材料科学
化学气相渗透
复合材料
陶瓷基复合材料
氧化剂
热解
断裂韧性
陶瓷
多孔性
复合数
热导率
碳纤维
增强碳-碳
聚合物
韧性
废物管理
工程类
有机化学
化学
作者
Yutaro Arai,Ryo Inoue,Ken Goto,Yasuo Kogo
标识
DOI:10.1016/j.ceramint.2019.05.065
摘要
Abstract Recent studies on carbon fiber-reinforced ultra-high temperature ceramic matrix (C/UHTC) composites fabricated by hot-pressing, chemical vapor infiltration, polymer impregnation and pyrolysis, and melt infiltration (MI) are reviewed. Various efforts have been made to improve these preparation processes and to combine two or more of these because they have both the advantages and disadvantages in terms of the processing time, operating temperature, and the porosity of the resulting C/UHTC composites. In addition, the parameters governing the fracture toughness, thermal conductivity, and recession behavior (in oxidizing environments) of these composites have been discussed. This review demonstrates that C/UHTC composites with Zr- or Hf-based UHTC matrices fabricated via MI are potential candidates for advanced heat-resistant structural materials.
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