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首页> 外文期刊>Journal of the European Ceramic Society >Effects of preform pore structure on infiltration kinetics and microstructure evolution of RMI-derived C-f/ZrC-ZrB2-SiC composite
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Effects of preform pore structure on infiltration kinetics and microstructure evolution of RMI-derived C-f/ZrC-ZrB2-SiC composite

机译:预成型孔隙结构对RMI衍生C-F / ZRC-ZRB2-SiC复合材料渗透动力学和微观结构演化的影响

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摘要

Reactive melt infiltration (RMI) is often used to fabricate highly dense ceramic matrix composite by infiltration of alloy melt into porous preform. Here, C-f/B4C-C preforms with various pore structures were prepared, and the effects of pore structure on the ZrSi2 melt infiltration and the as-received C-f/ZrC-ZrB2-SiC composites were investigated. Compared with the preform prepared by slurry impregnation (SI), the preform prepared by sol impregnation shows more uniform pore size distribution, which leads to more homogeneous melt infiltration, as well as more uniform formation of ZrC-ZrB2-SiC and better mechanical properties in the composites. The calculation results of infiltration kinetics indicate that the pore radius decreases quickly during the melt infiltration. As the time needed for pore closure in sol-preform is longer than that in SI-preform, it makes the infiltration kinetics more favorable in the former preform. This study can provide guidance for the pore structure regulation in the fabrication of RMI-composites.
机译:反应性熔融浸润(RMI)通常用于通过渗透到多孔预成型坯来制造高致密的陶瓷基质复合材料。这里,制备具有各种孔结构的C-F / B4C-C预制件,研究了孔结构对ZrSI2熔融浸润的影响和接收的C-F / ZrC-ZrB2-SiC复合材料。与浆料浸渍(Si)制备的预制件相比,通过溶胶浸渍制备的预制件显示出更均匀的孔径分布,这导致更均匀的熔体渗透,以及更均匀地形成ZRC-ZRB2-SiC和更好的机械性能。复合材料。渗透动力学的计算结果表明孔半径在熔体渗透过程中迅速降低。由于溶胶 - 预制件中孔隙闭合所需的时间比Si-Preform更长,因此它使渗透动力学在前预制件中更有利于。该研究可以为RMI复合材料制备的孔结构调节提供指导。

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