A constitutive algorithm for rate-dependent crystal plasticity

From MaRDI portal
Publication:1192746

DOI10.1016/0045-7825(92)90147-CzbMath0747.73049OpenAlexW2081860853MaRDI QIDQ1192746

S. Singh

Publication date: 27 September 1992

Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/0045-7825(92)90147-c




Related Items (16)

Texture development and formability prediction for pre-textured cold rolled body-centred cubic steelEXPONENTIAL MAP ALGORITHM FOR STRESS UPDATES IN ANISOTROPIC MULTIPLICATIVE ELASTOPLASTICITY FOR SINGLE CRYSTALSA robust and efficient substepping scheme for the explicit numerical integration of a rate-dependent crystal plasticity modelOn kinematic, thermodynamic, and kinetic coupling of a damage theory for polycrystalline materialA stochastic approach to capture crystal plasticityMicromechanical Studies of Strain Rate Dependent Compressive Strength in Brittle Polycrystalline MaterialsStrain gradient crystal plasticity: Size-dependent deformation of bicrystalsElastic/crystalline‐viscoplastic finite element analysis of dynamic deformation of sheet metalOn plastic anisotropy of constitutive model for rate-dependent single crystalComputational thermomechanics of crystalline rock. I: A combined multi-phase-field/crystal plasticity approach for single crystal simulationsFEM-simulation of the hardening behavior of FCC single crystalsA new integration algorithm for finite deformation of thermo-elasto-viscoplastic single crystalsEllipticity loss analysis for tangent moduli deduced from a large strain elastic-plastic self-consistent modelOn modelling the elasto-viscoplastic response of metals using polycrystal plasticityElastoplastic finite element analyses of metal deformations using polycrystal constitutive modelsOn the numerical treatment and analysis of finite deformation ductile single crystal plasticity



Cites Work


This page was built for publication: A constitutive algorithm for rate-dependent crystal plasticity