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Effects of Solute Concentrations on Kinetic Pathways in Ni-Al-Cr AlloysThe kinetic pathways resulting from the formation of coherent gamma'-precipitates from the gamma-matrix are studied for two Ni-Al-Cr alloys with similar gamma'-precipitate volume fractions at 873 K. The details of the phase decompositions of Ni-7.5Al-8.5Cr at.% and Ni-5.2Al-14.2Cr at.% for aging times from 1/6 to 1024 h are investigated by atom-probe tomography, and are found to differ significantly from a mean-field description of coarsening. The morphologies of the gamma'-precipitates of the alloys are similar, though the degrees of gamma'-precipitate coagulation and coalescence differ. Quantification within the framework of classical nucleation theory reveals that differences in the chemical driving forces for phase decomposition result in differences in the nucleation behavior of the two alloys. The temporal evolution of the gamma'-precipitate average radii and the gamma-matrix supersaturations follow the predictions of classical coarsening models. The compositional trajectories of the gamma-matrix phases of the alloys are found to follow approximately the equilibrium tie-lines, while the trajectories of the gamma'-precipitates do not, resulting in significant differences in the partitioning ratios of the solute elements.
Document ID
20080033110
Acquisition Source
Glenn Research Center
Document Type
Reprint (Version printed in journal)
Authors
Booth-Morrison, Christopher
(Northwestern Univ. Evanston, IL, United States)
Weninger, Jessica
(Northwestern Univ. Evanston, IL, United States)
Sudbrack, Chantal K.
(Northwestern Univ. Evanston, IL, United States)
Mao, Zugang
(Northwestern Univ. Evanston, IL, United States)
Seidman, David N.
(Northwestern Univ. Evanston, IL, United States)
Noebe, Ronald D.
(NASA Glenn Research Center Cleveland, OH, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2008
Publication Information
Publication: To be published in Acta Materialia Inc.
Volume: 56
Issue: 14
Subject Category
Metals And Metallic Materials
Funding Number(s)
CONTRACT_GRANT: NSF-MRI DMR 0420532
CONTRACT_GRANT: ONR-DURIP N00014-0400798
CONTRACT_GRANT: NSF DMR-0241928
CONTRACT_GRANT: ONR-DURIP N00014-0610539
Distribution Limits
Public
Copyright
Other

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