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An algorithm for determining the optimal blank shape for the deep drawing of aluminum cups

机译:一种确定铝杯深拉的最佳空白形状的算法

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In the deep drawing of cups, the earing defect is caused by planar anisotropy in the sheet and friction between the blank and punch/die. In the past, several incomplete research efforts have been directed toward predicting an optimal blank shape that will avoid the formation of ears. In this paper, we consider the problem of optimal blank design for deep drawing, including the effects of anisotropy and friction. The material considered for the simulations is aluminum 2048. A planar anisotropic yield function proposed by Barlat is used. The initial blank shape chosen is circular. A finite element analysis is performed to simulate the deep-drawing process. An error metric, to measure the amount of earing, is constructed for the resulting cup. This error metric is then used to re-design the initial blank shape. The cycle is repeated until the error metric satisfies a preset convergence criterion. This iterative design process leads to an optimal blank shape. Several different test problems are considered, including flanged and flangeless circular and square cups. Simulation results are very encouraging with reasonable number of iterations to arrive at the optimal blank shape.
机译:在杯子的深层绘制中,耳侧缺陷是由板材中的平面各向异性引起的,坯料和冲头/模具之间的摩擦引起。在过去,一些不完整的研究努力朝着预测最佳的空白形状,以避免形成耳朵。在本文中,我们考虑了深度绘制的最佳空白设计问题,包括各向异性和摩擦的影响。考虑模拟的材料是铝2048.使用Barlat提出的平面各向异性产量函数。选择的初始空白形状是圆形的。执行有限元分析以模拟深图过程。用于测量耳机量的误差度量是为得到的杯子构造的。然后使用该误差度量来重新设计初始空白形状。重复循环,直到误差度量满足预设的收敛标准。该迭代设计过程导致最佳的空白形状。考虑了几种不同的测试问题,包括法兰和毫无羽状的圆形和方形杯。仿真结果非常令人鼓舞,具有合理的迭代次数来达到最佳空白形状。

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