首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Comparative analysis of different numerical schemes in solute trapping simulations by using the phase-field model with finite interface dissipation
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Comparative analysis of different numerical schemes in solute trapping simulations by using the phase-field model with finite interface dissipation

机译:使用有限界面耗散的相场模型对溶质阱模拟中不同数值方案的比较分析

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Two different numerical schemes, the standard explicit scheme and the time-elimination relaxation one, in the framework of phase-field model with finite interface dissipation were employed to investigate the solute trapping effect in a Si-4.5 at.% As alloy during rapid solidification. With the equivalent input, a unique solute distribution under the steady state can be obtained by using the two schemes without restriction to numerical length scale and interface velocity. By adjusting interface width and interface permeability, the experimental solute segregation coefficients can be well reproduced. The comparative analysis of advantages and disadvantages in the two numerical schemes indicates that the time-elimination relaxation scheme is preferable in one-dimensional phase-field simulation, while the standard explicit scheme seems to be the only choice for two- or three dimensional phase-field simulation. Furthermore, the kinetic phase diagrams in the Si-As system were predicted by using the phase-field simulation with the time-elimination relaxation scheme.
机译:在有限界面耗散的相场模型框架内,采用两种不同的数值方案,即标准显式方案和消除时间弛豫方案,研究了快速凝固过程中Si-4.5 at。%As合金中的溶质俘获效应。 。使用等效输入,可以通过使用两种方案获得稳态下唯一的溶质分布,而不受数值长度尺度和界面速度的限制。通过调整界面宽度和界面渗透率,可以很好地再现实验溶质的偏析系数。两种数值方案的优缺点的比较分析表明,时间消除松弛方案在一维相场模拟中更可取,而标准显式方案似乎是二维或三维相场的唯一选择。现场模拟。此外,通过使用时间消除弛豫方案的相场模拟,预测了Si-As系统中的动力学相图。

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