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An elastoplastic analysis of flange wrinkling in deep drawing process

机译:深冲过程中法兰皱纹的弹塑性分析

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The onset of flange wrinkling of a deep drawing cup is analyzed as an elastoplastic bifurcation problem. The flange is modeled as an elastoplastic annular plate subject to axisymmetric radial tension along its inner edge. As observed in the laboratory as well as practical industrial applications, aluminum alloy sheets usually wrinkle in the plastic range. Therefore, the critical condition governing the onset of elastoplastic wrinkling is formulated within the context of the general bifurcation theory. A closed-form solution for the critical drawing stress is developed based on an assumed nonlinear plastic stress field and the deformation theory of plasticity. The theory properly accounts for the plastic anisotropy of the aluminum sheets and the critical drawing stress at the onset of wrinkling is also compared against the one employing the flow theory of plasticity. The predicted critical bifurcation stress and the wave numbers are compared to those obtained by Senior's one-dimensional theory. It is demonstrated that there is a strong dependency of the critical bifurcated stress at the onset of wrinkling on the shear stress induced on the flange. The effects of flange width, drawing ratios, material properties, strain hardening on the onset of wrinkling are investigated. The differences between the present theoretical approach and Senior's theory are emphasized.
机译:深拉伸杯的凸缘起皱被分析为弹塑性分叉问题。法兰建模为弹塑性环形板,沿其内边缘承受轴对称径向张力。正如在实验室以及实际工业应用中观察到的那样,铝合金薄板通常在塑料范围内起皱。因此,在一般分叉理论的背景下,制定了控制弹塑性起皱的临界条件。基于假定的非线性塑性应力场和可塑性变形理论,开发了用于临界拉伸应力的封闭形式解决方案。该理论适当地考虑了铝板的塑性各向异性,并且将起皱开始时的临界拉拔应力与采用塑性流动理论的拉应力进行了比较。将预测的临界分叉应力和波数与通过高级一维理论获得的分叉应力和波数进行比较。结果表明,起皱开始时,临界分叉应力与法兰上产生的剪应力有很大的相关性。研究了法兰宽度,拉伸比,材料性能,应变硬化对起皱的影响。强调了当前理论方法与高级理论之间的差异。

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