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Control of the Macrosegregations during Solidification of a Binary Alloy by means of a AC Magnetic Field

机译:通过AC磁场控制二元合金的凝固过程中的宏指令格

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A numerical model aimed at simulating the segregations during the columnar solidification of a binary alloy is used to investigate the effects of a forced convection. Our objective is to study how the segregation characteristics in the mushy zone are influenced by laminar flows driven both by buoyancy and by AC fields of moderate intensity. Various types of magnetic fields have been tested, namely travelling, rotating magnetic field and slowly modulated electromagnetic forces. The calculations have been achieved on two types of alloys, namely tin-lead and aluminium-silicon. It is shown that the flow configuration changes the segregation pattern. The change comes from the coupling between the liquid flow and the top of the mushy zone via the pressure distribution along the solidification front. The pressure difference along the front drives a mush flow, which transports the solute in the mushy region. Another interesting type of travelling magnetic field has been tested. It consists of a slowly modulated travelling magnetic field. It is shown that in a certain range of values of the modulation period, the channels are almost suppressed. The normal macrosegregation remains, but the averaged segregation in the mushy zone is weaker than in the natural convection case. The optimal period depends on the electromagnetic force strength as well as the cooling rate. The latter phenomenon cannot occur in the case of rotating magnetic fields, since in that configuration the sign of the pressure gradient along the solidification front remains unchanged. Recent solidification experiments with electromagnetic stirring confirm the predicted macrosegregation patterns.
机译:用于在二元合金的柱状凝固过程中模拟偏析的数值模型用于研究强制对流的影响。我们的目的是研究糊状区的分离特性如何受到浮力的流动的影响,通过浮力和中等强度的交流场。已经测试了各种类型的磁场,即行驶,旋转磁场和缓慢调制的电磁力。在两种类型的合金中实现了计算,即锡铅和铝 - 硅。结果表明,流量配置改变了分离模式。通过沿着凝固前部的压力分布,改变来自液体流和糊状区的顶部之间的耦合。前部的压力差驱动糊状流,其在糊状区域中运送溶质。已经测试了另一种有趣的行驶磁场类型。它由缓慢调制的行驶磁场组成。结果表明,在调制周期的一定范围内,几乎抑制了通道。正常的宏观测定仍然存在,但糊状区的平均隔离比自然对流情况较弱。最佳时段取决于电磁力强度以及冷却速率。后一种现象在旋转磁场的情况下不能发生,因为在该配置中,沿凝固前的压力梯度的符号保持不变。最近具有电磁搅拌的凝固实验证实了预测的宏观测定模式。

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