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Analysis of phase diagram and diffusion coefficient for modeling of microsegregation

机译:微偏析建模的相图和扩散系数分析

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摘要

Thermodynamic description of phase diagram and diffusion data are required to model microsegregation during solidification of metallic alloys. Knowledge about non-equilibrium phase diagrams is essential for modeling of microsegregation in practical situations. Therefore, the aim of this study is to theoretically analyze phase diagram and diffusion data for calculation of microsegregation. For this purpose, aluminum-rich part of the Al-Cu phase diagram was recalculated under non-equilibrium conditions. Effect of excess vacancies formed during solidification was considered on both the phase diagram and diffusion coefficient. The results show that by modifying the phase diagram, the calculated results have better consistency with the experimental results, but there is still room for improvement. When the effect of excess vacancies on diffusion coefficient is considered, the modeling results show a much better correlation with the experimental results. The origin of discrepancies between the calculations and experiments are deeply discussed using current theories in solidification.
机译:需要相图的热力学描述和扩散数据来模拟金属合金凝固过程中的微偏析。了解非平衡相图对于在实际情况下进行微偏析建模至关重要。因此,本研究的目的是从理论上分析相图和扩散数据,以计算微偏析。为此,在非平衡条件下重新计算了Al-Cu相图中富铝的部分。考虑了凝固过程中形成的过量空位对相图和扩散系数的影响。结果表明,通过修改相图,计算结果与实验结果具有较好的一致性,但仍有改进空间。当考虑过量空位对扩散系数的影响时,建模结果与实验结果的相关性要好得多。使用当前的固化理论深入讨论了计算和实验之间差异的根源。

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