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A graphene-coated conductive thermal storage fabric and its preparation process

A graphene and water-based graphene technology, applied in the field of textile fabrics, can solve problems affecting the compatibility and dispersion of graphene, affecting the performance of glue, and poor dispersion of graphene

Active Publication Date: 2021-09-07
TORAY SAKAI WEAVING & DYEING NANTONG CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, due to the strong van der Waals force between the graphene layers, the dispersion of graphene in common organic solvents is poor, which in turn affects the compatibility and dispersion of graphene in the composite substrate and affects the performance of the glue.

Method used

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  • A graphene-coated conductive thermal storage fabric and its preparation process
  • A graphene-coated conductive thermal storage fabric and its preparation process

Examples

Experimental program
Comparison scheme
Effect test

specific Embodiment 1

[0031] A graphene coating glue, the component distribution ratio of the graphene coating glue is composed of the following parts by weight: 70 parts of water-based aliphatic polyurethane emulsion, 20 parts of water-based graphene emulsion, 5 parts of crosslinking agent, 5 parts of water 1 part, 1 part of acrylate polymer; wherein, the solid content of the aqueous aliphatic polyurethane emulsion is 50%, and the graphene content is 30%.

[0032] The viscosity of the graphene-coated glue is: 8000MPA*S.

[0033] A kind of preparation method according to described graphene coating glue, described graphene coating glue is prepared graphene coating with the mode of high-speed stirring by adding a certain amount of water-based graphene emulsion in water-based coating material glue;

[0034] The specific preparation process is as follows: Add ① water-based aliphatic polyurethane emulsion, ② water-based graphene emulsion, ③ crosslinking agent, ④ water, ⑤ acrylate polymer in the state o...

specific Embodiment 2

[0051] A graphene coating glue, the component distribution ratio of the graphene coating glue is composed of the following parts by weight: 80 parts of water-based aliphatic polyurethane emulsion, 30 parts of water-based graphene emulsion, 10 parts of crosslinking agent, 10 parts of water parts, 3 parts of acrylate polymer; wherein, the solid content of the aqueous aliphatic polyurethane emulsion is 50%, and the graphene content is 50%.

[0052] The viscosity of the graphene-coated glue is: 15000MPA*S.

[0053] A kind of preparation method according to described graphene coating glue, described graphene coating glue is prepared graphene coating with the mode of high-speed stirring by adding a certain amount of water-based graphene emulsion in water-based coating material glue;

[0054] The specific preparation process is as follows: Add ① water-based aliphatic polyurethane emulsion, ② water-based graphene emulsion, ③ crosslinking agent, ④ water, ⑤ acrylate polymer in the stat...

specific Embodiment 3

[0071] A graphene coating glue, the component distribution ratio of the graphene coating glue is composed of the following parts by weight: 75 parts of water-based aliphatic polyurethane emulsion, 26 parts of water-based graphene emulsion, 7 parts of crosslinking agent, 8 parts of water 2 parts, 2 parts of acrylate polymer; wherein, the solid content of the aqueous aliphatic polyurethane emulsion is 50%, and the graphene content is 40%.

[0072] The viscosity of the graphene-coated glue is: 12000MPA*S.

[0073] A kind of preparation method according to described graphene coating glue, described graphene coating glue is prepared graphene coating with the mode of high-speed stirring by adding a certain amount of water-based graphene emulsion in water-based coating material glue;

[0074] The specific preparation process is as follows: Add ① water-based aliphatic polyurethane emulsion, ② water-based graphene emulsion, ③ crosslinking agent, ④ water, ⑤ acrylate polymer in the stat...

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Abstract

The invention discloses a graphene-coated conductive thermal storage fabric and a preparation process thereof, wherein the component distribution ratio of the graphene-coated glue is composed of the following parts by weight: 70-80 parts of water-based aliphatic polyurethane emulsion, 70-80 parts of water-based graphite 20-30 parts of alkene emulsion, 5-10 parts of crosslinking agent, 5-10 parts of water, 1-3 parts of acrylate polymer; wherein, the solid content of water-based aliphatic polyurethane emulsion is 50%, and the graphene content is 30 %‑50%. The present invention enriches the functionality of the fabric through coating finishing, adds high conductivity and heat storage functions on the basis of the original ordinary coated fabric, and can be used in the outdoor field to deal with harsh outdoor conditions such as lightning and extreme cold. sports climate. At the same time, the far-infrared heat storage of graphene can resist the cold winter, and can use its own far-infrared continuous cycle. The graphene material can absorb the radiant heat released by the human body, and perform corresponding conversion to release heat.

Description

technical field [0001] The invention belongs to the field of textile fabrics, and in particular relates to a graphene-coated conductive thermal storage fabric and a preparation process thereof. Background technique [0002] If the fabric prepared by the prior art is not finished with graphene coating, the fabric itself does not have conductivity and heat storage. The special graphene coating technology in this solution inherits the consistent heat storage, conductivity, anti-mite, anti-static, anti-radiation, anti-ultraviolet and far-infrared functions of graphene, and the glue made of graphene is bonded to the textile fabric. The fabric prepared after the functional coating has strong electrical conductivity and heat storage function. [0003] However, due to the strong van der Waals force between graphene layers, the dispersion of graphene in common organic solvents is poor, which in turn affects the compatibility and dispersion of graphene in composite substrates and aff...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09J175/04C09J133/02C09J11/04C09J9/02B32B27/02B32B27/12B32B33/00B32B27/36B32B27/34
CPCB32B5/022B32B5/024B32B5/026B32B5/26B32B33/00B32B2250/02B32B2250/20B32B2255/02B32B2255/20B32B2262/0261B32B2262/0284B32B2307/202B32B2307/304B32B2437/00C09J9/02C09J11/04C09J175/04C08L33/02C08K3/042
Inventor 黄荣马正宏金良杰
Owner TORAY SAKAI WEAVING & DYEING NANTONG CO LTD
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