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NUMERICAL SIMULATION OF AL-SI ALLOYS WITH AND WITHOUT A DIRECTIONAL SOLIDIFICATION

机译:有和没有定向凝固的Al-SI合金的数值模拟

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Numerical simulations are presented to analyze the influence of the casting process on the resulting strength of Strontium modified Al–Si alloys. A relationship is identified between the mechanical behavior and the different 3D morphologies of the eutectic silicon of the samples obtained by the die cast procedure and the directional solidification. It is shown that the mechanical behavior of the die cast alloy is isotropic in all three directions. In contrary, for the directional solidified alloy, the mechanical strength in the direction of the temperature gradient is higher than in the transverse direction. This fact has to be taken into account when analyzing structures issued from different casting processes. The volume meshes for the simulations are generated from experimental 3D FIB/SEM data sets. The influence of several levels of coarsening of the meshes as well as the order of the Lagrange element in the finite element setup are also analyzed.
机译:提出了数值模拟,以分析铸造工艺对锶改性的Al-Si合金强度的影响。确定了机械行为与通过压铸程序和定向凝固获得的样品的共晶硅的不同3D形态之间的关系。结果表明,压铸合金的机械性能在所有三个方向上都是各向同性的。相反,对于定向凝固合金,在温度梯度方向上的机械强度高于在横向方向上的机械强度。分析不同铸造工艺发出的结构时,必须考虑到这一事实。从实验3D FIB / SEM数据集生成用于仿真的体积网格。还分析了网格的多个粗化级别以及有限元设置中拉格朗日元素顺序的影响。

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