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Glass forming ability of multi-component metallic systems

机译:多组分金属体系的玻璃成型能力

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Prediction of the thermodynamic stability of metallic glasses is important, as it offers one a most useful indicator for designing alloys with fully amorphous phase. A full thermodynamic database for glass forming ability (GFA) can be established by treating the glass transition as a second-order phase transformation from liquid phase, which can give good predictions of all important GFA indicators such as the reduced glass transition temperature and the thermodynamic stability of the amorphous phase. More interestingly, kinetic behaviour of the amorphous phase such as the crystallisation temperature can also be correlated to the thermodynamic stability of the amorphous phase, making the CALPHAD approach attractive for designing multi-component amorphous alloys.
机译:预测金属玻璃的热力学稳定性很重要,因为它为设计具有完全非晶相的合金提供了最有用的指示。通过将玻璃化转变视为液相的二级相变,可以建立完整的玻璃形成能力(GFA)热力学数据库,从而可以很好地预测所有重要的GFA指标,例如降低的玻璃化转变温度和热力学。非晶相的稳定性。更有趣的是,非晶相的动力学行为(例如结晶温度)也可以与非晶相的热力学稳定性相关,这使得CALPHAD方法对于设计多组分非晶合金具有吸引力。

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