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Cryomilling and Characterization of Metal/ceramic Powders

机译:金属/陶瓷粉末的低温研磨和表征

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Al/Fe_2O_3 thermite powders were prepared by cryomilling at liquid nitrogen temperature. The cryogenic temperature will restrain the mechanochemical reaction between alumina and iron oxide, leading to high reactivitive nanoscale powders. The size distribution of the powders was analyzed using laser particle size analyzer, and cryomilling was proved to be an effective method to prepare ultrafine powders. The differential scanning calorimetry (DSC) analysis indicated that the cryomilled powders get more fully-reacted, a larger proportion of solid-solid reaction and more heat release in the solid-liquid reaction, comparing with the powders milled at room temperaure. Furthermore, the reaction kinetics of Al-Fe_2O_3 system is analyzed by a model-free Starink method. The activation energy for solid-solid reaction of 2Al-Fe_2O_3 thermite mixture cryomilled for 40 min is determined as 250 kJ/mol. The alternating gradient magnetometer (AGM) analysis shows that long time milling evoked the thermit reaction between Al and Fe_2O_3, leading to the increase in saturation magnetization (M_s) and remanent magnetization (M_r).
机译:通过在液氮温度下低温研磨制备Al / Fe_2O_3铝热粉。低温会限制氧化铝和氧化铁之间的机械化学反应,从而导致高活性纳米级粉末。使用激光粒度分析仪分析了粉末的粒度分布,并证明了冷冻研磨是制备超细粉末的有效方法。差示扫描量热法(DSC)分析表明,与在室温下研磨的粉末相比,低温研磨的粉末得到更充分的反应,固-固反应的比例更大,并且在固-液反应中释放出更多的热量。此外,采用无模型Starink法分析了Al-Fe_2O_3体系的反应动力学。将经冷冻研磨40分钟的2Al-Fe_2O_3铝热剂混合物进行固-固反应的活化能确定为250 kJ / mol。交变梯度磁力计(AGM)分析表明,长时间铣削会引起Al与Fe_2O_3之间的热反应,从而导致饱和磁化强度(M_s)和剩余磁化强度(M_r)的增加。

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