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A semi-nalyticla model of microsegregation in a binary alloy

机译:二元合金中微偏析的半解析模型

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At small Fourier diffusion numbers semi-analytical microsegregation models, of the form suggested by Brody and Flemigns, are known to perform poorly in the analysts of solidifications controlled by a parabolic solid growth. The basic inconsistency in the development of this class of models is highlighted. It is shown that an alternative, consistent development, for solidifications controlled by a constant cooling rate, results in the same microsegregation model. Comparison with predictions -- maximum concentration and eutectic fractions - obtained with a numerical, constant cooling rate solution show a significant improvement in model performance. Further modification - based on curve fitting in the low Foruier number range - leads to a constant cooling rate microsegreation model that provides accurate predictions of microsegregation levels across a wide, practical range of parameters.
机译:在较小的傅立叶扩散数下,已知由Brody和Flemigns建议的形式的半分析性微观偏析模型在由抛物线形固体生长控制的凝固分析中表现不佳。强调了此类模型开发中的基本矛盾。结果表明,对于由恒定冷却速率控制的凝固过程,一种替代的,一致的发展导致了相同的微分离模型。与数值比较,恒定冷却速率解获得的预测值-最大浓度和共晶分数的比较显示出模型性能的显着改善。基于低Foruier数范围内的曲线拟合进行进一步修改,可得出恒定的冷却速率微分离模型,该模型可在较宽的实际参数范围内提供对微分离水平的准确预测。

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