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Mechanical Properties of Chemical-Vapor-Deposited Silicon Carbide using a Nanoindentation Technique
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  • Mechanical Properties of Chemical-Vapor-Deposited Silicon Carbide using a Nanoindentation Technique
  • Mechanical Properties of Chemical-Vapor-Deposited Silicon Carbide using a Nanoindentation Technique
저자명
Kim. Jong-Ho,Lee. Hyeon-Keun,Park. Ji-Yeon,Kim. Weon-Ju,Kim. Do-Kyung
간행물명
한국세라믹학회지
권/호정보
2008년|45권 9호|pp.518-523 (6 pages)
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한국세라믹학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The mechanical properties of silicon carbide deposited by chemical vapor deposition process onto a graphite substrate are studied using nanoindentation techniques. The silicon carbide coating was fabricated in a chemical vapor deposition process with different microstructures and thicknesses. A nanoindentation technique is preferred because it provides a reliable means to measure the mechanical properties with continuous load-displacement recording. Thus, a detailed nanoindentation study of silicon carbide coatings on graphite structures was conducted using a specialized specimen preparation technique. The mechanical properties of the modulus, hardness and toughness were characterized. Silicon carbide deposited at $1300^{circ}C$ has the following values: E=316 GPa, H=29 GPa, and $K_c$=9.8 MPa $m^{1/2}$; additionally, silicon carbide deposited at $1350^{circ}C$ shows E=283 GPa, H=23 GPa, and $K_c$=6.1 MPa $m^{1/2}$. The mechanical properties of two grades of SiC coating with different microstructures and thicknesses are discussed.