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首页> 外文期刊>Computational Materials Science >Rebuttal comments on 'Mitigating grain growth in binary nanocrystalline alloys through solute selection based on thermodynamic stability maps''
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Rebuttal comments on 'Mitigating grain growth in binary nanocrystalline alloys through solute selection based on thermodynamic stability maps''

机译:关于“通过基于热力学稳定性图的溶质选择来缓解二元纳米晶合金晶粒生长的反驳评论”

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摘要

Darling et al. (2014) outlined a new model for nanocrystalline stability and applied it to a large number of systems to demonstrate its utility/applicability and how to visualize/select promising solutes in these nanocrystalline systems. The present article addresses some of the concerns raised by Lejcek and Hofmann (2015) and those that additional readers may have about this work. In some cases we have found that their concerns reflect ones that are shared by the community in developing and applying these sorts of models. For instance, in utilizing thermodynamic properties from such a large database of systems, researchers should use due diligence in extrapolating results to real systems - this model should be used as a guide for selecting prospective binary systems that may exhibit some degree of thermodynamic stability in nanocrystalline materials. Last, there was an oversight in terms of the phase transformation temperature for Fe and Ti, which negligibly changed the model results. In short, the present article is intended to bring to light and clarify some of the items raised by Lejcek and Hofmann. Published by Elsevier B.V.
机译:Darling等。 (2014年)概述了纳米晶体稳定性的新模型,并将其应用于大量系统,以证明其实用性/适用性以及如何在这些纳米晶体系统中可视化/选择有希望的溶质。本文讨论了Lejcek和Hofmann(2015)提出的一些关注,以及其他读者可能对这项工作有的关注。在某些情况下,我们发现他们所关注的问题反映了社区在开发和应用这类模型时所共有的关注。例如,在利用如此庞大的系统数据库中的热力学性质时,研究人员应尽职调查将结果推算到实际系统中-该模型应作为选择可能在纳米晶体中表现出一定程度热力学稳定性的二元体系的指南。材料。最后,对Fe和Ti的相变温度进行了监督,从而忽略了模型结果。简而言之,本文旨在阐明和澄清莱切克和霍夫曼提出的一些问题。由Elsevier B.V.发布

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