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Vacancy-decomposition-induced lattice instability and its correlation with the kinetic stability limit of crystals

机译:空位分解引起的晶格不稳定性及其与晶体动力学稳定性极限的关系

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摘要

Vacancy decomposition kinetics in crystals at elevated temperatures is analysed. It is found that lattice instability is induced by a significantly enhanced vacancy decomposition at a critical temperature (T*). The critical temperature coincides with the kinetic instability limit (kinetic limit of superheating) of crystals in a variety of metals determined from the homogeneous nucleation catastrophe model.
机译:分析了高温下晶体中的空位分解动力学。发现在临界温度(T *)下空位分解显着增强导致晶格不稳定性。临界温度与从均相成核突变模型确定的多种金属中晶体的动力学不稳定性极限(过热的动力学极限)一致。

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