材料科学
复合材料
陶瓷基复合材料
陶瓷
残余应力
断裂(地质)
残余强度
纤维
模数
热膨胀
抗弯强度
残余物
热的
基质(化学分析)
压力(语言学)
物理
语言学
哲学
气象学
计算机科学
算法
作者
Tao Jia,Yong Deng,Yi Hao,Xinran Gao,Chao Zhang,Tianbao Cheng,Weiguo Li,Gun Jin Yun
标识
DOI:10.1016/j.compositesa.2023.107668
摘要
As a promising high temperature structural material, ceramic matrix composites have attracted much attention due to their excellent thermo-mechanical properties. The present work develops a physics-based temperature-dependent analytical model of fracture strength at high temperature oxidation environment for SiC fiber reinforced ceramic matrix composites (SiCf/CMCS). The combined effects of temperature, strength of constituent material, high temperature oxidation and residual thermal stress on the fracture strength are included in the proposed model. It is verified by the reported experimental results and comparison with other models, and it shows better agreement. Moreover, the influencing factors analysis regarding the evolution of fracture strength with oxidation temperature and time, fiber content and Young's modulus, and residual thermal stress are performed. This study contributes a reliable theoretical model for predicting high temperature fracture strength of SiCf/CMCS, and which is helpful for the mechanical property evaluation and property optimization under extreme environment.
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