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Combustion Synthesis of High-Energy Ball-Milled Nb + 3AI Powder Mixtures

机译:高能球磨Nb + 3AI粉末混合物的燃烧合成

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摘要

A major concern on making products by combustion reactions is to obtain high densities. In this work the combustion synthesis of Nb + 3A1 powder mixtures is investigated with emphasis on densification behaviour. Two sets of mixtures were compared: high-energy ball-milled and simple mixtures. Milling was conducted on a vibratory mill at different times, to promote a highly refined dispersion of aluminum and niobium powders, avoiding in situ reaction. Cylindrical pellets were obtained by uniaxial compaction and reacted by thermal explosion mode under vacuum. Besides milling time, green density, degassing procedures and heating rates were also varied. Reacted pellets of NbAl_3 were characterised in terms of final density, geometrical distortion and phases present in the microstructure. The results shown a great dependence of final density on milling time and that is possible to attain dense pellets with little dimensional distortion as compared to the ones from non-milled mixtures.
机译:通过燃烧反应制造产品的主要问题是获得高密度。在这项工作中,研究了Nb + 3A1粉末混合物的燃烧合成,重点是致密化行为。比较了两组混合物:高能球磨和简单混合物。在不同的时间在振动研磨机上进行研​​磨,以促进铝和铌粉的高度精制分散,避免原位反应。通过单轴压实获得圆柱形丸粒,并在真空下通过热爆炸模式反应。除了研磨时间外,生坯密度,脱气程序和加热速率也有所不同。根据最终密度,几何变形和微观结构中存在的相来表征NbAl_3的反应团粒。结果表明,最终密度对研磨时间的依赖性很大,与从非研磨混合物得到的相比,有可能获得尺寸偏差很小的致密颗粒。

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