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Earing in cup-drawing of anisotropic Al-6022-T4 sheets

机译:各向异性 Al-6022-T4 片材的杯形拉丝

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摘要

The prediction of earing during cup-drawing of the anisotropic aluminum alloy Al-6022-T4 is studied through a combination of experiments and analysis. At first, the anisotropy of the material is established experimentally, using uniaxial and plane-strain tension, as well as disk compression experiments. The material is seen to possess mild anisotropy, which however evolves with deformation. Two plastic potentials, Yld89 and Yld2000-2D are then calibrated to that data. The latter potential is flexible enough to represent the experimental plastic work contours almost exactly. Subsequently, the cup-drawing experiments are detailed, including descriptions of the equipment and tooling, measurements during forming as well as measurements of thickness and earing in the drawn-cups. Three analytical models for predicting the maximum drawing force are compared to the experiments. The cups exhibit maximum thinning around the punch-radius, as well as four ears. The ears are oriented along the RD and TD directions, with the TD ears being higher than the RD ones. A simple analytical model is seen to closely capture these results. The experiments are then simulated with shell finite elements in DYNAFORM, which uses the explicit solver of LS-DYNA. The simulations permitted the inverse determination of the friction between the blank and the tooling. The thickness and earing profile predictions from the numerical model are in good agreement with the experiments.
机译:通过实验和分析相结合的方法,研究了各向异性铝合金Al-6022-T4在拉杯过程中的穗度预测。首先,使用单轴和平面应变拉力以及圆盘压缩实验通过实验建立了材料的各向异性。该材料被认为具有温和的各向异性,但其各向异性会随着变形而演变。然后根据该数据校准两个塑性电位 Yld89 和 Yld2000-2D。后者的电位足够灵活,几乎可以准确地代表实验性塑料作品的轮廓。随后,详细介绍了杯子拉拔实验,包括设备和工具的描述、成型过程中的测量以及拉出杯子的厚度和耳的测量。将用于预测最大拉伸力的三种分析模型与实验进行了比较。杯子在冲孔半径周围表现出最大的变薄,以及四个耳朵。耳朵沿 RD 和 TD 方向定向,TD 耳朵高于 RD 耳朵。一个简单的分析模型可以紧密地捕捉这些结果。然后,在DYNAFORM中使用壳有限元对实验进行仿真,DYNAFORM使用LS-DYNA的显式求解器。仿真可以反向测定坯料和刀具之间的摩擦力。数值模型的厚度和耳廓预测结果与实验结果吻合较好。

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