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Microsegregation during the solidification of an Al-Mg-Si alloy in the presence of back diffusion and macrosegregation

机译:Al-Mg-Si合金在反向扩散和宏观偏析存在下凝固过程中的微观偏析

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摘要

A model for one-dimensional, transient multicomponent microsegregation in ternary alloys subject to changes in overall composition and back diffusion in the primary phase during solidification is presented. A commercially available thermodynamic package (JMATPRO) is used to determine ternary phase diagrams and alloy properties. The models are suitable to be subprograms in macroscale transport models for alloy solidification processes (such as direct chill and strip casting), and calculations were performed for a commercially interesting aluminum alloy (Al-1 wt.% Mg-1.15 wt.% Si). During cooling at a constant rate, the composition was varied positively or negatively to induce dissolution or accelerated freezing of the solid. Composition profiles in the primary Al phase, temperature histories, and liquidus paths were calculated. As expected, the limited diffusion in this model increased the amount of primary solid formed. In multicomponent systems, the back diffusion has this effect not only because of the accelerated freezing rate, but also because it alters the path down the liquidus surface.
机译:提出了一种三元合金中的一维瞬态多组分微偏析模型,该模型在凝固过程中会发生整体成分变化以及初生相向后扩散的变化。使用市场上可买到的热力学软件包(JMATPRO)来确定三元相图和合金性能。该模型适合作为合金凝固过程(例如直接激冷和带钢铸造)的大型运输模型中的子程序,并且对商业上感兴趣的铝合金(Al-1 wt。%Mg-1.15 wt。%Si)进行了计算。 。在以恒定速率冷却的过程中,组成发生正向或负向变化,以诱导固体溶解或加速冻结。计算了初生Al相的成分分布,温度历史和液相线路径。不出所料,此模型中有限的扩散增加了形成的主要固体的数量。在多组分系统中,反向扩散之所以具有这种效果,不仅是因为冻结速度加快,还因为它改变了液相线表面的路径。

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