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Modeling solidification and mushy zone deformation of alloys

机译:模拟合金的凝固和糊状区变形

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摘要

The deformation of the partially solidified strand during near net shape continuous casting of thin slabs is only one example of a technologically important process where a mushy zone is mechanically altered in order to achieve improved grain structures and homogeneity. However, the phenomena occurring during plastic deformation of a solidifying mush are poorly understood, have not been observed directly, and have not been modeled in detail. A mathematical model that predicts the temperature and solid fraction profiles, liquid concentration evolution, and solid phase displacement during the deformation of a solidifying mush is presented. This model is derived considering a two-dimensional case, the volume averaging method, the enthalpy technique, and a coordinate transformation to avoid a changing mesh in a numerical solution. The numerical results are found to match the experimental behavior of metallic alloys during solidification with or without deformation.
机译:在薄板坯的近净形连续铸造过程中,部分凝固的铸坯的变形只是技术上重要过程的一个例子,在该过程中,对糊状区域进行机械改变以实现改善的晶粒结构和均匀性。但是,对凝固糊状物塑性变形期间发生的现象知之甚少,尚未直接观察到,也未进行详细建模。建立了一个数学模型,该模型可预测凝固糊状物变形过程中的温度和固相分数分布,液体浓度演变以及固相位移。该模型是在考虑二维情况,体积平均方法,焓技术和坐标变换的情况下得出的,以避免数值解中网格的变化。发现数值结果与金属合金在凝固过程中有或没有变形的实验行为相匹配。

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