Stress update algorithm for enhanced homogeneous anisotropic hardening model

  • Lee, J.
  • Kim, D.
  • Lee, Y. -S.
  • Bong, H. J.
  • Barlat, F.
  • 외 1명
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초록

A stress integration algorithm is provided for a novel homogeneous-yield-function-based anisotropic hardening (HAH) model. The new model is an extension of the original HAH model that describes cross-hardening or softening of a sheet metal under an orthogonal strain path change. A semi-explicit integration scheme for the stress update is utilized to efficiently handle the gradient of the distorted yield surface during complex strain path changes, as originally proposed by Lee et al. (2012). Validations of the algorithm developed were conducted by comparing the predicted stress-strain curves of dual-phase (DP) 780 and extra-deep-drawing-quality (EDDQ) steels with experimental stress-strain responses observed under cross-loading conditions. Finally, the accuracy of the proposed finite element (FE) formulations was assessed by r-value prediction and preparation of iso-error maps. (C) 2014 Elsevier B.V. All rights reserved.

키워드

Anisotropic hardeningStress update algorithmCross-loadingYield surfaceSTRAIN-PATH CHANGESELASTOPLASTIC CONSTITUTIVE RELATIONSINCREMENTAL DEFORMATION-THEORYSPRING-BACK PREDICTIONALUMINUM-ALLOY SHEETSDUAL-PHASE STEELSLOW-CARBON STEELPLANE-STRESSINTEGRATION ALGORITHMSPOINT ALGORITHMS
제목
Stress update algorithm for enhanced homogeneous anisotropic hardening model
저자
Lee, J.Kim, D.Lee, Y. -S.Bong, H. J.Barlat, F.Lee, M. -G.
DOI
10.1016/j.cma.2014.12.016
발행일
2015-04-01
유형
Article
저널명
Computer Methods in Applied Mechanics and Engineering
286
페이지
63 ~ 86