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Mechanical Properties of Ultrafine Grain 2519 Aluminum Alloy

机译:超细晶粒2519铝合金的力学性能

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The effect of percentage thickness reduction and annealing time on the mechanical properties of cryo-rolled AA 2519 aluminum (Al) alloy was examined. Tensile tests were performed on samples in the longitudinal, transverse and at 45° to the rolling direction. The mechanical properties such as the Yield Strength (YS) and the Ultimate Tensile Strength (UTS) were observed to improve when compared to as-received sample of the 2519 alloy. This is in agreement with the Hall-Petch relationship. The highest variations in these properties were observed in the longitudinal direction, followed by the 45° and the lowest values were obtained in the transverse direction. However, the difference between the mechanical properties in the various directions decreased with an increase in annealing time showing homogeneous distribution of the fine particles.
机译:研究了厚度减小百分比和退火时间对冷轧AA 2519铝(Al)合金力学性能的影响。在纵向,横向和与轧制方向成45°的方向上对样品进行拉伸测试。与2519合金的原样相比,观察到诸如屈服强度(YS)和极限拉伸强度(UTS)的机械性能有所提高。这与霍尔-帕奇(Hall-Petch)关系一致。在纵向上观察到这些性质的最高变化,随后在横向观察到45°,并且获得最低的值。然而,随着退火时间的增加,在各个方向上的机械性能之间的差异减小,这表明微粒的均匀分布。

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