Title : ( Nickel nanowires under uniaxial loads: A molecular dynamics simulation study )
Authors: AliReza Setoodeh , Hamed Attariani , Mostafa Khosrownejad ,Access to full-text not allowed by authors
Abstract
The mechanical properties of nickel nanowire at different temperatures are studied using molecular dynamics (MD) simulations. The inter-atomic interactions are represented by employing embeddedatom potential. In the case of uniaxial loading, the stress–strain curve at different strain rates is simulated. The effects of volume/surface ratio and temperature on mechanical properties of nickel nanowire are discussed. In particular, the loading–unloading process is modeled and the effect of unloading process on the stress–strain curve in the plastic region is investigated. Furthermore, the mechanical characterization in compression loading is carried out and the mechanism of deformation is elucidated based on the present model. The results of compression modeling show that the obtained yield stress is lower than the computed tensile yield stress.
Keywords
Molecular dynamics Nanowire Size effect Unloading process Temperature effect Compression@article{paperid:1007253,
author = {Setoodeh, AliReza and Attariani, Hamed and Khosrownejad, Mostafa},
title = {Nickel nanowires under uniaxial loads: A molecular dynamics simulation study},
journal = {Computational Materials Science},
year = {2008},
volume = {44},
number = {2},
month = {December},
issn = {0927-0256},
pages = {378--384},
numpages = {6},
keywords = {Molecular dynamics
Nanowire
Size effect
Unloading process
Temperature effect
Compression},
}
%0 Journal Article
%T Nickel nanowires under uniaxial loads: A molecular dynamics simulation study
%A Setoodeh, AliReza
%A Attariani, Hamed
%A Khosrownejad, Mostafa
%J Computational Materials Science
%@ 0927-0256
%D 2008