zbMath0893.73023MaRDI QIDQ4358442
Rainer Sievert, Georges Cailletaud, Samuel Forest
Publication date: 24 August 1998
Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Post-critical plastic deformation in incrementally nonlinear materials,
Continuum thermodynamic models for crystal plasticity including the effects of geometrically-necessary dislocations,
Derivation of Cosserat's medium equations using different multi-dimensional frameworks,
Inspection of free energy functions in gradient crystal plasticity,
A geometrically exact micromorphic model for elastic metallic foams accounting for affine microstructure. Modelling, existence of minimizers, identification of moduli and computational results,
Bending of single crystal thin films modeled with micropolar crystal plasticity,
Dislocation-based micropolar single crystal plasticity: comparison of multi- and single criterion theories,
The geometrically nonlinear Cosserat micropolar shear–stretch energy. Part II: Non‐classical energy‐minimizing microrotations in 3D and their computational validation***,
A duality‐based coupling of Cosserat crystal plasticity and phase field theories for modeling grain refinement,
Finite versus small strain discrete dislocation analysis of cantilever bending of single crystals,
Size effects in generalised continuum crystal plasticity for two-phase laminates,
A strain gradient generalized continuum approach for modelling elastic scale effects,
On parallel simulation of a new linear Cosserat elasticity model with grid framework model assumptions,
Numerical investigation of nanoindentation size effect using micropolar theory,
Material forces in finite elasto-plasticity with continuously distributed dislocations,
A finite-strain elastic-plastic Cosserat theory for polycrystals with grain rotations,
A formulation for the micromorphic continuum at finite inelastic strains,
Micropolar plasticity. I: Modeling based on curvature tensors related by mixed transformations,
A crystal plasticity model that incorporates stresses and strains due to slip gradients,
A finite element formulation to solve a non-local constitutive model with stresses and strains due to slip gradients,
Generalized Continuum Modelling of Crystal Plasticity