Basketball shoe sole with stability and rebound resilience
By setting a support plate and a breathable structure in the sole of a basketball shoe, the problem that the existing basketball shoe sole cannot take into account resilience, support and stability is solved, the shock absorption and support performance of the basketball shoe are improved, and sports injuries are reduced.
Patent Information
- Application Number
- CN202422968152.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-12-03
AI Technical Summary
Existing basketball shoe soles cannot simultaneously provide good resilience, support, stability and shock absorption, resulting in uneven force on the soles of the feet during exercise, which can easily cause fatigue and sports injuries.
A support plate is set inside the sole of the basketball shoe. The support plate includes a cylindrical support part and a heel support part. The inner cavity of the cylindrical support part forms a shock-absorbing space, and the front side surface of the heel support part is upwardly tilted to form an arc-shaped surface. The hardness of the support plate is higher than that of the sole body. Combined with the breathable through holes and hollow breathable grooves, the shock-absorbing and support effects are improved.
The cushioning and rebound performance of the basketball shoe soles are improved, providing stable foot support, meeting the performance requirements of basketball and reducing sports injuries.
Smart Images

Figure CN223415771U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shoe materials, in particular to a basketball shoe sole with both stability and resilience. Background Art
[0002] With the growing popularity of basketball, basketball shoes have become essential for both professional players and amateur enthusiasts. Basketball is a highly intense sport, requiring constant starting, stopping, jumping, and rapid side-to-side movements. This high intensity and increased risk of injuries are common. To better prepare athletes for the intense intensity of basketball and protect them from injury, a pair of basketball shoes with excellent resilience, support, stability, comfort, and shock absorption are essential to enhance performance.
[0003] However, existing basketball shoe soles often fail to simultaneously address multiple performance requirements. Most basketball shoe soles are typically made of a single-piece, flexible, injection-molded material. Forces on the soles of the feet are uneven during exercise, and because the soles are made of a single-piece, injection-molded material, the softness of each area of the sole is comparable. This results in poor support for the arches during exertion, which can easily lead to fatigue during prolonged exercise. Furthermore, the arches have poor torsional resistance, compromising safety. Furthermore, due to the low center of gravity of basketball, the soles of basketball shoes require even greater stability and support. Utility Model Content
[0004] The purpose of the utility model is to provide a basketball shoe sole with both stability and resilience, good shock absorption performance, good resilience performance, and the ability to provide stable support for the foot, thereby meeting the performance requirements of basketball for the sole.
[0005] In order to achieve the above objectives, the solution of the present invention is:
[0006] The shoe is constructed so that the shoe is in a state of being stable and resilient, and the shoe is constructed so that the user can move freely along the shoe surface and the foot is in a state of being easily moved.
[0007] The cylindrical support members are connected together by a plurality of rib connecting strips, and the cylindrical support members and the rib connecting strips form a support area corresponding to the bottom contour of the sole body.
[0008] The plurality of tendon-bone connecting strips are arranged along the inner side to the outer side of the sole body.
[0009] The longitudinal section of each cylindrical support member is triangular, and the upper end surfaces on both sides of each cylindrical support member are respectively tilted upward to form a curved support portion.
[0010] The upper end surface and the lower end surface of each cylindrical support member are respectively provided with ventilation holes.
[0011] The sole body is provided with hollow ventilation grooves at positions corresponding to the ventilation holes.
[0012] The hardness of the support plate is greater than the hardness of the sole body.
[0013] The support plate is a TPU plate or a nylon plate, and the sole body is an EVA popcorn sole.
[0014] The bottom of the sole body is arc-shaped, and the front and rear ends of the sole body are gradually tilted upward.
[0015] After adopting the above structure, the utility model provides a basketball shoe sole with both stability and resilience. By setting a support plate in the sole body, first, a plurality of cylindrical support members are set from front to back at the position of the support plate corresponding to the arch of the foot, and the inner cavity of each cylindrical support member forms a shock-absorbing space, thereby forming a buffer hole structure in the arch of the foot of the sole body. On the one hand, it can reduce the weight of the sole body, and on the other hand, it can also provide a certain shock-absorbing space and improve the shock-absorbing performance of the sole body. Secondly, a heel support member is set at the position of the support plate corresponding to the heel, and the inner cavity of the heel support member also forms a shock-absorbing space, thereby also forming a buffer hole structure in the heel of the sole body, which is conducive to the exertion of explosive power during exercise, and can also achieve the effect of weight reduction and shock absorption. Finally, the front side surface of the heel support member is tilted upward to form an arc-shaped surface that is compatible with the human heel, which can play a role in stabilizing the support of the human heel.
[0016] Therefore, the utility model provides a basketball shoe sole with both stability and resilience, which has good shock absorption performance, good resilience performance, and can provide stable support for the foot, meeting the performance requirements of basketball for the sole.
[0017] Furthermore, each of the tubular support members is connected together by a plurality of rib connecting strips. Each of the tubular support members and the rib connecting strips forms a support area corresponding to the bottom contour of the sole body. A hollow space is formed between adjacent rib connecting strips. When the sole body is bent, the rib connecting strips can bend along with the sole body, thereby improving the flexibility of the sole.
[0018] Furthermore, the longitudinal section of each of the cylindrical support members is triangular, and the upper end surfaces on both sides of each of the cylindrical support members are respectively tilted upward to form a curved support portion, which can effectively improve the support stability for the side of the foot.
[0019] Furthermore, ventilation holes are respectively provided on the upper and lower end surfaces of each of the cylindrical support members, and hollow ventilation grooves are respectively opened on the sole body corresponding to the positions of each of the ventilation holes, which can not only reduce the weight of the sole body but also achieve ventilation effect.
[0020] Furthermore, the bottom of the sole body is arc-shaped, and the front and rear ends of the sole body are gradually tilted upward, so that the sole body forms a contour with a rolling feeling, which is conducive to the accelerated start of basketball actions. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic structural diagram of a basketball shoe sole having both stability and resilience according to the present invention;
[0022] Figure 2 This is a schematic structural diagram of the support plate in the present invention;
[0023] Figure 3The utility model is a schematic diagram of the bottom structure of a basketball shoe sole with both stability and resilience.
[0024] In the picture:
[0025] Sole body 1; hollow ventilation groove 11;
[0026] Cylindrical support member 2; curved support portion 21;
[0027] Breathable through hole 22; heel support 3;
[0028] Arc-shaped surface 31; tendon-bone connecting strip 4;
[0029] Shock-absorbing space 20; heel portion 101;
[0030] Forefoot portion 102; Arch portion 103;
[0031] Inside 104; outside 105. DETAILED DESCRIPTION
[0032] In order to further explain the technical solution of the present invention, the present invention will be described in detail below through specific embodiments.
[0033] A basketball shoe sole having both stability and resilience, such as Figure 1-Figure 3 As shown, it includes a sole body 1 and a support plate embedded in the sole body 1, and the sole body 1 and the support plate are connected together in an integrally formed manner.
[0034] The position of the sole body 1 corresponding to the heel of the human body is set as the heel portion 101, the position of the sole body 1 corresponding to the front of the sole of the human body is set as the forefoot portion 102, the position of the sole body 1 corresponding to the arch of the human body is set as the arch portion 103, the position of the sole body 1 corresponding to the inner side of the instep is the inner side 104, and the position of the sole body 1 corresponding to the outer side of the instep is the outer side 105. The support plate extends from the forefoot portion 102 of the sole body 1 to the heel portion 101. The position of the support plate corresponding to the arch portion 103 is provided with a plurality of cylindrical support members 2 from front to back. The inner cavity of each cylindrical support member 2 forms a shock absorbing space 20. In this embodiment, there are two cylindrical support members 2. The longitudinal cross-section of each cylindrical support member 2 is triangular. The wider ends of each cylindrical support member 2 are arranged close to each other, and the narrower ends of each cylindrical support member 2 are arranged apart. The upper end surfaces on both sides of each cylindrical support member 2 are respectively tilted upward to form a curved support portion 21, thereby providing effective support for the foot.
[0035] A heel support 3 is provided at the position of the support plate corresponding to the heel portion 101. The front side surface of the heel support 3 is upwardly tilted to form an arc surface 31 that is adapted to the human heel. According to the low center of gravity characteristic of basketball, the rear side surface of the heel support 3 is designed to be exposed outside the sole body 1 and to be closed. The inner cavity of the heel support 3 also forms a shock-absorbing space 20.
[0036] Each tubular support member 2 is connected together by a plurality of rib connecting strips 4. Each tubular support member 2 and the rib connecting strips 4 form a support area corresponding to the bottom contour of the sole body 1. In this embodiment, there are two rib connecting strips 4, which are arranged along the inner side 104 to the outer side 105 of the sole body 1.
[0037] After adopting the above structure, the present invention provides a basketball shoe sole that has both stability and resilience. By setting a support plate within the sole body 1, first, a plurality of cylindrical support members 2 are provided from front to back at the position of the support plate corresponding to the arch portion 103. The inner cavity of each cylindrical support member 2 forms a shock-absorbing space 20, thereby forming a buffer hole structure in the arch portion 103 of the sole body 1. On the one hand, this can reduce the weight of the sole body 1, and on the other hand, it can also provide a certain amount of shock-absorbing space, thereby improving the shock-absorbing performance of the sole body 1. Secondly, a heel support member 3 is provided at the position of the support plate corresponding to the heel portion 101. The inner cavity of the heel support member 3 also forms a shock-absorbing space 20, thereby also forming a buffer hole structure in the heel portion of the sole body 1, which is conducive to the exertion of explosive power during exercise and can also achieve the effects of weight reduction and shock absorption. Finally, the front side surface of the heel support 3 is tilted upward to form an arc-shaped surface 31 that is adapted to the human heel, which can provide stable support for the human heel. The upper end surfaces on both sides of each tubular support 2 are tilted upward to form a curved support portion 21, which can effectively improve the support stability for the side of the foot.
[0038] Therefore, the utility model provides a basketball shoe sole with both stability and resilience, which has good shock absorption performance, good resilience performance, and can provide stable support for the foot, meeting the performance requirements of basketball for the sole.
[0039] Furthermore, ventilation holes 22 are respectively provided on the upper and lower end surfaces of each cylindrical support member 2, and hollow ventilation grooves 11 are respectively opened at the positions corresponding to the ventilation holes 22 of the sole body 1, which can not only reduce the weight of the sole body 1, but also achieve a ventilation effect.
[0040] Furthermore, the hardness of the support plate is greater than the hardness of the sole body 1 , the support plate is a TPU plate or a nylon plate, and the sole body 1 is an EVA popcorn sole, which can ensure the resilience and stability of the sole body 1 .
[0041] Furthermore, the bottom of the sole body 1 is arc-shaped, and the front and rear ends of the sole body 1 gradually rise upward, so that the sole body 1 forms a contour with a rolling feeling, which is conducive to the accelerated start of basketball actions.
[0042] The above embodiments and drawings do not limit the product form and style of the present invention. Any appropriate changes or modifications made by ordinary technicians in the relevant technical field should be deemed to be within the patent scope of the present invention.
Claims
1. A basketball shoe sole having both stability and resilience, comprising a sole body and a support plate embedded in the sole body, wherein the position of the sole body corresponding to the heel of a human body is defined as a heel portion, the position of the sole body corresponding to the front of the sole of a human body is defined as a forefoot portion, the position of the sole body corresponding to the arch of a human body is defined as an arch portion, the position of the sole body corresponding to the inner side of the instep is defined as an inner side, and the position of the sole body corresponding to the outer side of the instep is defined as an outer side, the support plate extending from the forefoot portion of the sole body to the heel portion, and characterized in that: The support plate is provided with several cylindrical support members from front to back at the position corresponding to the arch of the foot, and the inner cavity of each cylindrical support member forms a shock-absorbing space. The support plate is provided with a heel support member at the position corresponding to the heel, and the front side surface of the heel support member is upwardly tilted to form an arc-shaped surface that matches the human heel. The rear side surface of the heel support member is exposed outside the sole body and is closed, and the inner cavity of the heel support member also forms a shock-absorbing space.
2. The basketball shoe sole with both stability and resilience according to claim 1, characterized in that: The cylindrical support members are connected together by a plurality of rib connecting strips, and the cylindrical support members and the rib connecting strips form a support area corresponding to the bottom contour of the sole body.
3. The basketball shoe sole with both stability and resilience according to claim 2, characterized in that: The plurality of tendon-bone connecting strips are arranged along the inner side to the outer side of the sole body.
4. The basketball shoe sole with both stability and resilience according to claim 1, characterized in that: The longitudinal section of each cylindrical support member is triangular, and the upper end surfaces on both sides of each cylindrical support member are respectively tilted upward to form a curved support portion.
5. The basketball shoe sole with both stability and resilience according to claim 1, characterized in that: The upper end surface and the lower end surface of each cylindrical support member are respectively provided with ventilation holes.
6. The basketball shoe sole with both stability and resilience according to claim 5, characterized in that: The sole body is provided with hollow ventilation grooves at positions corresponding to the ventilation holes.
7. The basketball shoe sole with both stability and resilience according to claim 1, characterized in that: The hardness of the support plate is greater than the hardness of the sole body.
8. The basketball shoe sole with both stability and resilience according to claim 7, characterized in that: The support plate is a TPU plate or a nylon plate, and the sole body is an EVA popcorn sole.
9. The basketball shoe sole with both stability and resilience according to claim 1, characterized in that: The bottom of the sole body is arc-shaped, and the front and rear ends of the sole body are gradually tilted upward.