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Study on the improved accuracy of strip profile using numerical formula model in continuous cold rolling with 6-high mill

机译:用数值模型提高6高轧机连续冷轧中带钢轮廓精度的研究

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摘要

The quality requirements for thickness accuracy in cold rolling continue to become more stringent. In cold rolling mill, it is very important that the rolling force calculation considers rolling conditions. The rolled strip thickness was predicted using calculated rolling force. However, the prediction of strip thickness in cold rolling is very difficu in particular, for 6-high mill with shifted intermediate roll (IMR), the accuracy of thickness is not good. In this study, to improve the accuracy of rolled strip thickness, the roll gap flattening can be given based on Hertz contact theory, with contact between rolls and the smooth cylindrical rolls for the rolling elastic deformation. Also, the distribution of the roll gap flattening may be calculated using the contact force of unit transverse length. The strip profile at the continuous cold rolling is calculated by using the numerical analysis model considering the initial strip profile before cold rolling. Hence, we propose that the numerical model can predict the rolled strip profile more quickly and accurately and be applicable to the field. The results of the proposed numerical model were verified by FE-simulation and cold rolling experiments of 6-high mill with five stands.
机译:对冷轧厚度精度的质量要求继续变得越来越严格。在冷轧机中,计算轧制力时要考虑轧制条件,这一点非常重要。使用计算出的轧制力来预测轧制的带材厚度。然而,冷轧带钢厚度的预测非常困难。尤其是对于带移位中间辊(IMR)的6辊轧机,厚度精度不好。在这项研究中,为了提高轧制带钢厚度的精度,可以基于赫兹接触理论给出轧辊间隙的平坦度,并在轧辊和光滑圆柱辊之间进行接触以实现轧制弹性变形。同样,可以使用单位横向长度的接触力来计算辊缝平坦度的分布。考虑到冷轧前的初始带钢轮廓,通过使用数值分析模型计算连续冷轧带钢轮廓。因此,我们建议数值模型可以更快,更准确地预测轧制带材轮廓,并适用于现场。通过有限元模拟和五机架六辊轧机的冷轧实验,验证了所提出数值模型的结果。

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