Abstract We present a phenomenological time-dependent Ginzburg-Landau theory of nonlinear plastic deformations in solids. Because the problem is very complex, we first give models in one and two dimensions without vacancies and interstitials, where large strains produce densely distributed slips but the mass density deviations remain small except near the tips of slips. Next we set up a two-dimensional model including a vacancy field (or local free-volume fraction), where the sensitive dependence of the elastic shear modulus on the vacancy density is relevant. In our simulation, if strains are applied to nearly defectless solids but in the presence of such an elastic inhomogeneity, the vacancy density and the mass density can become conside...
We analyze in detail the atomistic response of a model amorphous material submitted to plastic shear...
Plasticity and failure theories are still subjects of intense research. Yet, no compre-hensive theor...
International audienceA micromorphic single crystal plasticity model is formulated at finite deforma...
We show that nonlinear continuum elasticity can be effective in modeling plastic flows in crystals i...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
13 pages, 6 figures + references, minor correctionsInternational audienceThe deformation of disorder...
Strain localization is an instability phenomenon occurring in deformable solid materials which under...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
We present a theoretical method for deriving the stress tensor and elastic response of ordered syste...
We formulate a generic concept model for the deformation of a locally disordered, macroscopically ho...
We propose a theoretical framework within which a robust micromechanical definition of precursors to...
Microstructures in materials generally originate from a non-convex free energy, whereby the evolutio...
The interest in the dynamic behaviour of micro- and nano- structured materials has grown in the last...
In this chapter, two different strain gradient plasticity models based on nonconvex plastic energies...
We analyze in detail the atomistic response of a model amorphous material submitted to plastic shear...
Plasticity and failure theories are still subjects of intense research. Yet, no compre-hensive theor...
International audienceA micromorphic single crystal plasticity model is formulated at finite deforma...
We show that nonlinear continuum elasticity can be effective in modeling plastic flows in crystals i...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
13 pages, 6 figures + references, minor correctionsInternational audienceThe deformation of disorder...
Strain localization is an instability phenomenon occurring in deformable solid materials which under...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
We present a theoretical method for deriving the stress tensor and elastic response of ordered syste...
We formulate a generic concept model for the deformation of a locally disordered, macroscopically ho...
We propose a theoretical framework within which a robust micromechanical definition of precursors to...
Microstructures in materials generally originate from a non-convex free energy, whereby the evolutio...
The interest in the dynamic behaviour of micro- and nano- structured materials has grown in the last...
In this chapter, two different strain gradient plasticity models based on nonconvex plastic energies...
We analyze in detail the atomistic response of a model amorphous material submitted to plastic shear...
Plasticity and failure theories are still subjects of intense research. Yet, no compre-hensive theor...
International audienceA micromorphic single crystal plasticity model is formulated at finite deforma...