model is: to provide a sports shoe with a shock-absorbing midsole, including a shoe sole. A shock-absorbing hole is opened on one side of the front end of the shoe sole. A plurality of anti-slip balls are fixedly connected to the bottom of the shoe sole. A shock-absorbing net is fixedly connected to the top of the inner wall of the shoe sole. A shoe upper is fixedly connected to the top of the shoe sole. A plurality of connection holes are opened on the shoe upper. A shock-absorbing component is arranged inside the shoe sole.
[0007] The utility model is further configured as: a plurality of anti-slip grooves are opened on one side of the bottom of the shoe sole, and the distance between every two anti-slip grooves is equal.
[0008] Through the above technical solution, when the shoe sole contacts the ground, the anti-slip grooves can form more tiny contact surfaces, thereby increasing the friction between the shoe sole and the ground. When you walk or exercise, this increased friction can effectively prevent slipping. At the same time, the equal distance between every two anti-slip grooves can ensure that the friction is more evenly distributed, enabling the entire shoe sole to provide stable grip in different directions.
[0009] The present utility model is further configured as follows: The shock absorption assembly includes a first shock absorption layer disposed on the top of the shoe sole plate. A second shock absorption layer is provided at the bottom of the first shock absorption layer. A third shock absorption layer is provided at the bottom of the second shock absorption layer. A fourth shock absorption layer is provided at the bottom of the third shock absorption layer. A shock absorption air cushion is provided at the bottom of the fourth shock absorption layer.
[0010] Through the above technical solution, firstly, preliminary shock absorption is carried out through the shock absorption net. Subsequently, the pressure on the shock absorption net will be transmitted to the first shock absorption layer. At the same time, the pressure on the first shock absorption layer will be transmitted to the second shock absorption layer, then the pressure on the second shock absorption layer will be transmitted to the third shock absorption layer, and then the pressure on the third shock absorption layer will be transmitted to the fourth shock absorption layer. Finally, the pressure on the fourth shock absorption layer will be transmitted to the shock absorption air cushion, thereby achieving the purpose of overall shock absorption.
[0011] The present utility model is further configured as follows: The lower surface of the first shock absorption layer is closely attached to the upper surface of the second shock absorption layer, and the first shock absorption layer is made of EVA material.
[0012] Through the above technical solution, the EVA material has excellent elasticity and can quickly deform when subjected to pressure to absorb the impact force. When you wear sports shoes to exercise, the first shock absorption layer can effectively buffer the reaction force from the ground and reduce the impact on the feet and joints. At the same time, the EVA material is relatively light, and the first shock absorption layer made of EVA material will not add too much weight to the sports shoes, making you feel more light and flexible when exercising.
[0013] The present utility model is further configured as follows: The second shock absorption layer is made of PU material, and the bottom of the second shock absorption layer matches the top of the third shock absorption layer.
[0014] Through the above technical solution, it can effectively absorb and disperse the impact force. When the foot touches the ground, the second shock absorption layer can buffer the reaction force from the ground, reduce the vibration of the foot joints and bones, and provide a comfortable wearing experience.
[0015] The present utility model is further configured as follows: The third shock absorption layer is made of TPE material, and the corresponding surfaces of the third shock absorption layer and the fourth shock absorption layer fit together.
[0016] Through the above technical solution, it can quickly deform when subjected to pressure and provide good shock absorption effect. When you wear sports shoes to exercise, the third shock absorption layer can effectively buffer the impact force from the ground.
[0017] The present utility model is further configured as follows: The fourth shock absorption layer is made of rubber material, and the corresponding surfaces of the fourth shock absorption layer and the shock absorption air cushion match.
[0018] Through the above technical solution, the rubber serves as the fourth shock-absorbing layer, which can withstand long-term friction and pressure, extending the service life of the sports shoes. Whether it is running, mountain climbing or other high-intensity sports, the fourth shock-absorbing layer made of rubber can maintain good performance.
[0019] The beneficial effects of the present utility model are as follows:
[0020] 1. By setting up the shock-absorbing components, the present utility model can effectively absorb and disperse these impact forces, reducing the vibration on the foot joints and bones, making the movement more comfortable and reducing the discomfort and fatigue caused by vibration.
[0021] 2. By setting up the shock-absorbing net, the present utility model can evenly disperse the impact force to the entire sole area, avoiding excessive local pressure, which helps to reduce the fatigue and injury of specific parts of the foot and improve the wearing comfort. Description of the Drawings
[0022] Figure 1 is the front view of the present utility model;
[0023] Figure 2 is the top view of the shoe sole of the present utility model;
[0024] Figure 3 is the front view of the shoe sole of the present utility model;
[0025] Figure 4 is the transverse cross-sectional view of the shoe sole of the present utility model;
[0026] Figure 5 is Figure 4 the partial enlarged view of the A position in
[0027] In the figure: 1, shoe sole; 101, anti-slip groove; 2, shock-absorbing hole; 3, anti-slip ball; 4, shock-absorbing net; 5, shoe upper; 6, connecting hole; 7, shock-absorbing component; 701, first shock-absorbing layer; 702, second shock-absorbing layer; 703, third shock-absorbing layer; 704, fourth shock-absorbing layer; 705, shock-absorbing air cushion. Detailed Embodiment
[0028] The following elaborates on the preferred embodiments of the present utility model in conjunction with the drawings, so that the advantages and features of the present utility model can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the protection scope of the present utility model.
[0029] Please refer to Figure 1 - Figure 5, a sports shoe with a shock-absorbing midsole, comprising a shoe sole 1. A shock-absorbing hole 2 is provided on one side of the front end of the shoe sole 1. A plurality of anti-slip grooves 101 are provided on one side of the bottom of the shoe sole 1, and the distance between every two anti-slip grooves 101 is equal. The anti-slip grooves 101 can form more tiny contact surfaces when the shoe sole 1 contacts the ground, thereby increasing the friction between the shoe sole 1 and the ground. When you walk or exercise, this increased friction can effectively prevent slipping. At the same time, the equal distance between every two anti-slip grooves 101 can ensure a more uniform distribution of the friction, enabling the entire shoe sole 1 to provide stable grip in different directions. A plurality of anti-slip balls 3 are fixedly connected to the bottom of the shoe sole 1. A shock-absorbing net 4 is fixedly connected to the top of the inner wall of the shoe sole 1. A shoe upper 5 is fixedly connected to the top of the shoe sole 1, and a plurality of connection holes 6 are provided on the shoe upper 5;
[0030] Such as Figure 4 And Figure 5As shown in the figure, a shock absorption component 7 is arranged inside the shoe sole plate 1. The shock absorption component 7 includes a first shock absorption layer 701 arranged on the top of the shoe sole plate 1. A second shock absorption layer 702 is arranged at the bottom of the first shock absorption layer 701. A third shock absorption layer 703 is arranged at the bottom of the second shock absorption layer 702. A fourth shock absorption layer 704 is arranged at the bottom of the third shock absorption layer 703. A shock absorption air cushion 705 is arranged at the bottom of the fourth shock absorption layer 704. First, initial shock absorption is carried out through the shock absorption net 4. Subsequently, the pressure on the shock absorption net 4 will be transmitted to the first shock absorption layer 701. At the same time, the pressure on the first shock absorption layer 701 will be transmitted to the second shock absorption layer 702, then the pressure on the second shock absorption layer 702 will be transmitted to the third shock absorption layer 703, subsequently the pressure on the third shock absorption layer 703 will be transmitted to the fourth shock absorption layer 704, and finally the pressure on the fourth shock absorption layer 704 will be transmitted to the shock absorption air cushion 705, thereby achieving the purpose of overall shock absorption. The lower surface of the first shock absorption layer 701 is closely attached to the upper surface of the second shock absorption layer 702, and the first shock absorption layer 701 is made of EVA material; the EVA material has excellent elasticity and can quickly deform when subjected to pressure to absorb the impact force. When you wear sports shoes to exercise, the first shock absorption layer 701 can effectively buffer the reaction force from the ground and reduce the impact on the feet and joints. At the same time, the EVA material is relatively light, and the first shock absorption layer 701 made of EVA material will not add too much weight to the sports shoes, making you feel more light and flexible when exercising. The second shock absorption layer 702 is made of PU material, and the bottom of the second shock absorption layer 702 matches the top of the third shock absorption layer 703; it can effectively absorb and disperse the impact force. When the foot touches the ground, the second shock absorption layer 702 can buffer the reaction force from the ground and reduce the vibration of the foot joints and bones, providing a comfortable wearing experience. The third shock absorption layer 703 is made of TPE material, and the corresponding surface of the third shock absorption layer 703 fits with the corresponding surface of the fourth shock absorption layer 704; it can quickly deform when subjected to pressure and provide good shock absorption effect. When you wear sports shoes to exercise, the third shock absorption layer 703 can effectively buffer the impact force from the ground. The fourth shock absorption layer 704 is made of rubber material, and the corresponding surface of the fourth shock absorption layer 704 matches the corresponding surface of the shock absorption air cushion 705; rubber, as the fourth shock absorption layer 704, can withstand long-term friction and pressure and extend the service life of the sports shoes. Whether in running, mountain climbing or other high-intensity sports, the fourth shock absorption layer 704 made of rubber material can maintain good performance.
[0031] When the utility model is in use, initially, primary shock absorption is carried out through the shock-absorbing net 4. Subsequently, the pressure on the shock-absorbing net 4 is transmitted to the first shock-absorbing layer 701. At the same time, the pressure on the first shock-absorbing layer 701 is transmitted to the second shock-absorbing layer 702, then the pressure on the second shock-absorbing layer 702 is transmitted to the third shock-absorbing layer 703, subsequently the pressure on the third shock-absorbing layer 703 is transmitted to the fourth shock-absorbing layer 704, and finally the pressure on the fourth shock-absorbing layer 704 is transmitted to the shock-absorbing air cushion 705, thereby achieving the purpose of overall shock absorption.
[0032] The above are only embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be similarly included in the patent protection scope of the present utility model.
Claims
1. A sports shoe with a shock-absorbing midsole, comprising a shoe sole plate (1), characterized in that: One side of the front end of the shoe sole (1) is provided with a shock-absorbing hole (2). A plurality of anti-slip balls (3) are fixedly connected to the bottom of the shoe sole (1). A shock-absorbing net (4) is fixedly connected to the top of the inner wall of the shoe sole (1). A shoe upper (5) is fixedly connected to the top of the shoe sole (1). A plurality of connecting holes (6) are formed in the shoe upper (5). A shock-absorbing assembly (7) is arranged inside the shoe sole (1).
2. The sports shoes with a shock-absorbing midsole according to claim 1, characterized in that: A plurality of anti-slip grooves (101) are formed on one side of the bottom of the shoe sole (1), and the distance between every two anti-slip grooves (101) is equal.
3. The sports shoes with a shock-absorbing midsole according to claim 1, characterized in that: The shock-absorbing assembly (7) includes a first shock-absorbing layer (701) arranged on the top of the shoe sole (1). A second shock-absorbing layer (702) is arranged at the bottom of the first shock-absorbing layer (701). A third shock-absorbing layer (703) is arranged at the bottom of the second shock-absorbing layer (702). A fourth shock-absorbing layer (704) is arranged at the bottom of the third shock-absorbing layer (703). A shock-absorbing air cushion (705) is arranged at the bottom of the fourth shock-absorbing layer (704).
4. The sports shoes with a shock-absorbing midsole according to claim 3, characterized in that: The lower surface of the first shock-absorbing layer (701) is closely attached to the upper surface of the second shock-absorbing layer (702), and the first shock-absorbing layer (701) is made of EVA material.
5. The sports shoes with a shock-absorbing midsole according to claim 3, characterized in that: The second shock-absorbing layer (702) is made of PU material, and the bottom of the second shock-absorbing layer (702) matches the top of the third shock-absorbing layer (703).
6. The sports shoes with a shock-absorbing midsole according to claim 3, characterized in that: The third shock-absorbing layer (703) is made of TPE material, and the corresponding surfaces of the third shock-absorbing layer (703) and the fourth shock-absorbing layer (704) fit together.
7. The sports shoes with a shock-absorbing midsole according to claim 3, characterized in that: The fourth shock-absorbing layer (704) is made of rubber material, and the corresponding surfaces of the fourth shock-absorbing layer (704) and the shock-absorbing air cushion (705) match.