材料科学
包层(金属加工)
复合材料
断裂(地质)
冶金
法律工程学
工程类
作者
Ze‐Xi Zhang,Chuang‐Tian Zhan,Yangqing Liu,Zhen-Quan Liang,Wei‐Ming Guo,Shi‐Kuan Sun,Yun Li,Li‐Xiang Wu,Jiaxiang Xue,Hua‐Tay Lin
标识
DOI:10.1016/j.jmrt.2024.10.024
摘要
This study investigated the fracture behavior of SiC f /SiC cladding with axial cracks in the CMC layer/monolithic SiC layer on the inner and outer wall via an expanding plug test. The specimen with a prefabricated crack on the outer wall fractured in no specific direction. After the first load drop, fracture sources can be detected not only near the notch but also in other directions within the CMC layer. The simulation shows a homogeneous stress distribution resulting in a similar hoop strength to the specimen without prefabricated cracks. In contrast, the specimen with a prefabricated crack on the inner wall fractured along the notch. After the first load drop, fracture sources can be detected only near the notch. The simulation demonstrates stress concentration, resulting in a lower hoop strength. Therefore, considering the nuclear application of SiC f /SiC cladding, we are supposed to pay more attention to the defects in CMC layer in the fabrication process of SiC f /SiC cladding.
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