Pages that link to "Item:Q1910910"
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The following pages link to Verification of the transferability of micromechanical parameters by cell model calculations with visco-plastic materials (Q1910910):
Displaying 20 items.
- The growth and coalescence of ellipsoidal voids in plane strain under combined shear and tension (Q361317) (← links)
- A micromechanics based damage model for composite materials (Q422584) (← links)
- Void growth and coalescence in ductile solids with stage III and stage IV strain hardening (Q422701) (← links)
- On the effect of stress triaxiality on void coalescence (Q604276) (← links)
- Numerical study on void growth in rate and temperature dependent solids (Q712427) (← links)
- Effect of Lode parameter on plastic flow localization after proportional loading at low stress triaxialities (Q748739) (← links)
- A constitutive model for elastoplastic solids containing primary and secondary voids (Q957434) (← links)
- Void growth and coalescence in single crystals (Q991664) (← links)
- An analysis of Gurson model with parameters dependent on triaxiality based on unitary cells (Q1012258) (← links)
- Micromechanics of coalescence in ductile fracture (Q1612665) (← links)
- Homogenized Gurson-type behavior equations for strain rate sensitive materials (Q1790293) (← links)
- Explicit numerical study of softening in porous ductile solids (Q1939862) (← links)
- On the mechanism of void growth and the effect of straining mode in ductile materials (Q1969504) (← links)
- A new model for porous nonlinear viscous solids incorporating void shape effects II: Numerical validation (Q2565714) (← links)
- Numerical analysis of stress-state-dependent damage and failure behavior of ductile steel based on biaxial experiments (Q2666109) (← links)
- (Q2964703) (← links)
- Performing RVE calculations under constant stress triaxiality for monotonous and cyclic loading (Q3440499) (← links)
- Dynamic numerical simulations of void growth and coalescence with stress triaxiality maintained constant—Application to ductile solids with secondary voids (Q3546215) (← links)
- A micro-mechanical damage model based on gradient plasticity: algorithms and applications (Q4785130) (← links)
- An extended model for void growth and coalescence (Q5925996) (← links)