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Interfacial Characteristics and Mechanical Properties of HPHT Sintered Diamond/SiC Composites
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HOME > J Korean Powder Metall Inst > Volume 16(6); 2009 > Article
초고압 소결된 다이아몬드/실리콘 카바이드 복합재료의 계면특성 및 기계적 특성
박희섭, 류민호, 홍순형
Interfacial Characteristics and Mechanical Properties of HPHT Sintered Diamond/SiC Composites
Hee-Sub Park, Min-Ho Ryoo, Soon-Hyung Hong
Journal of Korean Powder Metallurgy Institute 2009;16(6):416-423
DOI: https://doi.org/10.4150/KPMI.2009.16.6.416
1KAIST 신소재공학과,일진다이아몬드(주) 산업기술연구소
2일진다이아몬드(주) 산업기술연구소
3KAIST 신소재공학과
1Department of Materials Science and Engineering, KAIST,Institute of Industrial Technology, ILJIN Diamond Co., Ltd.
2Institute of Industrial Technology, ILJIN Diamond Co., Ltd.
3Department of Materials Science and Engineering, KAIST
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Diamond/SiC composites are appropriate candidate materials for heat conduction as well as high temperature abrasive materials because they do not form liquid phase at high temperature. Diamond/SiC composite consists of diamond particles embedded in a SiC binding matrix. SiC is a hard material with strong covalent bonds having similar structure and thermal expansion with diamond. Interfacial reaction plays an important role in diamond/SiC composites. Diamond/SiC composites were fabricated by high temperature and high pressure (HPHT) sintering with different diamond content, single diamond particle size and bi-modal diamond particle size, and also the effects of composition of diamond and silicon on microstructure, mechanical properties and thermal properties of diamond/SiC composite were investigated. The critical factors influencing the dynamics of reaction between diamond and silicon, such as graphitization process and phase composition, were characterized. Key factor to enhance mechanical and thermal properties of diamond/SiC composites is to keep strong interfacial bonding at diamond/SiC composites and homogeneous dispersion of diamond particles in SiC matrix.


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