Twist springback characteristics of dual-phase steel sheet after non-axisymmetric deep drawing

被引:0
|
作者
Xin Xue
Juan Liao
Gabriela Vincze
Frédéric Barlat
机构
[1] University of Aveiro,Department of Mechanical Engineering, Center for Mechanical Technology and Automation
[2] Pohang University of Science and Technology (POSTECH),Graduate Institute of Ferrous Technology (GIFT)
关键词
Twist springback; Dual-phase; Deep drawing; Constitutive models; Digital image correlation;
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中图分类号
学科分类号
摘要
This paper aims to investigate the twist springback characteristics of advanced high strength steel sheet subjected to deep drawing. A C-rail benchmark, which leads to a particularly pronounced twist springback characteristics, was developed. For an accurate numerical modeling of the process, a non-quadratic anisotropic yield criterion integrated with combined isotropic and kinematic hardening model was used to describe the strain-stress behavior including anisotropy and Bauschinger effects. The corresponding mechanical experiments, namely uniaxial tension and forward-reverse simple shear tests were performed to determine the material parameters. The digital image correlation technique was applied for component tests as well as the deformation and stress-strain analysis. The experimental validation of the elastic-plastic finite element model was assessed by comparing maximum in-plane strain, thickness reduction distribution and twist springback of the drawn rail. To explore the source of twist springback, the deformation associated with in-plane stress and bending moment was analyzed. The results indicate that the bending moment before springback caused by non-symmetric stress states play an important role in twist springback and control. Certain regions of the die radius were varied in a numerical analysis to control the bending moment for the minimization of twist springback as well as the preliminary results of the relationship between the ratio of variable die radius and twist springback.
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页码:267 / 278
页数:11
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