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On the role of Fe-content on the damage behavior of an Al-Si-Cu alloy

机译:Fe-含量对Al-Si-Cu合金损伤行为的作用

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Secondary recycled Al alloys are in the focus of industry because they possess a tremendous potential for cost and energy savings. However, they are inevitably contaminated with a certain amount of iron from which several variants of brittle intermetallic inclusions are formed. Tensile and fatigue tests were performed with specimens containing varying amounts of iron, and subsequent high resolution CT-analysis was performed in order to identify critical defect configurations. It was found that there is a certain critical amount of iron, below which the tensile strength and the ductility are affected in a minor way, if an appropriate heat treatment is performed. High resolution computer tomography shows that this is related to the fact that the most dangerous platelet-like ss-inclusions are partly dissolved in the heat treatment process. Fatigue strength, on the other hand, is influenced by two effects: First, the porosity is increases with increasing iron content, as the iron-platelets are formed at higher temperatures and hinder material flow in the casting process. Second, iron inclusions can be found in the casting skin and act as crack initiators, if the iron content exceeds a certain level.
机译:二次再循环的Al合金是行业的重点,因为它们具有巨大的成本和节能潜力。然而,它们不可避免地被污染有一定量的铁,从中形成脆性金属间夹杂物的若干变体。用含有不同量铁的样品进行拉伸和疲劳试验,并进行随后的高分辨率CT分析以识别临界缺陷配置。结果发现,如果进行适当的热处理,则存在一定临界量的铁,下面是抗拉强度和延展性以微小的方式影响。高分辨率计算机断层扫描表明,这与最危险的血小板样SS夹杂物部分溶解在热处理过程中。另一方面,疲劳强度受到两种影响的影响:首先,随着铁含量的增加而增加,因为铁血小板在较高的温度下形成浇铸过程中的铸铁血小板。其次,如果铁含量超过一定水平,则可在铸造皮肤中发现铁夹杂物并充当裂纹引发剂。

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