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首页> 外文期刊>International Journal of Mechanical Sciences >Strip layer method for simulation of the three-dimensional deformations of large cylindrical shell rolling
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Strip layer method for simulation of the three-dimensional deformations of large cylindrical shell rolling

机译:条带层法模拟大型圆柱壳轧制三维变形

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摘要

A strip layer method is presented for analyzing the three-dimensional deformations and stresses of large cylindrical shell rolling process. In this approach, the different radii and velocities of upper and lower rolls, the uneven distributions of deformations and stresses at the roll gap, are taken into account. The rolling deformation zone is divided into a number of strip and layer elements along the width and thickness directions, respectively. In order to reduce the optimization parameters and improve the computation efficiency, the exit lateral displacement distribution is expressed as polynomial function. Based on the fundamental principles of plasticity, the three-dimensional deformations and stresses of the deformation zone are formulated. The simulation results can be obtained quickly and easily. The fishtail spread is predicted satisfactorily on the free side, and the rolling pressure distribution is quite different from that of a conventional strip rolling. The predicted rolling force and average spread of the proposed method are in agreement with the experimental and FEM results.
机译:提出了一种带状层法,用于分析大型圆柱壳轧制过程的三维变形和应力。在这种方法中,要考虑到上下辊的半径和速度不同,辊间隙处的变形和应力的不均匀分布。轧制变形区沿宽度和厚度方向分别分为多个带状和层状元素。为了减少优化参数并提高计算效率,将出口侧向位移分布表示为多项式函数。根据可塑性的基本原理,确定了变形区的三维变形和应力。可以快速,轻松地获得仿真结果。在自由侧令人满意地预测了鱼尾铺展,并且轧制压力分布与常规带钢轧制的压力分布完全不同。该方法的预测轧制力和平均扩展与实验和有限元结果一致。

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