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首页> 外文期刊>Acta Materialia >CHEMICAL AND MECHANICAL ALTERATIONS OF SiC NICALON FIBER PROPERTIES DURING THE CVD/CVI PROCESS FOR BORON NITRIDE
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CHEMICAL AND MECHANICAL ALTERATIONS OF SiC NICALON FIBER PROPERTIES DURING THE CVD/CVI PROCESS FOR BORON NITRIDE

机译:氮化硼CVD / CVI过程中SiC Nicalon纤维性质的化学和机械变化

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摘要

To improve the interfacial properties in SiC/SiC composites, BN is an appropriate interphase material to control the fiber/matrix bond. Unfortunately, the gaseous phase (NH_3,BF_3,HF,Ar) used to deposit BN acts aggressively upon Si-C-O (ex-PCS) Nicalon fiber surfaces, and weakens that bond through the formation of a complex interfacial sequence (SiO_2/C), which actually controls the localization of debonds. The reactions between each gas involved and the fiber surface have been studied. Further, if the fiber surface consists of SiC or any silicon-containing compound, the BF_3 gas reacts through a substi- tution of the silicon by boron in the initial fiber composition. Then, the surface evolves from a (C,O,Si) composition to a (B,C,O,Si) glassy layer. Such a reaction occurs mainly before the BN nucleation, and it alters the reinforcing potential of fibers in composites. This boron-containing glass is shown to be very un- stable in the presence of HF gas (the main reaction product).
机译:为了改善SiC / SiC复合材料的界面性能,BN是控制纤维/基质键合的合适相间材料。不幸的是,用于沉积BN的气相(NH_3,BF_3,HF,Ar)在Si-CO(ex-PCS)Nicalon纤维表面上具有侵蚀性作用,并通过形成复杂的界面序列(SiO_2 / C)来削弱其键合,实际上控制着脱胶的本地化。已经研究了每种所涉及的气体与纤维表面之间的反应。此外,如果纤维表面由SiC或任何含硅化合物组成,则BF_3气体通过硅在初始纤维成分中被硼取代而发生反应。然后,表面从(C,O,Si)组成演变为(B,C,O,Si)玻璃层。这种反应主要发生在BN成核之前,它改变了复合材料中纤维的增强潜力。该含硼玻璃在HF气体(主要反应产物)的存在下显示出非常不稳定的状态。

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