Sports male shoes with shock pad layers

By introducing a shock-absorbing padding structure into athletic men's shoes, including a combination of shock-absorbing blocks and springs, the problem of easy damage to air cushion structures has been solved, resulting in better shock absorption and structural stability, and extending service life.

CN223585316UActive Publication Date: 2025-11-25WENZHOU DINGFENG SHOES CO LTD
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Patent Information

Application Number
CN202520138963.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-11-25
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

The air cushion structure of existing men's athletic shoes is easily damaged after prolonged use and cannot be repaired, resulting in poor shock absorption, insufficient structural strength, and short service life.

Method used

The design incorporates a shock-absorbing pad layer, including a first shock-absorbing block and a second shock-absorbing block, with a first elastic block and a second elastic block at their ends. This design achieves a shock-absorbing effect by extending the stress application process. At the same time, the support block restricts the movement trajectory of the elastic block, enhancing structural stability. Furthermore, the internal ribs and anti-slip structure improve durability.

Benefits of technology

It effectively reduces vibration, protects foot safety, improves structural strength and durability, extends service life, and reduces safety hazards.

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Abstract

The utility model belongs to the technical field of shock absorption of sports shoes for men, and particularly relates to a sports shoe with a shock pad layer for men, which comprises a vamp. The bottom of the vamp is fixedly connected with a damping cushion block; a first damping block and a second damping block are fixedly connected into the damping cushion block; the end part of the first damping block is fixedly connected with a first elastic block; the end part of the second damping block is fixedly connected with a second elastic block; first inner ribs are fixedly connected to the interiors of the first damping block and the second damping block; second inner ribs are fixedly connected between the multiple first inner ribs. The first damping block and the second damping block are arranged, the first elastic block and the second elastic block are correspondingly arranged at the ends of the first damping block and the second damping block, the damping effect is achieved by prolonging the action process of stress, the damping requirement of the sports shoes is met, vibration is reduced, and the feet of the human body are protected; meanwhile, the structural strength of the sports shoes for men is improved, and the wearing life is prolonged.
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Description

Technical Field

[0001] This utility model belongs to the field of shock absorption technology for men's athletic shoes, specifically a men's athletic shoe with a shock-absorbing pad layer. Background Technology

[0002] Men's athletic shoes are designed and manufactured specifically for men participating in sports or traveling. Unlike ordinary leather or rubber shoes, the soles of athletic shoes are generally soft and elastic, providing cushioning to prevent ankle injuries and enhancing elasticity during exercise.

[0003] To improve shock absorption, existing athletic men's shoes generally incorporate an air cushion structure in the sole. However, the air cushion structure is fixedly bonded to the insole. During use, whenever the shoe is subjected to stress, the air cushion can achieve cushioning and shock absorption through its own deformation. However, after prolonged wear, gaps may appear in the air cushion structure, and the damaged air cushion cannot be repaired.

[0004] Therefore, this utility model provides a men's athletic shoe with a shock-absorbing padding layer. Utility Model Content

[0005] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: A men's athletic shoe with a shock-absorbing pad layer, comprising an upper; a shock-absorbing pad block fixedly connected to the bottom of the upper; a first shock-absorbing block and a second shock-absorbing block fixedly connected inside the shock-absorbing pad block, with the first and second shock-absorbing blocks correspondingly arranged; a first elastic block fixedly connected to the end of the first shock-absorbing block; a second elastic block fixedly connected to the end of the second shock-absorbing block, with two second elastic blocks correspondingly arranged; a first inner rib fixedly connected inside the first and second shock-absorbing blocks, with multiple first inner ribs arranged in a linear array; a second inner rib fixedly connected between multiple first inner ribs, with multiple second inner ribs arranged in a linear array; this step, by setting the first and second shock-absorbing blocks and correspondingly setting the first and second elastic blocks at their ends, achieves a shock-absorbing effect by extending the stress action process, meeting the shock-absorbing requirements of athletic shoes, reducing vibration, protecting the feet, and simultaneously improving the structural strength and lifespan of the athletic shoe.

[0007] Preferably, a support block is fixedly connected inside the shock-absorbing pad, and the support block is positioned corresponding to the first and second spring blocks; the top of the support block has a movable groove, and multiple movable grooves are positioned corresponding to the dimensions of the first and second spring blocks; this step, by setting the support block, assists the first and second spring blocks in bearing stress, while restricting the movement trajectory of the first and second spring blocks, which helps to prevent the first and second spring blocks from shifting, improves the stability of the shock absorption function of the men's sports shoe, enhances the durability of the men's sports shoe, and extends its service life.

[0008] Preferably, the top of the shock-absorbing pad is provided with an insole, and the insole is sized to correspond to the upper of the shoe and the shock-absorbing pad; the top of the insole is fixed with a first soft block and a second soft block, and the two first soft blocks are positioned to correspond to the positions of the second soft block; this step, by setting the first soft block and the second soft block to assist the first shock-absorbing block and the second shock-absorbing block in shock absorption, helps to further enhance the shock absorption effect of the men's sports shoe, while improving the force distribution on the user's foot, which helps to reduce vibration damage and protect foot safety.

[0009] Preferably, the tops of the first and second shock-absorbing blocks are provided with circular grooves, and the plurality of circular grooves are arranged in a linear array; the bottoms of the first and second shock-absorbing blocks are provided with circular grooves, and the plurality of circular grooves are arranged in a linear array. This step increases the fixed connection area of ​​the first and second shock-absorbing blocks and the shock-absorbing pad by opening multiple circular grooves, thereby increasing the structural stability of the men's sports shoe, improving its durability, and helping to extend its service life.

[0010] Preferably, the bottom of the shock-absorbing pad is fixedly connected to an anti-slip sole, and the anti-slip sole is sized to correspond to the shock-absorbing pad; the bottom of the shock-absorbing pad has anti-slip patterns; the bottom of the insole has anti-slip patterns; this step increases the friction coefficient between the men's sports shoe and the ground by setting anti-slip patterns, and increases the friction coefficient between the shock-absorbing pad and the insole, which helps to reduce slipping, reduce safety hazards, and protect user safety.

[0011] Preferably, the first inner rib and the second inner rib are made of elastic metal material; this step, by filling the first inner rib and the second inner rib with elastic metal material, helps to improve the structural stability of the first shock absorber and the second shock absorber, and enhances the durability of the men's sports shoe.

[0012] Preferably, the insole is made of cotton; the first soft block and the second soft block are made of leather. This step improves the practicality and applicability of the men's sports shoe by using cotton for the insole and leather for the first soft block and the second soft block, and reduces safety hazards.

[0013] The beneficial effects of this utility model are as follows:

[0014] 1. The present invention relates to a men's athletic shoe with a shock-absorbing pad layer, which achieves a shock-absorbing effect by setting a first shock-absorbing block and a second shock-absorbing block, and correspondingly setting a first elastic block and a second elastic block at the ends of the first shock-absorbing block and the second shock-absorbing block, thereby prolonging the stress action process, meeting the shock-absorbing requirements of athletic shoes, reducing vibration, protecting the feet, and improving the structural strength of the athletic shoe and extending its wear life.

[0015] 2. The athletic men's shoe with shock-absorbing padding layer described in this utility model, by setting support blocks to assist the first and second spring blocks in bearing stress, and at the same time restricting the movement trajectory of the first and second spring blocks, helps to prevent the first and second spring blocks from shifting, improves the stability of the shock absorption function of the athletic men's shoe, enhances the durability of the athletic men's shoe, and extends its service life. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings.

[0017] Figure 1 This is a perspective view of the present invention;

[0018] Figure 2 This is a schematic diagram of the structure of the insole in this utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the shock-absorbing pad in this utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the first spring block in this utility model.

[0021] In the diagram: 1. Upper; 2. Shock-absorbing pad; 3. Anti-slip sole; 4. Insole; 5. First soft block; 6. Second soft block; 7. First shock-absorbing block; 8. First spring block; 9. Second shock-absorbing block; 10. Second spring block; 11. First inner rib; 12. Second inner rib; 13. Circular groove; 14. Support block; 15. Movable groove. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0023] Specific implementation examples are given below.

[0024] likeFigures 1 to 4 As shown, an embodiment of the present invention provides a men's athletic shoe with a shock-absorbing pad layer, comprising an upper 1; a shock-absorbing pad 2 is fixedly connected to the bottom of the upper 1; a first shock-absorbing block 7 and a second shock-absorbing block 9 are fixedly connected inside the shock-absorbing pad 2, and the first shock-absorbing block 7 and the second shock-absorbing block 9 are correspondingly arranged; a first spring block 8 is fixedly connected to the end of the first shock-absorbing block 7; a second spring block 10 is fixedly connected to the end of the second shock-absorbing block 9, and two second spring blocks 10 are correspondingly arranged; a first inner rib 11 is fixedly connected inside the first shock-absorbing block 7 and the second shock-absorbing block 9, and multiple first inner ribs 11 are arranged in a linear array; a second inner rib 12 is fixedly connected between multiple first inner ribs 11, and multiple second inner ribs 12 are arranged in a linear array; during operation, the first shock-absorbing block 7 and the second shock-absorbing block 9 fixed inside the shock-absorbing pad 2 can achieve a shock-absorbing effect through the first spring block 8 and the second spring block 10 fixed to their own ends. During the process, whenever the shock-absorbing pad 2 is subjected to stress, the fixed... The first elastic block 8 and the second elastic block 10 at the ends of the first shock-absorbing block 7 and the second shock-absorbing block 9 will undergo elastic deformation under stress, thereby prolonging the force process on the user's foot and reducing the impact of stress on the human body. During the process, the first inner rib 11 and the second inner rib 12 fixed inside the first shock-absorbing block 7 and the second shock-absorbing block 9 can improve the structural strength of the first shock-absorbing block 7 and the second shock-absorbing block 9 by themselves, thereby making the double-layer shock-absorbing component composed of the first shock-absorbing block 7 and the second shock-absorbing block 9 more durable. The shock-absorbing pad 2 is set according to the size of the shoe upper 1. This step, by setting the first shock-absorbing block 7 and the second shock-absorbing block 9, and correspondingly setting the first elastic block 8 and the second elastic block 10 at the ends of the first shock-absorbing block 7 and the second shock-absorbing block 9, achieves the shock absorption effect by prolonging the stress process, meeting the shock absorption requirements of sports shoes, helping to reduce vibration, protect the human foot, and at the same time improve the structural strength of the men's sports shoe and extend its wear life.

[0025] like Figure 4As shown, the inside of the shock pad 2 is fixed with a support block 14, and the support block 14 is arranged corresponding to the positions of the first elastic block 8 and the second elastic block 10; the top of the support block 14 is provided with a movable slot 15, and a plurality of movable slots 15 are arranged corresponding to the sizes of the first elastic block 8 and the second elastic block 10; in work, whenever the first elastic block 8 and the two second elastic blocks 10 are deformed under stress, the support block 14 fixed in the inside of the shock pad 2 can accommodate the first elastic block 8 and the two second elastic blocks 10 through the plurality of movable slots 15 provided on the top of the support block 14, and whenever the stress tends to be stable, the first elastic block 8 and the second elastic block 10 can freely rebound after rebounding, wherein the plurality of movable slots 15 can limit the movement track of the first elastic block 8 and the second elastic block 10; this step assists the first elastic block 8 and the second elastic block 10 to bear stress by arranging the support block 14, while limiting the movement track of the first elastic block 8 and the second elastic block 10, which is beneficial to avoid the first elastic block 8 and the second elastic block 10 from being deviated, improves the stability of the shock function of the sports shoes for men, enhances the durability of the sports shoes for men, and prolongs the service life.

[0026] As shown in Figure 2 , the top of the shock pad 2 is provided with an insole 4, and the insole 4 is arranged corresponding to the sizes of the vamp 1 and the shock pad 2; the top of the insole 4 is fixed with a first soft block 5 and a second soft block 6, and two first soft blocks 5 are arranged corresponding to the positions of the second soft blocks 6; in work, the insole 4 arranged on the top of the shock pad 2 is inside the vamp 1, which can be freely taken out by the user for cleaning, and the first soft block 5 and the second soft block 6 fixed on the top of the insole 4 can assist the first shock block 7 and the second shock block 9 to shock by deforming under stress when the user wears the sports shoes; this step assists the first shock block 7 and the second shock block 9 to shock by arranging the first soft block 5 and the second soft block 6, which is beneficial to further strengthen the shock effect of the sports shoes for men, while improving the stress form of the user's feet, which is beneficial to reduce the vibration damage and protect the safety of the feet.

[0027] As shown in Figure 3 and Figure 4As shown, the tops of the first shock absorber 7 and the second shock absorber 9 are provided with circular grooves 13, and multiple circular grooves 13 are arranged in a linear array; the bottoms of the first shock absorber 7 and the second shock absorber 9 are also provided with circular grooves 13, and multiple circular grooves 13 are arranged in a linear array. During operation, the multiple circular grooves 13 on the tops and bottoms of the first shock absorber 7 and the second shock absorber 9 can increase the contact area between the first shock absorber 7, the second shock absorber 9 and the shock absorber pad 2, thereby enhancing the bonding strength between the first shock absorber 7, the second shock absorber 9 and the shock absorber pad 2, and thus preventing the first shock absorber 7 and the second shock absorber 9 from falling off. This step, by opening multiple circular grooves 13 to increase the bonding area between the first shock absorber 7, the second shock absorber 9 and the shock absorber pad 2, increases the structural stability of the men's sports shoe, improves the durability of the men's sports shoe, and helps to extend its service life.

[0028] like Figures 1 to 3 As shown, the bottom of the shock-absorbing pad 2 is fixedly connected to an anti-slip sole 3, and the anti-slip sole 3 is sized to correspond to the shock-absorbing pad 2. The bottom of the shock-absorbing pad 2 has anti-slip patterns; the bottom of the insole 4 also has anti-slip patterns. During operation, the anti-slip sole 3 fixed to the bottom of the shock-absorbing pad 2 can increase the friction coefficient between the athletic men's shoe and the ground through its own anti-slip patterns. The anti-slip patterns on the bottom of the insole 4 can increase the friction coefficient between the insole 4 and the shock-absorbing pad 2, thereby increasing friction. This step, by setting anti-slip patterns to increase the friction coefficient between the athletic men's shoe and the ground, and increasing the friction coefficient between the shock-absorbing pad 2 and the insole 4, helps to reduce slippage, reduces safety hazards, and helps protect user safety.

[0029] like Figure 4 As shown, the first inner rib 11 and the second inner rib 12 are made of elastic metal. During operation, the first inner rib 11 and the second inner rib 12, made of elastic metal, can exert the stabilizing properties of elastic metal. This step, by filling the interior of the first inner rib 11 and the second inner rib 12 with elastic metal, helps to improve the structural stability of the first shock absorber 7 and the second shock absorber 9, and enhances the durability of the men's sports shoe.

[0030] like Figure 2 As shown, the insole 4 is made of cotton; the first soft block 5 and the second soft block 6 are made of leather. During operation, the cotton insole 4 can utilize its breathable and soft properties, thus making the insole 4 fit more tightly with the top of the shock-absorbing pad 2. The first soft block 5 and the second soft block 6, made of leather, can increase the friction between the user's foot and the insole 4, reducing slippage. This step improves the practicality and applicability of the men's sports shoe by using cotton material for the insole 4 and leather material for the first soft block 5 and the second soft block 6, and reduces safety hazards.

[0031] During operation, the first shock absorber 7 and the second shock absorber 9, fixed inside the shock absorber 2, achieve shock absorption through the first elastic block 8 and the second elastic block 10 fixed at their ends. During this process, whenever the shock absorber 2 is subjected to stress, the first elastic block 8 and the second elastic block 10 fixed at the ends of the first shock absorber 7 and the second shock absorber 9 will undergo elastic deformation under stress, thereby prolonging the stress process on the user's foot and reducing the impact of stress on the human body. During this process, the first inner rib 11 and the second inner rib 12 fixed inside the first shock absorber 7 and the second shock absorber 9 can enhance the structural strength of the first shock absorber 7 and the second shock absorber 9. This makes the double-layer shock-absorbing assembly, consisting of the first shock-absorbing block 7 and the second shock-absorbing block 9, more durable. The shock-absorbing pad 2 is sized to correspond to the upper 1. Whenever the first spring block 8 and the two second spring blocks 10 deform under stress, the support block 14, fixed inside the shock-absorbing pad 2, can accommodate the first spring block 8 and the two second spring blocks 10 through multiple movable slots 15 on its top. When the stress stabilizes and the first spring block 8 and the second spring blocks 10 rebound, they can rebound freely. The multiple movable slots 15 can restrict the movement trajectory of the first spring block 8 and the second spring blocks 10. The insole 4 at the top of the pad 2 is located inside the upper 1 and can be easily removed by the user for cleaning. Whenever the user wears the athletic shoe, the first soft block 5 and the second soft block 6, fixed to the top of the insole 4, can deform under force to assist the first shock-absorbing block 7 and the second shock-absorbing block 9 in shock absorption. Multiple circular grooves 13 formed at the top and bottom of the first shock-absorbing block 7 and the second shock-absorbing block 9 can increase the contact area between the first shock-absorbing block 7, the second shock-absorbing block 9 and the shock-absorbing pad 2, enhancing the bonding strength between the first shock-absorbing block 7, the second shock-absorbing block 9 and the shock-absorbing pad 2, thereby preventing the first shock-absorbing block 7 and the second shock-absorbing block 9 from falling off. The anti-slip sole 3 at the bottom of the shock-absorbing pad 2 can increase the friction coefficient between the athletic men's shoe and the ground through its own anti-slip texture. The anti-slip texture on the bottom of the insole 4 can increase the friction coefficient between the insole 4 and the shock-absorbing pad 2, thereby increasing friction. The first inner rib 11 and the second inner rib 12, made of elastic metal, can exert the stability characteristics of elastic metal. The insole 4, made of cotton, can exert its breathable and soft characteristics, thereby making the insole 4 fit more tightly with the top of the shock-absorbing pad 2. The first soft block 5 and the second soft block 6, made of leather, can increase the friction between the user's foot and the insole 4, reducing slippage.

[0032] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A sports shoe with a shock absorbing cushioning, comprising an upper (1); characterized in that: The bottom of the shoe upper (1) is fixedly connected to a shock-absorbing pad (2); a first shock-absorbing block (7) and a second shock-absorbing block (9) are fixedly connected inside the shock-absorbing pad (2), and the first shock-absorbing block (7) and the second shock-absorbing block (9) are arranged correspondingly; a first spring block (8) is fixedly connected to the end of the first shock-absorbing block (7); a second spring block (10) is fixedly connected to the end of the second shock-absorbing block (9), and two second spring blocks (10) are arranged correspondingly; a first inner rib (11) is fixedly connected inside the first shock-absorbing block (7) and the second shock-absorbing block (9), and multiple first inner ribs (11) are arranged in a linear array; a second inner rib (12) is fixedly connected between multiple first inner ribs (11), and multiple second inner ribs (12) are arranged in a linear array.

2. The sports shoes with shock-absorbing cushion according to claim 1, wherein: The shock-absorbing pad (2) has a support block (14) fixed inside, and the support block (14) is positioned corresponding to the first spring block (8) and the second spring block (10); the top of the support block (14) has an active groove (15), and the multiple active grooves (15) are positioned corresponding to the size of the first spring block (8) and the second spring block (10).

3. The sports shoes with shock-absorbing cushion according to claim 2, wherein: The top of the shock-absorbing pad (2) is provided with an insole (4), and the insole (4) is set to the size of the shoe upper (1) and the shock-absorbing pad (2); the top of the insole (4) is fixed with a first soft block (5) and a second soft block (6), and the two first soft blocks (5) are set to the position of the second soft block (6).

4. The sports shoes with shock-absorbing cushion according to claim 1, wherein: The first damping block (7) and the second damping block (9) have circular grooves (13) on their tops, and the multiple circular grooves (13) are arranged in a linear array; the first damping block (7) and the second damping block (9) have circular grooves (13) on their bottoms, and the multiple circular grooves (13) are arranged in a linear array.

5. The sports shoe with a shock-absorbing cushioning layer according to claim 3, characterized in that: The bottom of the shock-absorbing pad (2) is fixed with an anti-slip shoe sole (3), and the anti-slip shoe sole (3) is set to the size of the shock-absorbing pad (2); the bottom of the shock-absorbing pad (2) is provided with anti-slip texture; the bottom of the insole (4) is provided with anti-slip texture.

6. The sports shoe with a shock pad according to claim 1, wherein: The first inner rib (11) and the second inner rib (12) are made of elastic metal.

7. The sports shoe with a shock-absorbing cushioning layer according to claim 5, characterized in that: The insole (4) is made of cotton; the first soft block (5) and the second soft block (6) are made of leather.