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Enhanced Refinement of Al-Zn-Mg-Cu-Zr Alloy via Internal Cooling with Annular Electromagnetic Stirring above the Liquidus Temperature

机译:在液相线温度以上通过环形电磁搅拌进行内部冷却来增强Al-Zn-Mg-Cu-Zr合金的细化

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摘要

There are two critical stages of grain refinement during solidification: above and below the liquidus temperature. The key to improve the refinement potential is ensuring the nucleation sites precipitate in large quantities and dispersed in the melt above liquidus. In this work, internal cooling with annular electromagnetic stirring was applied to an Al-Zn-Mg-Cu-Zr alloy at a temperature above liquidus. A systematic experimental study on the grain refining potential was performed by combining different melt treatments and pouring temperatures. The results indicate that internal cooling with annular electromagnetic stirring (IC-AEMS) had a significantly superior grain refining potency for the alloy compared to traditional electromagnetic stirring (EMS). In addition, homogeneous and refined grains were achieved at high pouring temperatures with IC-AEMS. The possible mechanisms for the enhanced grain refinement above the liquidus temperature are explained as the stable chilling layer around the cooling rod in IC-AEMS providing undercooling for the precipitation of Al3Zr nucleant particles and the high cooling rate restraining the growth rate of these particles. At the same time, forced convection promotes a more homogeneous distribution of nucleant particles.
机译:凝固过程中晶粒细化有两个关键阶段:高于和低于液相线温度。提高精炼潜力的关键是确保成核部位大量沉淀并分散在液相线上方的熔体中。在这项工作中,在液相线以上的温度对Al-Zn-Mg-Cu-Zr合金进行了环形电磁搅拌的内部冷却。通过结合不同的熔体处理和浇铸温度对晶粒细化潜力进行了系统的实验研究。结果表明,与传统的电磁搅拌(EMS)相比,采用环形电磁搅拌(IC-AEMS)进行的内部冷却对合金具有明显优越的晶粒细化能力。此外,使用IC-AEMS在较高的浇铸温度下可获得均匀且细化的晶粒。解释了在液相线温度以上增强晶粒细化的可能机制,是因为IC-AEMS中冷却棒周围的稳定冷却层为Al3Zr核清洁颗粒的沉淀提供了过冷作用,而高冷却速率抑制了这些颗粒的生长速率。同时,强制对流促进了核清洁颗粒的更均匀分布。

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