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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Sheet metal anisotropy and optimal non-round blank design in high-speed multi-step forming of AA3104-H19 aluminium alloy can body
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Sheet metal anisotropy and optimal non-round blank design in high-speed multi-step forming of AA3104-H19 aluminium alloy can body

机译:钣金各向异性和最佳的非圆形空白设计AA3104-H19铝合金罐体的高速多步形成

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摘要

A new anisotropic yield function which accurately describes the complex anisotropy of aluminium alloy sheet metal is proposed in this paper. A non-linear least square method is used to determine the coefficients of this yield function based on the experimental results. By employing the back-Euler stress integration algorithm, this anisotropic constitutive model has been successfully implemented in commercial FEM software ABAQUS via user material subroutine UMAT to predict earing profile of AA3104-H19 deep-drawn and redrawn cups. Good agreement was found in the predicted earing profiles and those obtained in experimental deep-drawn and redrawn cups. The FE model was used in an iteration optimisation process to determine the optimal shape of non-round blanks to obtain the ear-free deep-redrawn cups, and non-round tooling was designed accordingly. Results showed the height of the ears is significantly reduced in the cup formed using this non-round blank compared with that of a conventional round blank which is important for smooth running of high-speed multi-step forming of aluminium can body.
机译:本文提出了一种新的各向异性产量功能,精确地描述了铝合金金属板金属的复杂各向异性。非线性最小二乘法用于基于实验结果确定该产量函数的系数。通过采用背欧拉应力集成算法,该各向异性本构模型通过用户材料子程序UMAT成功地在商业有限元软件ABAQUS中实现,以预测AA3104-H19深绘制和重革杯的耳廓轮廓。在预测的耳廓型材中发现了良好的一致性,并且在实验深绘制和重新绘制杯中获得的良好协议。 FE模型用于迭代优化过程中,以确定非圆形坯料的最佳形状,以获得无耳深拨动杯子,并且相应地设计了非圆形工具。结果表明,与传统圆形坯料相比,使用该非圆形坯料相比,耳朵的高度显着降低,与传统的圆形坯料相比,这对于铝罐体的高速多步形成的平稳运行很重要。

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