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首页> 外文期刊>Journal of the European Ceramic Society >Development of wound SiCBNx/SiNx/SiC with near stoichiometric SiC matrix via LSI process
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Development of wound SiCBNx/SiNx/SiC with near stoichiometric SiC matrix via LSI process

机译:LSI工艺开发伤口SiCBNX / SINX / SIC,通过LSI过程

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In order to develop SiC/SiC ceramic matrix composites with a low porosity, liquid silicon infiltration (LSI) was chosen as a technique, characterized by short processing times. To create the matrix, a tailored phenolic resin containing beta-naphthol units was synthesized and infiltrated in wound fiber preforms, thermally cured, pyrolysed and siliconized. The aim is to obtain a high carbon yield during pyrolysis and to create a dense carbon foam between the SiC fibers. Instead of a classic liquid silicon infiltration via capillary forces through a carbon block-like microstructure, this foam promotes a softer infiltration with less fiber degradation and a maximized carbon conversion to near stoichiometric SiC. To protect the SiC fibers from an attack of the liquid silicon and to simultaneously provide a weak fiber matrix bonding, a BNx/SiNx fiber coating was chosen. The coating was applied by means of low-pressure chemical vapor deposition (LPCVD) using gaseous chlorine free precursors. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:为了开发具有低孔隙率的SiC / SiC陶瓷基复合材料,选择液体渗透(LSI)作为一种技术,其特征在于处理时间短。为了产生基质,合成含有β-萘酚单元的定制酚醛树脂,并在卷绕纤维预成型件中渗透,热固化,热解和硅化。目的是在热解期间获得高碳产率,并在SiC纤维之间产生致密的碳泡沫。该泡沫代替通过碳嵌段的微观结构通过毛细管力通过毛细管力的经典硅渗透,而是通过较少的纤维降解和最大化的碳转化释放到附近化学计量SiC的最大化的碳转化液。为了保护SiC纤维免受液体硅的攻击并同时提供弱纤维基质键合,选择BNX / SINX纤维涂层。通过使用气态氯离子前体通过低压化学气相沉积(LPCVD)施加涂层。 (c)2015年作者。 elsevier有限公司出版

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