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Modeling of As-Cast Microstructure of Al Alloy with a Modified Cellular Automaton Method

机译:改进的元胞自动机方法对铝合金铸态组织进行建模

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Microstructure modeling of aluminum alloy casting has been carried out by using a modified cellular automaton (CA) method coupled with macro heat transfer calculation. Continuous nucleation model is applied to describe heterogeneous nucleation in liquid metal. Dendrite tip growth kinetics and preferential 〈100〉 crystallographic orientation are taken into account. Therefore, the stochastic nature of nucleation process as well as the deterministic of dendrite growth is considered to simulate the crystal growth. The actual dendritic shape is substituted for the square envelope in the ordinary cellular automaton model. In addition, the coordinate transformation method is employed to describe the grain growth and to maintain it onto the original orientation of nucleus. Simulation results show that grain size is different at various positions of a step-shaped sample casting. The grain size is smaller when cooling rate is faster and vice versa, which is in good agreement with the experimental results arid the solidification mechanism as well.
机译:通过使用改进的元胞自动机(CA)方法结合宏观传热计算,对铝合金铸件的组织进行了建模。应用连续形核模型描述液态金属的异相形核。考虑到枝晶尖端生长动力学和优先的<100>晶体学取向。因此,成核过程的随机性以及枝晶生长的确定性被认为是模拟晶体的生长。在普通的细胞自动机模型中,实际的树突形状代替了正方形包膜。另外,采用坐标变换方法来描述晶粒的生长并将其保持在核的原始方向上。仿真结果表明,在阶梯状样品铸件的各个位置处,晶粒尺寸是不同的。冷却速度越快,晶粒尺寸越小,反之亦然,这与实验结果和凝固机理都吻合良好。

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