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Nanosized β-SiC powder was prepared by combustion synthesis on a large scale, which was carried out in a N 2 atmosphere with silicon powder and carbon black as the reactants. Mechanical activation played an important role in enhancing the reactivity of the reactants, and a higher ball/charge weight ratio and a prolonged activation time were favorable for complete reaction. PTFE was added as a reaction promoter, which remarkably reduced the minimum activation time required for successful combustion synthesis. On the basis of experimental results and thermodynamical calculation, it is proposed that combustion synthesis of SiC in N 2 includes two steps: (1) Si reacts with N 2 to form Si 3 N 4, generating a lot of heat energy; (2) at higher temperatures the initially formed Si 3 N 4 decomposes, and released Si reacts with carbon to produce SiC.
Liu et al. (2008) studied this question.
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