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Segregation with Spongy Deformation of the Mushy Zone during Solidification of the Skin of Steel Cast Products

机译:在钢铸造产品皮肤凝固过程中与糊状区的海绵状变形进行隔离

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The general aim of this work is to build a model of solidification that includes all pertinent elementary phenomena, which may contribute to the segregation in the sub-surface region of continuously cast metal. This paper presents a first attempt to take into account simultaneously: the solidification shrinkage, the thermal contraction of both the liquid and solid phases, the thermomechanical deformation of the mushy zone, and the undercooling at the growth front. Mathematical expressions of segregation rates occurring during solidification with spongy deformation of an alloyed mushy zone have been derived from classical mass balance equations. The main result is a mathematical expression for the local macrosegregation rate. This expression is combined with a numerical one-dimensional model of the heat flow previously developed for the study of directional solidification of an undercooled mushy zone using an Eulerian frame of reference. In addition to inverse segregation close to the mold, segregation induced by deformation and growth undercooling of the columnar growth front are predicted. Application to the solidification of the skin of steel cast products agrees qualitatively well with experimental observations.
机译:这项工作的一般目的是建立一种凝固模型,包括所有相关的基本现象,这可能有助于连续铸造金属的亚表面区域中的偏析。本文提出了同时考虑的首次试图:凝固收缩,液体和固相的热收缩,糊状区的热机械变形,以及在生长前进的过冷。在经典质量平衡方程中衍生出在用合金糊状区的海绵状变形期间发生的分离速率的数学表达。主要结果是局部宏观测定率的数学表达。该表达式与先前开发的热流的数值一维模型与使用欧拉参考框架进行了用于研​​究过冷糊状区的定向凝固的热流。除了靠近模具的反偏析之外,预测了通过变形和生长过冷诱导的柱状生长前沿的偏析。在钢铸造产品皮肤凝固的应用与实验观察相一致。

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