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Flexural Behaviors of 4D Carbon/carbon Composites with the Preform Architectures
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  • Flexural Behaviors of 4D Carbon/carbon Composites with the Preform Architectures
저자명
Ki-Woong Lee,Jong-Min Park,Hyeok-Jong Joo
간행물명
Carbon LettersKCI
권/호정보
2008년|9권 1호(통권31호)|pp.28-34 (7 pages)
발행정보
한국탄소학회|한국
파일정보
정기간행물|ENG| 이미지(1.06MB)
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기타언어초록

Multidirectional reinforcement is aimed primarily at overcoming interlaminar weakness, hence a major interest lies in the mechanical properties of multidirectional carbon/carbon composites. Mechanical properties depend on the type of carbon fiber, the size of the fiber bundle, the spacing of the bundles, the angles of the bundles relative to the axes of the block, and matrix formation. In the present studies, PAN based carbon fiber preforms manufactured different size of unit cell have been prepared. Densification of these used high pressure infiltration and carbonization technique with coal tar pitch as matrix precursor was carried out. Scanning electron microscopy has been used to study the fracture behavior of composites. The size of unit cell of the preforms has considerably affected on the flexural properties as well as microstructure of the carbon/carbon composites. Keywords : Carbon/carbon composites, Mechanical property, Microstructure, Fracture structure

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