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Modeling of the Dynamic-Bulging-Induced Surface Level Fluctuations in Continuous Casting

机译:连续铸造中动态凸出诱导的表面级波动的建模

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Mold level fluctuations in continuous casting of steel slabs give rise to slag inclusions, strand surface cracks, and. in severe cases, breakouts. One of the main causes of mold level fluctuations is dynamic bulging, which arises due to periodic squeezing of the strand in the spray cooling zones beneath the mold. This paper presents two models to predict the effect of dynamic bulging on liquid level variations. The first model estimates mold level variations due to dynamic bulging based on two submodels: 1) a computational heat flow model of the continuous casting process that outputs strand surface temperature and shell thickness to an empirical equation to estimate the maximum inner-roll bulging amplitude under steady casting conditions, and 2) an analytical geometric model that calculates the dynamic shape of the bulged shell and the resulting mold level fluctuations, based on the output from the first model and an assumed frozen fraction history. The second model is a simple analytical calculation of the dynamic bulging effect based on the difference between two plant measurements: the mold level sensor data and the stopper rod position, together with a model that predicts the effect of inlet flow variations from the tundish through the SEN into the mold under transient conditions, caused by the measured stopper rod movements, including the effects of erosion. The predictions from these two models are compared to gain new insight into the mold level fluctuations caused by dynamic bulging. At present, this comparison shows quantitative similarities, but also noticeable discrepancy. Steps to improve the accuracy of both models are discussed.
机译:连续铸造钢板的模液水平波动导致矿渣夹杂物,股线表面裂缝和。在严重的情况下,突破。模具水平波动的主要原因之一是动态凸起,由于模具下方喷雾冷却区域中的股线的周期性挤压是由于股线的周期性挤压。本文呈现了两种模型,以预测动态凸出对液位变化的影响。第一种模型估计由于基于两个子模沟的动态凸起引起的模具水平变化:1)连续浇铸过程的计算热流模型,其输出股线表面温度和壳体厚度到经验方程,以估计下的最大内辊凸起幅度稳定的铸造条件和2)基于来自第一模型的输出和假设的冷冻零件历史来计算凸出的壳体动态形状的分析几何模型。第二种模型是基于两种植物测量的差异的动态凸起效果的简单分析计算:模具电平传感器数据和止动杆位置,以及预测从中间包中的入口流动变化的效果的模型在瞬态条件下进入模具,由测量的塞子杆运动引起,包括侵蚀的影响。比较来自这两种模型的预测,以获得新的洞察动态凸出引起的模具水平波动。目前,这种比较显示了定量相似性,但也显着差异。讨论了提高两种模型准确性的步骤。

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