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A Three-Phase Model for Mixed Columnar-Equiaxed Solidification

机译:混合圆柱状等温凝固的三相模型

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A three-phase model for mixed columnar-equiaxed solidification is presented in this article. The three phases are the parent melt as the primary phase, as well as the solidifying columnar dendrites and globular equiaxed grains as two different secondary phases. With an Eulerian approach, the three phases are considered as spatially coupled and interpenetrating continua. The conservation equations of mass, momentum, species, and enthalpy are solved for all three phases. An additional conservation equation for the number density of the equiaxed grains is denned and solved. Nucleation of the equiaxed grains, diffusion-controlled growth of both columnar and equiaxed phases, interphase exchanges, and interactions such as mass transfer during solidification, drag force, solute partitioning at the liquid/solid interface, and release of latent heat are taken into account. Binary steel ingots (Fe-0.34 wt pet C) with two-dimensional (2-D) axis symmetrical and three-dimensional (3-D) geometries as a benchmark were simulated. It is demonstrated that the model can be used to simulate the mixed columnar-equiaxed solidification, including melt convection and grain sedimentation, macrosegrega-tion, columnar-to-equiaxed-transition (CET), and macrostracture distribution. The model was evaluated by comparing it to classical analytical models based on limited one-dimensional (1-D) cases. Satisfactory results were obtained. It is also shown that in order to apply this model for industrial castings, further improvements are still necessary concerning some details.
机译:本文提出了一种混合柱状均等凝固的三相模型。三相是母体熔体作为主要相,凝固的柱状枝晶和球状等轴晶粒则是两个不同的辅助相。使用欧拉方法,这三个阶段被认为是空间耦合和互穿连续体。求解所有三个阶段的质量,动量,种类和焓的守恒方程。推导并求解了等轴晶粒数密度的另一个守恒方程。考虑了等轴晶核化,柱状相和等轴相的扩散控制生长,相间交换以及相互作用,例如凝固过程中的传质,拖曳力,溶质在液/固界面处分配以及释放潜热。 。模拟了以二维(2-D)轴对称和三维(3-D)几何形状为基准的二元钢锭(Fe-0.34 wt pet C)。结果表明,该模型可用于模拟混合的柱状-等温凝固,包括熔体对流和颗粒沉降,宏观偏析,柱状-等化转变(CET)和宏观结构分布。通过与基于有限一维(1-D)情况的经典分析模型进行比较,对该模型进行了评估。获得满意的结果。还表明,为了将该模型应用于工业铸件,在某些细节方面仍需要进一步的改进。

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