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A kinematic analytical approach to predict roll force, rolling torque and forward slip in thin hot strip continuous rolling

机译:运动学分析方法来预测薄带钢连续轧制中的轧制力,轧制扭矩和前滑

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摘要

A kinematic analytical approach has been developed to predict the roll force, rolling torque and forward slip in thin hot strip continuous rolling under various rolling conditions. The approach is based on formulating a velocity field in the roll bite zone that expresses the effect of interfacial friction on the distribution of axial velocity and longitudinal stresses across the strip thickness. The results obtained from the proposed approach are in fair agreement with finite element simulation results, whereas available analytical methods, which are usually valid for billets and thick plates, have given considerable error in the results. The proposed approach is applied to study the effect of thickness reduction ratio, coefficient of friction, work roll diameter and front and back tensions on the roll force, rolling torque and forward slip in thin hot strip rolling. The main merit of the proposed analytical approach, as compared to finite element simulation, lies in the drastic reduction in the computational time required in finite element simulation, which favours its use in online control of rolling thin strips.
机译:已经开发出一种运动学分析方法来预测在各种轧制条件下薄热轧带钢连续轧制中的轧制力,轧制扭矩和前滑。该方法基于公式化的轧辊咬合区域中的速度场,该速度场表达了界面摩擦对整个带钢厚度上轴向速度和纵向应力分布的影响。从所提出的方法获得的结果与有限元模拟结果完全吻合,而通常对钢坯和厚板有效的可用分析方法在结果中给出了相当大的误差。所提出的方法被用于研究薄带热轧中厚度减小比,摩擦系数,工作辊直径以及前后张力对轧制力,轧制扭矩和前滑的影响。与有限元模拟相比,所提出的分析方法的主要优点在于大大减少了有限元模拟所需的计算时间,这有利于将其用于轧制薄带的在线控制。

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