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Optimisation of the distribution of wall thickness in the multistage sheet metal forming of wheel disks

机译:多级金属板形成轮盘壁厚分布的优化

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The distribution of wall thickness in the multistage sheet metal forming of wheel disks having a distribution of requisite strength was optimised in order to reduce the weight of the disks. Because high strength around the corner of the inner flat region of the formed disk is desirable, the decrease in wall thickness at the corner was minimised. The first two stages in which the wall thickness around the corner of the inner flat region in the final disk is determined were dealt with. Axisymmetric deformation in the two-stage forming process of disks is simulated by the rigid-plastic finite element method. The calculated distribution of the wall thickness after forming was in good agreement with the experimental results. The effects of the drawing ratio and the punch corner radius in the first stage, on the decrease in wall thickness at the inner corner after the second stage were examined by both finite element simulation and experiment. It was found that the drawing ratio and the punch corner radius in the first stage have optimal values for the decrease in wall thickness, respectively.
机译:优化了具有所需强度分布的轮盘的多级纸张金属形成中的壁厚的分布,以减少盘的重量。因为所需盘的内平区域周围的高强度是理想的,所以可以最小化拐角处的壁厚的降低。确定最终圆盘中内平区域周围的壁厚的前两个阶段进行了处理。通过刚性塑料有限元法模拟磁盘两级成型过程中的轴对称变形。形成后的壁厚的分布与实验结果吻合良好。通过有限元模拟和实验检查了第一阶段在第一阶段中的拉伸比和冲头拐角半径的影响。发现第一级中的拉伸比和冲头拐角半径分别具有壁厚减小的最佳值。

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