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Effects of beryllium and iron additions on iron-bearing phase in A357 aluminum alloys

机译:铍和铁的添加对A357铝合金中含铁相的影响

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Iron is the most deleterious impurity in the Al-Si-Mg casting alloys and can easily form inter-metallic compounds that can significantly affect the subsequent behavior of material properties. Using differential scanning calorimetry (DSC) and microstructural analysis, how the Be and Fe additions affect the iron-bearing phase in A357 alloys was investigated. The results show that the iron-bearing phase in A357 alloy comprises mainly the plate-like β-Al5FeSi and a small quantity of the script-type π-Al8FeMg3Si6; and that the plate-like β-Al5FeSi proportion increases with increasing iron content in the alloy. The iron-bearing phase is mostly transformed from the plate-like β-Al5FeSi to the script-type π-Al8FeMg3Si6 with the addition of Be in the alloy. The hardness of alloy samples was also tested. The results show that both the increasing iron content and Be content can increase the hardness of the alloy. This may be contributed to the change of morphology and distribution of the iron-bearing phase in A357 alloy with the addition of iron or Be to the alloy.
机译:铁是Al-Si-Mg铸造合金中最有害的杂质,并且容易形成金属间化合物,这些金属间化合物会显着影响随后的材料性能。使用差示扫描量热法(DSC)和微结构分析,研究了Be和Fe的添加如何影响A357合金中的铁相。结果表明,A357合金中的含铁相主要包括片状β-Al5FeSi和少量的脚本型π-Al8FeMg3Si6。板状β-Al5FeSi的比例随着合金中铁含量的增加而增加。在合金中添加Be后,含铁相大部分从板状β-Al5FeSi转变为脚本型π-Al8FeMg3Si6。还测试了合金样品的硬度。结果表明,增加铁含量和Be含量均可提高合金的硬度。这可能是由于在合金中添加了铁或Be导致A357合金中含铁相的形态和分布发生变化。

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