Preparation of Diamond/Rb-Sic Composite with Low Residual Silicon and High Diamond Content by Infiltration

15 Pages Posted: 9 Nov 2024

See all articles by zijian zhang

zijian zhang

University of Science and Technology Beijing

Xinbo He

University of Science and Technology Beijing

Tao Zhang

affiliation not provided to SSRN

Hongda Guan

University of Science and Technology Beijing

Xuanhui Qu

University of Science and Technology Beijing - Beijing Advanced Innovation Center for Materials Genome Engineering

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Abstract

The infiltration has the advantages of high efficiency and near net forming, making it the mainstream method for preparing diamond/SiC composite. However, no pressure was applied during the infiltration and the SiC matrix originated from the silicon-carbon reaction, resulting in a low diamond content and a large amount of residual silicon. This makes it difficult to further improve the properties of the composite, especially the thermal conductivity. Therefore, reaction bonded SiC (RB-SiC) was proposed as the matrix to reduce silicon content, and composition design was carried out to obtain high content of diamond. The results showed that in the prepared composite, the diamond content (61.14 vol%) reached the theoretical maximum of 90.43%, and the silicon is only 4.79 vol%. Therefore, the thermal conductivity of composite can reach up to 665.47 W/mK. In addition, the influence of SiC particle size on phase composition, microstructure, and properties was analyzed.

Keywords: Diamond/SiC, Phase content, Thermal conductivity

Suggested Citation

zhang, zijian and He, Xinbo and Zhang, Tao and Guan, Hongda and Qu, Xuanhui, Preparation of Diamond/Rb-Sic Composite with Low Residual Silicon and High Diamond Content by Infiltration. Available at SSRN: https://ssrn.com/abstract=5014898 or http://dx.doi.org/10.2139/ssrn.5014898

Zijian Zhang (Contact Author)

University of Science and Technology Beijing ( email )

30 Xueyuan Road, Haidian District
beijing, 100083
China

Xinbo He

University of Science and Technology Beijing ( email )

30 Xueyuan Road, Haidian District
beijing, 100083
China

Tao Zhang

affiliation not provided to SSRN ( email )

No Address Available

Hongda Guan

University of Science and Technology Beijing ( email )

Xuanhui Qu

University of Science and Technology Beijing - Beijing Advanced Innovation Center for Materials Genome Engineering ( email )

30 Xueyuan Road, Haidian District
Beijing, 100083
China

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