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MODELING OF DENDRITIC STRUCTURE AND MICROSEGREGATION IN SOLIDIFICATION OF Al-RICH QUATERNARY ALLOYS

机译:树枝状结构和微量测定在富含族季合金的凝固中的建模

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A two-dimensional cellular automaton (CA) model is coupled with a CALPHAD tool for the simulation of dendritic growth and microsegregation in solidification of quaternary alloys. The dynamics of dendritic growth is calculated according to the difference between the local equilibrium liquidus temperature and the actual temperature, incorporating with the Gibbs-Thomson effect and preferential dendritic growth orientations. Based on the local liquid compositions determined by solving the solutal transport equation in the domain, the local equilibrium liquidus temperature and the solid concentrations at the solid/liquid (SL) interface are calculated by the CALPHAD tool. The model was validated through the comparisons of the simulated results with the Scheil predictions for the solid composition profiles as a function of solid fraction in an Al-6wt%Cu-0.6wt%Mg-1wt%Si alloy. It is demonstrated that the model is capable of not only reproducing realistic dendrite morphologies, but also reasonably predicting microsegregation patterns in solidification of Al-rich quaternary alloys.
机译:二维蜂窝自动机(CA)模型与Calphad工具相结合,用于模拟树枝状生长和微量测定在季合金的凝固中。根据局部平衡液相治温度和实际温度之间的差异计算树突生长的动态,与GIBBS-THOMSON效应和优先的树突式生长取向含有。基于通过求解结构域中的溶性传输方程确定的局部液体组合物,通过鱿鱼工具计算局部平衡液相高温和固体/液体(SL)界面处的固体浓度。通过对固体组合物型材的模拟结果的比较来验证该模型作为Al-6wt%Cu-0.6wt%Si合金中固体级分的固体组合物谱的函数。证明该模型不仅能够再现现实的树突形态,而且能够合理地预测富含族季合金的微量测定模式。

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