Pages that link to "Item:Q2456800"
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The following pages link to A physical model for nucleation and early growth of voids in ductile materials under dynamic loading (Q2456800):
Displaying 14 items.
- Yield initiation of compressible material with a central void under dynamic load (Q554076) (← links)
- Spall damage in aluminum alloy (Q675441) (← links)
- Dynamic void nucleation and growth in solids: A self-consistent statistical theory (Q731155) (← links)
- A micromechanical constitutive model for dynamic damage and fracture of ductile materials (Q989721) (← links)
- Wave propagation in elastic solids undergoing damage and growth process (Q1018509) (← links)
- A void-crack nucleation model for ductile metals (Q1302790) (← links)
- The plastic growth of a cavity nucleated at a shear band (Q1310036) (← links)
- Ductile crack growth. II: Void nucleation and geometry effects on macroscopic fracture behavior (Q1358888) (← links)
- The size effect on void growth in ductile materials. (Q1421343) (← links)
- The effects of thermal softening and heat conduction on the dynamic growth of voids. (Q1427162) (← links)
- The dynamic growth of a single void in a viscoplastic material under transient hydrostatic loading. (Q1811721) (← links)
- A closed-form criterion for dislocation emission in nano-porous materials under arbitrary thermomechanical loading (Q2244943) (← links)
- An efficient 3D implicit approach for the thermomechanical simulation of elastic-viscoplastic materials submitted to high strain rate and damage (Q2952281) (← links)
- Dynamic numerical simulations of void growth and coalescence with stress triaxiality maintained constant—Application to ductile solids with secondary voids (Q3546215) (← links)