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Effect of process parameters on transport phenomena during solidification in the presence of electromagnetic stirring

机译:工艺参数对电磁搅拌下凝固过程中输运现象的影响

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In the present work, a numerical study is performed to predict the effect of process parameters on transport phenomena during solidification of aluminium alloy A356 in the presence of electromagnetic stirring. A set of single-phase governing equations of mass, momentum, energy and species conservation is used to represent the solidification process and the associated fluid flow, heat and mass transfer. In the model, the electromagnetic forces are incorporated using an analytical solution of Maxwell equation in the momentum conservation equations and the slurry rheology during solidification is represented using an experimentally determined variable viscosity function. Finally, the set of governing equations is solved for various process conditions using a pressure based finite volume technique, along with an enthalpy based phase change algorithm. In present work, the effect of stirring intensity and cooling rate are considered. It is found that increasing stirring intensity results in increase of slurry velocity and corresponding increase in the fraction of solid in the slurry. In addition, the increasing stirring intensity results uniform distribution of species and fraction of solid in the slurry. It is also found from the simulation that the distribution of solid fraction and species is dependent on cooling rate conditions. At low cooling rate, the fragmentation of dendrites from the solid/liquid interface is more.
机译:在目前的工作中,进行了数值研究以预测工艺参数对铝合金A356在电磁搅拌下凝固过程中的传输现象的影响。使用一组质量,动量,能量和物种守恒的单相控制方程式来表示凝固过程以及相关的流体流动,热量和质量传递。在该模型中,使用麦克斯韦方程的解析解将动量守恒方程纳入电磁力,并使用实验确定的可变粘度函数表示凝固过程中的浆体流变性。最后,使用基于压力的有限体积技术以及基于焓的相变算法,针对各种过程条件求解控制方程组。在目前的工作中,考虑了搅拌强度和冷却速率的影响。发现增加搅拌强度导致浆料速度的增加和浆料中固体分数的相应增加。另外,增加的搅拌强度导致浆料中固体的种类和分数的均匀分布。从模拟中还发现,固体部分和物质的分布取决于冷却速率条件。在低冷却速率下,树枝状晶体从固/液界面的破碎更多。

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