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Springback investigation of anisotropic aluminum alloy sheet with a mixed hardening rule and Barlat yield criteria in sheet metal forming
Authors:Bingtao Tang  Xiaoyang Lu  Zhaoqing Wang  Zhen Zhao
Affiliation:1. Institute of Engineering Mechanics, Shandong Jianzhu University, Fengming Road, Lingang Development Zone, Jinan 250101, PR China;2. Department of Plasticity Technology, Shanghai Jiao Tong University, 1954 Huashan Road, Shanghai 200030, PR China
Abstract:A mixed hardening model has been implemented based on Lemaitre and Chaboche non-linear kinematic hardening theory to consider cyclic behavior and the Bauschinger effect. The Chaboche isotropic hardening theory is incorporated into the non-linear kinematic hardening model to introduce a surface of nonhardening in the plastic strain space. The bending and reverse bending case study has verified the effectiveness of the mixed hardening model by comparison with the proposed experiment results. Barlat’89 yielding criterion is adopted for it does not has any limitation while Hill’s non-quadratic yield criterion is for the case that the principal axes of anisotropy coincides with principal stress direction. The Backward–Euler return mapping algorithm was applied to calculate the stress and strain increment. The mixed hardening model is implemented using ABAQUS user subroutine (UMAT). The comparisons with linear kinematic hardening model and isotropic hardening model in NUMISHEET’93 benchmark show that the mixed hardening model coupled with Barlat’89 yield criteria can well reflect stress and strain distributions and give a more favorable springback angle prediction.
Keywords:Anisotropic sheet  Bauschinger effect  Hardening model  Springback prediction
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