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Far-infrared health care insole and preparation method thereof

A technology of far-infrared health care and far-infrared nanotechnology, which is applied in the field of health care insoles, can solve the problems of affecting the use effect of far-infrared radiation shoes, unfavorable drying, and increasing high-value costs, so as to enhance and prolong the health care effect, good practicability and use effect of effect

Inactive Publication Date: 2019-10-22
李丹凤
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Though this invention has played original innovation effect to making far-infrared radiation shoes,, because making complicated can increase high-value cost, because the contained far-infrared radiation material is arranged in the middle of the whole of shoes, is unfavorable for regular airing, because The moisture on the feet after long-term use is heavy, and the inner lining cannot be replaced, especially in cloudy and humid weather, which will cause moisture in the bottom of the shoe, which will directly affect the use effect of far-infrared radiation shoes

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Step (1), making far-infrared health care insole mucilage: take 2 parts by weight of bletilla striata gum, 0.25 parts of carboxymethyl cellulose sodium, 15 parts of glycerin, 72 parts of distilled water, and add far-infrared mucilage with a weight ratio of 4% of the mucilage raw material Nano-ceramic powder and rare earth magnetic powder with a weight ratio of 0.25% of the raw material of the glue. First, mix glycerin and distilled water evenly, then add bletilla striata gum and sodium carboxymethyl cellulose in turn, let it disperse naturally, stir evenly to make a glue, and then Grind the rare earth magnetic powder into 800-mesh fine powder through a ball mill, then add the rare earth magnetic powder and far-infrared nano-ceramic powder into the above-mentioned slurry liquid, put it in a high-speed mixer, and stir rapidly at a stirring speed of 1800r / min, so that It is uniformly dispersed, and the mortar containing far-infrared nano-ceramic powder and rare earth magnet...

Embodiment 2

[0021] Step (1), making far-infrared health care insole mucilage: take 2.5 parts by weight of bletilla striata gum, 0.5 part of carboxymethyl cellulose sodium, 20 parts of glycerin, 77 parts of distilled water, and add far-infrared mucilage with a weight ratio of 6% of the mucilage raw material Nano-ceramic powder and rare earth magnetic powder with a weight ratio of 0.375% of the raw material of the glue. First, mix glycerin and distilled water evenly, then add bletilla striata gum and carboxymethyl cellulose sodium in turn, let it disperse naturally, stir evenly to make a glue, and then Grind the rare earth magnetic powder into a fine powder of 1000 mesh through a ball mill, then add the rare earth magnetic powder and far-infrared nano-ceramic powder together into the above-mentioned glue liquid, put it in a high-speed mixer, and carry out rapid stirring at a stirring speed of 2000r / min, so that It is uniformly dispersed, and the mortar containing far-infrared nano-ceramic po...

Embodiment 3

[0026] Step (1), making far-infrared health care insole mucilage: take 3 parts by weight of bletilla striata gum, 0.75 parts of carboxymethyl cellulose sodium, 25 parts of glycerin, 82 parts of distilled water, and add far-infrared mucilage with a weight ratio of 8% of the mucilage raw material Nano-ceramic powder and rare earth magnetic powder with a weight ratio of 0.5% of the raw material of the glue. First, mix glycerin and distilled water evenly, then add bletilla striata gum and carboxymethyl cellulose sodium in turn, let it disperse naturally, stir evenly to make a glue, and then Grind the rare earth magnetic powder into a fine powder of 1200 mesh through a ball mill, then add the rare earth magnetic powder and far-infrared nano-ceramic powder together into the above-mentioned glue liquid, put it in a high-speed mixer, and carry out rapid stirring at a stirring speed of 2200r / min, so that It is uniformly dispersed, and the mortar containing far-infrared nano-ceramic powd...

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Abstract

The invention discloses a far-infrared health care insole. A preparation method of the far-infrared health care insole comprises the following steps: firstly, making far-infrared health care insole glue: preparing 2 to 3 parts of bletilla striata gelatin, 0.25 to 0.75 part of sodium carboxymethylcellulose, 15 to 25 parts of glycerin and 72 to 82 parts of distilled water, adding far-infrared nanometer ceramic powder in an amount of 4 to 8 percent of the weight of the glue raw materials and rare earth magnetic powder in an amount of 0.25 to 0.5 percent of the weight of the glue raw materials, mixing the glycerin and the distilled water evenly, putting the bletilla striata gelatin and the sodium carboxymethylcellulose in sequence, naturally dispersing, stirring uniformly to form glue, grinding the rare earth magnetic powder into fine powder of 800 to 1200 meshes with a ball mill, then adding the rare earth magnetic powder and the far-infrared nanometer magnetic powder into the glue liquid, stirring rapidly, and dispersing evenly; coating the surface of a middle layer non-woven fabric with the glue in a thickness of 1 to 3 millimeters; and then bonding or seaming a surface layer air-permeable material with a middle layer and a bottom layer, flattening and drying. The insole has deodorant, antiseptic and bactericidal functions, and can effectively prevent and treat tinea pedis and foot odor.

Description

technical field [0001] The invention relates to a health-care insole, in particular to a far-infrared health-care insole and a preparation method thereof. Background technique [0002] Far-infrared ceramics are made of more than 20 kinds of inorganic compounds and trace metals or specific natural ores in different proportions, and then calcined at a high temperature of 1200-1600 ° C. It is a special ceramic material that can radiate far-infrared rays of specific wavelengths. Because far-infrared ceramics can radiate more far-infrared rays (higher infrared radiation rate) than normal objects as the main characteristic function, using this special property, far-infrared ceramics have been widely used in industry, environmental protection and human health care. . Far-infrared ceramics have a catalytic oxidation function, can effectively remove ammonia and odorous substances, and have a bactericidal function. At present, far-infrared ceramic materials are used to make contact ...

Claims

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Application Information

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IPC IPC(8): A43B17/00C08L5/00C08L1/28C08K5/053C08K3/013
CPCA43B17/006C08K2201/01C08L5/00C08L1/286C08K5/053C08K3/013
Inventor 李丹凤张奎昌
Owner 李丹凤
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