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Analysis of the Glass-Forming Ability of Fe-Er Alloys, Based on Thermodynamic Modeling

机译:基于热力学建模的Fe-ER合金玻璃形成能力分析

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The Fe-Er phase diagram and thermodynamic properties of all its phases are assessed by means of self-consistent analysis. To refine the data on phase equilibria in the Fe-Er system, an investigation is performed in the 10-40 at % range of Er concentrations. The temperature-concentration dependences of the thermodynamic properties of a melt are presented using the model of ideal associated solutions. Thermodynamic parameters of each phase are obtained, and the calculated results are in agreement with available experimental data. The correlation between the thermodynamic properties of liquid Fe-Er alloys and their tendency toward amorphization are studied. It is shown that compositions of amorphous alloys prepared by melt quenching coincide with the ranges of concentration with the predominance of Fe3Er and FeEr2 associative groups that have large negative entropies of formation.
机译:通过自我一致的分析评估所有相的Fe-ER相图和热力学性质。 为了优化FE-ER系统中的相平衡数据,在10-40处的ER浓度范围内进行研究。 使用理想相关解决方案的模型提出了熔体热力学性质的温度浓度依赖性。 获得每个阶段的热力学参数,并且计算结果与可用的实验数据一致。 研究了液体Fe-ER合金热力学性质与其朝向非晶化趋势之间的相关性。 结果表明,通过熔体淬火制备的非晶合金的组合物与具有大负熵的Fe3er和Feer2关联组的浓度的浓度范围重合。

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