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首页> 外文期刊>Journal of the European Ceramic Society >The role of aluminium as an additive element in the synthesis of porous 4H-silicon carbide
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The role of aluminium as an additive element in the synthesis of porous 4H-silicon carbide

机译:铝作为一种添加剂元素在合成多孔4H-碳化硅中的作用

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Addition of 5 at.% aluminium to silicon and carbon in the process of forming SiC monoliths for use as diesel particle filters and catalyst supports, creates mechanically stable, well connected, and highly porous 4H-SiC structures. These monoliths have 65 % accessible porosity with pore diameters of 17 - 20 mu m. Mixtures of silicon, graphite, aluminium and water, are extruded into honeycomb structures and heated under nitrogen and argon. The 2H-AlN crystalline assembly formed during initial heating under nitrogen at 850 degrees C acts as a template for the subsequent reaction between silicon and graphite under argon to yield 3C-SiC. During a final high temperature step under argon at 1950 degrees C, Al-vapour/liquid is crucial for the transformation of 3C-SiC to 4H-SiC. This final step also alters the SiC crystal morphology significantly and produces large by-product crystals of Al4C3 center dot mSiC center dot nAlN. The polytypic conversion and recrystallization mechanism were found, in this case, to be independent phenomena. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在形成用于柴油颗粒过滤器和催化剂载体的过程中,在形成SiC颗粒过滤器和催化剂载体的过程中加入5.%铝和碳。这些整料孔具有65%可接近的孔隙率,孔径为17-20μm。硅,石墨,铝和水的混合物,挤出成蜂窝结构并在氮气和氩气下加热。在850℃下氮气下初始加热期间形成的2H-AlN结晶组件用作氩气下硅和石墨之间的后续反应的模板,得到3C-SiC。在1950摄氏度下氩气下的最终高温步骤期间,Al-Vapor /液体对于将3C-SiC转化至4H-SiC的关键。该最后步骤也显着改变了SiC晶体形态,并产生了Al4C3中心点MSIC中心点NALN的大量副产物晶体。在这种情况下,发现多液转化和重结晶机制是独立的现象。 (c)2016 Elsevier Ltd.保留所有权利。

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