Sneaker with anti-aging sole

By using movable iron plates and a return spring structure in certain parts of the sole, the problem of high overall anti-aging cost of existing sports shoes has been solved, achieving improved wear resistance and comfort, and reducing material consumption and production costs.

CN223585314UActive Publication Date: 2025-11-25DONGGUAN ZHIDI SHOES CO LTD
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Patent Information

Application Number
CN202422868056.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-25
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing athletic shoes use an integral structure for anti-aging treatment on the sole, resulting in high material costs and low production efficiency. Furthermore, wear and tear on the shoes when in contact with the ground is concentrated in the middle of the foot.

Method used

The shoe features a partial structural design with front and rear movable blocks made of iron sheets on the sole surface. The movement is limited by connecting straps and return springs. Combined with rubber top blocks and reinforced edges, it enhances wear resistance and stability. Traditional rubber materials are used in some areas to reduce wear.

Benefits of technology

This approach achieves the goal of reducing material consumption and manufacturing costs while improving the wear resistance and lifespan of the soles, and maintaining the flexibility and comfort of the shoes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a sneaker with an anti-aging sole in the technical field of sneakers, which comprises a sneaker body and a sole, the sole comprises a front-end movable block and a rear-end movable block, the surface of the front-end movable block and the surface of the rear-end movable block are made of iron sheets, and the front-end movable block and the rear-end movable block are abutted against one end of the sole through connecting bands. A reset assembly is connected into the fixing groove. The anti-aging function is achieved by replacing the vamp with the iron sheets, the iron sheets of the main two fulcrums of the front-end movable block and the rear-end movable block replace the worn vamp, the middle of the foot is made of a traditional rubber material, the elasticity of the shoe is kept, and meanwhile the wear of the contact point of the shoe and the ground is reduced; according to the invention, the integral wear resistance is improved by adopting a mode of partially replacing consumption, the anti-aging effect is improved, meanwhile, the wear resistance is improved, in addition, the expenditure of material loss is reduced by adopting the reinforcement of a local structure, and the expenditure of manufacturing cost is further saved.
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Description

Technical Field

[0001] This utility model relates to the field of sports shoe technology, and in particular to a sports shoe with an aging-resistant sole. Background Technology

[0002] Athletic shoes are shoes designed for sports, featuring comfort, support, and durability. They are commonly used in various sports such as running, fitness, basketball, and soccer.

[0003] Anti-aging features of athletic shoes typically include durable synthetic materials and wear-resistant rubber materials to increase the durability of the sole. Existing anti-aging soles for athletic shoes generally use an integral structure for anti-aging. However, when the shoe contacts the ground, the midfoot area is not in direct contact with the ground. The process and material costs of using an integral structure for anti-aging are much higher than the material costs of partial treatment, increasing the number of processes and reducing production efficiency. Therefore, the inventor has proposed an anti-aging athletic shoe with an insole to solve the above-mentioned technical problems. Utility Model Content

[0004] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the aforementioned problems.

[0005] An aging-resistant athletic shoe includes a shoe body and a sole installed at the bottom of the shoe body. The surface of the sole is provided with a connection structure that is matched and installed with the shoe body. The connection structure includes a front end slot, a side end slot and a rear end slot. One end of the shoe body is provided with a front end block, a side end block and a rear end block that are matched and connected with the front end slot, the side end slot and the rear end slot.

[0006] The sole includes a front movable block and a rear movable block. The surfaces of the front and rear movable blocks are both made of iron sheets. The front and rear movable blocks are connected to one end of the sole via a connecting strap. The front and rear movable blocks and the sole are all provided with fixing grooves. The fixing grooves are connected to a reset component for assisting the front and rear movable blocks in resetting.

[0007] Furthermore, the reset assembly includes a connecting rod, a reset spring, and a spring fixing block. The reset spring is located between the connecting rod and the spring fixing block. The surfaces of the connecting rod and the spring fixing block are respectively provided with spring clips and spring fixing plates for connecting with the reset spring. The spring clips are linearly arranged on the surface of the connecting rod, and the length of the spring clips is less than the length of the spring fixing plates. This structure makes the structure between the connecting rod and the spring fixing block more compact, which helps to save space and can maintain a more stable connection and reset effect under the action of the reset spring.

[0008] Furthermore, one end of the connecting rod is connected to a fixed rod, and both ends of the fixed rod are inserts. Both ends of the inserts are embedded in the fixing grooves of the rear movable block and the front movable block, and are fixedly connected. One end of the spring fixing block extends into the fixing groove inside the sole and is fixedly connected to the fixing groove inside the sole. This structure improves the stability and durability of the overall structure. Since the fixed rod and the spring fixing block are fixed, when the user walks, the connecting strap and the return spring limit the movement of the front movable block and the rear movable block, avoiding stiff movements caused by the sole when walking.

[0009] Furthermore, one end of the sole is provided with a rubber top block for increasing friction. The rubber top block is higher than the surface of the sole, and the surface of the sole is provided with a pressure relief groove for cushioning the force. The pressure relief groove has an inward structure. The rubber top block enhances the elasticity and impact resistance of the sole. Since the surfaces of the front and rear movable blocks are both made of iron sheets, the rubber top block can replace the traditional anti-slip pattern to increase friction and enhance the grip of the sole. The pressure relief groove can reduce the reaction force generated when stepping, thereby reducing foot fatigue.

[0010] Furthermore, the outer side of the sole is provided with a reinforcing edge to increase its stability. The reinforcing edge covers the outer side of the sole and conforms to its curvature. This structure increases the friction between the sole side and the ground, enhancing walking stability. Simultaneously, the reinforcing edge protects the sole from external wear and tear, extending its lifespan.

[0011] Furthermore, the surface of the shoe body is provided with a wearing opening that extends into the interior of the shoe body, and one end of the shoe body is connected to a hanging lug for assisting in hanging the shoe body; this structure makes it convenient for users to put on and take off the shoe body, and facilitates hanging and storage, thereby enhancing the practicality and convenience of the shoe body.

[0012] Furthermore, the surface of the shoe body has several ventilation holes for assisting air circulation, and a protective plate is connected to the surface of the shoe body. One end of the shoe body is equipped with shoelaces for adjusting the tightness. The ventilation holes help improve air circulation when wearing the shoe and enhance comfort, while the protective plate can effectively protect the foot and reduce the probability of ankle sprains. The adjustable shoelaces can be used to adjust the fit of the shoe body according to individual needs and enhance comfort.

[0013] Compared with the prior art, the beneficial effects of this utility model are: the surfaces of the front and rear movable blocks are both made of iron sheets, which replace the shoe upper to achieve anti-aging effect; the iron sheets at the two main support points of the front and rear movable blocks replace the wear of the shoe upper; and the middle part of the foot uses traditional rubber material to maintain the elasticity of the shoe while reducing wear at the contact point with the ground.

[0014] In addition, the front and rear movable blocks are connected by cutting and splicing. The movement of the front and rear movable blocks is limited by the connecting strap and the return spring to avoid stiff movements caused by the sole when walking. The connecting strap limits the connection point at the top, and the return component limits the connection point in the middle, so as to prevent the front and rear movable blocks from becoming loose while maintaining the flexibility when walking.

[0015] By using a method of partial replacement of wear, the overall wear resistance is increased, and the anti-aging effect is improved. In addition, the reinforcement of local structures also reduces the expenditure of material consumption, further saving the expenditure of manufacturing costs. Attached Figure Description

[0016] Figure 1 This is an exploded view of a sports shoe with an aging-resistant sole;

[0017] Figure 2 This is a 3D diagram of the sole of a sports shoe with an anti-aging sole;

[0018] Figure 3 This is another 3D view of the sole of a sports shoe with an aging-resistant sole;

[0019] Figure 4 This is a front view of the sole of a sports shoe with an anti-aging sole.

[0020] Figure 5 This is an exploded view of the sole of a sports shoe with an aging-resistant sole;

[0021] Figure 6 This is a side view of the sole of a sports shoe with an anti-aging sole;

[0022] Figure 7 This is an exploded view of a repositioning component in a durable athletic shoe sole.

[0023] In the diagram: Shoe body-1, sole-2, front slot-3, side slot-4, rear slot-5, front block-6, side block-7, rear block-8, front movable block-9, rear movable block-10, connecting strap-11, fixing groove-12, connecting rod-13, return spring-14, spring fixing block-15, spring locking plate-16, spring fixing plate-17, fixing rod-18, insert-19, rubber top block-20, pressure relief groove-21, reinforced edge-22, wearing opening-23, hanging lug-24, ventilation hole-25, protective plate-26, shoelace-27. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0025] For this embodiment, please refer to Figures 1-7The present invention relates to a type of aging-resistant sports shoe, comprising a shoe body 1 and a sole 2 installed at the bottom of the shoe body 1. The surface of the sole 2 is provided with a connection structure that is matched and installed with the shoe body 1. The connection structure includes a front end slot 3, a side end slot 4 and a rear end slot 5. One end of the shoe body 1 is provided with a front end block 6, a side end block 7 and a rear end block 8 that are matched and connected with the front end slot 3, the side end slot 4 and the rear end slot 5.

[0026] The sole 2 includes a front movable block 9 and a rear movable block 10. The surfaces of the front movable block 9 and the rear movable block 10 are both made of iron sheets. The front movable block 9 and the rear movable block 10 are connected to one end of the sole 2 by a connecting strap 11. The front movable block 9, the rear movable block 10 and the sole 2 are all provided with a fixing groove 12. The fixing groove 12 is connected to a reset component for assisting the front movable block 9 and the rear movable block 10 to reset.

[0027] The reset assembly includes a connecting rod 13, a reset spring 14, and a spring fixing block 15. The reset spring 14 is located between the connecting rod 13 and the spring fixing block 15. The surfaces of the connecting rod 13 and the spring fixing block 15 are respectively provided with a spring retaining plate 16 and a spring fixing plate 17 for connecting with the reset spring 14. The spring retaining plates 16 are linearly arranged on the surface of the connecting rod 13, and the length of the spring retaining plates 16 is less than the length of the spring fixing plates 17. This structure makes the structure between the connecting rod 13 and the spring fixing block 15 more compact, which helps to save space and can maintain a more stable connection and reset effect under the action of the reset spring 14.

[0028] One end of the connecting rod 13 is connected to a fixing rod 18, and both ends of the fixing rod 18 are inserts 19. Both ends of the inserts 19 are embedded in the fixing grooves 12 of the rear movable block 10 and the front movable block 9, and are fixedly connected. One end of the spring fixing block 15 extends into the fixing groove 12 inside the sole 2, and is fixedly connected to the fixing groove 12 inside the sole 2. This structure improves the stability and durability of the overall structure. Since the fixing rod 18 and the spring fixing block 15 are fixed, when the user walks, the connecting strap 11 and the return spring 14 limit the movement of the front movable block 9 and the rear movable block 10, avoiding stiff movements caused by the sole 2 when walking.

[0029] One end of the sole 2 is provided with a rubber top block 20 for increasing friction. The rubber top block 20 is higher than the surface of the sole 2. The surface of the sole 2 is provided with a pressure relief groove 21 for cushioning force. The pressure relief groove 21 has an inward structure. The rubber top block 20 enhances the elasticity and impact resistance of the sole 2. Since the surfaces of the front movable block 9 and the rear movable block 10 are both made of iron sheets, the rubber top block 20 can replace the traditional anti-slip pattern to increase friction and enhance the grip performance of the sole 2. The pressure relief groove 21 can reduce the reaction force formed when stepping, thereby reducing foot fatigue.

[0030] The outer side of the sole 2 is provided with a reinforcing edge 22 to increase the stability of the sole 2. The reinforcing edge 22 covers the outer side of the sole 2 and is consistent with the curvature shape of the outer side of the sole 2. This structure can improve the friction between the side of the sole 2 and the ground, thereby increasing walking stability. At the same time, the design of the reinforcing edge 22 can protect the sole 2 from external wear and tear, extending the service life of the sole 2.

[0031] The surface of the shoe body 1 is provided with a wearing opening 23, which extends into the interior of the shoe body 1. One end of the shoe body 1 is connected to a hanging lug 24 for assisting in hanging the shoe body 1. This structure makes it convenient for users to put on and take off the shoe body, and is easy to hang and store, thus enhancing the practicality and convenience of the shoe body 1.

[0032] The surface of the shoe body 1 is provided with a number of ventilation holes 25 to facilitate air circulation. A protective plate 26 is connected to the surface of the shoe body 1. One end of the shoe body 1 is provided with a shoelace 27 for adjusting the tightness. The ventilation holes 25 help to improve air circulation when wearing the shoe and enhance comfort, while the protective plate 26 can effectively protect the foot and reduce the probability of ankle sprains. The shoelace 27 with adjustable tightness can be used to adjust the fit of the shoe body 1 according to individual needs and enhance comfort.

[0033] The key design features of this invention are: the surfaces of the front movable block 9 and the rear movable block 10 are both made of iron sheets, which replace the shoe upper to achieve anti-aging effect. The iron sheets at the two main support points of the front movable block 9 and the rear movable block 10 replace the wear of the shoe upper, while the middle part of the foot uses traditional rubber material to maintain the elasticity of the shoe and reduce wear at the contact point with the ground.

[0034] In addition, the front movable block 9 and the rear movable block 10 are connected by cutting and splicing. The movement of the front movable block 9 and the rear movable block 10 is limited by the connecting strap 11 and the return spring 14 to avoid stiff movements caused by the sole 2 when walking. The connecting strap 11 limits the upper connection point, and the return spring 14 limits the middle connection point, so as to prevent the front movable block 9 and the rear movable block 10 from becoming loose while maintaining its flexibility when walking.

[0035] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.

Claims

1. A durable athletic shoe with an aging-resistant sole, comprising a shoe body and a sole installed at the bottom of the shoe body, characterized in that: The surface of the shoe sole is provided with a connecting structure matched with the shoe body, the connecting structure comprises a front end clamping groove, a side end clamping groove and a rear end clamping groove, one end of the shoe body is provided with a front end clamping block, a side end clamping block and a rear end clamping block matched with the front end clamping groove, the side end clamping groove and the rear end clamping groove. The shoe sole comprises a front end movable block and a rear end movable block, the surfaces of the front end movable block and the rear end movable block are both made of iron sheets, the front end movable block and the rear end movable block are both abutted with one end of the shoe sole through a connecting belt, the inside of the front end movable block and the rear end movable block are both provided with a fixing groove, and the inside of the fixing groove is connected with a reset component for assisting the front end movable block and the rear end movable block to reset.

2. The shoe according to claim 1, wherein: The reset component comprises a connecting rod, a reset spring and a spring fixing block, the reset spring is located between the connecting rod and the spring fixing block, the surfaces of the connecting rod and the spring fixing block are respectively provided with a spring clamping plate and a spring fixing plate for connecting with the reset spring, the spring clamping plate is linearly arranged on the surface of the connecting rod, and the length of the spring clamping plate is less than the length of the spring fixing plate.

3. The shoe of claim 2, wherein: One end of the connecting rod is connected with a fixing rod, the two ends of the fixing rod are embedded blocks, the two ends of the embedded blocks are embedded into the fixing grooves of the rear end movable block and the front end movable block, and are fixedly connected, one end of the spring fixing block extends into the fixing groove in the inside of the shoe sole, and is fixedly connected with the fixing groove in the inside of the shoe sole.

4. The anti-aging sports shoe according to any one of claims 1-3, characterized in that: One end of the shoe sole is provided with a rubber top block for increasing friction, the rubber top block is higher than the surface of the shoe sole, the surface of the shoe sole is provided with a pressure relief groove for buffering force, and the pressure relief groove is an inner recess structure.

5. The shoe of any one of claims 1-3, wherein the shoe is an athletic shoe. The outer side of the shoe sole is provided with a reinforcing edge for increasing the stability of the shoe sole, the reinforcing edge covers the outer side of the shoe sole, and is consistent with the curvature shape of the outer side of the shoe sole.

6. The shoe of any one of claims 1-3, wherein the shoe is an athletic shoe. The surface of the shoe body is provided with a wearing port, the wearing port extends to the inside of the shoe body, and one end of the shoe body is connected with a lifting lug for assisting the shoe body to hang.

7. The shoe of any one of claims 1-3, wherein the shoe is an athletic shoe. The surface of the shoe body is provided with a plurality of air permeation holes for assisting gas circulation, the surface of the shoe body is connected with a protective plate, and one end of the shoe body is provided with a shoelace for adjusting tightness.