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3D FEM analysis of strip shape during multi-pass rolling in a 6-high CVC cold rolling mill

机译:六辊CVC冷轧机多道次轧制过程中带材形状的3D有限元分析

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摘要

A 3D elastic-plastic finite element method (FEM) model of cold strip rolling for 6-high continuous variable crown (CVC) control rolling mill was developed. This model considers the boundary conditions such as accurate CVC curves, total rolling forces, total bending forces and roll shifting values. The rolling force distributions were obtained by the internal iteration processes instead of being treated as model boundary conditions. The calculated error has been significantly reduced by the developed model. Based on the rolling schedule data from a 1,850-mm CVC cold rolling mill, the absolute error between the simulated results and the actual values is obtained to be less than 10 μm and relative error is less than 1%. The simulated results are in good agreement with the measured data. The developed model is significant in investigating the flatness control capability of the 6-high CVC cold rolling mill in terms of work roll bending forces, intermediate roll bending forces and intermediate roll shifting values.
机译:建立了6辊连续可变凸厚控制轧机冷轧薄板的3D弹塑性有限元模型。该模型考虑了边界条件,例如精确的CVC曲线,总滚动力,总弯曲力和滚动偏移值。滚动力分布是通过内部迭代过程获得的,而不是被视为模型边界条件。所开发的模型大大减少了计算的误差。根据一台1,850毫米CVC冷轧机的轧制计划数据,模拟结果与实际值之间的绝对误差小于10μm,相对误差小于1%。仿真结果与实测数据吻合良好。开发的模型对于研究6辊CVC冷轧机的工作辊弯曲力,中间辊弯曲力和中间辊偏移值的平直度控制能力具有重要意义。

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