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A decompression anti-fatigue walking insole

An anti-fatigue and insole technology, applied in the field of insoles, can solve problems such as increased fatigue, easy to produce athlete's foot, overweight, etc., to maintain the integrity and function of joints, reduce the chance of sprains, and improve the immune system

Active Publication Date: 2020-11-13
DONGGUAN SHUNFENG SPORTS EQUIP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] When walking briskly, traditional insoles have the following deficiencies: First, traditional insoles have poor shock absorption and foot protection effects. During exercise, the impact force on the forefoot and bottom of the heel is large. The impact on the foot bones is difficult to protect the plantar bones, ankle joints and knee joints, and is not suitable for long-term walking; second, the traditional insoles have poor air permeability and are prone to bacteria, fungi, and foot problems such as athlete's foot; other 3. The arch of the traditional insole does not bend, and the insole itself is not easy to bend, it cannot protect the arch of the foot, and has no effect on flat feet; 4. The traditional deodorant insole contains ingredients that are irritating to the skin. Dry, severe cases will appear chapped, can not achieve the purpose of deodorization; Fifth, some of the traditional insoles are too thick, some are too heavy, some are too light, and some are too hard, which do not meet the physiological needs of the human body, and have no effect on the heel. Special protective effect; Sixth, traditional insoles cannot massage the soles of the feet. If you wear them for a long time, you will feel uncomfortable walking and increase your fatigue.

Method used

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  • A decompression anti-fatigue walking insole
  • A decompression anti-fatigue walking insole

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0046] Described nano-bamboo charcoal fiber layer 4 is made of the following components by weight: 40 parts of nano-silver bamboo charcoal fibers, 30 parts of bamboo charcoal fibers, 30 parts of polyester, 15 parts of mulberry silk, 10 parts of glass fibers, nano-TiO Modified bamboo charcoal fibers 20 parts, 15 parts of chitosan fiber, 10 parts of modified polyvinyl alcohol, 10 parts of didecyldimethyl ammonium chloride, 5 parts of permethrin, 3 parts of sodium carbonate;

[0047] The nano-silver bamboo charcoal fiber is made by applying nano-silver antibacterial agent and bamboo charcoal powder on the fiber by dipping, padding, coating or spraying. Bamboo charcoal, the chitosan fiber is a fiber made from chitin after concentrated alkali treatment to remove the acetylphthalein group, and the modified polyvinyl alcohol is citric acid modified polyvinyl alcohol;

[0048] The preparation method of described nano-bamboo charcoal fiber layer 4 is: connect nano-silver bamboo charcoa...

Embodiment 2

[0065] The nano-bamboo charcoal fiber layer 4 is made of the following components by weight: 65 parts of nano-silver bamboo charcoal fibers, 55 parts of bamboo charcoal fibers, 55 parts of polyester, 25 parts of mulberry silk, 15 parts of glass fibers, nano-TiO modified bamboo charcoal fibers 35 parts, 25 parts of chitosan fiber, 20 parts of modified polyvinyl alcohol, 18 parts of didecyldimethyl ammonium chloride, 8 parts of permethrin, 10 parts of sodium carbonate;

[0066] The nano-silver bamboo charcoal fiber is made by applying nano-silver antibacterial agent and bamboo charcoal powder on the fiber by dipping, padding, coating or spraying. Bamboo charcoal, the chitosan fiber is a fiber made from chitin after concentrated alkali treatment to remove the acetylphthalein group, and the modified polyvinyl alcohol is citric acid modified polyvinyl alcohol;

[0067] The preparation method of described nano-bamboo charcoal fiber layer 4 is: connect nano-silver bamboo charcoal fib...

Embodiment 3

[0084] The nano-bamboo charcoal fiber layer 4 is made of the following components by weight: 50 parts of nano-silver bamboo charcoal fibers, 45 parts of bamboo charcoal fibers, 42 parts of polyester, 20 parts of mulberry silk, 12 parts of glass fibers, nano-TiO modified bamboo charcoal fibers 28 parts, 20 parts of chitosan fiber, 16 parts of modified polyvinyl alcohol, 15 parts of didecyldimethyl ammonium chloride, 7 parts of permethrin, 9 parts of sodium carbonate;

[0085] The nano-silver bamboo charcoal fiber is made by applying nano-silver antibacterial agent and bamboo charcoal powder on the fiber by dipping, padding, coating or spraying. Bamboo charcoal, the chitosan fiber is a fiber made from chitin after concentrated alkali treatment to remove the acetylphthalein group, and the modified polyvinyl alcohol is citric acid modified polyvinyl alcohol;

[0086] The preparation method of described nano-bamboo charcoal fiber layer 4 is: connect nano-silver bamboo charcoal fibe...

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Abstract

The invention discloses a decompression anti-fatigue stride insole. The decompression anti-fatigue stride insole comprises an insole body, and the insole body comprises a nano bamboo carbon fiber layer, a first polyurethane foam layer and a second polyurethane foam layer from top to bottom in sequence; a toe massage protruding body, a half foot massage protruding body, a foot center massage protruding body, a foot arch massage protruding body and a heel massage protruding body are arranged on the first polyurethane foam layer from the front end to the rear end of the insole body in sequence; afoot arch supporting protection cushion corresponding to the foot arch massage protruding body is arranged between the foot arch massage protruding body and the first polyurethane foam layer; the portions, corresponding to the half insole, of the second polyurethane foam layer and the portions, corresponding to the outer side of a foot, of the insole waistline of the second polyurethane foam layer are missing, a containing cavity is formed in the lower side of the rear end of the second polyurethane foam layer, and a heel damping cushion is embedded in the containing cavity. The decompressionanti-fatigue stride insole has high damping and foot protection functions and good elasticity, air permeability, antibacterial and odor removal effects and decompression anti-fatigue effects, and caneffectively protect the foot arch and the heel and improve flatfoot.

Description

technical field [0001] The invention relates to an insole, in particular to a decompression and anti-fatigue walking insole. Background technique [0002] Modern people often pay too much attention to wearing shoes when walking, but ignore the important role of insoles. Insoles are widely used daily necessities. According to their functions, insoles can be divided into health care insoles, functional insoles and conventional insoles. The structure of the traditional insole is sewn from multiple layers of cloth or pressed from multiple layers of leather. It has a certain degree of softness and cushioning and shock absorption, which basically meets the needs of ordinary walking shoes. [0003] However, when walking briskly, excessive walking will cause bone hyperplasia. Walking for a long time may make the feet more tired and some blisters will appear. Many patients who go to the doctor for heel pain mainly manifest as pain under the heel, with slight swelling, and the pain ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A43B17/00A43B17/02A43B17/08A43B17/10C08G18/75C08G18/76C08G18/48C08J9/12C08L23/06C08L23/12C08L27/06C08L25/06C08L59/00C08L69/00C08L77/00C08L81/06C08L71/12C08L71/00B32B9/00B32B9/04B32B27/12B32B27/40B32B27/06B32B27/36B32B17/02B32B17/06B32B3/08B32B3/26
CPCA43B17/006A43B17/02A43B17/08A43B17/102B32B3/08B32B3/26B32B5/02B32B5/18B32B9/046B32B17/066B32B27/065B32B27/12B32B27/40B32B2262/0276B32B2262/08B32B2262/101B32B2262/106B32B2266/0278B32B2307/51B32B2307/7145B32B2307/724C08G18/4804C08G18/755C08G18/7671C08J9/12C08J2375/08C08L9/00C08L23/06C08L23/12C08L25/06C08L27/06C08L59/00C08L71/00C08L71/12C08L77/00C08L81/06C08L2205/035C08L69/00
Inventor 唐潇
Owner DONGGUAN SHUNFENG SPORTS EQUIP CO LTD
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