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Phase-Field Modeling of Dendritic Solidification in Undercooled Droplets Processed by Electromagnetic Levitation

机译:电磁升漏水槽滴灌液体凝固的相位场建模

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The results on modeling dendritic solidification from undercooled melts processed by the electromagnetic levitation technique are discussed. In order to model the details of formation of dendritic patterns we use a phase-field model of dendritic growth in a pure undercooled system with convection of the liquid phase. The predictions of the phase-field model are discussed referring to our latest high accuracy measurements of dendrite growth velocities in nickel samples. Special emphasis is given to the growth of dendrites at small and moderate undercoolings. At small undercoolings, the theoretical predictions deviate systematically from experimental data for solidification of nickel dendrites. It is shown that small amounts of impurities and forced convective flow can lead to an enhancement of the velocity of dendritic solidification at small undercoolings.
机译:讨论了通过电磁升高技术进行建模的树突凝固的结果。为了模拟树突模式的形成细节,我们使用液相对流的纯过冷系统中树突生长的相位场模型。参考我们最新的高精度测量镍样品中的枝晶生长速度的最新高精度测量来讨论相场模型的预测。特别强调在小和中等洗脱中的树突生长。在小型过度下,理论预测系统地从实验数据系统地偏离镍树突的凝固。结果表明,少量杂质和强制对流流动可导致在小过冷下的树突凝固速度提高。

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