Comfortable and breathable shoes for women

By incorporating breathable holes, breathable rings, hydrophilic foam, and hydrophobic drainage columns into women's shoes, combined with a sole structure made of specific materials, the problems of breathability and sweat expulsion in women's shoes have been solved, achieving a highly breathable and comfortable wearing experience.

CN224098840UActive Publication Date: 2026-04-10WENZHOU QIANBAIMENG SHOES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Current women's shoes lack efficient breathability and sweat wicking mechanisms, making it difficult for moisture and heat to escape from the shoes, affecting comfort and health.

Method used

The design incorporates breathable holes, breathable rings, hydrophilic foam, hydrophobic guide columns, and diffusion strips, combined with polyurethane material, thermoplastic elastomer (TPR) material, and shock-absorbing silicone material in the sole to achieve air circulation and sweat removal.

Benefits of technology

It improves breathability and comfort inside the shoe, keeps the inside dry, reduces bacterial growth, enhances walking stability and comfort, and protects foot health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shoes, and discloses a comfortable breathable female shoe which comprises a vamp, a plurality of breathable holes are formed in the outer side of the vamp, a plurality of breathable rings are arranged on the two sides of the vamp, an insole is arranged in the vamp, a plurality of hydrophilic foams are arranged at the top of the insole, and hydrophobic flow guide columns are arranged at the other ends of the hydrophilic foams. A diffusion strip is arranged on the outer side of the middle of the vamp and connected with the other end of the hydrophobic flow guide column, a shoe sole half sole, a foot arch supporting block and a shoe sole heel are sequentially arranged at the bottom of the insole from front to back, a shoe tongue is arranged on the vamp, and a shoelace is arranged on the top of the vamp. Air in the shoe is promoted to change through foot heat, then air circulation is accelerated through the breathable rings by means of pressure difference, sweat is absorbed by the hydrophilic foam and then is discharged through the hydrophobic flow guide columns and the diffusion strips, the air continuously flows along with sweat discharge, the interior of the shoe is kept dry, and the overall breathability is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shoe technical field especially relates to a comfortable and ventilative women's shoes. BACKGROUND

[0002] In daily life, women's shoes as high-frequency wearing foot supplies, its comfort and ventilation directly affect the user's experience. Whether it is daily commuting, leisure activities or light sports scene, the foot will generate heat and sweat due to continuous activity, if the air in the shoe cannot be effectively circulated, the sweat cannot be discharged in time, it is easy to cause the foot hot and humid, not only cause discomfort, but also may cause odor due to bacterial growth, and even affect the health of the foot. Therefore, the market has a continuous demand for women's shoes with efficient ventilation and comfort functions.

[0003] At present, the ventilation design of the existing women's shoes mainly depends on the single air hole or mesh material of the vamp, which can only realize basic air exchange, and lacks an active guiding and discharging mechanism for sweat. For example, the traditional air hole only realizes the preliminary circulation of internal and external air through physical pores, when the foot activity is large, the hot and humid air in the shoe is difficult to discharge quickly, and the air circulation efficiency is low; and the insole part is mostly made of single sweat-absorbing material, which can only temporarily absorb sweat, and cannot effectively guide the sweat out of the shoe, and long-time wearing will still cause the insole to be wet.

[0004] Therefore, in view of the above problems, a comfortable and ventilative women's shoes is proposed to solve the above problems. UTILITY MODEL CONTENTS

[0005] In order to make up for the above shortcomings, the utility model provides a comfortable and ventilative women's shoes, which aims at improving the problem that the existing women's shoes lack an active guiding and discharging mechanism for sweat in the prior art.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0007] A comfortable and ventilative women's shoes, comprising a vamp, a plurality of air holes are opened on the outer side of the vamp, a plurality of ventilation rings are arranged on both sides of the vamp, an insole is arranged inside the vamp, a plurality of hydrophilic foams are arranged on the top of the insole, a hydrophobic flow guide column is arranged at the other end of the hydrophilic foam, a diffusion strip is arranged on the middle outer side of the vamp and connected with the other end of the hydrophobic flow guide column, and a shoe sole front palm, a foot heart support block and a shoe sole heel are arranged on the bottom of the insole from front to back.

[0008] As a further description of the above technical scheme:

[0009] The vamp is provided with a tongue, and the top of the vamp is provided with a shoelace.

[0010] As a further description of the above technical scheme:

[0011] The shoe sole forefoot is made of polyurethane material which can effectively absorb and disperse the impact force received by the forefoot during walking or movement;

[0012] As a further description of the above technical solution:

[0013] The instep support block is made of thermoplastic rubber elastomer TPR material which can accurately fit the arch curve and provide stable and lasting support for the arch;

[0014] As a further description of the above technical solution:

[0015] The shoe sole heel is made of shock-absorbing silica gel material which can quickly absorb and dissipate the impact force received by the heel at the moment of landing;

[0016] As a further description of the above technical solution:

[0017] The bottom of the shoe sole forefoot is provided with anti-skid pattern one and anti-skid pattern two, the anti-skid pattern one is in the shape of a wave groove, and the anti-skid pattern two is in the shape of a longitudinal groove;

[0018] As a further description of the above technical solution:

[0019] The bottom of the shoe sole heel is provided with a buffer pattern, and the buffer pattern is divided into a central stable area and a radial pattern.

[0020] The utility model has the following beneficial effects:

[0021] 1、The utility model discloses a shoe upper outer side air hole, both sides air ring, linkage insole top hydrophilic foam, hydrophobic flow guide column and shoe upper middle part diffusion strip realize the beneficial effect of efficient air permeability. The heat of the foot promotes the change of air in the shoe, the air hole opens preliminary exchange, the air ring accelerates air circulation by pressure difference, the hydrophilic foam absorbs sweat and then discharges through the hydrophobic flow guide column to the diffusion strip, the air continuously flows along with the discharge of sweat, keeps the shoe dry, and strengthens the overall air permeability.

[0022] 2、The utility model discloses a shoe sole heel shock-absorbing silica gel and buffer pattern, instep support block TPR material, shoe sole forefoot polyurethane material and anti-skid pattern realize the excellent buffering support effect. The heel shock-absorbing silica gel and buffer pattern absorb and dissipate the impact when landing, the instep support block fits the arch and reduces the pressure, the forefoot polyurethane material disperses the impact force, the anti-skid pattern increases friction, reduces the fatigue of each part, improves walking stability and comfort, and protects the health of the foot. DRAWINGS

[0023] Figure 1 A three-dimensional schematic view of a comfortable and breathable lady shoe is provided for the utility model;

[0024] Figure 2A structure schematic view of the vamp of the comfortable and breathable women's shoes is provided in the utility model.

[0025] Figure 3 A structure schematic view of the anti-skid line I of the comfortable and breathable women's shoes is provided in the utility model.

[0026] Figure 4 An explosion view of the hydrophilic foam of the comfortable and breathable women's shoes is provided in the utility model.

[0027] Figure 5 For Figure 2 An enlarged view of A in the middle.

[0028] Legend:

[0029] 1, vamp; 2, air hole; 3, tongue; 4, shoelace; 5, air ring; 6, insole; 7, hydrophilic foam; 8, hydrophobic flow guide column; 9, diffusion strip; 10, forefoot of sole; 11, instep support block; 12, heel of sole; 13, anti-skid line I; 14, anti-skid line II; 15, buffer line. Specific implementation

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0031] With reference to Figures 1 to 5 The utility model provides an embodiment: a comfortable and breathable women's shoes, including vamp 1, vamp 1 is provided with tongue 3 and shoelace 4. Tongue 3 covers the instep area, can reduce the direct compression of shoelace 4 to the instep, fills the gap between vamp 1 and the instep simultaneously, assists the adjustment of the space in the shoe, avoids the sundries from entering when walking, and shoelace 4 is passed through the shoe hole of vamp 1 and is tied tightly, can adjust the tightness of vamp 1 according to the foot type, makes the shoes closely fit the instep and ankle, prevents vamp 1 from sliding when walking, and enhances the wearing stability.

[0032] The multiple air holes 2 formed on the outer side of vamp 1, when the foot movement produces heat and leads to the air in the shoe to be heated, with the help of the hot air rising principle and the internal and external pressure difference, the preliminary exchange channel of the air outside and in the shoe is formed, the fresh air is caused to flow in and part of the hot and humid air is discharged, and the stuffy feeling in the shoe is reduced. The air rings 5 on both sides of vamp 1 are made of elastic material and are annular structures, and are passively expanded or contracted along with the change of the pressure in the shoe caused by the foot movement (such as air extrusion when stepping), the air flow cross-sectional area is increased, more air is caused to flow in and out of the shoe, and the air circulation efficiency is further improved.

[0033] The insole 6 inside the vamp 1 serves as a cushioning and supporting layer between the foot and the sole, providing basic support by directly contacting the foot bottom. The hydrophilic foam 7 mounted on the top of the insole 6 is made of high water absorption material and has a porous surface structure that can quickly absorb sweat discharged from the foot, reducing the retention of sweat between the foot bottom and the insole 6. The bottom of the hydrophilic foam 7 is vertically connected to the hydrophobic guide column 8, which has a hollow guide channel inside that uses the hydrophobic property to guide the absorbed sweat from the top of the insole 6 to the diffusion strip 9 on the outside of the vamp 1. The diffusion strip 9 is fixed to the outside of the middle part of the vamp 1 and has a grid-like porous surface structure that can evenly disperse sweat to the outside, accelerating moisture removal by increasing evaporation area and driving air flow inside the shoe, thereby enhancing overall ventilation effect.

[0034] The insole 6 has a shoe sole forefoot 10, a foot arch support block 11, and a shoe sole heel 12 arranged in sequence from front to back at the bottom. The shoe sole forefoot 10 is made of polyurethane material and has good impact resistance, which can effectively absorb and disperse the ground reaction force when the forefoot of the foot lands or pushes the ground, reducing the impact on the toes and metatarsal bones. The wavy groove-shaped anti-slip pattern 13 on the outside of the bottom is distributed horizontally, which can embed the slight undulations of the ground to enhance the horizontal anti-slip ability, and the longitudinal groove-shaped anti-slip pattern 14 on the inside is adapted to the longitudinal texture of the ground to improve the friction in the front and back directions, together ensuring the grip and flexibility during walking.

[0035] The foot arch support block 11 is made of thermoplastic rubber elastomer and has a shape that fits the natural curvature of the human foot arch. It is located at the foot arch position at the bottom of the insole 6 and can support the foot arch to avoid excessive collapse during walking, thereby dispersing the pressure on the foot arch and reducing fatigue and soreness caused by long-term walking. The shoe sole heel 12 is made of shock-absorbing silicone material, which has a porous internal structure that can absorb impact energy. The bottom cushioning pattern 15 is divided into a central stable area and a radial pattern: the central stable area is a rectangular plane at the center of the heel bottom, which first contacts the ground when landing to quickly position the center of gravity and avoid deviation; the radial pattern radiates multiple shallow grooves from the center to the outside, evenly dispersing the impact force concentrated on the heel to the edge of the sole, reducing local pressure and the transmission of vibration to the ankle and knee joints.

[0036] Working principle: in the air permeation process, the heat generated by the feet increases the temperature of the air in the shoes. Due to the rising of the hot air and the change of pressure, the air holes 2 on the outside of the vamp 1 become the first channel for the preliminary exchange of air between the outside and the inside of the shoes, so that fresh air can enter and part of the hot and humid air can be discharged. With the continuous activity of the feet, the pressure in the shoes changes constantly, and the air permeation rings 5 on both sides of the vamp 1 further promote the air circulation due to the change of pressure difference, so that more air can enter and exit the shoes, accelerating the air circulation. At the same time, the sweat discharged by the feet contacts the hydrophilic foam 7 on the top of the insole 6, and due to the hydrophilic property, the sweat is quickly absorbed. The absorbed sweat is transmitted to the hydrophobic guide column 8 through the hydrophilic foam 7, and the hydrophobic guide column 8 uses its structure and hydrophobic property to guide the sweat to the diffusion strip 9 on the outside of the middle part of the vamp 1. The diffusion strip 9 disperses and discharges the sweat outside the shoes. In this process, the air continuously flows in the shoes along with the sweat, further enhancing the air permeability of the shoes.

[0037] In the buffering and supporting process, when the feet touch the ground, the heel 12 of the sole first contacts the ground, and the shock-absorbing silica gel material and the buffer pattern 15 on the bottom of the heel 12 play a role. The central stable area of the buffer pattern 15 provides preliminary stable support, and the radial pattern effectively disperses the impact force, so that the impact on the heel is quickly absorbed and dissipated, reducing the damage to the feet and joints. With the movement of the feet, the center of gravity shifts to the instep part, and the thermoplastic rubber elastomer TPR material of the instep support block 11 can accurately fit the arch curve, providing stable and lasting support for the arch, reducing the pressure on the arch during walking, and preventing the arch from being tired. When the feet continue to move forward and are about to lift up, the forefoot 10 of the sole bears the pressure, and the polyurethane material effectively absorbs and disperses the impact force on the forefoot during walking or exercise. At the same time, the wave-shaped anti-slip pattern 13 and the longitudinal groove-shaped anti-slip pattern 14 increase the friction between the sole and the ground, providing flexible and stable support, and reducing the fatigue of the forefoot.

[0038] Finally, it should be pointed out that the above-mentioned is only the preferred embodiment of the present application and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A comfortable and breathable women's shoe comprising an upper (1), characterized in that: The outer side of the vamp (1) is provided with a plurality of air holes (2), the two sides of the vamp (1) are provided with a plurality of air rings (5), the inside of the vamp (1) is provided with an insole (6), the top of the insole (6) is provided with a plurality of hydrophilic foams (7), the other end of the hydrophilic foam (7) is provided with a hydrophobic flow guide column (8), the middle outer side of the vamp (1) is provided with a diffusion strip (9) and is connected with the other end of the hydrophobic flow guide column (8), and the bottom of the insole (6) is sequentially provided with a forefoot (10), a metatarsal support block (11) and a heel (12) from front to back.

2. The comfortable and breathable women's shoes according to claim 1, characterized in that: The vamp (1) is provided with a tongue (3), and the top of the vamp (1) is provided with a shoelace (4).

3. The comfortable and breathable women's shoes according to claim 1, characterized in that: The forefoot (10) is made of polyurethane material which can effectively absorb and disperse the impact force received by the forefoot during walking or movement.

4. The comfortable and breathable women's shoes according to claim 1, characterized in that: The metatarsal support block (11) is made of thermoplastic rubber elastomer TPR material which can accurately fit the arch curve and provide stable and lasting support for the arch.

5. The comfortable and breathable women's shoe according to claim 1, characterized in that: The heel (12) is made of shock-absorbing silica gel material which can quickly absorb and dissipate the impact force received by the heel in the moment of landing.

6. The comfortable and breathable women's shoe according to claim 1, characterized in that: The bottom of the forefoot (10) is provided with anti-skid lines one (13) and anti-skid lines two (14), the anti-skid lines one (13) are in the shape of wave grooves, and the anti-skid lines two (14) are in the shape of longitudinal grooves.

7. The comfortable and breathable women's shoe according to claim 1, characterized in that: The bottom of the heel (12) is provided with a buffer pattern (15), and the buffer pattern (15) is divided into a central stable area and a radial pattern.