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Effect of time-modulated magnetic fields on the solidification structure and extrusion properties of wrought aluminum alloys

机译:时调磁场对锻铝合金凝固结构及挤出性能的影响

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Wrought aluminum alloys and in particular extruded products have a large economic importance worldwide. The opportunities to increase the quality or to reduce the production cost have great a strong finance and ecologic incentive. AC magnetic fields provide the possibility to influence the melt flow in a contactless way to influence the temperature and solute distribution in front of the solidification front. Many studies have shown the beneficial effects like a distinct grain refinement or the promotion of a transition from a columnar to an equiaxed dendritic growth (CET). The use of time-modulated magnetic fields are able to avoid segregation effects, just like known from privies studies they work with permanent rotating magnetic fields, for example. This present study examines the directional solidification of commercial wrought aluminum alloys from a water-cooled copper chill. Rotating time-modulated magnetic fields were used to agitate the melt. Our results demonstrate the potential of time-modulated magnetic fields to control the grain size, the formation of intermetallic phases and extrusion properties.
机译:锻炼铝合金和特别是挤出产品在全球拥有巨大的经济重视。增加质量或降低生产成本的机会具有很大的财务和生态激励。交流磁场提供了影响熔体流动以非接触方式影响凝固前方的温度和溶质分布的可能性。许多研究表明了像不同的晶粒细化等有益效果或从柱状到平衡的树突生长(CET)的过渡。例如,使用时间调制磁场可以避免分离效果,就像从众所周知的那样,它们与永久旋转磁场一起使用。本研究研究了商业锻炼铝合金的定向凝固来自水冷铜寒。使用旋转时间调制磁场来搅拌熔体。我们的结果证明了控制晶粒尺寸,形成金属间相和挤出性能的时间调制磁场的潜力。

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