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Numerical and Experimental Study on Melt Treatment for Large-Volume 7075 Alloy by a Modified Annular Electromagnetic Stirring

机译:改进的环形电磁搅拌熔体处理大批量7075合金的数值和实验研究

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摘要

This study presents a modified annular electromagnetic stirring (M-AEMS) melt treatment suitable for a large-volume and high-alloyed aluminum alloy. A 3D computational model coupling an electromagnetic model with a macroscopic heat and fluid-flow model was established by using Ansoft Maxwell 3D and Fluent from ANSYS workbench, and the effects of the electromagnetic shielding ring, the height of the magnet yoke, the shape of the iron core, and the internal cooling mandrel on the electromagnetic, thermal and flow fields were studied numerically. Based on the optimal technical parameters, the effectivity of the M-AEMS process by using 7075 alloy was validated experimentally. The results show that a favorable electromagnetic field distribution can be achieved by changing the magnet yoke height, the iron-core shape and the electromagnetic shielding ring, and the melt temperature of the 7075 alloy can drop rapidly to the pouring temperature by imposing the internal cooling mandrel; compared with ordinary annular electromagnetic stirring, the M-AEMS process creates a lower magnetic strength near the melt top, beneficial for stabilizing the melt surface; meanwhile, it yields a higher magnetic strength near the melt bottom, which increases the shear rate and ensures an optimal stirring effect. Therefore, M-AEMS works more efficiently because the thermal and composition fields become uniform in a shorter time, which reduces the average grain size and the composition segregation, and a more stable melt surface can be obtained during treatment, which reduces the number of air and oxide inclusions in the melt.
机译:这项研究提出了一种改进的环形电磁搅拌(M-AEMS)熔体处理工艺,适用于大批量高合金铝合金。通过使用ANSYS Workbench的Ansoft Maxwell 3D和Fluent,建立了将电磁模型与宏观热和流体流动模型耦合的3D计算模型,以及电磁屏蔽环,磁轭的高度,磁头形状的影响。数值研究了铁芯,以及内部冷却芯棒对电磁场,热场和流场的影响。基于最佳工艺参数,对7075合金进行M-AEMS工艺的有效性进行了实验验证。结果表明,通过改变磁轭高度,铁芯形状和电磁屏蔽环可以获得良好的电磁场分布,并且通过内部冷却,可以将7075合金的熔融温度迅速降至浇铸温度。心轴与普通的环形电磁搅拌相比,M-AEMS工艺在熔体顶部附近产生较低的磁强度,有利于稳定熔体表面。同时,它在熔体底部附近产生更高的磁强度,从而提高了剪切速率并确保了最佳的搅拌效果。因此,M-AEMS的工作效率更高,这是因为热场和成分场在较短的时间内变得均匀,从而减小了平均晶粒尺寸和成分偏析,并且在处理过程中可以获得更稳定的熔体表面,从而减少了空气数量和熔体中的氧化物夹杂物。

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