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Sol-Gel Processing of Silicon Based Matrixes for Carbon Fiber Reinforced Ceramic Composites

机译:碳纤维增强陶瓷复合材料的硅基基质的溶胶凝胶处理

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SOI-Gel processing of ceramics as matrixes for fiber reinforced composites offers flexibility of using polymer composites processing techniques and avoids fiber damage due to conventional high temperature melt processing infiltration techniques used for glass and ceramic matrix composites. Studies have been performed to develop Si,C,O based matrixes through copolymerization of furfuryl alcohol and hydrolyzed TEOS as well as through organic-inorganic hybrid gels from TEOS and l,4 Butanediol. In FFA TEOS system, copolymerization with optimized mol ratio of the two results in resinous mass. This precursor on pyrolysis to 1000 deg.`C results in Si-O-C type amorphous solid black mass. On heating to 1400 and 1600 deg C, it exhibits presence of crystalline SiC. In organic-inorganic gel system, the pyrolysed mass exhibits phase stability up to much higher temperatures. XRD studies show that pyrolysed materials obtained from BD-TEOS system contain higher amorphous component even after heat treatment to 1600 deg. C in contrast to FFA-TEOS system. Carbon fiber reinforced composites have been prepared with above matrixes using prepreg lay-up, consolidation and pyrolysis technique. At heat treatment temperature of around 1400 deg' C, though consolidation of the matrix is observed to be maximum, no reaction hetween fibers and matrix is observed and the fibers are not damaged. The composites exhibit non-catastrophic fracture.
机译:陶瓷作为纤维增强复合材料的基质的SOI凝胶加工提供了使用聚合物复合材料加工技术的灵活性,并避免了由于用于玻璃和陶瓷基质复合材料的常规高温熔融加工渗透技术而造成的纤维损坏。已经进行了研究,通过糠醇和水解的TEOS的共聚以及通过TEOS和1,4丁二醇的有机-无机杂化凝胶来开发基于Si,C,O的基质。在FFA TEOS系统中,两者以最佳摩尔比进行共聚会产生树脂质。该前体在热解至1000℃时产生Si-O-C型非晶态固体黑团。在加热至1400和1600℃时,其表现出结晶SiC的存在。在有机-无机凝胶体系中,热解物料在最高温度下仍显示出相稳定性。 X射线衍射研究表明,从BD-TEOS系统获得的热解材料即使在热处理至1600度后仍含有较高的无定形组分。与FFA-TEOS系统相反。碳纤维增强复合材料已经使用预浸料铺层,固结和热解技术与上述基质一起制备。在约1400℃的热处理温度下,尽管观察到基体的固结是最大的,但未观察到纤维与基体之间的反应,并且纤维没有被损坏。该复合材料表现出非灾难性的断裂。

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