INVESTIGADORES
MILLAN Emmanuel Nicolas
artículos
Título:
The elastic-plastic transition in nanoparticle collisions
Autor/es:
MILLAN, EMMANUEL N; TRAMONTINA, DIEGO; URBASSEK, HERBERT; BRINGA, EDUARDO M.
Revista:
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Editorial:
ROYAL SOC CHEMISTRY
Referencias:
Lugar: CAMBRIDGE; Año: 2015
ISSN:
1463-9076
Resumen:
When nanoparticles (NPs) collide with low velocities, they interact elastically in the sense that - besides their fusion caused by their mutual van-der-Waals attraction - no defects are generated. We investigate the minimum velocity, vc, necessary for generating defects and inducing plasticity in the NP. The determination of this elastic-plastic threshold is of prime importance for modeling the behavior of granular matter. Using the generic Lennard-Jones interaction potential, we find v_c to increase strongly with decreasing radius. Current models do not agree with our simulations, but we provide a model based on dislocation emission in the contact zone that quantitatively describes the size dependence of the elastic-plastic transition.