The following pages link to (Q4876920):
Displaying 17 items.
- On the thermodynamic consistency of the equivalence principle in continuum damage mechanics (Q361390) (← links)
- A thermodynamically motivated implicit gradient damage framework and its application to brick masonry cracking (Q704575) (← links)
- On the thermodynamic foundations of strain-dependent creep damage and rupture in three dimensions (Q792131) (← links)
- Continuum damage mechanics: Combining thermodynamics with a thoughtful characterization of the microstructure (Q1002750) (← links)
- Strain- and stress-based continuum damage models. I. Formulation (Q1097099) (← links)
- Some thermodynamical considerations on inelastic deformations including damage processes (Q1263316) (← links)
- An energy-based damage model of geomaterials. II: Deduction of damage evolution laws (Q1302998) (← links)
- Thermodynamics of diffuse damage in solids (Q1339581) (← links)
- Thermodynamical model of anisotropic damage growth. I: Canonical dynamic state variables of continuum damage mechanics and thermodynamical functions of three-dimensional anisotropic damage state (Q1352699) (← links)
- Thermodynamical model of anisotropic damage growth. II: Canonical damage growth rate equations and theory of damage invariants (Q1371301) (← links)
- Micromechanical concept for the analysis of damage evolution in thermo-viscoelastic and quasi-brittle materials (Q1412802) (← links)
- A crack-mechanics based model for damage and plasticity of brittle materials under dynamic loading (Q1960026) (← links)
- Stability and well-posedness of a rate-dependent damage model for brittle materials based on crack mechanics (Q2290550) (← links)
- Thermodynamically consistent nonlocal theory of ductile damage (Q2486294) (← links)
- Dynamic evolution of damage in elastic-thermo-viscoplastic materials (Q2786021) (← links)
- Internal thermodynamic variables and failure of microcracked materials (Q5952013) (← links)
- A thermodynamic framework for a gradient theory of continuum damage (Q5962231) (← links)