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Experimental and numerical investigation of springback effect for advanced high strength dual phase steel

机译:高强度高强度双相钢回弹效应的实验与数值研究

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摘要

In sheet metal forming process of automotive components, the springback effect is crucial, in particular for Advanced High Strength Steels (AHSS), like the dual phase (DP) steel. Most construction parts in modern vehicles having very complex shapes require multi-step forming procedures. In this work, the influences of pre-deformation on the springback of steel AHSS sheets were investigated under consideration of the elastic modulus change. The sheet strips were firstly pre-stretched to a uniaxial engineering strain of 4% and 6%. The steel sheets prepared parallel, transverse, and 45° to the rolling direction were taken into account. A modified S-rail forming test was used to verify the degree of springback of the steel sheets after pre-straining. In parallel, Finite Element (FE) simulations of the S-rail forming test were performed, in which the planar anisotropic Hill's 1948 material model, Barlat-Lian's 1989 model, and Yoshida-Uemori kinematic hardening material model were applied. Experimental and numerical results were compared with regard to the final angles between the sample flanges. The effect of the elastic modulus change as a function of plastic strain was examined. It was found that higher pre-deformation state led to a noticeable increasing in springback effect. Considering the variable elastic modulus improved the accuracy of the springback prediction. The Yoshida-Uemori model showed better predictions of the final shape for the investigated steel parts in comparison with other models.
机译:在汽车零部件的钣金成型过程中,回弹效果至关重要,特别是对于高级高强度钢(AHSS),如双相(DP)钢。具有非常复杂形状的现代车辆中的大多数建筑零件都需要多步成型程序。在这项工作中,在考虑了弹性模量变化的情况下,研究了预变形对AHSS钢薄板回弹的影响。首先将板条预拉伸至4%和6%的单轴工程应变。考虑了平行于轧制方向,横向和与轧制方向成45°制备的钢板。修改后的S型钢成型试验用于验证预应变后钢板的回弹程度。同时,对S型钢轨成形试验进行了有限元(FE)模拟,其中应用了平面各向异性Hill的1948年材料模型,Barlat-Lian的1989年模型和Yoshida-Uemori运动硬化材料模型。关于样品凸缘之间的最终角度,对实验和数值结果进行了比较。研究了弹性模量变化与塑性应变的关系。发现较高的预变形状态导致回弹效应的显着增加。考虑可变弹性模量提高了回弹预测的准确性。与其他模型相比,吉田植森模型对所研究的钢零件的最终形状有更好的预测。

著录项

  • 来源
    《Materials & design 》 |2012年第8期| p.318-328| 共11页
  • 作者单位

    Department of Tool and Materials Engineering, King Mongkut's University of Technology Thonburi, 126 Pracha Uthit Rd, Bang Mod, Thung Khru, Bangkok 10140, Thailand;

    Department of Mechanical Engineering, King Mongkut's University of Technology Thonburi, 126 Pracha Uthit Rd., Bang Mod. Thung Khru, Bangkok 10140, Thailand;

    Department of Tool and Materials Engineering, King Mongkut's University of Technology Thonburi, 126 Pracha Uthit Rd, Bang Mod, Thung Khru, Bangkok 10140, Thailand;

    National Metal and Materials Technology Center, 114 Paholyotin Rd, Wong 1, Klong Luang, Pathumtani 12120, Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. ferrous metals and alloys; C. forming; E. mechanical;

    机译:A.黑色金属和合金;C.成型;E.机械;

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