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Grain refinement of commercial pure al treated by Pulsed Magneto-Oscillation on the top surface of melt

机译:熔体顶面上脉冲磁振荡处理商业纯铝的晶粒细化

摘要

Commercial pure Al can be refined by Pulsed Magneto-Oscillation (PMO) treatment applied via a plate induction coil above the top surface of the melt. The proportion of the equiaxed zone area increases with decreasing Height to Diameter (H/D) ratios from 3.5 to1.8 and further to 1.0. Meanwhile, it increases and then decreases with increasing peak current for the three kinds of ingots with H/D ratios of 3.5, 1.8 and 1.0, respectively. However, when the H/D ratio decreases to 0.44, the area proportion of equiaxed zone can reach the maximum value with a lower peak current. FEA software simulation indicates that smaller H/D ratio results in larger current density, electromagnetic force and convection on the top surface of the melt, favoring nucleation and subsequent grain formation. Through evaluating Joule heating effect by PMO, it was found that the proper amount of Joule heating benefits grain refinement. Excessive Joule heating can reduce the size of the equiaxed zone and change the growth morphology of the grains.
机译:可以通过在熔体顶面上方通过板式感应线圈施加的脉冲磁振荡(PMO)处理,对商业纯铝进行精炼。等轴区域的比例随着高度与直径(H / D)的比例从3.5降低到1.8并进一步降低到1.0而增加。同时,三种铸锭的H / D比分别为3.5、1.8和1.0时,随着峰值电流的增加而增加,然后减少。然而,当H / D比降低到0.44时,等轴带的面积比例可以在较低的峰值电流下达到最大值。 FEA软件仿真表明,较小的H / D比会导致熔体顶面上的电流密度,电磁力和对流较大,从而有利于形核和随后的晶粒形成。通过评估PMO的焦耳加热效果,发现适量的焦耳加热有利于晶粒细化。焦耳过度加热会减小等轴区域的大小,并改变晶粒的生长形态。

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