Modeling oxidation damage of continuous fiber reinforced ceramic matrix composites
Modeling oxidation damage of continuous fiber reinforced ceramic matrix composites作者机构:Department of Engineering Mechanics Northwestern Polytechnical University 710129 Xi'an China
出 版 物:《Acta Mechanica Sinica》 (力学学报(英文版))
年 卷 期:2011年第27卷第3期
页 面:382-388页
核心收录:
学科分类:083002[工学-环境工程] 0830[工学-环境科学与工程(可授工学、理学、农学学位)] 07[理学] 08[工学] 09[农学] 0903[农学-农业资源与环境] 0805[工学-材料科学与工程(可授工学、理学学位)] 080502[工学-材料学] 0713[理学-生态学]
基 金:supported by the National Natural Science Foundation of China (90405015)
主 题:CMCs Oxidation Interface Mechanical properties Micromechanical model
摘 要:For fiber reinforced ceramic matrix composites(CMCs),oxidation of the constituents is a very important damage type for high temperature applications. During the oxidizing process,the pyrolytic carbon interphase gradually recesses from the crack site in the axial direction of the fiber into the interior of the material. Carbon fiber usually presents notch-like or local neck-shrink oxidation phenomenon,causing strength degradation. But,the reason for SiC fiber degradation is the aw growth mechanism on its surface. A micromechanical model based on the above mechanisms was established to simulate the mechanical properties of CMCs after high temperature oxidation. The statistic and shearlag theory were applied and the calculation expressions for retained tensile modulus and strength were deduced,respectively. Meanwhile,the interphase recession and fiber strength degradation were considered. And then,the model was validated by application to a C/SiC composite.