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Nanocrystalline Materials at Equilibrium: A Thermodynamic Review

机译:纳米晶材料平衡:热力学评述

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摘要

The instability of nanocrystalline materials against both grain growth and bulk phase separation is a principal challenge in their production and usage. This article reviews the thermodynamic stabilization of nanocrystalline structures by alloying, where a nanocrystalline state is considered to be stable if the nanostructure has the lowest free energy available to the alloy system, such that it is stable both against grain growth and the formation of bulk second phases. The thermodynamic accessibility of nanocrystalline structures in the alloy phase space introduces configurational degrees of freedom both at the atomic scale of the grain boundary structure and at the mesoscale level of the grains and grain boundary topology, which should be considered when identifying the equilibrium state. This article presents a survey of the kinds of thermodynamic models and simulations that have been developed to search for equilibrium nanocrystalline states. The review emphasizes the utility of Monte Carlo simulations to assess the thermodynamic stability of nanocrystalline states, including methods that have been proposed to account for degrees of freedom at both the atomic and grain scales. Although atomic scale simulations provide detailed segregation energetic information, the topological degrees of freedom in nanoscale polycrystals seem to be more critical considerations in the free energy description for identifying whether a nanocrystalline state is stable, and these are better addressed with mesoscale lattice-based simulation methods. A variety of interesting new nanostructural alloy states awaits further exploration by computational methods.
机译:纳米晶体材料对晶粒生长和本体相分离的不稳定性是其生产和使用中的主要挑战。本文介绍了通过合金化对纳米晶体结构进行热力学稳定化的过程,如果纳米结构具有可用于合金系统的最低自由能,则纳米晶态被认为是稳定的,因此它既对晶粒生长又对块体第二个晶体的形成都具有稳定性。阶段。合金相空间中纳米晶体结构的热力学可及性在晶界结构的原子尺度和晶粒的中尺度水平以及晶界拓扑结构上都引入了构型自由度,在确定平衡态时应予以考虑。本文介绍了为寻求平衡的纳米晶态而开发的各种热力学模型和模拟。该评论强调了蒙特卡洛模拟在评估纳米晶态热力学稳定性方面的实用性,包括已提出的解决原子级和晶粒级自由度的方法。尽管原子级模拟提供了详细的偏析能量信息,但纳米级多晶体的拓扑自由度似乎在自由能描述中是更关键的考虑因素,用于识别纳米晶态是否稳定,这些问题可以通过基于中尺度晶格的模拟方法更好地解决。 。各种有趣的新的纳米结构合金状态正在等待通过计算方法的进一步探索。

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