Football insole

A technology for insoles and footballs, applied in the field of insoles, can solve the problems of poor air permeability of insoles, black and purple, erosion between toes, etc., and achieve good elasticity, promote blood circulation, and good ventilation effect

Active Publication Date: 2018-10-12
DONGGUAN SHUNFENG SPORTS EQUIP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In football, the health care of the feet needs to be achieved through the cooperation of insoles. The structure of traditional insoles 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. It meets the needs of ordinary people to wear shoes for walking and sports, but for football, due to the special sports mode of football, it needs to wear shoes with good shock absorption effect and high air permeability, and it has no effect on toes, soles, arches and heels. Special protective insoles
[0005] Traditional insoles have the following disadvantages: First, the hardness difference between the upper layer of traditional insoles and the plantar skin is large, which will make the feet uncomfortable for football players; second, the main material of traditional insoles is not easy to deform, or after deformation It is also difficult to recover, and it is easy to aggravate the problems of foot numbness, pain, poor blood flow, blackening and purple, edema, etc. of football crowds; third, traditional insoles have poor shock absorption and foot protection effects, and the feet of football crowds The forefoot and the bottom of the heel are more vulnerable to impact, which can easily aggravate the disease problems of the plantar bones, ankle joints and knee joints; Fifth, the traditional insoles have poor air permeability and are prone to breed bacteria and fungi, which can easily aggravate foot edema and erosion between the toes The problem

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] Described nano bamboo charcoal fiber layer 1 is made up of bamboo charcoal fiber, nano silver fiber, polyester fiber and viscose fiber; Contain 2% ceramic powder and coupling agent in viscose fiber, coupling agent is 0.1% of ceramic powder weight; Ceramic The powder is made of the following weight percentage ingredients: medical stone powder 30%, manganese dioxide 10%, tungsten trioxide 5%, zinc oxide 10%, zirconium dioxide 30%, silicon dioxide 35%, silver oxide 10%, Titanium dioxide 5%, talc powder 0.3%; the coupling agent is one or two of tetraethyl orthosilicate and titanate.

[0037] The preparation method of described viscose fiber is:

[0038] (1) Mix medical stone powder, manganese dioxide, tungsten trioxide, zinc oxide, zirconium dioxide, silicon dioxide, silver oxide, titanium dioxide, and talc powder, and grind them to an average particle size of 1-2 μm after sintering (2) Mix the coupling agent with the ceramic powder to obtain a modified ceramic powder; (3)...

Embodiment 2

[0050] Described nano bamboo charcoal fiber layer 1 is made up of bamboo charcoal fiber, nano-silver fiber, polyester fiber and viscose fiber; Contain 5% ceramic powder and coupling agent in viscose fiber, and coupling agent is 0.3% of ceramic powder weight; Ceramic The powder is made of the following components by weight: medical stone powder 60%, manganese dioxide 15%, tungsten trioxide 8%, zinc oxide 15%, zirconium dioxide 60%, silicon dioxide 40%, silver oxide 15%, Titanium dioxide 15%, talc powder 0.4%; coupling agent is one or two of tetraethyl orthosilicate and titanate.

[0051] The preparation method of described viscose fiber is:

[0052] (1) Mix medical stone powder, manganese dioxide, tungsten trioxide, zinc oxide, zirconium dioxide, silicon dioxide, silver oxide, titanium dioxide, and talc powder, and grind them to an average particle size of 1-2 μm after sintering (2) Mix the coupling agent with the ceramic powder to obtain a modified ceramic powder; (3) Blend t...

Embodiment 3

[0064]Described nano bamboo charcoal fiber layer 1 is made up of bamboo charcoal fiber, nano silver fiber, polyester fiber and viscose fiber; Contain 3% ceramic powder and coupling agent in viscose fiber, coupling agent is 0.25% of ceramic powder weight; Ceramic The powder is made of the following components by weight: medical stone powder 40%, manganese dioxide 11%, tungsten trioxide 6%, zinc oxide 13%, zirconium dioxide 35%, silicon dioxide 38%, silver oxide 14%, Titanium dioxide 13%, talc powder 0.34%; the coupling agent is one or two of tetraethyl orthosilicate and titanate.

[0065] The preparation method of described viscose fiber is:

[0066] (1) Mix medical stone powder, manganese dioxide, tungsten trioxide, zinc oxide, zirconium dioxide, silicon dioxide, silver oxide, titanium dioxide, and talc powder, and grind them to an average particle size of 1-2 μm after sintering (2) Mix the coupling agent with the ceramic powder to obtain a modified ceramic powder; (3) Blend ...

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Abstract

The invention discloses a football insole, and relates to the technical field of insoles. The football insole comprises an insole body, the insole body comprises a nanometer bamboo charcoal fiber layer, a first polyurethane layer, a second polyurethane layer and a third polyurethane layer from top to bottom in sequence, shock-absorption pads are arranged at the position, corresponding to toes of ahuman body, of the lower side of the front end of the third polyurethane layer, the position, corresponding to the front sole of the human body, of the lower side of the front end of the third polyurethane layer, and the position, corresponding to the heel of the human body, of the lower side of the rear end of the third polyurethane layer respectively, and an elastic foot-protecting portion is arranged at the position, corresponding to the foot arch of the human body, of the lower side of the third polyurethane layer; multiple hexagonal protrusions are evenly distributed on the upper side ofthe nanometer bamboo charcoal fiber layer, and multiple penetrating holes in the vertical direction are arrayed in the third polyurethane layer. A wearer can wear the football insole comfortably, thefootball insole can deform and make shock absorption by catering to the protruding portion of a foot, and therefore the effect of foot protection is high. The toes, the front sole, the foot arch andthe foot heel of the wearer can be effectively protected, air permeability is good, and the functions of resistance to mildew, bacteria and odor, perspiration and the like are realized.

Description

technical field [0001] The invention relates to an insole, in particular to a football insole. Background technique [0002] Many people like playing football very much. Playing football is exciting and passionate enough to make people sweat freely on the field. But at the same time, playing football is also a very intense sport, and in the process of playing football, if the protection measures are not in place, it will be very easy to cause injury to yourself, especially in terms of wearing shoes, because playing football uses The most important thing is our feet, so what kind of shoes we wear has an impact on playing football. [0003] But people often only pay attention to the requirements of football to wear shoes, but ignore the important role that the insole itself plays to the protection of feet. Insoles are widely used daily necessities. According to their functions, insoles can be divided into health care insoles, functional insoles and conventional insoles. [...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A43B17/02A43B17/08D01F2/08D01F1/10C08G18/66C08G18/48C08G18/32C08J9/14C08G101/00
CPCA43B17/006A43B17/02A43B17/08C08G18/48C08G18/6674C08G18/6685C08G2101/00C08J9/147C08J2203/144C08J2375/08D01F1/10D01F2/08
Inventor 唐潇
Owner DONGGUAN SHUNFENG SPORTS EQUIP CO LTD
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