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Multistep nucleation and multi-modification effect of Sc in hypoeutectic Al-Mg-Si alloys

机译:亚共晶Al-Mg-Si合金中Sc的多步成核和多变质效应

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摘要

Structure of Al5Mg2SiMn casting alloy with and without of Sc addition, morphology of primary phases and specifically morphology of the Sc-containing intermetallic compounds and nanoscale properties of the α-Al matrix of Al-Mg-Si-Mn alloys were observed. Morphology and chemical composition were investigated by scanning electron microscopy on polished and deep etched microsections.It was found that addition of Sc changes morphology of α-Al, Al-Mg2Si eutectic and intermetallic compounds with Mn. α-Al dendrites change their morphology to spherical, lamellar Al-Mg2Si eutectic to fine fibrous eutectic. It was found that crystals Al3Sc can act as nucleating particles of α-Al grains, as well as Mg2Si eutectic fibrous. The mechanisms of nucleation can be attributed to heterogeneous nucleation.
机译:观察了添加和不添加Sc的Al5Mg2SiMn铸造合金的结构,初生相的形态,特别是含Sc的金属间化合物的形态以及Al-Mg-Si-Mn合金的α-Al基体的纳米级性能。通过扫描电子显微镜对抛光和深蚀刻的显微切片进行形态学和化学组成研究,发现添加Sc会改变Mn与α-Al,Al-Mg2Si共晶和金属间化合物的形态。 α-Al树枝状晶体的形态从球形,层状Al-Mg2Si共晶转变为细纤维共晶。已发现晶体Al3Sc可以作为α-Al晶粒的成核颗粒,以及Mg2Si共晶纤维。成核的机制可以归因于异质成核。

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