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Three-dimensional mesoscopic modeling of equiaxed dendritic solidification in a thin sample: effect of convection flow

机译:薄样品中等轴形树突凝固的三维介观模型:对流流的影响

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A 3D mesoscopic envelope model is used to numerically simulate the experimental X-ray observations of the equiaxed dendritic isothermal solidification of a thin sample of Al-20 wt%Cu alloy including the natural convection flow. Several four-grain simulations are run to investigate the effect of the convection, of the grain position, and of the grain rotation on the tip growth kinetics of one of the grains. We show that the effect of convection flow-consequence of the presence of gravity parallel to the sample thickness direction, z-on the growth kinetics of the reference grain depends significantly on the position of the grain along the sample thickness.
机译:3D介观信封模型用于数值上模拟等X型树突状等温凝固的实验X射线观察,其薄样品的Al-20wt%Cu合金的薄样品包括自然对流流。运行几种四粒模拟以研究对流的影响,晶粒位置和粒度旋转在其中一种颗粒的尖端生长动力学上。我们表明,对流流动的对流与样品厚度方向平行的影响的影响,参考晶粒的生长动力学呈显着取决于沿着样品厚度的颗粒的位置。

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