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Microstructure transition of Al-Cu eutectic alloy during containerless rapid solidification

机译:无容器快速凝固过程中Al-Cu共晶合金的组织转变

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摘要

Droplets of Al-32. 7%Cu eutectic alloy were rapidly solidified during containerless processing in a 3 m drop tube. The microstructural evolution of Al-Cu eutectic alloy depends strongly on droplet size. The eutectic growth morphology changes from regular lamellar eutectic to a kind of anomalous eutectic with the decrease in droplet size. This microstructural transition was analyzed within the current theories of eutectic growth. The results indicate that there exists a critical velocity for eutectic growth beyond which anomalous eutectic appears. The coupled zone of the Al-Cu eutectic alloy system has been calculated on the basis of the Trivedi-Magnin-Kurz(TMK) eutectic growth and the Lipton-Kurz-Trivedi(LKT)/Boettinger-Coriell-Trivedi(BCT) dendrite growth models, which provides a further interpretation for the morphological transition.
机译:Al-32的液滴。 7%Cu共晶合金在3 m下降管的无容器加工过程中迅速凝固。 Al-Cu共晶合金的微观结构演变在很大程度上取决于液滴尺寸。随着液滴尺寸的减小,共晶生长形态从规则的层状共晶转变为一种异常的共晶。在当前的共晶生长理论中分析了这种微观结构的转变。结果表明,存在共晶生长的临界速度,超过该速度就会出现异常的共晶。基于Trivedi-Magnin-Kurz(TMK)共晶生长和Lipton-Kurz-Trivedi(LKT)/ Boettinger-Coriell-Trivedi(BCT)枝晶生长来计算Al-Cu共晶合金系统的耦合区模型,为形态转变提供了进一步的解释。

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