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Modeling Solidification Microstructures of Steel Round Billets Obtained by Continuous Casting

机译:连铸获得的钢圆坯凝固组织模型

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摘要

The knowledge of the position of the columnar to equaxial transition (CET) is of paramount importance to evaluate the internal quality of continuous casting (CC) products. One way to control the operational CC conditions with the objective of assuring a given quality level is to develop a numerical program able to calculate the local solidification rate (R), the local thermal gradient (G) and the local time of solidification (tf) and to relate these parameters to the CET by means of a predictive model. In the present investigation, the dendritic morphology and the CET transition of three round billets made of a low carbon steel (0.14%C) and produced by CC are characterized, and a computer model is developed to evaluate the R, G and tf-parameters. Referencing the well-known CET transition model developed by Hunt, a simple prediction equation is thus obtained for the steel under study and it is used to propose guidelines for the optimization of the CC operational parameters.
机译:了解柱状到等轴转变(CET)的位置对于评估连铸(CC)产品的内部质量至关重要。为了确保给定质量水平,控制运行CC条件的一种方法是开发一种能够计算局部凝固速率(R),局部热梯度(G)和局部凝固时间(tf)的数值程序。并通过预测模型将这些参数与CET相关联。在本研究中,表征了由CC生产的低碳钢(0.14%C)制成的三个圆坯的枝晶形态和CET转变,并开发了计算机模型来评估R,G和tf参数。参照由亨特(Hunt)开发的著名的CET过渡模型,从而为研究中的钢获得了一个简单的预测方程,并将其用于为CC操作参数的优化提供指导。

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