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Roll deformation and stress distribution under thermo-mechanical loading in cold rolling

机译:冷轧热机械载荷作用下的轧辊变形和应力分布

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Tool deformation in metal forming is an important phenomenon that is critical not only for controlling the shape and size of final product but also for minimizing its cost. Under the assumption of an elastic roller and including the heat transfer effects, in this paper we determine the distribution of elastic deformation of the roller when it comes in contact with the strip in cold rolling. Using a coupled approach, the heat transfer phenomenon between roll and strip has been modeled analytically to predict roll temperature distribution by simulating non-uniform heat flux at the interface. This temperature distribution along with the mechanical load results in roll deformation with large localized stresses. Roll deformation has been modeled by using a thermo-elastic finite element method. Thermal and deformation models have been coupled and an iterative procedure has been developed to calculate optimum roll diameter. Finally, the deformed roll radius is utilized for calculating the exit strip thickness. It is found that the calculated thickness under thermo-mechanical load agrees very well with the experimental value reported in the published literature. The developed combined analytical-numerical model can easily be implemented on a personal computer and takes less memory and computational time, which is a marked advantage over pure numerical schemes.
机译:金属成型中的工具变形是一种重要现象,不仅对于控制最终产品的形状和尺寸,而且对于使其成本最小化至关重要。在弹性辊的假设下,包括传热效应,本文确定了冷轧中辊与带钢接触时辊的弹性变形分布。使用耦合方法,已对轧辊和带钢之间的传热现象进行了分析建模,以通过模拟界面处的不均匀热通量来预测轧辊温度分布。这种温度分布以及机械负载会导致轧辊变形,并产生较大的局部应力。轧辊变形已通过使用热弹性有限元方法建模。热力和变形模型已经耦合,并且已经开发出迭代程序来计算最佳轧辊直径。最后,变形的轧辊半径用于计算出料带厚度。发现在热机械载荷下的计算厚度与公开文献中报道的实验值非常吻合。所开发的组合式分析数字模型可以轻松地在个人计算机上实现,并且占用较少的内存和计算时间,这是纯数字方案的显着优势。

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