首页> 外文期刊>Metallurgical and Materials Transactions A >Microsegregation during Solidification of an Al-Cu Binary Alloy at Largely Different Cooling Rates (0.01 to 20,000 K/s): Modeling and Experimental Study
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Microsegregation during Solidification of an Al-Cu Binary Alloy at Largely Different Cooling Rates (0.01 to 20,000 K/s): Modeling and Experimental Study

机译:Al-Cu二元合金在不同冷却速率(0.01至20,000 K / s)下凝固过程中的微偏析:建模和实验研究

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摘要

Microsegregation in the Al 4 wt pct Cu alloy was investigated experimentally in a large range of cooling rates from 0.01 to 20,000 K/s using different solidification techniques. The microstructure was modeled using two-dimensional (2-D) pseudo-front tracking (PFT) developed by Jacot and co-workers. The experimentally determined amount of nonequilibrium eutectics increases with the cooling rate in the range 0.01 to 3 K/s and then decreases in the range 20 to 20,000 K/s. The fraction of eutectic calculated from the 2-D PFT model shows not only the same tendency, but also agrees quantitatively very well with the experiments over the range of cooling rates. It can also be explained qualitatively how the observed in terms of coarsening of the secondary dendrite arms and the back diffusion in the way both depend on the local solidification time.
机译:使用不同的凝固技术,在0.01至20,000 K / s的大冷却速率范围内,对Al 4 wt pct Cu合金中的微偏析进行了实验研究。使用Jacot和同事开发的二维(2-D)伪前跟踪(PFT)对微观结构进行建模。实验确定的非平衡共晶量随着冷却速率在0.01到3 K / s的范围内增加,然后在20到20,000 K / s的范围内降低。从2-D PFT模型计算出的共晶分数不仅显示出相同的趋势,而且在冷却速率范围内与实验在数量上非常吻合。也可以定性地解释在二次枝晶臂的粗化和反向扩散方面所观察到的情况如何都取决于局部凝固时间。

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