首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural evolution during upward and downward transient directional solidification of hypomonotectic and monotectic Al-Bi alloys
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Microstructural evolution during upward and downward transient directional solidification of hypomonotectic and monotectic Al-Bi alloys

机译:次单晶和单晶Al-Bi合金的向上和向下瞬态定向凝固过程中的组织演变

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摘要

Upward directional unsteady-state solidification experiments were performed with both a hypomonotectic Al-2.0 wt percent Bi alloy and a monotectic Al-3.2 wt percent Bi alloy. Besides, the monotectic composition (3.2 wt percent Bi) was directionally solidified under downward transient heat flow conditions, which enables the effects of melt convection on the final microstructure to be evaluated since the collective downward movement of Bi-rich particles is favored in such case. This is due to the density differences between the two coexisting liquid phases. The thermal parameters such as cooling rate, growth rate and thermal gradient were experimentally determined by data collected from cooling curves recorded along the casting length. The monotectic features observed in the Al-3.2 wt percent Bi alloy castings, i.e. the interphase spacing and Bi-rich particles diameter were correlated with the growth rate and thermal gradient. The cell spacing was experimentally determined for the Al-2.0 wt percent Bi alloy as a function of both the cooling rate and tip growth rate. These experimental data were compared with the main predictive cellular growth models from the literature. A comparison between upward and downward unsteady-state solidification results for the interphase spacing and Bi-rich particles diameter has also been conducted.
机译:用亚单晶Al-2.0重量%的Bi合金和单晶Al-3.2重量%的Bi合金进行向上定向的非稳态凝固实验。此外,在向下的瞬态热流条件下定向凝固了单晶成分(Bi含量为3.2 wt%),这使得熔融对流对最终微观结构的影响得以评估,因为在这种情况下有利于Bi富集颗粒的集体向下运动。这是由于两种共存液相之间的密度差异。通过从沿铸件长度记录的冷却曲线中收集的数据,通过实验确定了诸如冷却速率,生长速率和热梯度之类的热参数。在Al-3.2重量%的Bi合金铸件中观察到的单晶特征,即相间距和富Bi的颗粒直径与生长速率和热梯度相关。实验确定了Al-2.0 wt%Bi合金的晶胞间距,它是冷却速率和尖端生长速率的函数。将这些实验数据与文献中的主要预测细胞生长模型进行了比较。还进行了相间间距和富Bi粒径的上下非稳态凝固结果的比较。

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