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춉트 스트랜드 강화 ALS 계 복합재료의 파괴인성 평가
Evaluation on The Fracture Toughness of Chopped Strad Reinforced ALS Matrix Composites
차용훈 ( C . Y . Hoon ) , 김덕종 ( D . J . Kim ) , 이연신 ( Y . S . Lee ) , 성백섭 ( B . S . Soung ) , 채경수 ( K . S . Chae )
UCI I410-ECN-0102-2008-530-001354233
* 발행 기관의 요청으로 구매가 불가능한 자료입니다.

It is well known in the fracture mechanics community that the fracture toughness of brittle materials, such as ceramics, can be improved improves significantly when fibers are added into the material. This is because in presence of fibers the cracks cannot propagate as freely as it can in absence of them. Fibers bridge the gap between two adjacent surfaces of the crack and reduce the crack tip opening displacement, thus make it harder to propagate. Several investigators have experimentally studied how the length, diameter and volume fraction of fibers affect the fracture toughness of chopped strand reinforced matrix composite materials. In this paper, matrix used ALS, Arizona Lunar Simulant, types of fiber used carbon steels and stainless steels. To analyze quantitatively fiber reinforced ALS composites, experimental and analytical methods was progressed. Load-displacement curve is used to experimental method, and FEM analysis program using ABAQUS is used analytical method.

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