본 논문에서는 Biomorphic C/SiC 복합재료에 대하여 단위구조해석을 수행하였다. 소나무와 뉴송을 탄화하고 실리콘을 함침해 제조한 복합재료의 미세조직을 사각배열과 육각배열로 가정해 단위구조를 정의하고 등가물성치를 계산하였다. 단위구조의 크기가 동일하지 않은 경우도 고려하였고, 또한 공극에 배열에 따른 물성치의 변화를 monte carlo 시뮬레이션을 통해 조사하였다.
In this paper, mechanical property of biomorphic C/SiC composite was calculated by unit cell analysis. The microstructural arrangement of materials, carbonized pine which was impregnated with silicon, was idealized as square and hexagonal arrays. Unit cell was then defined and equivalent elasic constants were calculated. A single and double unit cell structures were considered. The effect of void distribution was also studied by monte carlo simulation.