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Tailoring the microstructure of recycled 319 aluminum alloy aiming at high ductility

机译:针对高延展性定制再生319铝合金的微观结构

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Iron has low solubility in solid aluminum and for this reason it can lead to the formation of Fe-rich intermetallic phases (such as β-AlFeSi in Al-Si cast alloys) severely impairing the ductility of the material. Spray forming is an advanced casting process that has been described as a potential technique to highly decrease the β-AlFeSi formation, consequently increasing the ductility. This paper aims to study the effect of pouring and tundish temperature in the microstructure of 319 aluminum alloy with high iron content processed by spray forming. Spray formed ingots and overspray particles were analyzed for two different processing conditions. In order to evaluate the mechanical properties, the spray formed deposits were mechanically conformed by hot swaging. Results showed that the decrease in the β-AlFeSi content strongly depends on the processing conditions. Spray formed deposits processed by hot swaging presented high ductility, allowing a wide range of possibilities to apply casting alloys with high impurity content to more valuable applications beyond the casting industry, therefore decreasing the needs for using primary alloys and contributing to the environment.
机译:铁在固态铝中的溶解度低,因此,它可能导致形成富铁金属间相(例如Al-Si铸造合金中的β-AlFeSi),严重损害了材料的延展性。喷射成形是一种先进的铸造工艺,已被描述为一种潜在的技术,可大大减少β-AlFeSi的形成,从而提高延展性。本文旨在研究浇铸温度和中间包温度对319喷铸成型高铁含量铝合金组织的影响。针对两种不同的加工条件,分析了喷雾成型的铸锭和过喷颗粒。为了评估机械性能,通过热锻将喷雾形成的沉积物机械整合。结果表明,β-AlFeSi含量的降低很大程度上取决于加工条件。通过热锻加工处理的喷射沉积沉积物具有很高的延展性,从而为将具有高杂质含量的铸造合金应用于铸造行业以外的更有价值的应用提供了广泛的可能性,因此减少了使用原生合金的需求并为环境做出了贡献。

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