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Graphene anti-radiation fiber textile

A radiation protection fiber and graphene technology, applied in textile, fabric, woven fabrics and other directions, can solve the problems of chemical pollution, metal pollution, general radiation protection effect, etc., and achieve the effect of balanced wearing comfort and radiation protection performance.

Inactive Publication Date: 2018-05-29
HENAN XINYE TEXTILE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, among the technical means used, some have chemical pollution or metal pollution, and some have mediocre anti-radiation effects.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A radiation-proof fiber fabric, which contains 10% graphene-based carbon nanofibers, 5% polyaniline fibers and 5% pure cotton fibers by volume, the graphene-based carbon nanofibers, polyaniline fibers, pure The anti-radiation fabric fiber is obtained by twill blending cotton fiber and plant fiber or chemical fiber.

Embodiment 2

[0022] A radiation-proof fiber fabric, which contains 18% graphene-based carbon nanofibers, 8% polyaniline fibers and 10% pure cotton fibers by volume, the graphene-based carbon nanofibers, polyaniline fibers, pure The anti-radiation fabric fiber is obtained by twill blending cotton fiber and plant fiber or chemical fiber.

Embodiment 3

[0024] A radiation-proof fiber fabric, which contains 25% graphene-based carbon nanofibers, 10% polyaniline fibers and 15% pure cotton fibers by volume, the graphene-based carbon nanofibers, polyaniline fibers, pure The anti-radiation fabric fiber is obtained by twill blending cotton fiber and plant fiber or chemical fiber.

[0025] Polyaniline, a kind of polymer compound, has special electrical and optical properties, and can have electrical conductivity and electrochemical properties after being doped. After certain treatment, various devices and materials with special functions can be prepared, such as urease sensors, electron field emission sources, which can be used as biological or chemical sensors, and have better reversibility than traditional lithium electrode materials in the process of charging and discharging. Non-toxic electrode materials, selective membrane materials, anti-static and electromagnetic shielding materials, conductive fibers, anti-corrosion materials...

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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PUM

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Abstract

The invention relates to a graphene anti-radiation fiber textile. The graphene anti-radiation fiber textile is prepared from, by volume, 10%-25% of graphene-based carbon nanofibers, 5%-10% of polyaniline fibers and 5%-15% of purified cotton fibers, the graphene-based carbon nanofibers, the polyaniline fibers, the purified cotton fibers and plant fibers or chemical fibers are subjected to twillingblending, and anti-radiation fabric fibers are obtained. According to the graphene anti-radiation fiber textile, the polyaniline fibers, the graphene-based carbon nanofibers, the purified cotton fibers and the plant fibers / chemical fibers are subjected to twilling blending, the technical problems of the graphene-based carbon nanofibers in the blending process are solved, the balance between wearing comfort and the anti-radiation performance is achieved accordingly, and the spinning process is simple and easy to achieve.

Description

technical field [0001] The invention relates to the technical field of graphene application, in particular to a graphene anti-radiation fiber textile. Background technique [0002] The human body is always in a certain energy electromagnetic radiation environment, and when its frequency exceeds 105 Hz, it is harmful to the human body. The greater the output power of the electromagnetic radiation source, the greater the radiation intensity, the shorter the wavelength, the higher the frequency, the closer the distance, the longer the contact time, the higher the ambient temperature, the greater the humidity, and the less air circulation, the degree of environmental pollution The larger the size, the more severely affected women and children. Electromagnetic waves can disturb the natural physiological laws of the human body, leading to disordered balance of the body, causing headaches, dizziness, insomnia, forgetfulness and other symptoms of neurasthenia; causing fatigue, loss...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D03D15/00D03D1/00D01F9/12D03D15/217D03D15/275D03D15/283D03D15/33
CPCD01F9/12D03D1/0058D03D15/00D10B2331/14D10B2201/02D10B2201/01D10B2101/12D10B2501/00
Inventor 赵娜吴勤霞
Owner HENAN XINYE TEXTILE