Light shock-absorbing sneaker sole

By incorporating connecting plates, shock absorbers, and elastic elements into the outsole of athletic shoes, and combining them with EVA foam material, the problem of poor heel force adaptability in traditional athletic shoe outsoles has been solved, achieving lightweight, shock-absorbing, and stable support.

CN224250829UActive Publication Date: 2026-05-19ZHONGSHAN HAOZHENG SHOES MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN HAOZHENG SHOES MATERIAL CO LTD
Filing Date
2025-03-26
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional athletic shoe soles are poorly adapted to the force characteristics of the heel, failing to provide precise support and shock absorption, and are prone to uneven force distribution.

Method used

A shock-absorbing component was designed, comprising a connecting plate, shock-absorbing block, connector, and elastic element. Combined with a sole body made of EVA foam material, the design adapts to the force characteristics of the heel through the setting of the top pressure area and sliding groove, providing precise support and shock absorption.

Benefits of technology

It achieves stable support and continuous shock absorption in lightweight shock-absorbing sports shoes, protecting the feet and ankles and ensuring the flexibility and normal operation of the shock-absorbing components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a light shock-absorbing sports shoe sole which comprises a sole, the sole comprises a sole body, the rear end of the sole body is provided with a downward mounting groove, a rear bottom part is arranged in the mounting groove, a shock-absorbing assembly is arranged between the rear bottom part and the rear end of the sole body, and the shock-absorbing assembly comprises a connecting support plate connected to the rear bottom part. At least two damping blocks are arranged on the connecting supporting plate, connecting pieces are arranged on the damping blocks, the damping blocks are connected to the connecting supporting plate through the connecting pieces, elastic pieces capable of pushing the damping blocks to reset are arranged between the damping blocks and the connecting supporting plate, and sliding grooves allowing the connecting pieces to slide therein are further formed in the connecting supporting plate. The rear end of the sole body is further provided with a jacking area where the heel can exert force, and the jacking area is located on the upper side of the rear bottom. The utility model provides the light shock-absorbing sports shoe sole which is uniform in shock absorption and stable in support.
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Description

Technical Field

[0001] This utility model relates to the field of sports shoe technology, and in particular to a lightweight and shock-absorbing sports shoe sole. Background Technology

[0002] In the design of traditional athletic shoes, the shock absorption performance of the sole has always been a key factor affecting wearing comfort and athletic performance. However, traditional soles are poorly adapted to the stress characteristics of the heel, unable to provide precise support and shock absorption, and are prone to uneven stress distribution. Utility Model Content

[0003] The purpose of this invention is to overcome the problems of the prior art and provide a lightweight shock-absorbing sports shoe sole that provides uniform shock absorption and stable support.

[0004] To achieve the above objectives, the present invention adopts the following solution:

[0005] A lightweight, shock-absorbing athletic shoe sole includes: a sole body, the sole body having a downwardly facing mounting groove at its rear end, a heel counter within the mounting groove, a shock-absorbing component between the heel counter and the rear end of the sole body, the shock-absorbing component including a connecting plate connected to the heel counter, at least two shock-absorbing blocks on the connecting plate, each shock-absorbing block having a connecting member, the shock-absorbing blocks being connected to the connecting plate via the connecting member, and an elastic member between the shock-absorbing blocks and the connecting plate capable of pushing the shock-absorbing blocks back to their original position, the connecting plate also having a sliding groove for the connecting member to slide within, and the rear end of the sole body having a pressing area for heel pressure, the pressing area being located on the upper side of the heel counter.

[0006] The shock absorber block has multiple tiny air holes inside.

[0007] The shock absorber has a head end and a bottom end. The bottom end is provided with a slot into which a connector can be inserted. The slot wall is provided with a protrusion that can press against the connector.

[0008] The connector has a connecting section that can extend from the slot, and the connector also includes a positioning plate that can be embedded in the shock absorber block, the positioning plate being provided with a through hole for the connecting section to extend out.

[0009] The pressure area is composed of multiple pressure protrusions, and the surfaces of the pressure protrusions are arc-shaped.

[0010] The front side of the sole body is provided with a second mounting groove, the second mounting groove is provided with a front bottom layer, the rear end of the front bottom layer is provided with an extension with a gradually decreasing cross-sectional area, and the second mounting groove is provided with an engagement groove that can engage the extension.

[0011] The bottom surface of the front bottom layer is also provided with multiple shock-absorbing grooves, and the multiple shock-absorbing grooves are arranged in front and behind.

[0012] The upper surface of the sole body is also provided with a W-shaped mounting groove, which is located above the front bottom layer.

[0013] The sole body is made of EVA foam material.

[0014] The shock-absorbing block is made of foamed rubber material.

[0015] Compared with existing technologies, this utility model has the following advantages: The lightweight shock-absorbing sports shoe sole of this utility model, through the design of the shock-absorbing components, including connecting plates, shock-absorbing blocks, connectors, and elastic elements, enables the sole to effectively absorb and buffer impact forces when subjected to impact, reducing vibration to the feet and legs, and protecting the feet and ankles. The design of the elastic elements allows the shock-absorbing blocks to quickly return to their original position after being compressed, ensuring the continuity and reliability of the shock-absorbing effect, providing stable support and protection. The setting of the top pressure area can better adapt to the force characteristics of the heel, providing more precise support and shock absorption. The setting of the sliding groove allows the connector to slide smoothly in the groove when subjected to force without jamming, ensuring the normal operation of the shock-absorbing components and the flexibility of the sole. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the lightweight shock-absorbing sports shoe sole of this utility model;

[0017] Figure 2 for Figure 1 A magnified view of region A in the middle.

[0018] Labels: Sole 1, Sole body 11, Mounting groove 12, Top pressure area 13, Top pressure protrusion 131, Surface 132, Second mounting groove 14, Engaging groove 141, W-shaped mounting groove 15, Rear bottom 2, Shock absorption component 3, Connecting support plate 31, Shock absorption block 32, Connector 33, Sliding groove 311, Air hole 321, Toe end 322, Bottom end 323, Slot 3231, Protrusion 3232, Connecting section 331, Positioning plate 332, Through hole 3321, Front bottom layer 4 extension 41, Shock absorption groove 42. Detailed Implementation

[0019] The present invention will be further described in detail below with reference to embodiments:

[0020] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0021] like Figures 1 to 2 As shown, a lightweight shock-absorbing sports shoe sole 1 includes: a sole 1, the sole 1 including a sole body 11, the rear end of the sole body 11 having a downwardly facing mounting groove 12, a heel bottom 2 disposed within the mounting groove 12, a shock-absorbing component 3 disposed between the heel bottom 2 and the rear end of the sole body 11, the shock-absorbing component 3 including a connecting support plate 31 connected to the heel bottom 2, at least two shock-absorbing blocks 32 disposed on the connecting support plate 31, a connecting member 33 disposed on the shock-absorbing blocks 32, the shock-absorbing blocks 32 being connected to the connecting support plate 31 via the connecting member 33, and an elastic element capable of pushing the shock-absorbing blocks 32 back to their original position being disposed between the shock-absorbing blocks 32 and the connecting support plate 31, the connecting support plate 31 also having a sliding groove 311 allowing the connecting member 33 to slide within it, and the rear end of the sole body 11 also having a pressing area 13 for heel force, the pressing area being located on the upper side of the heel bottom 2.

[0022] The lightweight shock-absorbing sports shoe sole 1 of this utility model, through the design of the shock-absorbing component 3, including the connecting support plate 31, shock-absorbing block 32, connector 33 and elastic element, enables the sole 1 to effectively absorb and buffer the impact force when subjected to impact, reduce the vibration of the foot and leg, and protect the foot and ankle. The design of the elastic element allows the shock-absorbing block 32 to quickly return to its original position after being compressed, ensuring the continuity and reliability of the shock absorption effect, and providing stable support and protection. The setting of the top pressure area 13 can better adapt to the force characteristics of the heel, providing more precise support and shock absorption. The setting of the sliding groove 311 allows the connector 33 to slide smoothly in the groove when subjected to force without jamming, ensuring the normal operation of the shock-absorbing component 3 and the flexibility of the sole 1.

[0023] The shock absorber block 32 has multiple tiny air holes 321 inside, which facilitates rebound and provides good shock absorption.

[0024] The shock absorber block 32 has a head end 322 and a bottom end 323. The bottom end 323 is provided with a slot 3231 into which the connector 33 can be inserted. The slot 3231 has a protrusion 3232 on its wall that can press against the connector 33 for positioning and installation. This provides more points of force and better shock absorption.

[0025] The connector 33 has a connecting section 331 that can extend from the slot 3231. The connector 33 also includes a positioning plate 332 that can be embedded in the shock absorber 32. The positioning plate 332 is provided with a through hole 3321 that allows the connecting section 331 to extend out. This design makes installation and connection more convenient.

[0026] The pressure area 13 is composed of multiple pressure protrusions 131, and the surface 132 of the pressure protrusions 131 is arc-shaped to facilitate pressure application.

[0027] The front side of the sole body 11 is also provided with a second mounting groove 14, and a front bottom layer 4 is provided in the second mounting groove 14. The rear end of the front bottom layer 4 is provided with an extension 41 with a gradually decreasing cross-sectional area. The second mounting groove 14 is provided with an engagement groove 141 that can engage the extension 41. The cooperation between the extension 41 and the engagement groove 141 facilitates bonding and makes the connection between the two more stable.

[0028] The bottom surface of the front bottom layer 4 is also provided with multiple shock-absorbing grooves 42, and the multiple shock-absorbing grooves 42 are arranged in front and behind, which facilitates shock absorption and has a good shock absorption effect.

[0029] The upper surface 132 of the sole body 11 is also provided with a W-shaped mounting groove 15. The W-shaped mounting groove 15 is located above the front bottom layer 4, which facilitates the installation of insoles or other parts, making installation very convenient.

[0030] The sole body 11 is made of EVA foam material, which has the advantages of being lightweight, shock-absorbing, elastic, waterproof, and slip-resistant, further improving the performance and comfort of the sole 1.

[0031] The shock absorber block 32 is made of foamed rubber material, which has good elasticity and shock absorption effect, can effectively absorb impact force, and also has wear resistance and other properties.

[0032] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A lightweight, shock-absorbing sports shoe sole, characterized in that, include: The shoe includes a sole (1), which includes a sole body (11). The rear end of the sole body (11) is provided with a downwardly facing mounting groove (12). A heel bottom (2) is provided in the mounting groove (12). A shock-absorbing component (3) is provided between the heel bottom (2) and the rear end of the sole body (11). The shock-absorbing component (3) includes a connecting support plate (31) connected to the heel bottom (2). At least two shock-absorbing blocks (32) are provided on the connecting support plate (31). The shock-absorbing blocks (32) are provided with... A connector (33) is provided. The shock-absorbing block (32) is connected to the connecting support plate (31) through the connector (33). An elastic element (34) that can push the shock-absorbing block (32) back to its original position is provided between the shock-absorbing block (32) and the connecting support plate (31). The connecting support plate (31) is also provided with a sliding groove (311) that allows the connector (33) to slide inside. The rear end of the sole body (11) is also provided with a pressing area (13) that can be used to apply pressure to the heel. The pressing area is located on the upper side of the rear bottom (2).

2. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The shock absorber (32) has multiple tiny air holes (321) inside.

3. The lightweight shock-absorbing sports shoe sole according to claim 2, characterized in that, The shock absorber (32) has a head end (322) and a bottom end (323). The bottom end (323) is provided with a slot (3231) into which the connector (33) can be inserted. The slot (3231) has a protrusion (3232) on its wall that can press against the connector (33).

4. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The connector (33) has a connecting section (331) that can extend from the slot (3231), and the connector (33) also includes a positioning plate (332) that can be embedded in the shock absorber (32), and the positioning plate (332) is provided with a through hole (3321) for the connecting section (331) to extend out.

5. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The pressure area (13) is composed of multiple pressure protrusions (131), and the surface (132) of the pressure protrusions (131) is arc-shaped.

6. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The front side of the sole body (11) is also provided with a second mounting groove (14), the second mounting groove (14) is provided with a front bottom layer (4), the rear end of the front bottom layer (4) is provided with an extension (41) with a gradually decreasing cross-sectional area, and the second mounting groove (14) is provided with an engagement groove (141) that can engage the extension (41).

7. The lightweight shock-absorbing sports shoe sole according to claim 6, characterized in that, The bottom surface of the front bottom layer (4) is also provided with multiple shock-absorbing grooves (42), and the multiple shock-absorbing grooves (42) are arranged in front and behind.

8. The lightweight shock-absorbing sports shoe sole according to claim 6, characterized in that, The upper surface (132) of the sole body (11) is also provided with a W-shaped mounting groove (15), which is located above the front bottom layer (4).

9. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The sole body (11) is made of EVA foam material.

10. The lightweight shock-absorbing sports shoe sole according to claim 1, characterized in that, The shock absorber (32) is made of foamed rubber material.