Comfortable supporting half insole
By designing a comfortable support half-insole with a zoned dynamic support structure, the problems of incomplete coverage, easy slippage, and limited material in traditional half-insoles are solved. This achieves precise adaptation to foot biomechanics, improves movement stability and comfort, and is suitable for high-intensity sports.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional half-mats have incomplete coverage, are prone to slipping, use limited materials, have poor adaptability, and affect the stability and comfort of movement.
A comfortable support insole was designed, employing a zoned dynamic support structure, including an adaptive interface layer, a carbon fiber dynamic layer, a gradient cushioning layer, and modular Velcro connections. Combined with an antibacterial and breathable layer, an elastic shock-absorbing layer, and a rigid support layer, it achieves precise adaptation to foot biomechanics through 3D-printed thermoplastic polyurethane mesh and a biomimetic micro-suction cup structure, relieving concentrated pressure on the sole of the foot and improving sports stability and comfort.
It achieves precise adaptation to foot biomechanics, relieves concentrated pressure on the sole of the foot, and improves stability and comfort during exercise. It is especially suitable for high-intensity sports and has good prospects for use.
Smart Images

Figure CN224038578U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the insole technical field, concretely is a comfortable type support half insole. BACKGROUND
[0002] As a common foot care product, insoles are mainly used to improve wearing comfort, provide support and relieve fatigue. They have various materials, including memory foam, EVA, silica gel, etc., and have functions such as moisture absorption, sweat release, antibacterial and odor resistance. Modern insole design combines with the principle of human engineering, which can effectively disperse the pressure on the sole and improve the performance of sports, and is suitable for daily walking, sports, rehabilitation and other scenes. Some high-end products also integrate intelligent sensing technology, which can monitor gait data in real time and provide reference for health management. With the progress of science and technology, the functionality and practicality of insoles are constantly improving, and they have become an indispensable daily necessity in people's lives.
[0003] However, it still has some shortcomings, such as: traditional half-mats only cover the forefoot or arch area, lack of dynamic adaptation to foot biomechanics, easy to cause foot pressure concentration during exercise, lightweight design causes the half-mat to slide in the shoe, affecting the stability of the movement, ordinary silica gel and sponge materials cannot meet the needs of cushioning, energy feedback and ventilation, and fixed thickness cannot match the internal space of different sports shoes and the difference of foot shape.
[0004] To solve the above problems, a comfortable support half-insole is proposed in the present application. INNOVATION
[0005] The utility model aims at providing a comfortable support half-insole to solve the problems of incomplete coverage, easy sliding, single material, poor adaptability and affecting the stability of the movement of the traditional half-mat in the background technology.
[0006] To achieve the above purpose, the technical scheme adopted by the utility model is: a comfortable support half-insole, comprising a sports insole main body, a sports support half-insole insole is detachably arranged above the sports insole main body, a hollow slot is formed in the sports support half-insole insole, a shock pad is detachably arranged in the hollow slot, the sports support half-insole insole is convenient to adopt a partition dynamic support structure, accurately adapts to the foot biomechanics, relieves the foot pressure concentration, improves the stability of the movement, selects the material to realize the multiple functions of cushioning, energy feedback and ventilation, improves the wearing comfort and the performance of sports, especially suitable for high-intensity sports demand, solves the shortcomings of the traditional half-mat through innovative design, and has good application prospect.
[0007] Preferably, the shock pad is fixedly connected above the sports insole main body, and a magic tape wool surface is fixedly connected above the sports insole main body.
[0008] Preferably, the sports support half-pad shoe pad is fixedly connected with a Velcro hook surface below, and a Velcro hook surface is detachably arranged above the Velcro hook surface.
[0009] Preferably, the sports support half-pad shoe pad comprises an adaptive interface layer, a carbon fiber dynamic layer and a gradient buffer layer, the adaptive interface layer is fixedly connected above the sports support half-pad shoe pad, and the gradient buffer layer is fixedly connected below the sports support half-pad shoe pad.
[0010] Preferably, the adaptive interface layer is fixedly connected with the carbon fiber dynamic layer below, and the carbon fiber dynamic layer is fixedly connected with the gradient buffer layer below, and the sports shoe pad body comprises an antibacterial and breathable layer, an elastic shock-absorbing layer and a rigid support layer.
[0011] Preferably, the antibacterial and breathable layer is fixedly connected above the sports shoe pad body, the elastic shock-absorbing layer is fixedly connected below the antibacterial and breathable layer, the rigid support layer is fixedly connected below the elastic shock-absorbing layer, and the rigid support layer is fixedly connected below the sports shoe pad body, when the sports support half-pad shoe pad is installed, the Velcro hook surface below the sports support half-pad shoe pad is matched with the Velcro hook surface above the sports shoe pad body, and the shock-absorbing pad is aligned with the hollow groove, and finally, the sports support half-pad shoe pad is attached, when the sports support half-pad shoe pad is used, the adaptive interface layer is formed by 3D printing of thermoplastic polyurethane grid, and the surface is covered with bionic lizard toe micro-suction disc structure to improve the adsorption force, the carbon fiber dynamic layer is formed by pre-impregnated carbon fiber cloth molding, and the front palm area is bent through differential layer design, the gradient buffer layer is made of carbon fiber layer material and is compounded with honeycomb PEBAX foaming body, the honeycomb aperture decreases from the front palm to the arch thickness, and the arch area can be covered, the antibacterial and breathable layer of the sports shoe pad body is compounded with silver ion antibacterial agent by using woven mesh cloth, so that sweat is quickly discharged and microorganisms are inhibited, the elastic shock-absorbing layer is compounded by high-rebound EVA and memory sponge, the front palm honeycomb hollow structure is arranged to enhance energy feedback, and the rigid support layer is a molded polypropylene material forming an arch support plate, and the curvature radius is adapted to the human arch curve, the design of the sports support half-pad shoe pad has multiple advantages, the adaptive interface layer is formed by 3D printing of thermoplastic polyurethane grid and bionic micro-suction disc structure, and the foot fitting degree and the anti-skid property are significantly improved, the carbon fiber dynamic layer is bent through differential layer design, and the front palm area is bent, and the sports flexibility and the support stability are considered, the honeycomb PEBAX foaming body of the gradient buffer layer is designed in a decreasing mode, the foot bottom pressure can be accurately dispersed, the arch support is particularly strengthened, the whole is connected by modular Velcro, the composite structure formed by the antibacterial and breathable layer, the elastic shock-absorbing layer and the auxiliary shock-absorbing pad further improves the air permeability and the shock-absorbing and rebound performance, and the balance between the sports comfort and the biomechanical support is realized.
[0012] Compared with the prior art, the sports support half-pad shoe pad has the advantages that:
[0013] The utility model discloses a motion type support half insole is set through, and it is convenient to adopt the partition dynamic support structure, and the foot biomechanics is accurately adapted, and the foot bottom pressure concentration is relieved, and the motion stability is improved, and the multiple functions of buffering, energy feedback and ventilation are realized by selecting the material, and the wearing comfort and the motion performance are improved, especially suitable for high intensity motion demand, and the deficiency of traditional half insole is solved through the innovative design, and has good use prospect. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a comfortable type support half insole whole structure schematic diagram for the utility model;
[0015] Figure 2 It is a motion type support half insole installation structure schematic diagram for the utility model of a comfortable type support half insole;
[0016] Figure 3 It is a motion type insole main part, motion type support half insole horizontal surface structure schematic diagram for the utility model of a comfortable type support half insole;
[0017] Figure 4 It is a motion type insole main part, motion type support half insole internal structure schematic diagram for the utility model of a comfortable type support half insole.
[0018] In the drawing: 1, motion type insole main part;11, antibacterial and breathable layer;12, elastic shock absorbing layer;13, rigid support layer;2, motion type support half insole;21, self-adapting interface layer;22, carbon fiber dynamic layer;23, gradient buffer layer;3, shock pad;4, hollow groove;5, magic tape wool surface;6, magic tape hook surface. DETAILED DESCRIPTION
[0019] The technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0020] In the embodiment, as Figure 4As shown, the sports support half-pad insole 2 is composed of an adaptive interface layer 21, a carbon fiber dynamic layer 22 and a gradient buffer layer 23, wherein the adaptive interface layer 21 is closely attached to the upper surface of the sports support half-pad insole 2, the gradient buffer layer 23 is firmly arranged at the bottom position of the sports support half-pad insole 2, and the carbon fiber dynamic layer 22 is sandwiched between the adaptive interface layer 21 and the gradient buffer layer 23 to form a sandwich structure. The sports insole body 1 adopts a layered design, the antibacterial and breathable layer 11 covers the top surface of the sports insole body 1, the elastic shock-absorbing layer 12 is located below the antibacterial and breathable layer 11, and the rigid support layer 13 is firmly combined with the bottom surface of the sports insole body 1 as the bottom layer. During installation, the hook surface 6 below the sports support half-pad insole 2 is corresponded to the loop surface 5 above the sports insole body 1, and the shock-absorbing pad 3 is aligned with the hollow groove 4, and finally the sports support half-pad insole 2 is attached. When using the sports support half-pad insole 2, the adaptive interface layer 21 is 3D printed with thermoplastic polyurethane grid, and the surface is covered with bionic lizard toe micro-suction disc structure to improve the adsorption force. The carbon fiber dynamic layer 22 is molded by pre-impregnated carbon fiber cloth, and the front palm area is bent by differential layer design. The gradient buffer layer 23 is made of carbon fiber material and composite honeycomb PEBAX foam, and the honeycomb aperture decreases from the front palm to the arch thickness, which can cover the arch area. The antibacterial and breathable layer 11 of the sports insole body 1 is made of woven mesh cloth composite silver ion antibacterial agent, which can quickly export sweat and inhibit microorganisms. The elastic shock-absorbing layer 12 is composed of high-resilience EVA and memory foam gradient, and the front palm honeycomb structure is set to enhance energy feedback. The rigid support layer 13 is a molded polypropylene material forming an arch support plate with a curvature radius adapted to the human arch curve. The design of the sports support half-pad insole 2 has multiple advantages. The adaptive interface layer 21 significantly improves the foot fitting and slip resistance through 3D printing of thermoplastic polyurethane grid and bionic micro-suction disc structure. The carbon fiber dynamic layer 22 realizes flexible bending of the front palm through differential layering, which balances the flexibility and stability of sports. The gradient buffer layer 23 has a honeycomb PEBAX foam with a decreasing aperture design, which can accurately disperse the foot pressure, especially strengthening the arch support. The whole is connected by modular magic tape, which is convenient for disassembly, washing and replacement. The composite structure of the antibacterial and breathable layer 11, the elastic shock-absorbing layer 12 and the auxiliary shock-absorbing pad 3 further improves the air permeability and shock-absorbing performance, achieving the balance between sports comfort and biomechanical support.
[0021] Please refer to Figures 1-4The application discloses a comfortable support half insole, which comprises a sports insole body 1 as a basic component, a sports support half insole 2 which is detachably arranged on the upper area of the sports insole body 1, a hollow groove 4 arranged in the middle of the sports support half insole 2, and a shock pad 3 which is replaceably embedded in the hollow groove 4. The sports support half insole 2 is convenient to adopt a partition dynamic support structure, accurately adapts to foot biomechanics, relieves the pressure concentration of the foot bottom, improves the motion stability, selects the material to realize the multiple functions of buffering, energy feedback and air permeation, improves the wearing comfort and the motion performance, is especially suitable for high-intensity motion demand, solves the defects of the traditional half insole through the innovative design, and has a good application prospect.
[0022] As shown in the embodiment, Figures 1-3 The shock pad 3 is fixedly connected with the upper surface of the sports insole body 1, the upper surface of the sports insole body 1 is provided with a magic tape wool surface 5, and a corresponding magic tape hook surface 6 is fixed to the bottom surface of the sports support half insole 2, so that the detachable connection is realized through the cooperation of the magic tape wool surface 5 and the magic tape hook surface 6.
[0023] Working principle: a comfortable type of support half insole of sports type of support half insole 2, facilitate the adoption of partition dynamic support structure, accurate adaptation of foot biomechanics, relieve plantar pressure concentration, improve the stability of sports, select material to realize the multiple functions of buffering, energy feedback and ventilation, improve the wearing comfort and sports performance, especially suitable for high intensity sports demand, through the innovative design to solve the deficiency of traditional half insole, have good application prospect, when installing, the hook face 6 below the sports type of support half insole 2 is corresponding to the magic tape hair face 5 above the sports type of insole main body 1, and the shock pad 3 is aligned with the hollow groove 4, finally, the sports type of support half insole 2 is pasted, when using the sports type of support half insole 2, the adaptive interface layer 21 is 3D printed thermoplastic polyurethane grid, and the surface is covered with bionic lizard toe microsuction disc structure to improve the adsorption force, the carbon fiber dynamic layer 22 adopts pre-impregnated carbon fiber cloth molding, realizes the bending of the forefoot area through the differential layer design, the gradient buffer layer 23 is made of carbon fiber layer material and composite honeycomb PEBAX foam, the honeycomb aperture decreases from the forefoot to the arch, which can cover the arch area, the antibacterial and breathable layer 11 provided by the sports type of insole main body 1 is made of woven mesh cloth composite silver ion antibacterial agent, which realizes rapid sweat export and microbial inhibition, the elastic shock absorbing layer 12 is made of high resilience EVA and memory foam gradient composite, and the forefoot honeycomb hollow structure is provided to enhance the energy feedback, and the rigid support layer 13 is a molded polypropylene material forming an arch support plate, and the curvature radius is adapted to the human arch curve, the design of the sports type of support half insole 2 has multiple advantages, the adaptive interface layer 21 is 3D printed thermoplastic polyurethane grid and bionic microsuction disc structure, which significantly improves the foot fitting and slip resistance, the carbon fiber dynamic layer 22 realizes flexible bending of the forefoot through differential layering, and the gradient buffer layer 23 is made of carbon fiber layer material and composite honeycomb PEBAX foam, which can accurately disperse the plantar pressure, especially strengthen the arch support, the whole is connected by modular magic tape, convenient to disassemble, wash and replace, the composite structure of the antibacterial and breathable layer 11, the elastic shock absorbing layer 12 and the auxiliary shock absorbing pad 3 further improves the air permeability and shock absorbing and rebounding performance, realizes the balance of sports comfort and biomechanical support.
[0024] Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.
Claims
1. A comfort support half insole comprising a sports insole body (1) characterized in that: The sports type insole body (1) is detachably provided with a sports type supporting half insole (2), the sports type supporting half insole (2) is internally provided with a hollow groove (4), and the hollow groove (4) is detachably provided with a shock pad (3).
2. A comfort support insole according to claim 1, wherein: The shock pad (3) is fixedly connected to the upper side of the sports type insole body (1), and the sports type insole body (1) is fixedly connected with a magic tape wool surface (5).
3. A comfort support insole according to claim 2, wherein: The sports type supporting half insole (2) is fixedly connected with a magic tape hook surface (6) below, and the magic tape hook surface (6) is detachably provided above the magic tape wool surface (5).
4. A comfort support insole according to claim 3, wherein: The sports type supporting half insole (2) comprises an adaptive interface layer (21), a carbon fiber dynamic layer (22) and a gradient buffer layer (23), the sports type supporting half insole (2) is fixedly connected with the adaptive interface layer (21) above, and the sports type supporting half insole (2) is fixedly connected with the gradient buffer layer (23) below.
5. A comfort support insole according to claim 4, wherein: The adaptive interface layer (21) is fixedly connected with the carbon fiber dynamic layer (22) below, the carbon fiber dynamic layer (22) is fixedly connected with the gradient buffer layer (23) below, and the sports type insole body (1) comprises an antibacterial and breathable layer (11), an elastic shock absorbing layer (12) and a rigid support layer (13).
6. A comfort support insole according to claim 5, wherein: The sports type insole body (1) is fixedly connected with the antibacterial and breathable layer (11) above, the antibacterial and breathable layer (11) is fixedly connected with the elastic shock absorbing layer (12) below, the elastic shock absorbing layer (12) is fixedly connected with the rigid support layer (13) below, and the rigid support layer (13) is fixedly connected to the lower side of the sports type insole body (1).