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A new approach to fabricate SiC nanowire-embedded dense SiC matrix/carbon fiber composite

机译:一种制备SiC纳米线嵌入致密SiC基体/碳纤维复合材料的新方法

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摘要

A novel and simple sol-gel route has been used for the fabrication of composite structure composed of carbon fibers and silicon carbide nanowires embedded in dense silicon carbide matrix. The carbonaceous silica sol was impregnated in the carbon fiber preform at atmospheric pressure. The sol impregnated carbon preform was cured and heat treated to convert into silicon carbide. The analysis by X-ray diffraction, scanning electron microscopy, X-ray tomography, and transmission electron microscopy indicates that the impregnated carbonaceous silica gel converts to β-silicon carbide with dense and wire morphology. Different morphological silicon carbide was uniformly distributed inside carbon fiber preform and there was no degradation in thermophysical properties of carbon composite during processing. These results reveal high efficient reinforcement of different morphological silicon carbide in carbon composite, demonstrate a new mechanism of carbon composite reinforcement and suggest a new direction to carbon composite reinforcement.
机译:一种新颖且简单的溶胶-凝胶路线已被用于制造复合结构,该复合结构由嵌入致密碳化硅基体中的碳纤维和碳化硅纳米线组成。在大气压下将碳质硅溶胶浸渍在碳纤维预制件中。溶胶浸渍的碳预成型件被固化并热处理以转化为碳化硅。通过X射线衍射,扫描电子显微镜,X射线断层摄影和透射电子显微镜的分析表明,浸渍的碳质硅胶转变为具有致密和线形形态的β-碳化硅。不同形态的碳化硅均匀地分布在碳纤维预制棒内部,并且在加工过程中碳复合材料的热物理性能没有降低。这些结果揭示了碳复合材料中不同形态的碳化硅的高效增强,证明了碳复合材料增强的新机理,并为碳复合材料增强提供了新的方向。

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