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Molecular dynamics study of atomic displacements in disordered solid alloys

Posted on:2006-09-07Degree:Ph.DType:Dissertation
University:Florida Atlantic UniversityCandidate:Puzyrev, Yevgeniy SFull Text:PDF
GTID:1451390008451724Subject:Physics
Abstract/Summary:PDF Full Text Request
The effects of atomic displacements on the energetics of alloys plays important role in the determining the properties of alloys. We studied the atomic displacements in disordered solid alloys using molecular dynamics and Monte-Carlo methods. The diffuse scattering of pure materials, copper, gold, nickel, and palladium was calculated. The experimental data for pure Cu was obtained from diffuse scattering intensity of synchrotron x-ray radiation. The comparison showed the advantages of molecular dynamics method for calculating the atomic displacements in solid alloys.; The individual nearest neighbor separations were calculated for Cu 50Au50 alloy and compared to the result of XAFS experiment. The molecular dynamics method provided theoretical predictions of nearest neighbor pair separations in other binary alloys, Cu-Pd and Cu-Al for wide range of the concentrations.; We also experimentally recovered the diffuse scattering maps for the Cu47.3Au52.7 and Cu85.2Al14.8 alloy.
Keywords/Search Tags:Atomic displacements, Alloys, Molecular dynamics, Diffuse scattering, Solid
PDF Full Text Request
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