Pages that link to "Item:Q1025768"
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The following pages link to Modelling of the interface between a thin film and a substrate within a strain gradient plasticity framework (Q1025768):
Displaying 18 items.
- Plasticity in multi-phase solids with incoherent interfaces and junctions (Q332491) (← links)
- An improved strain gradient plasticity formulation with energetic interfaces: theory and a fully implicit finite element formulation (Q352813) (← links)
- Non-local and numerical formulations for dry sliding friction and wear at high velocities (Q414301) (← links)
- A unified residual-based thermodynamic framework for strain gradient theories of plasticity (Q416466) (← links)
- Interfacial energy effects within the framework of strain gradient plasticity (Q546640) (← links)
- Effect of surface energy on the plastic behavior of crystalline thin films under plane strain constrained shear (Q619180) (← links)
- Nonlocal gradient-dependent modeling of plasticity with anisotropic hardening (Q655209) (← links)
- Computational strain gradient crystal plasticity (Q748714) (← links)
- Wedge indentation of thin films modelled by strain gradient plasticity (Q835929) (← links)
- Interfacial gradient plasticity governs scale-dependent yield strength and strain hardening rates in micro/nano structured metals (Q929001) (← links)
- Modeling the interfacial effect on the yield strength and flow stress of thin metal films on substrates (Q1939764) (← links)
- Interfacial behavior of thin film bonded to plastically graded substrate under tensile loading (Q2102604) (← links)
- Strain gradient plasticity modelling of cyclic loading in dispersion hardened materials (Q2168489) (← links)
- Finite element implementation and numerical issues of strain gradient plasticity with application to metal matrix composites (Q2381059) (← links)
- Size-dependent yield strength of thin films (Q2485967) (← links)
- Yielding and Strain Hardening in Metallic Thin Films on Substrates: an Edge Dislocation Climb Model (Q4905416) (← links)
- Indentation of a soft metal film on a hard substrate: strain gradient hardening effects (Q5953052) (← links)
- Modeling of strengthening and softening in inelastic nanocrystalline materials with reference to the triple junction and grain boundaries using strain gradient plasticity (Q5962230) (← links)