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Composite fullerene non-metallic material

A non-metallic material, non-metallic technology, applied in the field of fullerene composite non-metallic materials, can solve the problems of poor thermal conductivity and heat dissipation, product scrap, product performance impact, etc. Guaranteed product performance

Inactive Publication Date: 2014-10-15
SUZHOU PADNIC THERMAL CONDUCTIVE MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the shells of commonly used heat sinks are mostly made of non-metallic materials, such as plastic or glass, and these non-metallic materials have poorer thermal conductivity and heat dissipation than fullerenes, which cannot satisfy the heat inside the product from the shell in a timely manner. Going, resulting in the continuous accumulation of heat inside the product, if the time is too long, it will have a certain impact on the performance of the product
It will even lead to the scrapping of the product, which will bring great losses to the enterprise.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0010] A fullerene composite non-metallic material provided by the invention comprises PC (polycarbonate) plastic particles and a fullerene matrix, the PC plastic particles are heated at a high temperature to make them melt, and the fullerene matrix is ​​in powder form. The powdery fullerene matrix is ​​fully mixed with the melted PC plastic particles.

[0011] In the production process, first heat the PC plastic particles to a liquid state, add powdered fullerene into the melted PC plastic particles, and stir evenly to make them fully mixed. After cooling, the fullerene composite non-toxic metallic material.

Embodiment 2

[0013] A fullerene composite non-metallic material provided by the invention comprises a glass matrix and a fullerene matrix, the glass matrix is ​​heated at a high temperature to make it melt, the fullerene matrix is ​​powdery, and the powdery fullerene matrix is Mix well with the molten glass matrix.

[0014] In the production process, the glass is first heated to a liquid state, powdery fullerene is added into the molten glass, and stirred evenly to make it fully mixed, and the fullerene composite non-metallic material can be obtained after cooling.

[0015] The fullerene composite non-metallic material disclosed in the present invention forms a new type of composite material by fully mixing the powdery fullerene matrix with the melted nonmetallic matrix, and the inside and each surface of the new type composite material At the same time, it has the heat conduction and heat dissipation performance of fullerene, which not only enhances the heat conduction and heat dissipatio...

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PUM

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Abstract

The invention discloses a composite fullerene non-metallic material, which includes a non-metallic matrix and a fullerene matrix. The non-metallic matrix is heated into a melted state, and the fullerene matrix is powder. The powdery fullerene matrix and the melted non-metallic matrix are fully mixed. The non-metallic material of the non-metallic matrix includes plastic, glass, coating, silica gel or paint. By fully mixing the powdery fullerene matrix with the melted non-metallic matrix, a novel composite material can be formed. The inside and each surface of the novel composite material simultaneously have the heat conduction and heat dissipation performance of fullerene. Thus, the heat conduction and heat dissipation performance of the novel composite material are strengthened, also the heat inside a product can be dissipated timely and effectively, and the performance stability of the product is ensured. Due to uniform distribution of fullerene, the heat conduction and heat dissipation performance of the novel composite material are balanced and stable, and can reach a satisfactory effect.

Description

technical field [0001] The invention relates to the application field of composite non-metallic materials, in particular to a fullerene composite non-metallic material for heat conduction and heat dissipation. Background technique [0002] In recent years, with the continuous development of electronic technology and the continuous updating of electronic products, the size of its working components is getting smaller and smaller, the speed and efficiency of work are getting higher and higher, and its heat generation is also increasing. It is equipped with a corresponding heat dissipation device, and it is also necessary to ensure that the heat dissipation device has a stronger heat dissipation capacity, so as to ensure the reliability of product performance and prolong its service life. [0003] As a new type of heat conduction and heat dissipation material, fullerene has gradually solved the problem of heat conduction and heat dissipation for modern electronic products due t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K5/00
Inventor 张文阳
Owner SUZHOU PADNIC THERMAL CONDUCTIVE MATERIAL
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