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Excellent room temperature deformability in high strain rate regimes of magnesium alloy

机译:镁合金在高应变速率下具有出色的室温变形能力

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摘要

Magnesium and its alloys have the lowest density among structural metallic materials; thus, this light-weight metal has great potential for reducing the weight, for example, of vehicles and trains. However, due to its crystal structure, deformability is poor; in particular, under compressive stress. In this study, we modified magnesium with bismuth as an alloying element, which has the characteristics of being likely to form precipitates instead of grain boundary segregation. The Mg-Bi binary alloy showed excellent deformability and high absorption of energy in high-strain rate regimes at room temperature via contribution of grain boundary sliding. These properties, which are closely comparable to those of conventional middle-strength aluminum alloys (Al-Mg and Al-Mg-Si series alloys), have never been observed before in magnesium alloys. The development of such properties opens the door for not only academic but also industrial research in magnesium.
机译:在结构金属材料中,镁及其合金的密度最低。因此,这种轻质金属具有减轻例如车辆和火车的重量的巨大潜力。然而,由于其晶体结构,可变形性很差。特别是在压应力下。在这项研究中,我们用铋作为合金元素修饰了镁,镁具有容易形成沉淀而不是晶界偏析的特征。 Mg-Bi二元合金在室温下通过晶界滑动的贡献表现出优异的可变形性和高能量吸收率。这些性能与常规中强度铝合金(Al-Mg和Al-Mg-Si系列合金)的性能非常接近,在镁合金中从未见过。这种特性的发展不仅为镁的学术研究而且为工业研究打开了大门。

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