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Prediction of coupled 2D and 3D effects in springback of copper alloys after deep drawing

机译:铜合金深冲后回弹的二维和三维耦合效应预测

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摘要

The aim of this study is to investigate the balance between 2D and 3D (or twist) springback of copper-based thin sheets after a deep drawing process. Such materials are widely used in the manufacturing of electric and electronic components, but getting an accurate final geometry is usually difficult due to springback. Three copper-based materials are considered in this study, and in a first step, the mechanical behavior is investigated with uniaxial loading-unloading tension, monotonic and cyclic simple shear and hydraulic bulge tests. In a second step, thin blanks made of these copper alloys are deformed in a U-bending process, in which they are intentionally misaligned by 2 degrees from the tool symmetry axis; then, the deformed geometry is measured with a laser scanner and the 2D springback and twisting parameters are calculated. It is shown that pure copper and the copper-iron alloy exhibit a rather limited 2D springback but a significant twisting whereas the opposite trend is observed for the copper-beryllium alloy. Finite element simulations are carried out with isotropic and mixed hardening models, calibrated from the experimental database. The comparison of experimental and predicted punch forces, 2D springback data and twisting parameters shows the accuracy of the numerical simulations. Moreover, the distinct springback characteristics of the three copper-based materials are correctly predicted and the influence of the mechanical properties on the relative 2D and 3D contributions to springback is analyzed.
机译:本研究的目的是研究铜基薄板在深冲工艺后二维和三维(或扭曲)回弹之间的平衡。这种材料广泛用于电气和电子元件的制造,但由于回弹,通常很难获得准确的最终几何形状。本研究考虑了三种铜基材料,第一步,通过单轴装卸拉力、单调和循环简单剪切和水力凸起试验研究了铜基材料的力学行为。在第二步中,由这些铜合金制成的薄坯料在U形弯曲过程中变形,其中它们故意与刀具对称轴错位2度;然后,用激光扫描仪测量变形的几何形状,并计算二维回弹和扭转参数。结果表明,纯铜和铜铁合金表现出相当有限的二维回弹,但有明显的扭曲,而铜铍合金则观察到相反的趋势。有限元模拟是使用各向同性和混合硬化模型进行的,这些模型从实验数据库中校准。通过实验和预测的冲力、二维回弹数据和扭转参数的对比,验证了数值模拟的准确性。此外,正确预测了三种铜基材料不同的回弹特性,并分析了力学性能对回弹相对二维和三维贡献的影响。

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