Breathable shoe

By bonding a fabric upper to the sole to form a shoe cavity, and distributing ventilation holes on the upper, combined with weight-reducing grooves and anti-slip patterns on the sole, the problem of poor breathability in shoes is solved, achieving dryness and improved comfort inside the shoe cavity.

CN224055430UActive Publication Date: 2026-03-31TAIZHOU BAOLITE SHOES INDAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing shoes have poor breathability, causing feet to feel hot and humid, prone to sweating and fungal growth, affecting foot health and comfort.

Method used

The shoe cavity is formed by bonding the fabric upper and the sole. The upper has evenly distributed ventilation holes, and the sole is designed with weight-reducing grooves and anti-slip patterns. Combined with cushioning grooves and elastic components, it improves breathability and comfort.

Benefits of technology

It significantly improves the breathability of the shoes, keeps the inside of the shoe dry, reduces discomfort and fungal growth, and enhances the user's comfort and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shoes, in particular to a breathable shoe, which comprises a sole and a cloth vamp, the cloth vamp is adhered to the sole, the inner wall of the cloth vamp and the sole enclose to form a shoe cavity, the shoe cavity is used for a foot of a user to embed, breathable holes are uniformly distributed in the cloth vamp, and the breathable holes are communicated with the shoe cavity and the outside. The cloth vamp and the shoe sole are bonded to form the shoe cavity, the foot of a user can be effectively wrapped, the cloth vamp has good flexibility and comfort, the air holes evenly distributed in the cloth vamp communicate the shoe cavity with the outside, the air permeability of the shoe is remarkably improved, moisture in the shoe cavity can be discharged easily, the interior of the shoe cavity is kept dry, and the service life of the shoe is prolonged. The possibility of discomfortableness and fungus breeding caused by a humid environment is reduced, and the comfort level of a user can be improved.
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Description

Technical Field

[0001] This application relates to the technical field of footwear, and in particular to a breathable footwear. Background Technology

[0002] With the fast pace of life, people are paying more and more attention to leisure activities and self-care. Walking is a major cause of physical fatigue. Six of the twelve meridians in the human body lead to the feet, and there are nearly 40 acupoints. Therefore, foot health is crucial to overall health, making the choice of comfortable shoes very important. In addition to bearing the body's own weight, the feet also have to bear the weight of the shoes. Overly heavy shoes not only make walking inconvenient but also cause soreness and weakness in the feet and legs, leading to fatigue. Therefore, people have begun to research lightweight shoes. Besides improving sole materials, the design of the upper is also a factor to consider. Furthermore, the feet have many sweat glands, and being trapped inside shoes easily leads to sweating. A long-term hot and humid environment inside the shoe is also detrimental to foot health, as it is damp and prone to fungal growth. Utility Model Content

[0003] In order to improve the breathability of shoes, keep the inside of the shoe dry, and improve the user experience, this application provides a breathable shoe.

[0004] The breathable shoe provided in this application adopts the following technical solution:

[0005] A breathable shoe includes a sole and a fabric upper, the fabric upper being bonded to the sole, the inner wall of the fabric upper surrounding the sole to form a shoe cavity, the shoe cavity being for a user's foot to fit into, and the fabric upper having evenly distributed ventilation holes that connect the shoe cavity to the outside.

[0006] By adopting the above technical solution, the fabric upper and sole are bonded together to form a shoe cavity, which can effectively wrap the user's foot. The fabric upper has good flexibility and comfort, and the evenly distributed ventilation holes on the fabric upper connect the shoe cavity to the outside, which significantly improves the breathability of the shoe, helps to expel moisture from the shoe cavity, keeps the shoe cavity dry, reduces discomfort caused by a damp environment and the possibility of fungal growth, and helps to improve the user's comfort.

[0007] Preferably, the sole has a weight-reducing groove on the side away from the cloth upper, the weight-reducing groove extends along the length of the sole, the sole includes a toe part, an arch part and a heel part, the toe part, the arch part and the heel part are distributed sequentially along the length of the sole, and the toe part has an anti-slip groove on the side near the weight-reducing groove, the anti-slip groove is connected to the weight-reducing groove.

[0008] By adopting the above technical solution, a weight-reducing groove is set on the side of the sole away from the cloth upper, which can effectively reduce the weight of the sole, thereby reducing the overall weight of the shoe, improving wearing comfort and reducing the burden on the legs when walking. When walking, the toes usually make contact with the ground first. The anti-slip groove on the toes helps to improve the anti-slip performance of the sole and improve the safety of the shoe.

[0009] Preferably, the sole has a plurality of anti-slip patterns connected to the side near the weight-reducing groove. The plurality of anti-slip patterns are divided into two groups, and the two groups of anti-slip patterns are symmetrically distributed along the width direction of the sole. The plurality of anti-slip patterns in the same group are spaced apart along the length direction of the sole.

[0010] By adopting the above technical solution, several anti-slip patterns are added to the side of the sole near the weight reduction groove, which helps to increase the friction between the sole and the ground, improve the anti-slip performance of the shoe. The anti-slip patterns are divided into two groups and symmetrically distributed along the width of the sole to ensure that the shoe is evenly stressed, reduce the possibility of uneven wear or unstable walking due to excessive friction on one side, and improve the safety of the shoe.

[0011] Preferably, the arch and heel portions are provided with a plurality of cushioning grooves on the sidewalls along the width direction of the sole, the plurality of cushioning grooves are spaced apart along the length direction of the sole, and the cushioning grooves penetrate the sole along the width direction of the sole.

[0012] By adopting the above technical solution, several cushioning grooves are provided on the side wall of the arch and heel of the sole along the width direction. The cushioning grooves are distributed at intervals along the length of the sole and pass through the shoelaces along the width of the sole. This can effectively disperse the pressure on the arch and heel of the user when walking, improve the cushioning performance of the shoe, reduce foot fatigue caused by wearing for a long time, and improve the comfort of the shoe.

[0013] Preferably, the fabric upper has an opening that connects the shoe cavity to the outside, and an elastic part is connected to the side of the fabric upper away from the sole, the elastic part being arranged around the opening.

[0014] By adopting the above technical solution, the shoe opening on the fabric upper makes it easy for the user's foot to enter and exit the shoe cavity. At the same time, the design of the elastic part surrounding the shoe opening ensures the comfort of the shoe while increasing the fit of the shoe opening, reducing the possibility of foreign objects entering the shoe cavity through the shoe opening, and improving the comfort of the shoe.

[0015] Preferably, it further includes a front pull strip and a rear pull strip, wherein the rear pull strip is connected to the elastic part and the outer wall of the fabric upper, and the rear pull strip is located on the side of the elastic part away from the toe, and the front pull strip is connected to the fabric upper, and the front pull strip is located on the side of the fabric upper away from the rear pull strip.

[0016] By adopting the above technical solution, the shoes are equipped with a front pull strip and a rear pull strip, which makes it easier for users to apply force when putting on and taking off the shoes, thus improving the convenience of putting on and taking off the shoes.

[0017] Preferably, the shoe also includes shoelaces and connecting rings. The end of the front pull strip away from the shoe opening is provided with a fixing hole. The connecting ring is connected to the fabric upper and is located on the side of the fabric upper near the front pull strip. There are several connecting rings, which are divided into two groups. The two groups of connecting rings are symmetrically distributed along the width direction of the sole. Several connecting rings in the same group are spaced apart along the length direction of the front pull strip. The shoelaces pass through the fixing hole and the connecting rings.

[0018] By adopting the above technical solution, the cooperation between the fixing hole and the connecting ring allows the shoelaces to be securely installed on the front pull strip, making it easy for users to adjust the tightness of the shoes and improve the comfort of the shoes.

[0019] Preferably, the fabric upper includes a heel area, a transition area, and an instep area. The transition area is located between the heel area and the instep area. The ventilation holes are located between the heel area and the instep area. The transition area surrounds the instep area. Ventilation holes are provided on both sides of the transition area along the width direction of the sole. The ventilation holes connect the shoe cavity to the outside. The ventilation holes are strip-shaped.

[0020] By adopting the above technical solution, the fabric upper is divided into a heel area, a transition area, and an instep area. The ventilation holes are only distributed in the heel area and the instep area, which can specifically improve the breathability of these areas and meet the needs of the main sweat-producing areas of the feet. The transition area is set around the instep area and has strip ventilation holes on both sides to enhance the air circulation between the inside and outside of the shoe cavity, effectively reduce the humidity inside the shoe cavity, and improve the comfort of the shoe.

[0021] Preferably, a plurality of vent holes are provided on one side of the transition zone. The plurality of vent holes are divided into two groups, and the two groups of vent holes are distributed in parallel. The plurality of vent holes in the same group are distributed at intervals along the length direction of the transition zone.

[0022] By adopting the above technical solution, two sets of parallel ventilation holes are set in the transition zone and spaced apart along the length of the transition zone. This enhances the air circulation between the shoe cavity and the outside, improves the ventilation efficiency of the shoe, helps to quickly expel moisture from the shoe cavity, keeps the shoe cavity dry and comfortable, and improves the comfort of the shoe.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. The fabric upper and sole are bonded together to form the shoe cavity, which can effectively wrap the user's foot. The fabric upper has good flexibility and comfort. The evenly distributed ventilation holes on the fabric upper connect the shoe cavity to the outside, which significantly improves the breathability of the shoe, helps to expel moisture from the shoe cavity, keeps the shoe cavity dry, reduces discomfort caused by a damp environment and the possibility of fungal growth, and helps to improve the user's comfort.

[0025] 2. The fabric upper is divided into a heel area, a transition area, and an instep area. Ventilation holes are only distributed in the heel and instep areas, which can specifically improve the breathability of these areas and meet the needs of the main sweat-producing areas of the feet. The transition area is set around the instep area and has strip ventilation holes on both sides to enhance the air circulation between the inside and outside of the shoe cavity, effectively reduce the humidity inside the shoe cavity, and improve the comfort of the shoe.

[0026] 3. The transition zone features two sets of parallel ventilation holes spaced apart along its length to enhance airflow between the shoe cavity and the outside, improve ventilation efficiency, help quickly expel moisture from the shoe cavity, keep the shoe cavity dry and comfortable, and improve overall shoe comfort. Attached Figure Description

[0027] Figure 1 This is a structural diagram of a breathable shoe.

[0028] Figure 2 This is a structural diagram of a breathable shoe, mainly showing the sole.

[0029] Explanation of reference numerals in the attached figures:

[0030] 1. Breathable shoe body; 11. Shoe sole; 111. Toe section; 112. Arch section; 113. Heel section; 114. Weight reduction groove; 115. Anti-slip groove; 116. Anti-slip pattern; 117. Cushioning groove; 118. Reinforcing rib; 119. Recessed surface; 1110. Groove; 12. Fabric upper; 121. Ventilation hole; 122. Shoe opening; 123. Heel area; 124. Transition area; 1241. Ventilation hole; 125. Instep area; 13. Shoe cavity; 14. Elastic part; 15. Front pull strip; 151. Fixing hole; 152. Front through hole; 16. Rear pull strip; 161. Rear through hole; 17. Connecting ring; 18. Shoelaces. Detailed Implementation

[0031] The present application will be further described in detail below with reference to the accompanying drawings.

[0032] Reference Figure 1A breathable shoe includes a breathable shoe body 1, which includes a sole 11. In this embodiment, the sole 11 is made of EVA foam material. The sole 11 includes a toe portion 111, an arch portion 112, and a heel portion 113, which are distributed sequentially along the length of the sole 11. A weight-reducing groove 114 is provided on one side surface of the sole 11 along its thickness direction, and the length direction of the weight-reducing groove 114 is parallel to the length direction of the sole 11. A plurality of reinforcing ribs 118 are fixedly connected to the bottom of the weight-reducing groove 114, and the plurality of reinforcing ribs 118 are distributed at intervals along the length direction of the weight-reducing groove 114. In this embodiment, two reinforcing ribs 118 are provided. The length direction of the reinforcing ribs 118 is parallel to the width direction of the sole 11, and the two ends of the reinforcing ribs 118 are fixedly connected to the groove wall of the weight-reducing groove 114.

[0033] Reference Figure 1 and Figure 2 The arch portion 112 and heel portion 113 are provided with a plurality of cushioning grooves 117 on the sidewalls along the width direction of the sole 11. The plurality of cushioning grooves 117 are distributed at intervals along the length direction of the sole 11 and penetrate the sole 11 along the width direction of the sole 11. In this embodiment, there are three cushioning grooves 117, and the two cushioning grooves 117 near the toe portion 111 correspond to the two reinforcing ribs 118.

[0034] Reference Figure 1 The toe area 111 has an anti-slip groove 115 on its surface near the weight-reducing groove 114. The anti-slip groove 115 is annular and connected to the weight-reducing groove 114. In this embodiment, the depth of the anti-slip groove 115 is less than the depth of the weight-reducing groove 114. A plurality of anti-slip patterns 116 are fixedly connected to the side of the sole 11 near the weight-reducing groove 114. The anti-slip patterns 116 are annular and divided into two groups. The two groups of anti-slip patterns 116 are symmetrically distributed along the width direction of the sole 11, and the patterns 116 in each group are spaced apart along the length direction of the sole 11. In this embodiment, there are two anti-slip patterns 116. A recessed plane 119 is provided between two adjacent anti-slip patterns 116 in the same group, and the recessed plane 119 has a groove 1110. A groove 1110 is provided between two adjacent anti-slip patterns 116 in the same group.

[0035] Reference Figure 2The breathable shoe body 1 also includes a fabric upper 12. The fabric upper 12 is bonded to the surface of the sole 11 away from the groove 1110. The inner wall of the fabric upper 12 and the surface of the sole 11 away from the groove 1110 surround each other to form a shoe cavity 13, which is used for the user's foot to fit into. The fabric upper 12 also includes a heel area 123, a transition area 124, and an instep area 125. The connection between the heel area 123 and the sole 11 is located at the arch 112 and the heel 113. The transition area 124 is located on the side of the heel area 123 away from the heel 113. The connection between the transition area 124 and the sole 11 is located at the toe 111. The instep area 125 is located on the side of the transition area 124 away from the heel area 123. The transition area 124 is arranged around the instep area 125. Ventilation holes 121 are evenly distributed in the heel area 123 and the instep area 125, connecting the shoe cavity 13 to the outside. Ventilation holes 1241 are provided on both sides of the transition area 124 along the width direction of the sole 11, connecting the shoe cavity 13 to the outside. Several ventilation holes 1241 are provided on one side of the transition area 124, divided into two groups, arranged parallel to each other. Several ventilation holes 1241 in each group are spaced apart along the length direction of the transition area 124. In this embodiment, the ventilation holes 1241 are strip-shaped, with twelve ventilation holes 1241 on one side of the transition area 124, and six ventilation holes 1241 in each group evenly distributed along the length direction of the transition area 124.

[0036] A shoe opening 122 is provided on the side of the fabric upper 12 away from the sole 11. The shoe opening 122 is located on the side of the fabric upper 12 near the heel 113. An elastic part 14 is fixedly connected to the fabric upper 12 away from the sole 11, and the elastic part 14 is arranged around the shoe opening 122. The breathable shoe body 1 also includes a rear pull strip 16, which is fixedly connected to the elastic part 14 and the outer wall of the heel area 123. The rear pull strip 16 is located on the side of the elastic part 14 away from the toe 111. One end of the rear pull strip 16 is fixedly connected to the heel 113, and the other end of the rear pull strip 16 has a rear through hole 161. The rear through hole 161 extends through the rear pull strip 16 along the width direction of the sole 11 and is used for the user to pass through.

[0037] The breathable shoe body 1 also includes a front pull strip 15, shoelaces 18, and connecting rings 17. The front pull strip 15 is fixedly connected to the fabric upper 12 and is located on the side of the fabric upper 12 away from the rear pull strip 16. The end of the front pull strip 15 away from the sole 11 has a front through hole 152, which passes through the front pull strip 15 along the width direction of the sole 11 and is used for the user to pass through. The other end of the front pull strip 15 has a fixing hole 151, which passes through the front pull strip 15 along the width direction of the sole 11. The connecting ring 17 is fixedly connected to the outer wall of the instep area 125. The shoelaces 18 pass through the fixing hole 151 and the connecting ring 17. There are several connecting rings 17, which are divided into two groups. The two groups of connecting rings 17 are symmetrically distributed along the width direction of the sole 11, and the connecting rings 17 in the same group are spaced apart along the length direction of the front pull strip 15. In this embodiment, there are eight connecting rings 17, and four connecting rings 17 in the same group are evenly distributed along the length direction of the front pull bar 15.

[0038] The implementation principle of a breathable shoe according to this application embodiment is as follows: During the wearing process, the foot is placed into the shoe opening 122 and moved towards the shoelace 18. By pulling the front pull strip 15 and the rear pull strip 16, the elastic part 14 expands to facilitate wearing the shoe. When the foot is fully embedded in the shoe cavity 13, the tightness of the shoelace 18 allows the inner side of the shoe upper to fit snugly against the foot. The air inside the shoe cavity 13 exchanges with the outside air through the ventilation holes 121 and vents 1241, keeping the inside of the shoe cavity 13 dry.

[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A breathable shoe, characterized by: The utility model provides a kind of cloth shoes, including shoe sole (11) and cloth vamp (12);The cloth vamp (12) is bonded on shoe sole (11);The inner wall of the cloth vamp (12) and shoe sole (11) are enclosed to form shoe cavity (13);The shoe cavity (13) is used for the foot of user is embedded;The cloth vamp (12) is uniformly distributed with breathable hole (121);The breathable hole (121) is communicated shoe cavity (13) and outside.

2. The breathable shoe of claim 1, wherein: The side of the shoe sole (11) away from the cloth vamp (12) is provided with a weight-reducing groove (114);The weight-reducing groove (114) extends along the length direction of the shoe sole (11);The shoe sole (11) includes a toe portion (111), an arch portion (112) and a heel portion (113);The toe portion (111), the arch portion (112) and the heel portion (113) are sequentially distributed along the length direction of the shoe sole (11);The toe portion (111) is provided with an anti-skid groove (115) on the side close to the weight-reducing groove (114);The anti-skid groove (115) is communicated with the weight-reducing groove (114).

3. The breathable shoe of claim 2, wherein: The side of the shoe sole (11) close to the weight-reducing groove (114) is connected with a plurality of anti-skid lines (116);The plurality of anti-skid lines (116) are divided into two groups;The two groups of anti-skid lines (116) are symmetrically distributed along the width direction of the shoe sole (11);The plurality of anti-skid lines (116) in the same group are spaced apart along the length direction of the shoe sole (11).

4. The breathable shoe of claim 2, wherein: The side walls of the arch portion (112) and the heel portion (113) along the width direction of the shoe sole (11) are provided with a plurality of buffer grooves (117);The plurality of buffer grooves (117) are spaced apart along the length direction of the shoe sole (11);The buffer grooves (117) penetrate through the shoe sole (11) along the width direction of the shoe sole (11).

5. The breathable shoe of claim 2, wherein: The cloth vamp (12) is provided with a shoe opening (122);The shoe opening (122) is communicated with the shoe cavity (13) and the outside;The side of the cloth vamp (12) away from the shoe sole (11) is connected with an elastic portion (14);The elastic portion (14) is arranged around the shoe opening (122).

6. The breathable shoe of claim 5, wherein: Further comprising a front pull strip (15) and a rear pull strip (16);The rear pull strip (16) is connected to the elastic portion (14) and the outer wall of the cloth vamp (12);The rear pull strip (16) is located on the side of the elastic portion (14) away from the toe portion (111);The front pull strip (15) is connected to the cloth vamp (12);The front pull strip (15) is located on the side of the cloth vamp (12) away from the rear pull strip (16).

7. The breathable shoe of claim 6, wherein: Further comprising a shoelace (18) and a connecting ring (17);One end of the front pull strip (15) away from the shoe opening (122) is provided with a fixing hole (151);The connecting ring (17) is connected to the cloth vamp (12);The connecting ring (17) is located on the side of the cloth vamp (12) close to the front pull strip (15);The connecting ring (17) is provided with a plurality of connecting rings (17);The plurality of connecting rings (17) are divided into two groups;The two groups of connecting rings (17) are symmetrically distributed along the width direction of the shoe sole (11);The plurality of connecting rings (17) in the same group are spaced apart along the length direction of the front pull strip (15);The shoelace (18) passes through the fixing hole (151) and the connecting ring (17).

8. The breathable shoe of claim 1, wherein: The cloth shoe upper (12) comprises a heel area (123), a transition area (124) and an instep area (125); the transition area (124) is located between the heel area (123) and the instep area (125); the air holes (121) are located in the heel area (123) and the instep area (125); the transition area (124) is arranged around the instep area (125); the transition area (124) is provided with air holes (1241) on both sides along the width direction of the shoe sole (11); the air holes (1241) are communicated with the shoe cavity (13) and the outside; the air holes (1241) are in strip shape.

9. The breathable shoe of claim 8, wherein: One side of the transition area (124) is provided with a plurality of air holes (1241); the plurality of air holes (1241) are divided into two groups; the two groups of air holes (1241) are distributed in parallel; the plurality of air holes (1241) in the same group are distributed at intervals along the length direction of the transition area (124).