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논문 기본 정보

자료유형
학술저널
저자정보
Cho, Donghwan (Department of Polymer Science and Engineering, Kumoh National Institute of Technology) Choi, Yusong (Propulsion Sources Team, Agency for Defense Developmen) Park, Jong Kyoo (Composite Materials Team, Agency for Defense Developmen) Lee, Jinyong (Composite Materials Team, Agency for Defense Developmen) Yoon, Byung Il (Composite Materials Team, Agency for Defense Developmen) Lim, Yun Soo (Department of Ceramics Engineering, Myong Ji University)
저널정보
한국섬유공학회 Fibers and Polymers Fibers and polymers 제5권 제1호
발행연도
2004.1
수록면
31 - 38 (8page)

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In the present paper, a variety of fiber reinforcements, for instance, stabilized OXI-PAN fibers, quasi-carbon fibers, commercial carbon fibers, and their woven fabric forms, have been utilized to fabricate pseudo-unidirectional (pseudo-UD) and 2-directional (2D) phenolic matrix composites using a compression molding method. Prior to fabricating quasi-carbon fiber/phenolic (QC/P) composites, stabilized OXI-PAN fibers and fabrics were heat-treated under low temperature carbonization processes to prepare quasi-carbon fibers and fabrics. The thermal conductivity and thermal expansion/contraction behavior of QC/P composites have been investigated and compared with those of carbon fiber/phenolic (C/P) and stabilized fiber/phenolic composites. Also, the chemical compositions of the fibers used have been characterized. The results suggest that use of proper quasi-carbonization process may control effectively not only the chemical compositions of resulting quasi-carbon fibers but also the thermal conductivity and thermal expansion behavior of quasi-carbon fibers/phenolic composites in the intermediate range between stabilized PAN fiber- and carbon fiber-reinforced phenolic composites.

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