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A Novel Method for the Preparation of Porous SiC

机译:一种制备多孔SiC的新方法

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A novel method for preparing porous silicon carbide ceramics with high porosity had been developed by recrystallization of green bodies composed of α-SiC, β-SiC, remnant silicon and incompletely-reacted carbon. Fine microstructure and uniform pore structure of the resultant porous silicon carbide ceramics was obtained. The green bodies of porous ceramics were prepared by the precursor powder which contained α-SiC, carbon black and silicon powder. The precursor powder was sintered at 1600°C under Vacuum circumstance to obtain the green bodies; the sintering process is same with the reaction sintering silicon carbide. Then the green bodies were sintered to 2300°C for half an hour to recrystallization. The incompletely-reacted carbon was fully reacted with silicon. And the remnant silicon was excluded during the recrystallization process to create porous structures. The influence of composition of the precursor powder and the fabrication process (the moulding pressure) on the microstructure of sintering bodies was analyzed. X-ray diffractometry demonstrated the transformation of β-SiC to α-SiC during the recrystallization process. The density and the porosity of this material was 1.027g/cm~3 and 67% respectively.
机译:通过对由α-SiC,β-SiC,残余硅和未完全反应的碳组成的生坯进行重结晶,开发了一种制备高孔隙度多孔碳化硅陶瓷的新方法。得到的多孔碳化硅陶瓷具有良好的微观结构和均匀的孔结构。用含有α-SiC,炭黑和硅粉的前体粉末制备多孔陶瓷的生坯。将前体粉末在真空条件下在1600℃下烧结以获得生坯。烧结过程与反应烧结碳化硅相同。然后将生坯烧结至2300℃半小时以重结晶。未完全反应的碳与硅充分反应。并且在重结晶过程中排除了残留的硅以产生多孔结构。分析了前驱体粉末的组成和制造工艺(成型压力)对烧结体微观结构的影响。 X射线衍射表明,在重结晶过程中,β-SiC转变为α-SiC。该材料的密度和孔隙率分别为1.027g / cm〜3和67%。

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