Fang Yindong, Galenko Peter K, Liu Dongmei, Hack Klaus, Rettenmayr Markus, Lippmann Stephanie
Friedrich-Schiller-Universität Jena, Otto Schott Institute of Materials Research, Chair of Metallic Materials, Jena, Germany.
GTT Technologies, Kaiserstraße 103, 52134 Aachen-Herzogenrath, Germany.
Philos Trans A Math Phys Eng Sci. 2022 Feb 21;380(2217):20200327. doi: 10.1098/rsta.2020.0327. Epub 2022 Jan 3.
The thermodynamic description of the fcc phase in the Al-Cu system has been revised, allowing for the prediction of metastable fcc/liquid phase equilibria to undercoolings of Δ = 421 K below the eutectic temperature. Hypoeutectic Al-Cu alloys that are prone to pronounced microsegregation were solidified containerlessly in electromagnetic levitation. Solidus and liquidus concentrations were experimentally determined from highly undercooled samples employing energy-dispersive X-ray analysis. Solid concentrations at a rapidly propagating solid/liquid interface were additionally calculated using a sharp interface model that considers all undercoolings and is based on solvability theory. Modelling results (front velocity versus undercooling) were also corroborated by observation with a high-speed camera. A newly established thermodynamic description of the fcc phase in Al-Cu is compatible with existing CALPHAD-type databases. Inconsistencies of previous descriptions such as a miscibility gap between Al-fcc and Cu-fcc on the Al-rich side, an unrealistic curvature of the solidus line in the same composition range or an azeotropic point near the melting point of Cu, are amended in the new description. The procedure to establish the description of phase equilibria at high undercoolings can be transferred to other alloy systems and is of a general nature. This article is part of the theme issue 'Transport phenomena in complex systems (part 2)'.
铝铜系中面心立方(fcc)相的热力学描述已得到修正,这使得能够预测亚稳态fcc/液相平衡至低于共晶温度421K的过冷度。易于出现明显微观偏析的亚共晶铝铜合金在电磁悬浮中进行无容器凝固。利用能量色散X射线分析,从高度过冷的样品中实验测定了固相线和液相线浓度。还使用基于溶解度理论并考虑所有过冷度的尖锐界面模型,计算了快速传播的固/液界面处的固相浓度。高速摄像机的观察结果也证实了模拟结果(前沿速度与过冷度的关系)。新建立的铝铜系中fcc相的热力学描述与现有的CALPHAD型数据库兼容。新描述修正了先前描述中的不一致之处,例如在富铝侧Al-fcc和Cu-fcc之间的混溶间隙、相同成分范围内固相线的不切实际曲率或靠近铜熔点处的共沸点。建立高过冷度下相平衡描述的程序可以转移到其他合金体系,具有通用性。本文是主题为“复杂系统中的输运现象(第2部分)”的一部分。