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Controlling porosity-related casting rejects: understanding the role of iron in Al-Si alloys

机译:控制与孔隙率相关的铸件废品:了解铁在Al-Si合金中的作用

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摘要

Iron is a common impurity element in both primary and secondary aluminum-silicon-based foundry alloys. During solidification, iron segregates to form various intermetallic phases, and little is known about their influence on the castability of these alloys. Previous researchers have identified a propensity for the formation of interconnected shrinkage porosity in the presence ofβ-Al{sub}5FeSi platelets. This relationship has been confirmed by experimental data, and explanations for the mechanisms involved have been offered as a combination of altered alloy solidification sequence, altered eutectic nucleation and growth, and decrease permeability arising from physical obstruction of interdendritic feeding paths. The development of iron-related shrinkage porosity seems to be strongly influenced by marginal casting conditions. Shrinkage porosity defects of this origin can result in the loss of pressure tightness in commercial castings. In order to assist in the reduction of casting reject rates, the effect of iron content (from 0.1 to 1.3 wt%) on the castability of an AlSi{sub}9Cu{sub}3 alloy has been studied. It was found that the total average porosity of the castings increased approximately 30%across the range of iron content studied, and that there was an increased propensity to farm interconnected shrinkage porosity at high iron levels.
机译:在初级和次级铝硅基铸造合金中,铁都是常见的杂质元素。在凝固过程中,铁偏析形成各种金属间相,对其铁素体可铸性的影响知之甚少。先前的研究人员已经确定了在存在β-Al{sub} 5FeSi血小板的情况下形成相互连接的收缩孔隙的倾向。实验数据证实了这种关系,并提供了有关机理的解释,包括合金凝固顺序的改变,共晶成核和生长的改变,以及由于树突间进料路径的物理阻塞而导致的渗透性降低。与铁有关的收缩孔隙的发展似乎受到边缘铸造条件的强烈影响。这种起源的收缩孔隙率缺陷会导致商业铸件的压力密封性损失。为了帮助降低铸件废品率,研究了铁含量(0.1至1.3 wt%)对AlSi {sub} 9Cu {sub} 3合金可铸性的影响。研究发现,在所研究的铁含量范围内,铸件的总平均孔隙率增加了约30%,并且在高铁含量下,农场相互联系的收缩孔隙率也有所增加。

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