Computational visco-plasticity for kinematically constrained crystals
DOI<link itemprop=identifier href="https://doi.org/10.1002/1097-0207(20000730)48:9<1311::AID-NME943>3.0.CO;2-Y" /><1311::AID-NME943>3.0.CO;2-Y 10.1002/1097-0207(20000730)48:9<1311::AID-NME943>3.0.CO;2-YzbMath0972.74070OpenAlexW2154523093MaRDI QIDQ4500117
J. A. W. Van Dommelen, W. A. M. Brekelmans, Frank P. T. Baaijens
Publication date: 13 November 2001
Full work available at URL: https://doi.org/10.1002/1097-0207(20000730)48:9<1311::aid-nme943>3.0.co;2-y
finite element formulationlarge deformationsmixed formulationlattice rotationcrystallographic slipviscoplastic constitutive modelapproximate weighting methodkinematic deficiencytwo-dimensional kinematically constrained crystal
Crystalline structure (74E15) Finite element methods applied to problems in solid mechanics (74S05) Large-strain, rate-dependent theories of plasticity (74C20)
Cites Work
- Micromechanical modeling of large plastic deformation and texture evolution in semi-crystalline polymers
- Polycristalline plastic deformation and texture evolution for crystals lacking five independent slip systems
- Bounds and self-consistent estimates for creep of polycrystalline materials
- An U‐ALE formulation of 3‐D unsteady viscoelastic flow
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