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Phase Evolution of -Al5FeSi During Recycling of Al-Si-Fe Alloys by Mg Melt

机译:用Mg熔体再循环Al-Si-Fe合金期间-Al5Fesi的相位演化

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摘要

The recycling of aluminum materials is an important green initiative since it can avoid the need for primary metals and Al-Si-Fe is a typical scrap aluminum alloy. One key goal in recycling of Al-Si-Fe alloys is to reduce the Fe content via some techniques to separate Al and Fe. A proposed method to obtain this goal via introducing the Al-Si-Fe alloy into a Mg melt has been investigated in this work. A separation layer with gathered Fe-rich and Al-poor Fe3Al0.7Si0.3 particles was obtained at the bottom of the cooled ingot, indicating that -Al5FeSi phase evolves into Fe3Al0.7Si0.3, and quantities of Al are released to the upper Mg matrix simultaneously. However, the evolution of Al3Fe by adding binary Al-Fe alloy into Mg melt is different. It is proposed that the element Si plays an important role in the phase evolution procedure, thus affecting the performance of this method.
机译:铝材料的再循环是一种重要的绿色促进性,因为它可以避免对初级金属的需要,并且Al-Si-Fe是典型的废料铝合金。 再循环Al-Si-Fe合金的一个关键目标是通过一些技术来减少Fe含量以分离Al和Fe。 在这项工作中已经研究了通过将Al-Si-Fe合金引入Mg熔体的通过将该目标获得该目标的方法。 在冷却锭的底部获得具有聚集的Fe-o和Al-od Fe3Al0.7SI0.3颗粒的分离层,表明 - 将5fesi相输出到Fe3Al0.7SiO 3中,并且Al的数量被释放到上部 MG矩阵同时。 然而,通过将二元Al-Fe合金添加到Mg熔体中,Al3Fe的进化是不同的。 提出,元素Si在相位进化过程中起重要作用,从而影响了该方法的性能。

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