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Calculation of thermal stress affecting strip flatness change during run-out table cooling in hot steel strip rolling

机译:影响热轧带钢工作台冷却过程中带钢平直度变化的热应力计算

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摘要

To fulfill further reducing production costs at the meantime enhancing product quality is always one of the objectives pursued by steel enterprises and researches. With increasing demand on higher quality of hot rolled strip shape, strip flatness change developed during cooling on the run-out table has received significant attention and should be considered in online strip shape control model. Non-uniformity of transverse temperature distribution in strip is the ultimate reason for the occurring of strip flatness defect after hot rolled flat strip is cooled to room temperature. Based on the large amount of thermal image field measurements on strip surface, transverse temperature distribution rules of strip were concluded. A FE model was established to analyze the thermal stresses developed during the cooling of hot rolled strip on the run-out table using finite element program ABAQUS. Analysis results demonstrate that temperature drop within strip edge region will make strip flatness develop to the trend of edge wave and are verified by the actual strip flatness observation on skin pass rolling line. This viewpoint agrees well with the actual production condition. One compensation control strategy, named slight center wave rolling, is proposed based on the FE analysis work. The main idea is that steel strip is rolled with slight center wave at the exit of the last stand of finishing mill to compensate the flatness change trend of edge wave during the cooling.
机译:同时满足进一步降低生产成本的要求,提高产品质量始终是钢铁企业和研究机构追求的目标之一。随着对更高质量的热轧带钢的需求不断增加,在跳动台上冷却过程中产生的带钢平直度变化引起了人们的极大关注,应在在线带钢形状控制模型中予以考虑。带材中横向温度分布的不均匀是将热轧扁带材冷却至室温后出现带材平直度缺陷的最终原因。基于带材表面的大量热像场测量,得出带材的横向温度分布规律。建立了有限元模型,以使用有限元程序ABAQUS分析跳动工作台上热轧带钢冷却期间产生的热应力。分析结果表明,带材边缘区域内的温度下降将使带材平直度发展为边缘波的趋势,并通过在平整轧制线上的实际带材平直度观察得到了验证。这种观点与实际生产条件非常吻合。在有限元分析的基础上,提出了一种补偿控制策略,即轻微的中心波滚动。其主要思想是在精轧机最后一个机架的出口处以轻微的中心波轧制钢带,以补偿冷却期间边缘波的平直度变化趋势。

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