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Distortional hardening plasticity model for paperboard
Authors:Eric Borgqvist  Tommy Lindström  Johan Tryding  Mathias Wallin  Matti Ristinmaa
Institution:1. Division of Solid Mechanics, Lund University/LTH, P.O. Box 118, SE-221 00 Lund, Sweden;2. Tetra Pak, Ruben Rausings gata, 221 86 Lund, Sweden
Abstract:A distortional hardening elasto-plastic model at finite strains suitable for modeling of orthotropic materials is presented. As a prototype material, paperboard is considered. An in-plane model is established. The model developed is motivated from non-proportional loading tests on paperboard where the paperboard is pre-strained in one direction and then loaded in the perpendicular direction. A softening effect is revealed in the pre-strained samples. The observed experimental findings cannot be accurately predicted by current models for paperboard. To be able to model the softening effects, a yield surface based on multiple hardening variables is introduced. It is shown that the model parameters can be obtained from simple uniaxial experiments. The model is implemented in a finite element framework which is used to illustrate the behavior of the model at some specific loading situations and is compared with strain fields obtained from Digital Image Correlation experiments.
Keywords:Distortion hardening  Paperboard  Anisotropy  Plasticity  Finite strains  Polyconvexity
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