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Numerical Simulation Study of Quasi-Static Loading and Dynamic Loading for Micro Bending Forming of Copper Foil

机译:铜箔微弯曲成型量静态载荷和动力荷载数值模拟研究

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A variety of micro forming processes has been invented, and the size effects have become a research hotspot at home and abroad. Micro bending molds with different feature sizes were designed. Quasi-static tester loading and dynamic laser shock loading with soft punch for micro bending forming was studied by numerical simulation respectively based on ANSYS implicit analysis and LS-DYNA explicit analysis. The constitutive models of workpiece are bilinear kinematic hardening model and Johnson-cook model respectively. The effects of different loading conditions and feature sizes of the die on the forming depth, equivalent plastic strain and equivalent plastic strain rate were studied. The results of numerical simulation show that, with the increasing of feature size of the mold, the forming depth under two kinds of loading conditions shows a tendency to increase. In dynamic laser shock loading, the equivalent plastic strain and equivalent plastic strain rate of the key position of the bent part would decrease with the increasing of the feature size of the die. While in quasi-static loading, the opposite law is shown. The research shows that, the flexible micro-bending processes with different loading models showed similar size effect. However, compared with quasi-static loading, in dynamic loading, the strain of forming parts is more centralized, and there is a high strain rate and better formability of the workpiece.
机译:已经发明了各种微型成型过程,大小效应已成为国内外的研究热点。设计了具有不同特征尺寸的微弯曲模具。基于ANSYS隐含分析和LS-DYNA明确分析,通过数值模拟研究了用于微弯曲成形的软冲头的准静态测试仪装载和动态激光冲击。工件的本构模型分别是双线性运动淬火模型和约翰逊烹饪模型。研究了模具对成形深度,等效塑性应变和等效塑性应变率的不同装载条件和特征尺寸的影响。数值模拟结果表明,随着模具的特征尺寸的增加,两种负载条件下的成形深度显示出增加的趋势。在动态激光冲击负荷,等效塑性应变和弯曲部的键位置的等效塑性应变率将与管芯的特征尺寸的增加而降低。虽然在准静态载荷中,所示的相反规律是。该研究表明,具有不同装载模型的柔性微弯曲过程显示出类似的尺寸效应。然而,与准静电负载相比,在动态负载中,形成部件的应变更加集中,并且存在高应变速率和更好的工件可成形性。

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