The nanoindentation hardnesses and stacking fault energies (SFE) for pure and alloyed Au are determined from classical molecular dynamics simulations. Rather than a traditional force-displacement dependence that is examined in many previous nanoindentation works, we analyze the hardness vs. force in this study, which shows features that allow us to distinguish defect nucleation processes from hardening processes. During nanoindentation, homogeneously nucleated defects interact to form V-shape lock structures, and finally form four-sided dislocations that are continuously released into the bulk, in a manner similar to the heterogeneous Frank-Read dislocation generation mechanism. Hardness in the alloy system is predicted to be critically con...
We develop an approach that combines the power of nonlinear dynamics with the evolution equations fo...
7–109 s−1 using molecular dynamics simulations. We consider the low-porosity regime (porosity of ∼5%...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...
Understanding mechanical properties of small volume materials has attracted much interest in recent ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
Using in-situ nanoindentation experiments it is possible to study the dislocation mechanisms which u...
Nanoindentation experiments in metal surfaces are characterized by the onset of plastic instabilitie...
International audienceThe mechanical response of nanoparticles is different than that of thin-films ...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
The idea of dimensionality and size effect the strength of metallic specimen as their typical size i...
Strengthening in metals is traditionally achieved through the controlled creation of various grain b...
We develop an approach that combines the power of nonlinear dynamics with the evolution equations fo...
Nanoindentation is a hardness test method applied to small volumes of material which can provide som...
The influences of indenter shape on dislocation actives and stress distributions during nanoindentat...
We develop an approach that combines the power of nonlinear dynamics with the evolution equations fo...
7–109 s−1 using molecular dynamics simulations. We consider the low-porosity regime (porosity of ∼5%...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...
Understanding mechanical properties of small volume materials has attracted much interest in recent ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
Using in-situ nanoindentation experiments it is possible to study the dislocation mechanisms which u...
Nanoindentation experiments in metal surfaces are characterized by the onset of plastic instabilitie...
International audienceThe mechanical response of nanoparticles is different than that of thin-films ...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
The idea of dimensionality and size effect the strength of metallic specimen as their typical size i...
Strengthening in metals is traditionally achieved through the controlled creation of various grain b...
We develop an approach that combines the power of nonlinear dynamics with the evolution equations fo...
Nanoindentation is a hardness test method applied to small volumes of material which can provide som...
The influences of indenter shape on dislocation actives and stress distributions during nanoindentat...
We develop an approach that combines the power of nonlinear dynamics with the evolution equations fo...
7–109 s−1 using molecular dynamics simulations. We consider the low-porosity regime (porosity of ∼5%...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...