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DEVELOPMENT AND APPLICATIONS OF MICROSEGREGATION MODELS FOR SOLIDIFYING LIGHT METALLIC ALLOYS

机译:微量测定模型的凝固光金属合金的开发与应用

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Microsegregation manifests its effect on microstructural evolution of cast or welded alloys which in turn influences their important mechanical and electro-chemical properties. In the above context, mathematical models of microsegregation have proven to play an important role in estimating the nature and predicting the effects of this phenomenon in wide varieties of solidification processes. Microsegregation models are useful in designing new commercial alloys, in estimating the homogenization time for the post-process heat treatments and in many other practical applications. In this study, two semi-analytical models of microsegregation were developed to predict the concentration field of solute in the liquid and solid regions for dendritic solidification of binary metallic alloys. Both models assume that the growing dendrites are cylindrical in shape. This assumption is more realistic compared to the common assumptions of plate like dendrites that most of the earlier researchers employed in their microsegregation modeling study. The solute redistribution profile, in the developing solid layer, necessary to determine the back diffusion parameter was derived from Fick's second law for the model without coarsening. The application of this parameter in a wide range of conditions and the use of its basic form in the model with coarsening has been verified. The concept of coordinate transformation and enhancement of back-diffusion Fourier number were used in deriving the model which took into account the coarsening of dendrites. The models are then extended to deal with rapid solidification and peritectic transformations and the results were compared with relevant experimental data for Aluminum and other alloys. A good agreement between model predictions and experimental results was found.
机译:微量测定表现出其对铸造或焊接合金微观结构演化的影响,这反过来影响了它们的重要机械和电化学特性。在上述背景下,微量测定的数学模型已经证明在估计本性方面发挥着重要作用,并在宽的凝固过程中预测这种现象的影响。微量聚集模型在设计新的商业合金时可用于估算工艺后热处理的均质化时间以及许多其他实际应用。在这项研究中,开发了两种微量微量聚糖模型,以预测二元金属合金的树突凝固中液体和固体区域中溶质的浓度场。两种模型假设越来越多的树突是圆柱形的。与德德里斯如德德斯这样的板材如德德里斯在其微量测定建模研究中使用的研究人员中的大多数研究人员相比,这种假设更加现实。在显影固体层中,溶质再分配曲线,以确定背部扩散参数的必要方法是从Fick的第二律用于模型而不粗化。已经验证了在各种条件下在各种条件下应用其在具有粗化模型中的基本形式的使用。用于导出考虑树枝状粗化的模型的坐标变换和反扩散傅里叶数的增强的概念。然后将模型扩展到处理快速凝固和包层变换,并将结果与​​铝和其他合金的相关实验数据进行比较。发现模型预测与实验结果之间的良好一致性。

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