Pages that link to "Item:Q1764890"
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The following pages link to A continuum micromechanical theory of overall plasticity for particulate composites including particle size effect (Q1764890):
Displaying 16 items.
- Measurement of length-scale and solution of cantilever beam in couple stress elasto-plasticity (Q358914) (← links)
- Modeling the viscoplastic micromechanical response of two-phase materials using fast Fourier transforms (Q414350) (← links)
- Size effect in micro-scale cantilever beam bending (Q555673) (← links)
- A closed-form, hierarchical, multi-interphase model for composites-derivation, verification and application to nanocomposites (Q645796) (← links)
- A multiscale mean-field homogenization method for fiber-reinforced composites with gradient-enhanced damage models (Q695937) (← links)
- Micromechanical modeling of packing and size effects in particulate composites (Q833812) (← links)
- Strain gradient plasticity analysis of transformation-induced plasticity in multiphase steels (Q835916) (← links)
- Strain gradients and continuum modeling of size effect in metal matrix composites (Q1357317) (← links)
- Inclusion problem in second gradient elasticity (Q1625303) (← links)
- Size-dependence of overall in-plane plasticity for fiber composites (Q1781498) (← links)
- A macroscopic model for plastic flow in metal-matrix composites (Q1905450) (← links)
- Derivation of a mesoscopic model for nonlinear particle-reinforced composites from a fully microscopic model (Q2285701) (← links)
- Ultrastrong nanocomposites with interphases: nonlocal deformation and damage behavior (Q2421955) (← links)
- A new homogenization method based on a simplified strain gradient elasticity theory (Q2447037) (← links)
- Effective pressure-sensitive elastoplastic behavior of particle-reinforced composites and porous media under isotropic loading (Q2472849) (← links)
- An incremental‐secant mean‐field homogenization model enhanced with a non‐associated pressure‐dependent plasticity model (Q6071424) (← links)