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Strong and superplastic nanoglass

机译:强大和超塑性纳米玻璃

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摘要

The strength-ductility tradeoff has been a common long-standing dilemma in materials science. For example, superplasticity with a tradeoff in strength has been reported for Cu50Zr50 nanoglass (NG) with grain sizes below 5 nm. Here we report an improvement in strength without sacrificing superplasticity in Cu50Zr50 NG by using a bimodal grain size distribution. Our results reveal that large grains impart high strength, which is in striking contrast to the physical origin of the improvement in strength reported in the traditional nanostructured metals/alloys. Furthermore, the mechanical properties of NG with a bimodal nanostructure depend critically upon the fraction of large grains. By increasing the fraction of the large grains, a transition from superplastic flow to failure by shear banding is clearly observed. We expect that these results will be useful in the development of a novel strong and superplastic NG.
机译:strength-ductility权衡一直是常见的长期在材料科学难题。例,超塑性的权衡力量已经报道了Cu50Zr50纳米玻璃(NG)与晶粒大小低于5海里。力量不牺牲的改善使用双向超塑性在Cu50Zr50 NG粒度分布。大型谷物传授高强度,鲜明对比的物理起源改善报告的力量传统的纳米金属/合金。此外,NG的机械性能一个极度依赖于纳米双峰结构大颗粒的分数。从分数的大颗粒超塑性流动剪切带是失败的清楚地观察到。将有用的发展的小说强大和超塑性NG。

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