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Development of wound SiCBNx/SiNx/SiC with near stoichiometric SiC matrix via LSI process

机译:通过LSI工艺开发具有近化学计量SiC基质的缠绕式SiCBNx / SiNx / SiC

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摘要

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 tailoredphenolic resin containing ß-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 andto create a dense carbon foam between the SiC fibers. Instead of a classic liquid silicon infiltration viacapillary forces through a carbon block-like microstructure, this foam promotes a softer infiltration withless fiber degradation and a maximized carbon conversion to near stoichiometric SiC. To protect the SiCfibers from an attack of the liquid silicon and to simultaneously provide a weak fiber matrix bonding, aBNx/SiNxfiber coating was chosen. The coating was applied by means of low-pressure chemical vapordeposition (LPCVD) using gaseous chlorine free precursors.
机译:为了开发低孔隙率的SiC / SiC陶瓷基复合材料,选择了液态硅渗透(LSI)技术,其工艺时间短。为了生成基质,合成了包含ß-萘酚单元的量身定制的酚醛树脂,并渗入缠绕的纤维预成型坯中,进行热固化,热解和硅化。目的是在热解过程中获得高碳收率,并在SiC纤维之间形成致密的碳泡沫。这种泡沫代替传统的液态硅通过毛细作用力通过碳块状微结构渗透,而是促进了较软的渗透,而纤维降解却没有,碳转化为接近化学计量的SiC的转化率也最高。为了保护SiC纤维免受液态硅的侵蚀并同时提供弱的纤维基质粘结,选择了BNx / SiNx纤维涂层。使用低压气态无氯前驱物,通过低压化学气相沉积(LPCVD)施加涂层。

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