Pages that link to "Item:Q2495885"
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The following pages link to RVE-based studies on the coupled effects of void size and void shape on yield behavior and void growth at micron scales (Q2495885):
Displaying 20 items.
- Discrete dislocation dynamics analysis of the effect of lattice orientation on void growth in single crystals (Q422623) (← links)
- Extension of the Gurson model accounting for the void size effect (Q608596) (← links)
- Coupling effects of void size and void shape on the growth of prolate ellipsoidal microvoid (Q612478) (← links)
- Numerically produced forming limit diagrams for metal sheets with voids considering micromechanical effects (Q817502) (← links)
- Effect of void locking by inclusions upon the plastic behavior of porous ductile solids. I: Theoretical modeling and numerical study of void growth. (Q1413991) (← links)
- Scale-dependent plasticity potential of porous materials and void growth. (Q1422929) (← links)
- The coupled effects of plastic strain gradient and thermal softening on the dynamic growth of voids. (Q1430817) (← links)
- Formulation of Toupin-Mindlin strain gradient theory in prolate and oblate spheroidal coordinates (Q1669505) (← links)
- Numerical assessment, implementation and application of an extended Gurson model accounting for void size effects (Q1669564) (← links)
- Size effects on stress concentration induced by a prolate ellipsoidal particle and void nucleation mechanism (Q1779863) (← links)
- The modified Gurson model accounting for the void size effect (Q1887465) (← links)
- A note on the effect of surface energy and void size on void growth (Q1977205) (← links)
- Size effect on void coalescence under intense shear (Q1982320) (← links)
- Effect of shape on void growth: a coupled extended finite element method (XFEM) and discrete dislocation plasticity (DDP) study (Q2063436) (← links)
- On ductile fracture initiation toughness: effects of void volume fraction, void shape and void distribution (Q2385901) (← links)
- Investigation of a gradient enriched Gurson-Tvergaard model for porous strain hardening materials (Q2421998) (← links)
- Influences of particle size and interface energy on the stress concentration induced by the oblate spheroidal particle and the void nucleation mechanism (Q2455966) (← links)
- Size effects on void growth in single crystals with distributed voids (Q2475202) (← links)
- A study of the void size effect based on the Taylor dislocation model (Q2565867) (← links)
- A Computational Approach for the Constitutive Modeling of Elastoplastic Behavior of Metal Matrix Composites (Q4565000) (← links)