Biomechanical orthotic insole

By setting Velcro and fasteners at specific positions of the insole body, the forefoot pad and arch pad can be snatched in designated positions, solving the problem of offset caused by friction and improving the correction effect and fixing stability.

CN222854053UActive Publication Date: 2025-05-13QINGDAO XIAOMEIMEI HEALTH IND CO LTD
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Patent Information

Application Number
CN202421996309.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-18
Publication Date
2025-05-13
Estimated Expiration
2034-08-18

AI Technical Summary

Technical Problem

After long-term walking of existing biomechanical correction insoles, the arch pad and the forefoot pad may be deviated due to friction, resulting in the inability to be in the correct position, reducing the correction effect.

Method used

By setting the first magic mother sticker and the first magic son sticker, the second magic mother sticker and the second magic son sticker on the toe and arch of the insole body, and adding the first mother buckle and the first son buckle, the second mother buckle and the second son buckle, the front foot pad and the arch pad can be snag in a designated position to prevent deviation due to friction.

Benefits of technology

Make sure the fore foot pad and arch pad are always in the correct position, improve their corrective effect on the foot, enhance fixation stability, and avoid position deviation caused by friction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a biomechanical orthotic insole, and belongs to the technical field of orthotic insoles. Comprising an orthotic insole, a front foot pad and an arch pad, the orthotic insole comprises an insole body, a first hook-and-loop fastener and a first mother buckle are arranged at the toe and the arch of the insole body respectively, a second hook-and-loop fastener and a second mother buckle are arranged at the toe and the arch of the insole body respectively, the front foot pad comprises a first hook-and-loop fastener and a first son buckle, and the first son buckle is embedded in the bottom of the first hook-and-loop fastener. The first hook-and-loop fastener is adhered to the first hook-and-loop fastener, the first mother buckle is clamped with the first son buckle, the arch pad comprises a second hook-and-loop fastener and a second son buckle, the second son buckle is embedded at the bottom of the second hook-and-loop fastener, the second hook-and-loop fastener is adhered to the second hook-and-loop fastener, and the second mother buckle is clamped with the second son buckle; according to the orthotic insole applied to the biomechanics, the front foot pad and the foot arch pad can be clamped at the toe and the foot arch of the insole body, so that the situation that the front foot pad and the foot arch pad deviate due to friction when a user walks is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of corrective insoles, in particular to a biomechanical corrective insole. Background Art

[0002] With the continuous improvement of living standards, people pay more and more attention to physical health, especially the growth and development of children's feet, posture and gait. Common foot development problems include hallux valgus and valgus, flat feet, pronation / supination of the foot (inside and outside "eight"), varus / valgus, Achilles tendon deviation, unequal length of lower limbs (long and short legs), genu valgus / valgus (OX-shaped legs) and other lower limb biomechanical development abnormalities or foot structure problems caused by these abnormalities. The biomechanical correction and shaping foot pad is an auxiliary health product that can effectively correct children's foot problems and improve their abnormal posture and gait. The biomechanical correction and shaping foot pad has the advantages of non-invasive, simple and convenient through its unique design and adaptation. It can effectively solve foot development problems and play a good orthopedic role.

[0003] For example, a biomechanical correction and shaping foot pad with China Publication No. CN209847515U includes a foot pad body, a Velcro round velvet surface is installed on the inner side of the top of the foot pad body, a Velcro spurred surface is connected to the Velcro round velvet surface, the Velcro spurred surface is bonded to the bottom of the arch pad and the forefoot pad, the rear foot part of the foot pad body is provided with a rear foot groove, and the foot pad body is conveniently provided with an insole edge guard. The utility model is provided with a Velcro round velvet surface on the foot pad body;

[0004] In this technical solution, the arch pad and the forefoot pad are adhered to the round surface of Velcro by the spiky surface of Velcro, which is convenient for replacing the arch pad and the forefoot pad according to the shape of the foot to adapt to the sole of the foot and have a better correction effect; however, the arch pad and the forefoot pad are only adhered to the insole by Velcro, and when the user walks, his foot will not only squeeze the arch pad and the forefoot pad, but also rub against the arch pad and the forefoot pad. Therefore, after the user walks for a long time, the position of the arch pad and the forefoot pad may be shifted due to friction, resulting in the arch pad and the forefoot pad being unable to be in the correct position, thereby reducing the correction effect of the arch pad and the forefoot pad. Utility Model Content

[0005] The purpose of the utility model is to provide a biomechanical corrective insole to solve the problem raised in the above-mentioned background technology that after the user walks for a long time, the positions of the arch pad and the forefoot pad may be shifted due to friction, resulting in the arch pad and the forefoot pad being unable to be in the correct position, thereby reducing the correction effect of the arch pad and the forefoot pad.

[0006] In view of the above problems, the technical solution proposed by the utility model is:

[0007] A biomechanical corrective insole comprises a corrective insole, a forefoot pad and an arch pad, the corrective insole comprises an insole body, the toe portion and the arch portion of the insole body are respectively provided with a first Velcro mother-tie, a first mother buckle and a second Velcro mother-tie, and a second mother buckle, the forefoot pad comprises a first Velcro sub-tie and a first sub-buck, the first sub-buck is embedded in the bottom of the first Velcro sub-tie, the first Velcro mother-tie and the first Velcro sub-tie are adhered to each other, the first mother buckle and the first sub-buck are engaged with each other, the arch pad comprises a second Velcro sub-tie and a second sub-buck, the second sub-buck is embedded in the bottom of the second Velcro sub-tie, the second Velcro mother-tie and the second Velcro sub-tie are adhered to each other, and the second mother buckle and the second sub-buck are engaged with each other.

[0008] The beneficial effect of adopting the above-mentioned further scheme is that, by using the first Velcro mother tape and the first Velcro child tape, the second Velcro mother tape and the second Velcro child tape, the forefoot pad and the arch pad can be fixed at the toe and the arch of the insole body; by adding the first mother buckle and the first child buckle, the second mother buckle and the second child buckle, the forefoot pad and the arch pad can be engaged at the toe and the arch of the insole body to prevent the forefoot pad and the arch pad from being offset due to friction when the user walks, thereby ensuring that the forefoot pad and the arch pad are always in the correct position to ensure the corrective effect of the forefoot pad and the arch pad on the user's foot.

[0009] Furthermore, the forefoot pad also includes a first air cushion and an anti-skid pad, the anti-skid pad covers the surface of the first air cushion, the first Velcro is installed on the bottom of the first air cushion, and the anti-skid pad is fixed to the edge of the first Velcro.

[0010] Furthermore, the arch pad also includes a second air cushion and a breathable net, the breathable net covers the surface of the second air cushion, the second Velcro is installed on the bottom of the second air cushion, and the edges of the breathable net and the second Velcro are fixed.

[0011] The beneficial effect of adopting the above further scheme is that the first air cushion and the second air cushion have elasticity and a certain supporting force. The forefoot pad and arch pad made of the first air cushion and the second air cushion can provide support and limitation to the user's feet, and can also reduce the physical strength consumed by the user when walking. At the same time, the anti-slip pad can increase the friction between the user's toes and the forefoot pad, so that the user will not slip when walking, and the breathable net can improve the breathability of the arch pad to improve its comfort.

[0012] Furthermore, the rear foot portion of the insole body is concave, and the height of the rear foot portion of the insole body is lower than the height of the toe portion of the insole body, and the arch portion of the insole body is an arc-shaped convex shape, and the height of the arch portion of the insole body is higher than the height of the toe portion of the insole body.

[0013] Furthermore, the bottom of the first Velcro is horizontal, the bottom of the second Velcro is arc-shaped, and the tops of the first air cushion and the second air cushion are both arc-shaped.

[0014] The beneficial effect of adopting the above-mentioned further scheme is that by restricting the shapes of the insole body, the first air cushion and the second air cushion, they can be made to conform to the normal shape of the sole of the foot, thereby achieving the purpose of correcting the user's foot into a normal foot, and by restricting the shapes of the first Velcro tape and the second Velcro tape, they can be made to fit the toe and arch of the insole body to increase the contact area between the first Velcro tape, the first Velcro mother tape and the second Velcro mother tape, thereby improving the stability after fixation.

[0015] Furthermore, the insole body also includes a breathable layer, a sweat-absorbing layer, and a shock-absorbing layer, and the breathable layer, sweat-absorbing layer, and shock-absorbing layer are connected in sequence from top to bottom, the first Velcro tape, the first female buckle and the second Velcro tape, the second female buckle are all installed on the surface of the breathable layer, the interior of the breathable layer is provided with a plurality of air holes running through the top and bottom thereof, the sweat-absorbing layer is made of sweat-absorbing cotton, and the shock-absorbing layer is shock-absorbing rubber.

[0016] Furthermore, the surface of the breathable layer is also provided with an anti-slip texture.

[0017] The beneficial effect of adopting the above further scheme is that through the use of the breathable layer, the sweat-absorbing layer and the shock-absorbing layer, the insole body can have the purposes of breathability, sweat-absorption and shock-absorbing, thereby improving the wearing comfort. At the same time, through the use of anti-slip texture, the user can be prevented from slipping when walking.

[0018] Compared with the prior art, the beneficial effect of the utility model is that the biomechanical corrective insole can fix the forefoot pad and the arch pad at the toe and the arch of the insole body by using the first Velcro mother tape and the first Velcro child tape, the second Velcro mother tape and the second Velcro child tape, and by adding the first mother buckle and the first child buckle, the second mother buckle and the second child buckle, the forefoot pad and the arch pad can be snapped at the toe and the arch of the insole body to prevent the forefoot pad and the arch pad from being offset due to friction when the user walks, ensuring that the forefoot pad and the arch pad are always in the correct position to ensure the corrective effect of the forefoot pad and the arch pad on the user's foot. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the biomechanical correction insole disclosed in the embodiment of the utility model;

[0020] Figure 2 It is a schematic diagram of the side structure of the biomechanical correction insole disclosed in the embodiment of the utility model;

[0021] Figure 3 It is a schematic diagram of the first cross-sectional structure of the biomechanical correction insole disclosed in the embodiment of the utility model;

[0022] Figure 4 It is a schematic diagram of the second cross-sectional structure of the biomechanical correction insole disclosed in the embodiment of the utility model;

[0023] Figure 5 This is a third cross-sectional structural schematic diagram of the biomechanical correction insole disclosed in an embodiment of the utility model.

[0024] In the figure: 100, corrective insole; 1001, insole body; 100101, breathable layer; 100102, sweat-absorbing layer; 100103, shock-absorbing layer; 1002, first Velcro mother patch; 1003, first mother buckle; 1004, second Velcro mother patch; 1005, second mother buckle; 200, forefoot pad; 2001, first air cushion; 2002, anti-slip pad; 2003, first Velcro sub-patch; 2004, first sub-buck; 300, arch pad; 3001, second air cushion; 3002, breathable mesh; 3003, second Velcro sub-patch; 3004, second sub-buck. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0026] See also Figure 1 - Figure 5The utility model provides a technical solution: a biomechanical corrective insole, comprising a corrective insole 100, a forefoot pad 200, and an arch pad 300. The corrective insole 100 comprises an insole body 1001, and the toe and arch of the insole body 1001 are respectively provided with a first Velcro mother patch 1002, a first mother buckle 1003, a second Velcro mother patch 1004, and a second mother buckle 1005. The forefoot pad 200 comprises a first Velcro sub-stick 2003 and a first sub-button 2004, the first sub-button 2004 is embedded in the bottom of the first Velcro sub-stick 2003, the first Velcro mother patch 1002 and the first Velcro sub-stick 2003 are adhered to each other, the first mother buckle 1003 and the first sub-button 2004 are engaged with each other, the arch pad 300 comprises a second Velcro sub-stick 3003 and a second sub-button 3004, the second sub-button 3004 is embedded in the bottom of the second Velcro sub-stick 3003, the second Velcro mother patch 1 004 and the second Velcro sub-sticker 3003 are adhered to each other, and the second female buckle 1005 and the second sub-buckle 3004 are engaged with each other. By using the first Velcro mother sticker and the first Velcro sub-sticker 2003, the second Velcro mother sticker 1004 and the second Velcro sub-sticker 3003, the forefoot pad 200 and the arch pad 300 can be fixed at the toe and the arch of the insole body 1001. By adding the first female buckle 1003 and the first sub-buckle 2004, the second female buckle 1005 and the second sub-buckle 3004, the forefoot pad 200 and the arch pad 300 can be engaged at the toe and the arch of the insole body 1001 to prevent the forefoot pad 200 and the arch pad 300 from being offset due to friction when the user walks, and ensure that the forefoot pad 200 and the arch pad 300 are always in the correct position to ensure the correction effect of the forefoot pad 200 and the arch pad 300 on the user's foot.

[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0028] See also Figure 1 - Figure 5The utility model provides a technical solution: a biomechanical corrective insole, the forefoot pad 200 also includes a first air cushion 2001 and an anti-skid pad 2002, the anti-skid pad 2002 covers the surface of the first air cushion 2001, the first Velcro 2003 is installed at the bottom of the first air cushion 2001, and the anti-skid pad 2002 and the edges of the first Velcro 2003 are fixed, the arch pad 300 also includes a second air cushion 3001 and a breathable net 3002, the breathable net 3002 covers the surface of the second air cushion 3001, the second Velcro 3003 is installed at the bottom of the second air cushion 3001, and the breathable net 3002 Fixed to the edge of the second Velcro 3003, the first air cushion 2001 and the second air cushion 3001 have elasticity and a certain supporting force. The forefoot pad 200 and the arch pad 300 made of the first air cushion 2001 and the second air cushion 3001 can provide support and limitation to the user's feet while reducing the user's physical strength consumed when walking. At the same time, the anti-slip pad 2002 can increase the friction between the user's toes and the forefoot pad 200, so that the user will not slip when walking, and the breathable net 3002 can increase the breathability of the arch pad 300 to improve its comfort.

[0029] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0030] See also Figure 1 - Figure 5 The utility model provides a technical solution: a biomechanical correction insole, the insole body 1001 also includes a breathable layer 100101, a sweat-absorbing layer 100102, and a shock-absorbing layer 100103, and the breathable layer 100101, the sweat-absorbing layer 100102, and the shock-absorbing layer 100103 are sequentially connected from top to bottom, the first magic mother patch 1002, the first female buckle 1003, the second magic mother patch 1004, and the second female buckle 1005 are all installed on the surface of the breathable layer 100101, and the breathable layer 1001 The interior of 01 is provided with a number of ventilation holes running through the top and bottom thereof, the sweat-absorbing layer 100102 is made of sweat-absorbing cotton, the shock-absorbing layer 100103 is shock-absorbing rubber, and the surface of the breathable layer 100101 is also provided with an anti-slip texture. Through the use of the breathable layer 100101, the sweat-absorbing layer 100102 and the shock-absorbing layer 100103, the insole body 1001 can have the purposes of breathability, sweat absorption and shock absorption, thereby improving the wearing comfort. At the same time, the use of the anti-slip texture can prevent the user from slipping when walking.

[0031] Specifically, the working principle of this biomechanical corrective insole is as follows: when in use, a suitable corrective insole 100 is selected according to the size of the shoe, and then the forefoot pad 200 and the arch pad 300 are fixed to the toe and the arch of the insole body 1001 through the first Velcro mother patch and the first Velcro child patch 2003, the second Velcro mother patch 1004 and the second Velcro child patch 3003, and the forefoot pad 200 and the arch pad 300 are clamped at the toe and the arch of the insole body 1001 through the first mother buckle 1003 and the first child buckle 2004, the second mother buckle 1005 and the second child buckle 3004, and then the corrective insole 100 is stuffed into the shoe and ensured to be flat on the insole. The user can then put on the shoe, and by restricting the shape of the insole body 1001, the first air cushion 2001, and the second air cushion 3001, they can be made to conform to the normal shape of the sole, thereby achieving the purpose of correcting the user's foot into a normal foot.

Claims

1. A biomechanical corrective insole, characterized in that: The invention comprises a corrective insole (100), a forefoot pad (200), and an arch pad (300). The corrective insole (100) comprises an insole body (1001). The toe and arch of the insole body (1001) are respectively provided with a first Velcro mother patch (1002), a first mother buckle (1003), a second Velcro mother patch (1004), and a second mother buckle (1005). The forefoot pad (200) comprises a first Velcro sub-patch (2003) and a first sub-buck (2004). The first sub-buck (2004) is embedded in the bottom of the first Velcro sub-patch (2003). The first Velcro mother patch (1002) and the first Velcro child patch (2003) are adhered to each other, the first mother buckle (1003) and the first child buckle (2004) are engaged with each other, the arch pad (300) comprises a second Velcro child patch (3003) and a second child buckle (3004), the second child buckle (3004) is embedded in the bottom of the second Velcro child patch (3003), the second Velcro mother patch (1004) and the second Velcro child patch (3003) are adhered to each other, and the second mother buckle (1005) and the second child buckle (3004) are engaged with each other.

2. A biomechanical corrective insole according to claim 1, characterized in that: The forefoot pad (200) further comprises a first air cushion (2001) and an anti-skid pad (2002), wherein the anti-skid pad (2002) covers the surface of the first air cushion (2001), the first Velcro (2003) is installed at the bottom of the first air cushion (2001), and the edges of the anti-skid pad (2002) and the first Velcro (2003) are fixed to each other.

3. A biomechanical corrective insole according to claim 2, characterized in that: The arch pad (300) further comprises a second air cushion (3001) and a breathable net (3002), wherein the breathable net (3002) covers the surface of the second air cushion (3001), the second Velcro (3003) is installed at the bottom of the second air cushion (3001), and the edges of the breathable net (3002) and the second Velcro (3003) are fixed to each other.

4. The biomechanical corrective insole according to claim 1, characterized in that: The rear foot portion of the insole body (1001) is concave, and the height of the rear foot portion of the insole body (1001) is lower than the height of the toe portion of the insole body (1001); the arch portion of the insole body (1001) is arc-shaped and convex, and the height of the arch portion of the insole body (1001) is higher than the height of the toe portion of the insole body (1001).

5. The biomechanical corrective insole according to claim 3, characterized in that: The bottom of the first Velcro (2003) is horizontal, the bottom of the second Velcro (3003) is arc-shaped, and the tops of the first air cushion (2001) and the second air cushion (3001) are both arc-shaped.

6. The biomechanical corrective insole according to claim 1, characterized in that: The insole body (1001) further comprises a breathable layer (100101), a sweat-absorbing layer (100102), and a shock-absorbing layer (100103), and the breathable layer (100101), the sweat-absorbing layer (100102), and the shock-absorbing layer (100103) are sequentially connected from top to bottom, the first Velcro mother patch (1002), the first female buckle (1003) and the second Velcro mother patch (1004), the second female buckle (1005) are all installed on the surface of the breathable layer (100101), the breathable layer (100101) is provided with a plurality of breathable holes penetrating the top and bottom thereof, the sweat-absorbing layer (100102) is made of sweat-absorbing cotton, and the shock-absorbing layer (100103) is made of shock-absorbing rubber.

7. A biomechanical corrective insole according to claim 6, characterized in that: The surface of the breathable layer (100101) is also provided with an anti-slip texture.

Citation Information

Patent Citations

  • Biomechanical correcting and shaping foot pad

    CN209847515U