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Effects of magnesium, tin and nitrogen on the sintering response of aluminum powder

机译:镁,锡,氮对铝粉烧结反应的影响

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In this work the effects of magnesium and tin on the sintering response of air atomized aluminum powder were considered. The nature of the raw powders and their concentrations were key experimental variable. Compacts of pure aluminum powder sintered poorly and reacted with the purified nitrogen atmosphere. This was manifested as a subtle mass gain. Tin dampened this effect for all concentrations considered (0.1-2 w/o). The reduction was maximized with a tin addition of 1.5 w/o. Magnesium additions improved the sintering response of the aluminum powder and increased the propensity for reaction with gaseous nitrogen. Aluminum nitride was confirmed as the principal reaction product. The extent of nitridation was influenced by the amount of magnesium present and the raw powder form utilized (elemental, master alloy). The most desirable sintering response was observed in an Al-1.5Sn-1.5Mg alloy made exclusively from elemental powders. This system sintered to near full theoretical density (99.5%) yet no observable amount of nitridation had transpired. The system exhibited excellent tensile ductility (ε_f ~15%) for a press-and-sinter aluminum P/M alloy.
机译:在这项工作中,考虑了镁和锡对空气雾化铝粉烧结响应的影响。原始粉末的性质及其浓度是关键的实验变量。纯铝粉的压块烧结不良,并与纯氮气气氛反应。这表现为微妙的质量增长。在所有考虑的浓度(0.1-2 w / o)下,锡都会减弱这种影响。锡的添加量为1.5 w / o时,还原作用最大。镁的添加改善了铝粉的烧结反应并增加了与气态氮反应的倾向。确认氮化铝为主要反应产物。氮化程度受存在的镁量和所用原料粉末形式(元素合金,中间合金)的影响。在仅由元素粉末制成的Al-1.5Sn-1.5Mg合金中观察到了最理想的烧结响应。该体系烧结至接近完全的理论密度(99.5%),但是没有发生可观察到的氮化量。对于压制和烧结的铝P / M合金,该系统表现出出色的拉伸延展性(ε_f〜15%)。

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