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Mathematical modeling of macrosegregation during solidification of binary alloy by Control Volume Finite Element Method

机译:二元合金凝固过程中宏观偏析的控制体积有限元数学模型

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Unsteady coupled natural convective heat and mass transfer with liquid to solid phase change is described to analyze the macrosegregation of a Pb-Sn alloy in a rectangular two-dimensional cavity. The effect of cooling direction is investigated, by comparing the numerical simulation of solidification in rectangular molds with one vertical side cooled and with bottom wall cooling, both with the cold wall temperature changing with time. Fluid mechanics, heat and mass transfer coupled equations with unsteady, convective, diffusion and sources terms are solved with the Control Volume Finite Element Method (CVFEM) in cavities with aspect ratios A = H/B = 1/3,0.6 and 3. Results for the evolution of the distribution of streamlines, solidification front, isotherms and iso-concentrations are obtained with a code developed to characterize coupled fluid, heat and mass transport phenomena. Complex physical processes such as thermo-solutal convection during solidification, freckle formation and the final pattern of macrosegregation are described in terms of the cavity aspect ratio by the mathematical model. A good description of freckle formation and its relation to direction of cooling and aspect ratio has been obtained by the transient-convective-diffusive mathematical model solved by CVFEM.
机译:描述了不稳定的自然对流传热和传质与液相到固相变化的传递,以分析矩形二维空腔中Pb-Sn合金的宏观偏析。通过比较矩形模具在垂直一侧冷却和底壁冷却的情况下凝固的数值模拟,研究了冷却方向的影响。使用控制体积有限元方法(CVFEM)在高宽比为A = H / B = 1 / 3、0.6和3的型腔中求解流体力学,传热和传质耦合方程,具有不稳定,对流,扩散和源项。对于流线分布的演变,通过开发用于表征流体,热和质量传递现象的代码,可获得凝固前沿,等温线和等浓度。复杂的物理过程,例如凝固过程中的热固对流,雀斑形成和宏观偏析的最终模式,通过数学模型根据型腔长宽比进行了描述。通过CVFEM求解的瞬态-对流-扩散数学模型,很好地描述了雀斑的形成及其与冷却方向和纵横比的关系。

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