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Multi-roll levelling method for longitudinal waves in metal sheet based on a coupled curvature integration model

机译:基于耦合曲率集成模型的金属板纵向波的多辊水平方法

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摘要

Longitudinal waves are the main flatness defects of metal sheets. This defect is typically eliminated by repeated elastoplastic bending via a multi-roll leveller to make the residual curvature of the sheet as small as possible. Therefore, an effective mathematical model is important for the leveller design and levelling parameter adjustment. In this paper, based on the basic principle of multi-roll levelling for the longitudinal wave of a metal sheet, a geometric model of multi-roll levelling was established via the curvature integration method; a bending-moment curvature model was also established to account for the residual curvature of reverse bending and the difference between the elastic section and the elastoplastic section. A coupled curvature integration model was constructed by combining the two models to systematically describe the multi-roll levelling process, and the variation of the curvature, surface profile curve and plastic deformation rate of the sheet during levelling were discussed; the influence of the intermesh of the work rolls on the levelling effect of the longitudinal wave was analysed. The results show that there are infinite intermesh combinations of the first work roll and the last work roll that make the residual curvature of the sheet close to zero after levelling. The results also show that the residual curvature is much more sensitive to the variation of the first work roll than to the variation of the last work roll.
机译:纵波是金属板的主要平坦缺陷。通常通过多辊式调平器重复弹性塑料弯曲来消除该缺陷,以使片材的残余曲率尽可能小。因此,有效的数学模型对于矫直机设计和调平参数调整很重要。本文基于金属板纵向波的多辊水平的基本原理,通过曲率整合法建立了多辊水平的几何模型;还建立了弯曲力矩曲率模型以考虑反向弯曲的残余曲率和弹性部分和弹塑性部分之间的差异。通过组合两种模型来系统地描述多辊水平处理的耦合曲率积分模型,并讨论了平整过程中曲率,表面轮廓曲线和纸张的塑性变形速率的变化;分析了工作辊的intermesh对纵向波的平整效果的影响。结果表明,第一工作辊的无限啮合组合和最后的工作辊,使纸张的剩余曲率使得平整后靠近零。结果还表明,剩余曲率对第一工作辊的变化比上次工作卷的变化更敏感。

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