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Synthesizing Al_2O_3/SiC in a microwave oven: A study of process parameters

机译:在微波炉中合成Al_2O_3 / SiC:工艺参数的研究

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摘要

The effect of precursor milling, reaction time, microwave power level and gas flow on the microwave synthesis of Al_2O_3/SiC composite powder was investigated. Reactions were earned out in a semi-industrial microwave oven (Cober Inc., USA) allowing for the insertion of inert gas. Two reaction configurations were designed to perform the synthesis: a cylindrical thermally-insulated reactor and a pipe fluidized bed reactor (PFR). The precursor employed for the reaction in the two reactors was utilized in the form of pellets. A direct relation exists between saturation of the reaction atmosphere and the kinetics of carbothermal reduction. In addition to high levels of microwave radiation power (> 1.5 kW), this favors the rapid formation of Al_2O_3/SiC.
机译:研究了前驱磨粉,反应时间,微波功率水平和气体流量对微波合成Al_2O_3 / SiC复合粉末的影响。在允许插入惰性气体的半工业微波炉(美国科伯公司)中进行反应。设计了两种反应构型以进行合成:圆柱形绝热反应器和管道流化床反应器(PFR)。在两个反应器中用于反应的前体以粒料形式使用。反应气氛的饱和与碳热还原的动力学之间存在直接关系。除了高水平的微波辐射功率(> 1.5 kW)之外,这还有助于快速形成Al_2O_3 / SiC。

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