Advances in experiments on metal sheets and tubes in support of constitutive modeling and forming simulations
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Publication:873596
DOI10.1016/j.ijplas.2006.06.003zbMath1349.74010OpenAlexW2058772227MaRDI QIDQ873596
Publication date: 29 March 2007
Published in: International Journal of Plasticity (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijplas.2006.06.003
Related Items (16)
Comparison of two models for anisotropic hardening and yield surface evolution in bcc sheet steels ⋮ Characterisation of a polymer using biaxial tension tests. I: Hyperelasticity ⋮ Springback analysis in sheet metal forming by using the Ramberg-Osgood stress-strain relation ⋮ Numerical analysis of stress-state-dependent damage and failure behavior of ductile steel based on biaxial experiments ⋮ Prediction of elastic strain recovery of a formed steel sheet considering stiffness degradation ⋮ Evaluation of associated and non-associated quadratic plasticity models for advanced high strength steel sheets under multi-axial loading ⋮ A novel approach for anisotropic hardening modeling. II: Anisotropic hardening in proportional and non-proportional loadings, application to initially isotropic material ⋮ A new analytical theory for earing generated from anisotropic plasticity ⋮ Numerical analysis of non-proportional biaxial reverse experiments with a two-surface anisotropic cyclic plasticity-damage approach ⋮ Experimental observations of evolving yield loci in biaxially strained AA5754-O ⋮ Shape optimization of the X0-specimen: theory, numerical simulation and experimental verification ⋮ Study of a drawing-quality sheet steel. I: Stress/strain behaviors and Lankford coefficients by experiments and micromechanical simulations ⋮ A convex fourth order yield function for orthotropic metal plasticity ⋮ Predictions of forming limit diagrams using a rate-dependent polycrystal self-consistent plasticity model ⋮ Ellipticity loss analysis for tangent moduli deduced from a large strain elastic-plastic self-consistent model ⋮ Modelling of the plastic flow of trip-aided multiphase steel based on an incremental mean-field approach
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