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January 20, 2015Nature Communications709 citationsOpen Access

Deviation from high-entropy configurations in the atomic distributions of a multi-principal-element alloy

LSLouis J. SantodonatoYZYang ZhangMFMikhail Feygenson

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Abstract

The alloy-design strategy of combining multiple elements in near-equimolar ratios has shown great potential for producing exceptional engineering materials, often known as ‘high-entropy alloys’. Understanding the elemental distribution, and, thus, the evolution of the configurational entropy during solidification, is undertaken in the present study using the Al1.3CoCrCuFeNi model alloy. Here we show that, even when the material undergoes elemental segregation, precipitation, chemical ordering and spinodal decomposition, a significant amount of disorder remains, due to the distributions of multiple elements in the major phases. The results suggest that the high-entropy alloy-design strategy may be applied to a wide range of complex materials, and should not be limited to the goal of creating single-phase solid solutions. Alloys containing multiple elements of equal distributions are known to show enhanced properties as they tend to form single phases. Here, the authors demonstrate that even in cases of elemental segregation and chemical ordering, these alloys can still maintain enhanced properties.

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Cite This Study

Santodonato et al. (2015) studied this question.

synapsesocial.com/papers/6a52edb62b4aa8329df16829https://doi.org/10.1038/ncomms6964
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