Title of article
Mechanical properties of AgCo nanostructured nanowires Original Research Article
Author/Authors
Stoyan Pisov، نويسنده , , Oksana Melikhova، نويسنده , , Marc Hou، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2008
Pages
5
From page
102
To page
106
Abstract
The mechanical deformation properties of nanostructured AgCo nanowires were studied by Molecular Dynamics (MD) under uniaxial tensile and compressive stresses. The cohesion of the immiscible AgCo system was modeled by an Embedded Atom Model (EAM). Crystalline Co grains were embedded into a Ag crystalline matrix and the whole system was set to relax by MD at 300 K. The Ag crystal structure turned out to be unstable and to transform into the same layered structure as was already predicted in AgCo nanoclusters and AgCo Cluster Assembled Materials (CAM). Deformation was modeled by varying the length of the nanowire in the axial direction. Both isothermal and isoenergetic—whereby mechanical work converts into heat in the system—deformation mechanisms were considered. In contrast with the case of AgCo CAM where an elastic regime was identified, deformation of AgCo nanowires was never found fully elastic, whatever the magnitude of the deformation. In case of constant temperature deformation, Ag kept its layered structure and the Co grains kept crystalline. At constant energy, as a consequence of the rise of temperature, phase separation and melting took place whereby a coaxial structure was formed with the Co covered by Ag.
Keywords
molecular dynamics , Deformation , Nanowires
Journal title
Computer Physics Communications
Serial Year
2008
Journal title
Computer Physics Communications
Record number
1137469
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