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논문 기본 정보

자료유형
학술저널
저자정보
Dhakate, S.R. (Advanced Composites Evaluation Technology Center, Japan Aerospace Exploration Agency) Aoki, T. (Advanced Composites Evaluation Technology Center, Japan Aerospace Exploration Agency) Ogasawara, T. (Advanced Composites Evaluation Technology Center, Japan Aerospace Exploration Agency)
저널정보
한국탄소학회 Carbon science Carbon science 제5권 제3호
발행연도
2004.1
수록면
108 - 112 (5page)

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Effect of silicon infiltration on the bend and tensile strength of 2D cross-ply carbon-carbon composites are studied. It is observed that bend strength higher than tensile strength in both types of composite is due to the different mode of fracture and loading direction. After silicon infiltrations bend and tensile strength suddenly decreases of carbon-carbon composites. This is due to the fact that, after silicon infiltration, silicon in the immediate vicinity of carbon forms the strong bond between carbon and silicon by formation silicon carbide and un-reacted silicon as free silicon. Therefore, these composites consist of three components carbon, silicon carbide and silicon. Due to mismatch between these three components secondary cracks developed and these cracks propagate from $90^{\circ}$ oriented plies to $0^{\circ}$ oriented plies by damaging the fibers (i.e., in-situ fiber damages). Hence, secondary cracks and in-situ fiber damages are responsible for degradation of mechanical properties of carbon-carbon composites after silicon infiltration which is revealed by microstructure investigation study by scanning electron microscope.

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