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Impurity effects on the solidification of primary Al3(Sc,Zr) phase in Al alloys

机译:对Al合金中原发性Al3(Sc,Zr)相的凝固的杂质作用

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The nucleation and growth of primary Al3Sc phase has been investigated in high purity Al alloys and commercial purity Al alloys, with a special focus on the impurity effects. In the case of high purity Al alloys, most primary Al3Sc phases were pushed to grain boundaries during moving solidification front. Such type of primary Al3Sc phase does not contribute to the heterogeneous nucleation and thereby no significant grain refinement of Al alloys was observed, although some Al3Sc particles remain the same orientation with the Al matrix. In the case of commercial purity Al alloy, the presence of impurities, e.g. Ti, Fe and Si, enhances the heterogeneous nucleation of primary Al3Sc phase. Most primary Al3Sc phases are located within the Al matrix, and keep the same orientation with the Al matrix. Furthermore, the presence of impurities also changes the growth mode of primary Al3Sc phase. In the case of commercial purity Al alloy, a layer by layer growth was observed. This investigation demonstrates that impurities have important effects on the nucleation and growth of primary Al3Sc phases in Al based alloys.
机译:在高纯度Al合金和商业纯度Al合金中研究了原发性Al3SC相的成核和生长,特别关注杂质效应。在高纯度Al合金的情况下,在移动凝固前部时,将大多数初级Al3SC相压延到晶界。这种类型的主要Al3SC相没有导致异质成核,从而观察到Al合金的显着晶粒细化,尽管一些Al3SC颗粒与Al基质保持相同的取向。在商业纯度Al合金的情况下,杂质的存在,例如杂质。 Ti,Fe和Si,增强了原发性Al3SC相的异质成核。大多数主要AL3SC相位位于Al基质内,并与Al基质保持相同的取向。此外,杂质的存在还改变了原发性Al3SC相的生长模式。在商业纯度Al合金的情况下,观察到通过层生长的层。本研究表明,杂质对基于Al基合金中原发性Al3SC相的成核和生长具有重要影响。

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