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Effect of Preceramic and Zr Coating on Impregnation Behaviors of SIC Ceramic Composite

机译:陶瓷前驱体和Zr涂层对SIC陶瓷复合材料浸渍行为的影响

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摘要

SiC fiber-reinforced ceramic composites were fabricated using a polymer impregnation and pyrolysis process. To develop the low temperature process, the pyrolysis was conducted at 600 degrees C in air. Both a microstructural observation and a mechanical test were utilized for the evaluation of the impregnation. For the impregnation, two kinds of polycarbosilane having a different degree of cross-linking were used. The level of cross-linking affected the ceramic yield of the composites. The cross-linking under oxygen containing atmosphere resulted in a dense matrix and high density of filling. However, tight bonding between the matrix and fibers in the fully dense composite samples, which was obtained using a cross-linking agent of divinylbenzene, turned out to be deteriorative on the mechanical properties. The physical isolation of fibers from matrix phase in the composites was very important to attain a mechanical ductility The brittle fracture was alleviated by introducing an interphase coating with metallic Zr. The combination of forming the dense matrix and interphase coating should be a necessary condition for the SiCf/SiC fiber-reinforce composite, and it is practicable by controlling the process parameters.
机译:SiC纤维增强陶瓷复合材料是采用聚合物浸渍和热解工艺制造的。为了发展低温工艺,在空气中于600摄氏度进行热解。微观结构观察和机械测试均用于评估浸渍。对于浸渍,使用了具有不同交联度的两种聚碳硅烷。交联的程度影响了复合材料的陶瓷产率。在含氧气氛下的交联导致致密的基体和高的填充密度。然而,通过使用二乙烯基苯的交联剂获得的完全致密的复合材料样品中的基体与纤维之间的紧密结合,使机械性能恶化。纤维与复合材料中基体相的物理隔离对于获得机械延展性非常重要。通过引入金属Zr的相间涂层可以缓解脆性断裂。形成致密基体和相间涂层的组合应该是SiCf / SiC纤维增强复合材料的必要条件,并且可以通过控制工艺参数来实现。

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