Special breathable shoe for sugared feet

By designing supportive insoles and upper support sections in shoes specifically designed for diabetic foot ulcers, a three-dimensional breathable network is constructed, solving the problems of breathability and protection of lesion sites in existing shoes. This achieves precise protection and rapid moisture wicking away from lesion sites, reducing the risk of infection.

CN224206268UActive Publication Date: 2026-05-08HUIZHOU HUISHIJIA TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU HUISHIJIA TECHNOLOGY CO LTD
Filing Date
2025-06-18
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing diabetic foot shoes cannot effectively create efficient air circulation channels and lack targeted protection for the affected areas. They cannot effectively prevent the affected areas from being squeezed and rubbed by external forces, which affects the control and recovery of the patient's foot condition.

Method used

Design a special breathable shoe for diabetic foot. By setting support insoles and uppers in the sole and upper, multiple isolation spaces and ventilation holes are formed. Elastic conical protrusions are used to stabilize the support components and construct a three-dimensional breathable network. The support and upper support components are made of silicone, and the sole is made of hard rubber. The support components can be flexibly adjusted to adapt to the location of the lesion.

Benefits of technology

It achieves precise protection of the affected area, avoids direct pressure and friction, quickly removes moisture, reduces the risk of infection, and improves ease of use and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a special breathable shoe for sugared foot, which relates to the technical field of sugared foot shoes, and comprises a sole and a vamp, the vamp is connected with the sole to form the sugared foot shoe, a supporting insole is arranged in the sugared foot shoe, a plurality of supporting parts are arranged on the supporting insole at intervals, an isolation space is formed between every two adjacent supporting parts, and the supporting parts are arranged in the isolation space. The diseased position of the sugar foot is located in the isolation space, the forming number of the isolation space is adjusted by adjusting the number of the supporting parts, the forming position of the isolation space is adjusted by adjusting the installation position of the supporting parts, and the number and the installation position of the supporting parts arranged on the supporting insole at intervals can be flexibly adjusted. Therefore, the formed isolation space can accurately correspond to different lesion positions of the diabetic foot patient, direct compression and friction of the shoes on lesion areas are effectively avoided, a safe external environment is provided for wound healing, and wound deterioration and infection risks are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of footwear technology for people with diabetes, specifically a special breathable shoe for people with diabetes. Background Technology

[0002] Diabetic foot, a serious complication of diabetes, can damage nerves and blood vessels in the foot, leading to decreased sensation and impaired blood circulation, making the foot highly susceptible to ulcers and infections. Patients with diabetic foot have stringent requirements for their daily footwear. Not only do they need shoes with excellent breathability to keep their feet dry, inhibit bacterial growth, and reduce the risk of infection, but they also need shoes that provide precise protection for the feet, especially avoiding pressure and friction on affected areas to prevent wound deterioration.

[0003] Currently available diabetic foot shoes or ordinary breathable shoes, while meeting the breathability requirements to some extent, still have many shortcomings. Most shoes achieve breathability only through conventional ventilation holes or breathable materials, failing to create efficient airflow channels and hindering the rapid removal of moisture from the feet. Furthermore, the internal structure of existing shoes lacks targeted protection for affected areas, cannot flexibly adjust to the location and severity of foot lesions, and cannot effectively prevent external pressure on affected areas, thus hindering the control and recovery of the patient's foot condition. Therefore, there is an urgent need to design a breathable shoe specifically for diabetic foot that can effectively solve the above problems. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a special breathable shoe for sugary feet, which solves the shortcomings of the prior art.

[0005] The purpose of this utility model is achieved through the following technical solution: a special breathable shoe for diabetic foot, including a sole and an upper, wherein the upper and sole are connected to form a diabetic foot shoe, and a support insole is provided inside the diabetic foot shoe, wherein multiple support parts are spaced apart on the support insole, and an isolation space is formed between two adjacent support parts, wherein the lesion of diabetic foot is located within the isolation space, the number of isolation spaces is adjusted by adjusting the number of support parts, and the position of the isolation space is adjusted by adjusting the installation position of the support parts.

[0006] Furthermore, the supporting insole has several ventilation holes, and the sole has several path ventilation holes, one end of which passes through the top surface of the sole and the other end of which passes through the surface of the upper.

[0007] Furthermore, the bottom of the support is fixed with a plurality of first conical protrusions, which are inserted into the vent holes.

[0008] Furthermore, the bottom of the supporting insole is fixed with a plurality of second conical protrusions, which are inserted into the ventilation holes of the path.

[0009] Furthermore, both the first and second conical protrusions are made of elastic material. The first conical protrusion is fitted into the vent hole by its own deformation interference fit, and the second conical protrusion is fitted into the vent hole by its own deformation interference fit.

[0010] Furthermore, the upper surface and both sides of the shoe have several ventilation holes.

[0011] Furthermore, the sugar-feet shoe has multiple surface support parts spaced apart inside, the surface support parts are connected to the inner top wall of the shoe surface, and an isolation zone is formed between two adjacent surface support parts.

[0012] Furthermore, the surface support portion is provided with several small ventilation holes, and the top of the surface support portion is fixed with multiple elastic cones, which are interference-fitted into the upper ventilation holes.

[0013] Furthermore, both the support portion and the surface support portion are made of silicone material.

[0014] Furthermore, the sole is made of hard rubber material.

[0015] The beneficial effects of this utility model are:

[0016] 1. The number and installation position of the support parts spaced apart on the insole can be flexibly adjusted. The resulting isolation space can accurately correspond to the different lesion locations of diabetic foot patients, effectively avoiding direct pressure and friction of the shoe on the lesion area, providing a safe external environment for wound healing, and reducing the risk of wound deterioration and infection.

[0017] 2. The ventilation holes on the insole, the path ventilation holes on the sole, the upper ventilation holes, and the small ventilation holes on the upper support section together form a three-dimensional ventilation network. Moisture generated by the feet can be quickly expelled from the shoe through these ventilation structures, keeping the inside of the shoe dry, reducing the environment for bacterial growth, and further reducing the chance of diabetic foot patients developing infections due to dampness.

[0018] 3. The first conical protrusion at the bottom of the support section, the second conical protrusion at the bottom of the support insole, and the elastic cone at the top of the upper support section are all made of elastic material. They are fitted into the corresponding ventilation holes through their own deformation. This design not only ensures the stability of the installation of each component and makes it difficult for the structure of the shoe to shift during use, but also makes it convenient for users to flexibly disassemble and adjust the position of the components according to actual needs, thus improving the ease of use.

[0019] 4. The support section and upper support section are made of silicone material, which is soft and can provide comfortable support for the foot while protecting the affected area; the sole is made of hard rubber material, which has good wear resistance and slip resistance, and can also support the ventilation holes to prevent the sole from deforming and blocking the ventilation holes, thus ensuring good breathability. Attached Figure Description

[0020] Figure 1 This is a structural schematic diagram of a special breathable shoe for sugary feet according to this utility model;

[0021] Figure 2 This is a schematic diagram of the internal structure of a special breathable shoe for sugary feet according to the present invention;

[0022] Figure 3 for Figure 2 Enlarged view of point A in the middle;

[0023] Figure 4 for Figure 2 Enlarged view at point B in the middle;

[0024] Figure 5 for Figure 2 C-axis sectional view;

[0025] In the diagram, 1-sole, 2-upper part, 3-supporting insole, 4-support part, 5-ventilation hole, 6-path ventilation hole, 7-first conical protrusion, 8-second conical protrusion, 9-upper ventilation hole, 10-face support part, 11-ventilation hole. Detailed Implementation

[0026] Example 1

[0027] like Figures 1 to 5As shown, a special breathable shoe for diabetic foot includes a sole 1 and an upper 2. The upper 2 and the sole 1 are connected to form a diabetic foot shoe. A support insole 3 is provided inside the shoe, and multiple support parts 4 are spaced apart on the support insole 3. An isolation space is formed between two adjacent support parts 4. The lesion of diabetic foot is located within the isolation space. The number of isolation spaces is adjusted by adjusting the number of support parts 4, and the position of the isolation spaces is adjusted by adjusting the installation position of the support parts 4. When diabetic foot patients develop ulcers on their feet, and the ulcer is located on the sole of the foot, the support parts 4 are installed on the support insole 3. The installation position of the support part 4 is adjusted according to the location of the foot ulcer, so that an isolation space is formed at the ulcer site on the sole of the foot. After the foot is put into the sugar foot shoe, the ulcer site on the sole of the foot is located in the isolation space, while the other infected sites on the sole of the foot are supported by the support part 4. Thus, an isolation space is formed only at the ulcer site, without affecting the support of the sole of the foot, and also avoiding pressure and friction on the ulcer site, which can protect the ulcer site well. Since the ulcer site is not in contact with the sugar foot shoe, a ventilation channel is formed between the ulcer site and the sole 1 of the shoe, which can quickly expel foot moisture and has good breathability.

[0028] Example 2

[0029] Based on Example 1, such as Figures 1 to 4 As shown, the shoe for diabetic foot has multiple surface support parts 10 spaced apart. The surface support parts 10 are connected to the inner top wall of the shoe upper 2, and an isolation zone is formed between two adjacent surface support parts 10. When the patient's ulcer is located on the instep, the support insole 3 does not need to be installed with support parts 4. Instead, surface support parts 10 are installed on the inner top of the shoe upper 2. The number of surface support parts 10 installed is determined by the number of ulcers. That is, the number of isolation zones formed by the surface support parts 10 is equal to the number of ulcers. The position of the surface support parts 10 is adjusted according to the location of the ulcer so that the ulcer is isolated within the isolation zone, thereby isolating and protecting the ulcer. In summary, choosing to install support parts 4 or surface support parts 10 according to the location of the foot ulcer can protect ulcers in different locations, effectively avoid direct pressure and friction of the shoe on the lesion area, provide a safe external environment for wound healing, and reduce the risk of wound deterioration and infection.

[0030] Example 3

[0031] Based on Embodiment 2, both the support part 4 and the surface support part 10 are made of silicone. The support part 4 is an insole that fits the diabetic foot shoe, and the surface support part 10 matches the internal shape and size of the shoe upper. The silicone material has good skin-friendly properties and is easy to cut. According to the location of the ulcer, the corresponding position of the insole is cut off to form multiple support parts 4. Multiple support parts 4 are installed on the support insole 3, so that an isolation space can be formed according to the location of the ulcer. Similarly, an isolation area can be formed on the shoe upper 2. It is highly adaptable. The support part 4 and the surface support part 10 can be cut according to the location of the ulcer of different patients.

[0032] Example 4

[0033] Based on Example 3, several upper ventilation holes 9 are provided on the surface and both sides of the shoe upper 2. When the ulcer is located on the sides of the foot, the support part 4 and the upper support part 10 are not installed. Gauze is wrapped around the ulcer. Since the ulcer is located on the side of the foot, the ulcer is not easily squeezed when the patient walks. At this time, the ventilation holes 9 enhance the breathability of the shoe for diabetic foot, which can protect the ulcer on the side of the foot from being affected.

[0034] Example 5

[0035] Based on Example 4, such as Figures 1 to 4 As shown, the insole 3 has several ventilation holes 5, and the sole 1 has several path ventilation holes 6. One end of the path ventilation hole 6 passes through the top surface of the sole 1, and the other end passes through the surface of the upper 2. The ventilation holes 5 and the path ventilation holes 6 are connected. The ventilation position through the path ventilation holes 6 is on the upper surface of the upper 2, which can enhance the waterproof performance of the sole 1 and prevent water on the ground from entering the shoe and causing aggravation of infection. Since the infection position is in a suspended state, it is easier to expel moisture and ensure a good ventilation effect.

[0036] Furthermore, the sole 1 is made of hard rubber material, which has good wear resistance and slip resistance, while also supporting the ventilation holes to prevent the sole from deforming and blocking the ventilation holes, thus ensuring good breathability.

[0037] Example 6

[0038] Based on Embodiment 5, the bottom of the support part 4 is fixed with multiple first conical protrusions 7, which are inserted into the ventilation holes 5. The bottom of the support insole 3 is fixed with multiple second conical protrusions 8, which are inserted into the path ventilation holes 6. Both the first conical protrusions 7 and the second conical protrusions 8 are made of elastic material. The first conical protrusions 7 are fitted into the ventilation holes 5 by their own deformation interference fit, and the second conical protrusions 8 are fitted into the path ventilation holes 6 by their own deformation interference fit. Both the first conical protrusion 7 and the second conical protrusion 8 are made of silicone. The deformation of the first conical protrusion 7 allows the support part 4 to be stably installed on the support insole 3. The support part 4 is installed using some ventilation holes 5, which makes the structure of the support part 4 simpler and does not affect the breathability. After the support part 4 is installed, the support insole 3 is installed in the diabetic foot shoe. The deformation of the second conical protrusion 8 is used for installation, so that the support insole 3 can be stably installed on the sole 1, avoiding slippage of the support insole 3 and affecting the patient's walking.

[0039] Example 7

[0040] Based on Embodiment Six, a plurality of small ventilation holes 11 are provided through the surface support 10, and a plurality of elastic cones 12 are fixed on the top of the surface support 10. The elastic cones 12 are interference-fitted into the upper ventilation holes 9. Similarly, the elastic cones 12 are also supported by silicone material. The elasticity of the elastic cones 12 is used to fit into the upper ventilation holes 9 to complete the stable installation of the surface support 10, which is convenient for installation and disassembly. Air is ventilated through the small ventilation holes 11 and the upper ventilation holes 9, so as not to affect the air permeability, and the installation of the surface support 10 can still be completed.

Claims

1. A special breathable shoe for sugary feet, comprising a sole (1) and an upper (2), wherein the upper (2) and the sole (1) are connected to form a sugary foot shoe, characterized in that, The shoe for diabetic foot is provided with a support insole (3), and multiple support parts (4) are provided on the support insole (3) at intervals. An isolation space is formed between two adjacent support parts (4). The lesion of diabetic foot is located in the isolation space. The number of isolation spaces is adjusted by adjusting the number of support parts (4), and the position of the isolation space is adjusted by adjusting the installation position of the support parts (4).

2. The special breathable shoe for sugary feet according to claim 1, characterized in that, The support insole (3) has several ventilation holes (5), and the sole (1) has several path ventilation holes (6). One end of the path ventilation hole (6) passes through the top surface of the sole (1), and the other end passes through the surface of the upper (2).

3. A special breathable shoe for sugary feet according to claim 2, characterized in that, The bottom of the support part (4) is fixed with a plurality of first conical protrusions (7), which are inserted into the vent hole (5).

4. A special breathable shoe for sugary feet according to claim 3, characterized in that, The bottom of the support insole (3) is fixed with a plurality of second conical protrusions (8), which are inserted into the ventilation holes (6).

5. A special breathable shoe for sugary feet according to claim 4, characterized in that, Both the first conical protrusion (7) and the second conical protrusion (8) are made of elastic material. The first conical protrusion (7) is fitted into the vent hole (5) by its own deformation interference fit, and the second conical protrusion (8) is fitted into the path vent hole (6) by its own deformation interference fit.

6. A special breathable shoe for sugary feet according to claim 1, characterized in that, The upper (2) has several ventilation holes (9) on its surface and both sides.

7. A special breathable shoe for sugary feet according to claim 6, characterized in that, The sugar-foot shoe has multiple surface support parts (10) spaced apart inside. The surface support parts (10) are connected to the inner top wall of the shoe surface (2), and an isolation area is formed between two adjacent surface support parts (10).

8. A special breathable shoe for sugary feet according to claim 7, characterized in that, The surface support (10) has several small ventilation holes (11) through it, and the top of the surface support (10) is fixed with multiple elastic cones (12), which are interference fit in the upper ventilation holes (9).

9. A special breathable shoe for sugary feet according to claim 8, characterized in that, Both the support part (4) and the surface support part (10) are made of silicone material.

10. A special breathable shoe for treating sugary feet according to claim 1, characterized in that, The sole (1) is made of hard rubber material.