Pages that link to "Item:Q951151"
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The following pages link to Size effects in indentation response of thin films at the nanoscale: a molecular dynamics study (Q951151):
Displaying 13 items.
- Microstructural size effects on mechanical properties of high purity nickel (Q415327) (← links)
- Simulation of micro-indentation hardness of FCC single crystals by mechanism-based strain gradient crystal plasticity (Q422692) (← links)
- Numerical investigation of nanoindentation size effect using micropolar theory (Q479625) (← links)
- A study of mechanical properties of pure and nitrogen-doped ultrananocrystalline diamond films under various loading conditions (Q545034) (← links)
- Cylindrical nano-indentation on metal film/elastic substrate system with discrete dislocation plasticity analysis: a simple model for nano-indentation size effect (Q619932) (← links)
- Nonlocal gradient-dependent modeling of plasticity with anisotropic hardening (Q655209) (← links)
- Investigation of the relationship between primary and secondary shear bands induced by indentation in bulk metallic glasses (Q655224) (← links)
- Molecular dynamics simulations of ion-irradiation induced deflection of 2D graphene films (Q837380) (← links)
- Molecular dynamics study of size, temperature and rate dependent thermomechanical properties of copper nanofilms (Q985978) (← links)
- Modelling of nanoindentation to simulate thin layer behaviour (Q992106) (← links)
- Atomistic simulations of elastic deformation and dislocation nucleation during nanoindentation. (Q1415902) (← links)
- IUTAM symposium on size effects on material and structural behavior at micron- and nano-scales. Proceedings of the IUTAM symposium, Hong Kong, China, 31 May--4 June, 2004 (Q2500506) (← links)
- An adhesion study in Ni and Cu nanocontacts from a molecular dynamics perspective (Q2692849) (← links)