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Theoretical Assessment of Thermodynamic Stability in Nanocrystalline Metallic Alloys

机译:纳米晶金属合金热力学稳定性的理论评估

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摘要

Thermal stability in nanocrystalline alloys has been extensively explored while using both experimental and theoretical approaches. From the theoretical point of view, the vast majority of the models proposed in the literature have been implicitly limited to immiscible or dilute systems and thus lack the necessary generality to make predictions for different alloying interactions and in the case of intermetallic compounds formation. In this work, a general theoretical description for the case of binary W-based alloys is presented. It is shown that a critical value of the interaction energy in the grain boundary exists, such that the condition can be regarded as a criterion for thermodynamic stability assessment. A procedure for calculating the value of for each specific alloy is illustrated. A preliminary qualitative comparison between the model predictions and properly selected experimental findings taken from the literature and related to the W-Cr system is also provided.
机译:在使用实验和理论方法的同时,已经广泛探索了纳米晶体合金的热稳定性。从理论的角度来看,文献中提出的绝大多数模型都隐含地限于不混溶或稀薄的系统,因此缺乏必要的通用性来预测不同的合金相互作用以及金属间化合物的形成。在这项工作中,给出了关于二元W基合金情况的一般理论描述。结果表明,在晶界中存在相互作用能的临界值,因此该条件可以作为热力学稳定性评估的标准。示出了用于计算每种特定合金的值的过程。还提供了模型预测与从文献中选取并与W-Cr系统有关的适当选择的实验结果之间的初步定性比较。

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