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Upper bound analysis of rolling force and dog-bone shape via sine function model in vertical rolling

机译:基于正弦函数模型的垂直轧制轧制力和狗骨形的上限分析

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The control of the slab width in actual production is realized by the widely use of vertical rolling (edge rolling). According to the incompressibility condition, the sine function dog-bone model is firstly proposed in this paper for steady state deformation in vertical rolling with flat rolls combined with the actual conditions. Based on the first variation principle of rigid-plastic material, the variable upper bound integration method is used to integrate plastic deformation, shear and friction power terms. The upper bound solutions of rolling force and dog-bone shape are solved numerically, and this process is carried out using Matlab Optimization Toolbox by minimizing the total power functional. Results show that the rolling force increases and the dog-bone shape size become larger while engineering strain, initial thickness, or roll radius increases. The results obtained from sine function model are compared with those of experimental data in reference and FEM simulation, and a good agreement is found. The comparison shows that it is possible to determine the required optimum rolling force and dog-bone shape by using sine function model. (C) 2015 Elsevier B.V. All rights reserved.
机译:实际生产中板坯宽度的控制是通过广泛使用垂直轧制(边缘轧制)来实现的。根据不可压缩条件,结合实际情况,首先提出了正弦函数狗骨模型,用于平轧垂直轧制的稳态变形。基于硬塑性材料的第一变分原理,使用可变上限积分法对塑性变形,剪切力和摩擦力项进行积分。数值求解滚动力和狗骨头形状的上限解,并使用Matlab优化工具箱通过使总功率函数最小化来执行此过程。结果表明,随着工程应变,初始厚度或轧制半径的增加,轧制力增加并且狗骨头形状的尺寸变大。将正弦函数模型获得的结果与参考和有限元模拟中的实验数据进行了比较,发现了很好的一致性。比较表明,可以使用正弦函数模型确定所需的最佳轧制力和狗骨头形状。 (C)2015 Elsevier B.V.保留所有权利。

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