Circulating breathable damping pneumatic air-conditioning sole structure

By setting the penetrating breathable grooves of the circulating breathable grooves and elastic breathable cushions on the front cavity of the sole plate, the problem of insufficient air storage and circulation area of the existing sole structure is solved, better air circulation and heat dissipation effects are achieved, and the improvement effect of the in-shoe environment is improved.

CN223125940UActive Publication Date: 2025-07-22YONGJIA SHACHI SHOES CO LTD
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Patent Information

Application Number
CN202422504466.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-07-22
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The existing sole structure has limited air storage, circulation area and heat dissipation capacity, resulting in insufficient improvement of the in-shoe environment.

Method used

Several circulating breathable grooves are provided at the bottom of the storage cavity of the sole plate, including a wide air storage groove and a narrow communication groove, adjacent grooves are arranged at intervals, and vertically penetrated breathable grooves and ventilation holes are provided on the elastic breathable cushion to form a comprehensive air circulation channel.

Benefits of technology

It significantly increases the amount of air storage and circulation in the sole, increases the heat dissipation area, improves the environment in the shoe, and improves reliability and applicability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of shoes, in particular to a pneumatic air-conditioning shoe sole structure with circulation ventilation and shock absorption, which comprises a shoe sole plate, a shoe panel and an elastic ventilation pad, a storage cavity is arranged on the top surface of the shoe sole plate, the elastic ventilation pad is arranged in the storage cavity, and the shoe panel is arranged on a cavity opening of the storage cavity. The shoe is characterized in that a plurality of circulating ventilation grooves are formed in the bottom of the front cavity of the storage cavity, the circulating ventilation grooves comprise a plurality of wide air storage grooves and a plurality of narrow communication grooves, the wide air storage grooves and the narrow communication grooves are arranged at intervals one by one, and the adjacent wide air storage grooves are communicated through the narrow communication grooves. Compared with the prior art, the air storage amount can be increased, the air circulation area and amount in the shoe sole can be effectively increased, the heat dissipation area of the shoe sole can be effectively increased, the air circulation amount in the shoe can be sufficient, the environment in the shoe can be better improved, and the shoe sole has high reliability and applicability.
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Description

Technical Field

[0001] The utility model relates to the field of shoes, in particular to a circulating breathable shock-absorbing pneumatic air-conditioning sole structure. Background Technique

[0002] The patent document with the Chinese patent authorization publication number CN218921852U discloses a technical solution named "a breathable circulating breathing sole structure", and this technical solution includes the following technical features: it includes a shoe sole layer, an elastic breathable cushion layer, and an upper cover layer; a retaining edge part extends upward integrally from the four peripheral edges of the shoe sole layer, and the retaining edge part and the top surface of the shoe sole layer jointly enclose a storage cavity. A limiting convex part is arranged on the cavity bottom of the storage cavity. The thickness of the elastic breathable cushion layer corresponding to the front sole of the human body is the same as the thickness of the elastic breathable cushion layer corresponding to the heel of the human body. An air-permeable limiting groove is arranged on the elastic breathable cushion layer. The elastic breathable cushion layer is arranged in the storage cavity, and the air-permeable limiting groove is sleeved on the limiting convex part. The upper cover layer covers the cavity opening of the storage cavity, and a plurality of air-permeable holes communicating with the storage cavity are arranged on the upper cover layer.

[0003] In this technical solution, only the elastic breathable cushion layer is used to store air, so the amount of air stored on the sole is limited. Coupled with the fact that the front cavity bottom of the storage cavity and the front bottom surface of the upper cover layer are both plate-shaped, the ability of the front cavity bottom of the storage cavity to drive air circulation is limited. Only a relatively small area of the front end of the elastic breathable cushion layer corresponding to the air-permeable holes can achieve a relatively comprehensive air exchange with the inside of the shoe. It can be seen from this that the air circulation area and amount in the storage cavity are limited, which will not only result in a relatively small area of the sole that can achieve heat dissipation, but also result in a relatively small air circulation amount inside the shoe, thereby resulting in a relatively limited improvement effect of the sole on the shoe inner environment.

[0004] Therefore, it is very necessary to design a circulating breathable shock-absorbing pneumatic air-conditioning sole structure to solve the above technical problems. Content of the Utility Model

[0005] The purpose of the utility model is to solve the above problems and deficiencies, and provide a circulating breathable shock-absorbing pneumatic air-conditioning sole structure. This circulating breathable shock-absorbing pneumatic air-conditioning sole structure can not only increase the air storage capacity, but also effectively improve the air circulation area and amount inside the sole. It can effectively increase the area of the sole that can achieve heat dissipation, and can make the air circulation amount inside the shoe very sufficient, so as to be conducive to better improving the shoe inner environment, and it can have very high reliability and applicability.

[0006] The technical solution of the utility model is realized as follows:

[0007] A cyclic breathable and shock-absorbing pneumatic air-conditioning shoe sole structure, comprising a shoe sole plate, a shoe panel, and an elastic breathable pad. A storage cavity is provided on the top surface of the shoe sole plate. The elastic breathable pad is arranged in the storage cavity. The shoe panel is arranged at the opening of the storage cavity. A plurality of circulation holes penetrating through to the storage cavity are opened on the front sole part of the shoe panel. Its characteristic lies in that a plurality of cyclic breathable grooves are opened at the front cavity bottom of the storage cavity. The cyclic breathable grooves include a plurality of wide air storage grooves and a plurality of narrow communication grooves. Each wide air storage groove and each narrow communication groove are arranged at intervals one by one, and adjacent wide air storage grooves are communicated through the narrow communication grooves.

[0008] Preferably, the wide air storage grooves of each cyclic breathable groove are arranged side by side horizontally, and each cyclic breathable groove is arranged side by side in the front-back direction.

[0009] Preferably, the front and rear ends of adjacent two wide air storage grooves are respectively butted with corresponding narrow communication grooves.

[0010] Preferably, a plurality of ribbed portions arranged side by side in the front-back direction are provided at the front cavity bottom of the storage cavity, and the cyclic breathable grooves are formed between adjacent ribbed portions.

[0011] Preferably, both ends of the ribbed portion are respectively connected to the left and right cavity walls of the storage cavity.

[0012] Preferably, a grid groove is opened at the rear cavity bottom of the storage cavity. Vertically penetrating strip-shaped breathable slot seams are opened on the elastic breathable pad, and both ends of the strip-shaped breathable slot seams are respectively placed on the grid groove and the cyclic breathable groove. The front end of the strip-shaped breathable slot seam is also placed below a part of the circulation holes. Vertically penetrating ventilation holes are opened at the front end of the elastic breathable pad, and the ventilation holes are communicated with another part of the circulation holes.

[0013] Preferably, the horizontal cross-section of the ventilation hole is in an arc shape with both ends bent backward, and the front end of the strip-shaped breathable slot seam is butted and communicated with the middle part of the ventilation hole.

[0014] Preferably, a plurality of first reticulated anti-slip strips and a plurality of first grooved anti-slip strips are provided on the front bottom surface of the shoe sole plate. Each first reticulated anti-slip strip and each first grooved anti-slip strip are arranged horizontally, and each first reticulated anti-slip strip and each first grooved anti-slip strip are arranged at intervals one by one from front to back. The opposite side walls of adjacent first reticulated anti-slip strips and first grooved anti-slip strips are arranged staggeredly.

[0015] Preferably, a plurality of second reticulated anti-slip strips and a plurality of second grooved anti-slip strips are provided on the rear bottom surface of the shoe sole plate. Each second reticulated anti-slip strip and each second grooved anti-slip strip are arranged horizontally, and each second reticulated anti-slip strip and each second grooved anti-slip strip are arranged at intervals one by one from front to back. The opposite side walls of adjacent second reticulated anti-slip strips and second grooved anti-slip strips are arranged staggeredly.

[0016] Preferably, a wear-resistant ring is provided on the rear bottom surface of the shoe sole plate.

[0017] Advantages of the present utility model: In the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole, a number of circulating breathable grooves are provided at the front cavity bottom of the storage cavity, and the circulating breathable grooves include a number of wide air storage grooves and a number of narrow connecting grooves, and each wide air storage groove and each narrow connecting groove are arranged at intervals one by one. Moreover, adjacent wide air storage grooves are connected through narrow connecting grooves. Providing a number of circulating breathable grooves can increase the air storage capacity; with the circulating breathable grooves adopting the above structure, when the elastic breathable pad is pressed into a part of the wide air storage grooves, the space in this part of the wide air storage grooves can be compressed; when the elastic breathable pad leaves this part of the wide air storage grooves, the air in other wide air storage grooves can be inhaled relatively quickly and effectively; this can effectively improve the air circulation area and volume inside the front end of the shoe sole, thereby effectively increasing the area where the shoe sole can dissipate heat, and enabling the air circulation volume inside the shoe to be very sufficient, and further being conducive to better improving the environment inside the shoe. Therefore, the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole can have very high reliability and applicability. Description of the Drawings

[0018] Figure 1 It is a three-dimensional structure schematic diagram of the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole in the present utility model.

[0019] Figure 2 It is a disassembled structure schematic diagram of the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole in the present utility model.

[0020] Figure 3 It is a three-dimensional structure schematic diagram of the shoe sole plate in the present utility model. Detailed Embodiments

[0021] As Figure 1 shown in Figure 2 a structure of a circulating breathable shock-absorbing pneumatic air-conditioning shoe sole according to the present utility model includes a shoe sole plate 1, a shoe panel 2, and an elastic breathable pad 3 in the shape of an insole. A storage cavity 11 in the shape of an insole is provided on the top surface of the shoe sole plate 1. The elastic breathable pad 3 is disposed in the storage cavity 11. The shoe panel 2 is disposed at the cavity opening of the storage cavity 11. A number of circulation holes 21 penetrating into the storage cavity 11 are provided on the front sole part of the shoe panel 2. To achieve the invention purpose of the present utility model, a number of circulating breathable grooves 4 are provided at the front cavity bottom of the storage cavity 11. The circulating breathable grooves 4 include a number of wide air storage grooves 41 and a number of narrow connecting grooves 42. Each wide air storage groove 41 and each narrow connecting groove 42 are arranged at intervals one by one, and adjacent wide air storage grooves 41 are connected through narrow connecting grooves 42.

[0022] In the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole, a number of circulating breathable grooves 4 are provided at the bottom of the front cavity of the storage cavity 11. The circulating breathable grooves 4 include a number of wide air storage grooves 41 and a number of narrow connecting grooves 42. Each wide air storage groove 41 and each narrow connecting groove 42 are arranged at intervals one by one. Moreover, adjacent wide air storage grooves 41 are connected through narrow connecting grooves 42. Providing a number of circulating breathable grooves 4 can increase the air storage capacity; with the circulating breathable grooves 4 adopting the above structure, when the elastic breathable pad 3 is pressed into some of the wide air storage grooves 41, the space inside this part of the wide air storage grooves 41 can be compressed; when the elastic breathable pad 3 leaves this part of the wide air storage grooves 41, it can inhale the air in other wide air storage grooves 41 relatively quickly and effectively; this can effectively improve the air circulation area and quantity inside the front end of the shoe sole, thereby effectively increasing the area where the shoe sole can dissipate heat, and enabling the air circulation volume inside the shoe to be very sufficient, and further being beneficial to better improving the environment inside the shoe. Therefore, the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole can have very high reliability and applicability.

[0023] As Figure 2 shown, the elastic breathable pad 3 in the shape of an insole and the storage cavity 11 are adopted, which can match the sole of the foot, and thus the elastic breathable pad 3 can play a comprehensive and effective shock-absorbing role on the sole of the foot. And the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole can be conducive to forming a comprehensive and effective circulating breathable and heat dissipation effect, and thus can achieve the functions of circulating breathable shock absorption and pneumatic air conditioning.

[0024] As Figure 2 shown, the wide air storage grooves 41 of each circulating breathable groove 4 are arranged side by side horizontally, and each circulating breathable groove 4 is arranged side by side in the front-back direction. This can enable the circulating breathable grooves 4 to play a more comprehensive and effective circulating breathable effect, thereby helping to further improve the reliability and applicability of the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole.

[0025] As Figure 2 shown, the front and rear ends of adjacent two wide air storage grooves 41 are respectively butted with the corresponding narrow connecting grooves 42. This can form wide air storage grooves 41 with an alternating and staggered arrangement, thereby enabling the circulating breathable grooves 4 to have a larger circulating breathable range and capacity, and further helping to further improve the reliability and applicability of the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole.

[0026] As Figure 2 shown, a number of rib portions 12 arranged side by side in the front-back direction are provided at the bottom of the front cavity of the storage cavity 11, and the circulating breathable grooves 4 are formed between adjacent rib portions 12. Providing the rib portions 12 can not only enhance the structural strength of the shoe sole plate 1, but also be conducive to forming stable and reliable circulating breathable grooves 4, thereby enabling the structure of the circulating breathable shock-absorbing pneumatic air-conditioning shoe sole to have higher reliability.

[0027] As Figure 2As shown, the two ends of the convex strip portion 12 are respectively connected to the left and right walls of the storage cavity 11. This can further enhance the structural strength, thereby helping to improve durability.

[0028] like Figure 2 As shown, the rear cavity bottom of the storage cavity 11 is provided with a square slot 13, the elastic air-permeable pad 3 is provided with a vertically penetrating strip-shaped air-permeable slot 31, and the two ends of the strip-shaped air-permeable slot 31 are respectively placed on the square slot 13 and the circulation air-permeable slot 4, and the front end of the strip-shaped air-permeable slot 31 is placed under a part of the circulation holes 21, and the front end of the elastic air-permeable pad 3 is provided with a vertically penetrating ventilation hole 32, and the ventilation hole 32 is connected with another part of the circulation holes 21. In this way, the circulation holes 21 can better form a comprehensive and effective circulation ventilation effect on the storage cavity 11, thereby helping to further improve the circulation ventilation performance.

[0029] like Figure 2 As shown, the horizontal cross section of the ventilation hole 32 is an arc shape with both ends bent backwards, and the front end of the strip-shaped air-permeable slot 31 is connected to the middle of the ventilation hole 32. This can help to exert a more comprehensive and effective circulation and ventilation effect, thereby obtaining a better pneumatic air conditioning effect, which helps to further improve the performance.

[0030] like Figure 3 As shown, a plurality of first textured anti-skid strips 14 and a plurality of first grooved anti-skid strips 15 are arranged on the front bottom surface of the sole plate 1, and each first textured anti-skid strip 14 and each first grooved anti-skid strip 15 are arranged in a transverse manner, and each first textured anti-skid strip 14 and each first grooved anti-skid strip 15 are arranged one by one from front to back, and the opposite side walls of adjacent first textured anti-skid strips 14 and first grooved anti-skid strips 15 are arranged in a staggered manner. In this way, the front end of the sole plate 1 can have a very stable and reliable anti-skid performance, thereby effectively improving the safety of use.

[0031] like Figure 3 As shown, a plurality of second textured anti-skid strips 16 and a plurality of second grooved anti-skid strips 17 are arranged on the rear bottom surface of the sole plate 1, and each second textured anti-skid strip 16 and each second grooved anti-skid strip 17 are arranged in a transverse manner, and each second textured anti-skid strip 16 and each second grooved anti-skid strip 17 are arranged one by one from front to back, and the opposite side walls of adjacent second textured anti-skid strips 16 and second grooved anti-skid strips 17 are arranged in a staggered manner. In this way, the rear end of the sole plate 1 can have a very stable and reliable anti-skid performance, thereby effectively improving the safety of use.

[0032] like Figure 3As shown, the first reticulated anti-slip strip 14 and the second reticulated anti-slip strip 16 are both ridges with a reticulated anti-slip surface on the lower surface. The first grooved anti-slip strip 15 and the second grooved anti-slip strip 17 are both ridges with a number of waist-shaped anti-slip grooves 18 on the lower surface, and each waist-shaped anti-slip groove 18 is arranged horizontally; this can meet the requirements of actual manufacturing and use.

[0033] As Figure 3 shown, a wear-resistant ring 19 is provided on the rear bottom surface of the shoe sole 1. In this way, it is not necessary to use wear-resistant materials for the entire heel, and good wear-resistant effects can still be obtained, which can play a role in extending the service life and controlling the manufacturing cost.

[0034] As Figure 3 shown, during actual manufacturing, the wear-resistant ring 19 uses the wear-resistant material on the existing shoe sole, and the lower surface of the wear-resistant ring 19, the lower surface of the second reticulated anti-slip strip 16, and the lower surface of the second grooved anti-slip strip 17 are in the same plane or approximately in the same plane; this can play a dual role of wear resistance and anti-slip.

Claims

1. A cyclic breathable and shock-absorbing pneumatic air-conditioning shoe sole structure, comprising a shoe sole plate (1), a shoe panel (2), and an elastic breathable pad (3). A storage cavity (11) is provided on the top surface of the shoe sole plate (1). The elastic breathable pad (3) is disposed in the storage cavity (11). The shoe panel (2) is disposed at the opening of the storage cavity (11). A plurality of circulation holes (21) penetrating into the storage cavity (11) are formed in the front sole portion of the shoe panel (2). It is characterized in that: A plurality of circulation ventilation grooves (4) are formed in the front cavity bottom of the storage cavity (11). The circulation ventilation grooves (4) include a plurality of wide air storage grooves (41) and a plurality of narrow communication grooves (42). Each wide air storage groove (41) and each narrow communication groove (42) are arranged at intervals one by one, and adjacent wide air storage grooves (41) are communicated through the narrow communication grooves (42).

2. The circulating breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 1, wherein: The wide air storage grooves (41) of each circulation ventilation groove (4) are arranged side by side horizontally, and each circulation ventilation groove (4) is arranged side by side in the front-rear direction.

3. The cyclic breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 2, wherein: The front and rear ends of adjacent two wide air storage grooves (41) are respectively butted with corresponding narrow communication grooves (42).

4. The circulating breathable shock-absorbing pneumatic air-conditioning sole structure according to any one of claims 1 to 3, characterized in that: A plurality of ribbed portions (12) arranged side by side in the front-rear direction are provided on the front cavity bottom of the storage cavity (11), and the circulation ventilation grooves (4) are formed between adjacent ribbed portions (12).

5. The loop breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 4, characterized in that: Both ends of the ribbed portion (12) are respectively connected to the left and right cavity walls of the storage cavity (11).

6. The circulating breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 1, wherein: A grid groove (13) is formed in the rear cavity bottom of the storage cavity (11). Vertically penetrating strip-shaped ventilation groove slits (31) are formed in the elastic ventilation pad (3), and both ends of the strip-shaped ventilation groove slits (31) are respectively placed on the grid groove (13) and the circulation ventilation grooves (4). The front end of the strip-shaped ventilation groove slits (31) is also placed below a part of the circulation holes (21). Vertically penetrating ventilation holes (32) are formed in the front end of the elastic ventilation pad (3), and the ventilation holes (32) are communicated with another part of the circulation holes (21).

7. The cyclic breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 6, characterized in that: The horizontal cross-section of the ventilation hole (32) is in an arc shape with both ends bent backward, and the front end of the strip-shaped ventilation groove slit (31) is butted and communicated with the middle part of the ventilation hole (32).

8. The circulating breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 1, characterized in that: A plurality of first reticulated anti-slip strips (14) and a plurality of first grooved anti-slip strips (15) are provided on the front bottom surface of the shoe sole (1). Each first reticulated anti-slip strip (14) and each first grooved anti-slip strip (15) are arranged horizontally, and each first reticulated anti-slip strip (14) and each first grooved anti-slip strip (15) are arranged at intervals one by one from front to back. The opposite side walls of adjacent first reticulated anti-slip strips (14) and first grooved anti-slip strips (15) are arranged staggeredly.

9. The cyclic breathable shock-absorbing pneumatic air-conditioning sole structure according to claim 1, wherein: A plurality of second reticulated anti-slip strips (16) and a plurality of second grooved anti-slip strips (17) are provided on the rear bottom surface of the shoe sole (1). Each second reticulated anti-slip strip (16) and each second grooved anti-slip strip (17) are arranged horizontally, and each second reticulated anti-slip strip (16) and each second grooved anti-slip strip (17) are arranged at intervals one by one from front to back. The opposite side walls of adjacent second reticulated anti-slip strips (16) and second grooved anti-slip strips (17) are arranged staggeredly.

10. The cyclic breathable and shock-absorbing pneumatic air-conditioning sole structure according to claim 1, wherein: A wear-resistant ring (19) is provided on the rear bottom surface of the shoe sole (1).

Citation Information

Patent Citations

  • Breathable circulating breathing sole structure

    CN218921852U