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Iron-containing intermetallic phases in Al-Si based casting alloys

机译:基于Al-Si的铸造合金中的含铁金属间相

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Iron is the most common impurity in aluminium and its alloys. It is not easily removed and it can cause adverse effects to ductility and castability, particularly in the popular Al-Si based casting alloys. The choice of whether to use alloys based on primary aluminium (low Fe levels, high cost) or secondary aluminium (moderate/high Fe levels, cheaper) for a cast product is often a commercial decision. However, a compromise may be necessary between the desire for reduced metal cost and the need to maximise casting productivity via reduced defect formation and to minimise the deleterious effect of iron on mechanical properties. This paper discusses the various sources of iron, how it enters aluminium alloys, the way that iron leads to the formation of complex intermetallic phases during solidification and how these phases can adversely affect mechanical properties (especially ductility) and lead to the formation of excessive shrinkage defects. The formation of the iron-containing β phase will be highlighted using the latest in situ solidification study using synchrotron X-radiation. The paper offers guidelines to the practical levels of iron that can be tolerated and how to minimise the negative effects of iron.
机译:铁是铝及其合金中最常见的杂质。它不容易被除去,它可能导致对延展性和铸造的不利影响,特别是在流行的Al-Si基铸造合金中。选择是否使用基于初级铝(低Fe水平,高成本)或二级铝(中等/高Fe水平,更便宜)的合金,铸造产品通常是一种商业决策。然而,在降低金属成本的期望和通过减少缺陷形成的需要最大化铸造生产率之间可能需要妥协,并最大限度地减少铁对机械性能的有害效果。本文讨论了各种铁源,它如何进入铝合金,铁导致凝固过程中复合金属间相的方式以及这些相的阶段如何不利地影响机械性能(特别是延展性)并导致形成过度收缩的形成缺陷。使用Synchrotron X-辐射使用最新的原位凝固研究,将突出含铁β相的形成。本文提供了可容忍的实用水平的指导,以及如何最大限度地减少铁的负面影响。

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