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Hierarchical nanostructured aluminum alloy with ultrahigh strength and large plasticity

机译:具有超高强度和大可塑性的等级纳米结构铝合金

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High strength and high ductility are often mutually exclusive properties for structural metallic materials. This is particularly important for aluminum (Al)-based alloys which are widely commercially employed. Here, we introduce a hierarchical nanostructured Al alloy with a structure of Al nanograins surrounded by nano-sized metallic glass (MG) shells. It achieves an ultrahigh yield strength of 1.2?GPa in tension (1.7?GPa in compression) along with 15% plasticity in tension (over 70% in compression). The nano-sized MG phase facilitates such ultrahigh strength by impeding dislocation gliding from one nanograin to another, while continuous generation-movement-annihilation of dislocations in the Al nanograins and the flow behavior of the nano-sized MG phase result in increased plasticity. This plastic deformation mechanism is also an efficient way to decrease grain size to sub-10 nm size for low melting temperature metals like Al, making this structural design one solution to the strength-plasticity trade-off.
机译:高强度和高延展性通常是结构金属材料的相互排斥的性质。这对于广泛商业地使用的基于铝(Al)的合金尤其重要。在此,我们介绍一种具有由纳米金属玻璃(Mg)壳包围的Al Nanograins的结构的分层纳米结构Al合金。它在张力(压缩中1.7μm≤GPA)的张力(1.7μm≤GPA)中实现了1.2μl的超高屈服强度,以及15%的张力塑性(压缩超过70%)。纳米尺寸的Mg相通过将位错滑动从一个纳米纳米纳入另一个纳米簇,而纳米簇中的脱位的连续产生 - 纳米脱离的纳米脱位和纳米尺寸的Mg相的流动性能提高可塑性。这种塑料变形机构也是将粒度降低到低熔点温度金属的晶粒尺寸的有效方法,使得这种结构设计一个解决方案的强度塑性折衷。

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