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Numerical Simulation and Experimental Analysis on the Deep Drawing of Cylindrical Cups

机译:圆柱杯深冲的数值模拟与实验分析

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摘要

In the deep drawing process, material of blank is transformed into the desired complicated shape by a punch. In this paper, a technique for increasing the drawability of AA1200 aluminium alloy cylindrical cups has been developed. Effects of die and punch geometry including die and punch fillet radius, on limiting drawing ratio (LDR), drawing load with respect to punch stroke and strain of the cup wall have been investigated numerically for optimal process design. A commercial finite element simulation package, ANSYS 14.0, is used in order to determine the optimum limiting drawing ratio. An experimental setup is built accordingly with a half cone angle of 18°. In the experimental and finite element analysis, AA 1200 alloy sheets are used. The effects of the original blank thickness (t = 2 mm) on the various LDR and punch load are numerically investigated. The present process successfully produces cylindrical cups with drawing ratio of 2.64.
机译:在深冲过程中,毛坯材料通过冲头转变成所需的复杂形状。在本文中,已经开发出一种用于提高AA1200铝合金圆柱杯的可拉伸性的技术。为了优化工艺设计,已通过数值研究了冲模和冲头几何形状(包括冲模和冲头圆角半径)对极限拉伸比(LDR),相对于冲头行程和杯壁应变的拉伸载荷的影响。为了确定最佳的极限拉伸比,使用了商业有限元模拟软件包ANSYS 14.0。相应地建立了一个半锥角为18°的实验装置。在实验和有限元分析中,使用了AA 1200合金薄板。数值研究了原始毛坯厚度(t = 2 mm)对各种LDR和冲头载荷的影响。本方法成功地生产了具有2.64的拉伸比的圆柱形杯。

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