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首页> 外文期刊>Computational Materials Science >Phase-field study on the effects of process and material parameters on the tilt angle during directional solidification of ternary eutectics
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Phase-field study on the effects of process and material parameters on the tilt angle during directional solidification of ternary eutectics

机译:基于三元共晶定向凝固过程和材料参数对倾斜角度影响的相位场研究

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摘要

In the directional solidification of molten alloys, the configuration of growing phases plays a vital role in the properties of the resulting materials. During directional eutectic solidification, the growth direction and the velocity can be controlled by an imprinted temperature gradient. For this kind of process, different instabilities can occur. One observed instability is tilted growth of the solid phases against the direction of the imprinted temperature gradient. In ternary eutectics this phenomenon can occur in systems with isotropic phases. To investigate the effects of the different process and material parameters, simulation studies with a thermodynamically consistent phase-field model based on the grand potential approach, are conducted. An idealized system with different isotropic interfacial energies, diffusion coefficients, lamellar spacings, solidification velocities and slopes of the imposed temperature gradient is systematically studied. The effects on tilting are analyzed and discussed. To quantitatively determine the tilt angle automatized, an unsupervised measurement method is developed. Based on the results of the measurements, a fitting function is derived to predict the tilt angles. (C) 2017 Elsevier B.V. All rights reserved.
机译:在熔融合金的定向凝固中,生长阶段的构造在所得材料的性质中起着至关重要的作用。在定向共晶凝固期间,可以通过印迹温度梯度来控制生长方向和速度。对于这种过程,可能会发生不同的不稳定性。一个观察到的不稳定性在压印温度梯度方向上倾斜固相的生长。在三元共肠中,这种现象可以在具有各向同性阶段的系统中发生。为了研究不同工艺和材料参数的影响,进行了基于大势方法的热力学一致的相场模型的模拟研究。系统地研究了具有不同各向同性界面能量,扩散系数,层状空间,施加温度梯度的凝固速度,凝固速度和斜率的理想化系统。分析并讨论了对倾斜的影响。为了定量地确定自动倾斜角度,开发了无监督的测量方法。基于测量结果,导出拟合函数以预测倾斜角度。 (c)2017 Elsevier B.v.保留所有权利。

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