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Simulation of Intermetallic Solidification Using Phase-Field Techniques

机译:使用相场技术模拟金属间凝固

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摘要

We have presented current ideas towards developing a phase-field model appropriate to the solidification of intermetallic phases. Such simulation presents two main challenges (1) dealing with faceted interfaces and (2) the complex sublattice models used to describe the thermodynamics of such phases. Although models already exist for the simulation of faceted crystals, some of these can be shown to produce highly unrealistic Wulff shapes. The model present here uses a parameterisation of the Wulff shape as a direct input to the model, allowing the simulation of arbitrary crystal shapes. In addition, an anti-trapping current that can be used with arbitrary (including sublattice) thermodynamics is presented. Such anti-trapping currents are vital in the simulation of intermetallic phases where the steep liquidus slope means small deviations in solute partitioning behaviour leading to a significant change in tip undercooling.
机译:我们介绍了当前的想法,旨在开发适合于金属间相凝固的相场模型。 这种仿真提出了两个主要挑战(1)处理刻面界面和(2)用于描述这些阶段的热力学的复杂子分子模型。 尽管已经存在用于模拟刻面晶体的模型,但是这些模型可以示出一些产生高度不切实际的WULFF形状。 这里的模型使用Wulff形状的参数,作为模型的直接输入,允许模拟任意晶体形状。 另外,提出了可以与任意(包括子图示)热力学一起使用的防捕集电流。 这种防捕集电流在模拟金属间相的模拟中至关重要,其中陡液位斜率意味着溶质分配行为中的小偏差导致尖端过冷的显着变化。

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