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Controlled Solidification to Obtain Equilibrium Microstructure in DC Cast Rolling Ingot

机译:控制凝固以获得直流铸造轧制锭的平衡微观结构

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摘要

In 6xxx Al alloys, most of the secondary constituent phases that are formed at the primary aluminum (α-Al) grain boundary or interdendritic region during direct chill casting are brittle “metastable” phases, which complicates the downstream processes of the cast ingot. To overcome this, the cast ingot is usually homogenized and heat-treated before hot rolling. In the current study, we have shown the possibility of casting 6xxx Al alloy ingot with near-equilibrium solidification structure, thereby eliminating the homogenization process. This in turn increases productivity by reducing downstream processing steps. Novel jet stirring and in situ homogenization techniques control the solidifying microstructure, and the microstructural evidences show that the cast ingot has equilibrium structures. The thermal history of the solidifying ingots is found to play a significant role in producing equilibrium microstructure. The setup of a modified DC casting process with a mechanism for the observed microstructure changes as compared to the standard process has been discussed.
机译:在6xxx al合金中,在直接冷却铸造期间在初级铝(α-Al)晶界或间霉菌区形成的大多数二次组成相是脆性“亚稳态”相,使铸锭的下游过程复杂化。为了克服这一点,铸锭通常在热轧前均质化和热处理。在目前的研究中,我们已经表明了铸造6xxx al合金锭的可能性,具有近平衡凝固结构,从而消除了均质化过程。这反过来通过减少下游处理步骤来提高生产率。新型喷射搅拌和原位均化技术控制固化微观结构,微观结构证据表明铸锭具有平衡结构。发现凝固锭的热历史在生产平衡微观结构方面发挥着重要作用。已经讨论了与所观察到的微观结构变化的改进的DC铸造过程的设置,与标准过程相比已经进行了改变。

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