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Determination of rolling load in liquid core reduction of continuously cast thin steel slab

机译:连铸薄板坯液芯还原中轧制载荷的确定

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摘要

An analytical approach is proposed to determine the rolling load and stresses in the process of liquid core reduction of a continuously cast thin steel slab in a curved type machine. The analysis is based on considering the rolling load to be concentrated at the slab solid edges, whereas the width of the slab solidified shell is subjected to bending. Analytical expressions are obtained for the rolling load and the stresses acting on the solidified slab shell during liquid core reduction. The analysis has been applied to an industrial case of plain low carbon steel, to investigate the effect of the reduction pattern imposed by the roll segments on the rolling load and stresses in the slab solidified shell. The results obtained show that distributing the reduction pattern among several roll segments reduces the rolling load, compared with the case of concentrating the reduction in one single segment. The temperature rise owing to liquid core reduction is shown to be negligible. The bending stresses along the slab solidified shell have smaller values than the compressive stresses at the slab edges.
机译:提出了一种分析方法来确定弯曲型机器中连铸薄钢板的液芯还原过程中的轧制载荷和应力。分析是基于将轧制载荷集中在板坯实心边缘上,而板坯凝固壳的宽度受到弯曲而进行的。得到了在液芯还原过程中轧制载荷和作用在凝固后的板坯上的应力的解析表达式。该分析已应用于普通低碳钢的工业案例,以研究轧辊段施加的压下方式对板坯凝固壳中轧制载荷和应力的影响。所得结果表明,与将压下量集中在一个单个段上的情况相比,在多个轧辊段之间分布压下图案可减小轧制负荷。由于液芯减少而引起的温度升高显示为可忽略的。沿板坯凝固壳的弯曲应力的值小于板坯边缘处的压应力。

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