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Modeling of Ternary Element Site Substitution in NiAlIt is well recognized that ternary alloying additions can have a dramatic impact on the behavior of ordered intermetallic alloys such as nickel aluminides. Properties as diverse as yield strength, fracture strength, fracture mode, cyclic oxidation resistance, creep strength, and thermal and electrical diffusivity can change by orders of magnitude when a few percent or less of a ternary element is added. Yet our understanding of the resulting point defect structures and the simple site preferences of ternary alloying additions is poor because these are extremely difficult characteristics to determine. This disconnection between the understanding of the structure and properties in ordered alloys is at least in part responsible for the limited development and commercialization of these materials. Theoretical methods have provided useful but limited insight in this area, since most techniques suffer from constraints in the type of elements and the crystallographic structures that can be modeled. In an effort to overcome these limitations, the Bozzolo-Ferrante-Smith (BFS) method for alloys was designed. After a brief description of this approximate quantum mechanical approach, we use BFS to investigate the energetics of Si, Ti, V, Cr, Fe, Co, Cu, Zr, Nb, Mo, Ru, Hf, Ta and W additions to B2-ordered, stoichiometric NiAl. In addition to determining the site preference for these alloying additions over a range of compositions, we include results for the concentration dependence of the lattice parameter. In this introductory paper, we performed our analyses in the absence of constitutional and thermal vacancies for alloys of the form Ni50(Al,X)50. Where data exist, a comparison between experimental, theoretical, and BFS results is also included.
Document ID
20010017222
Acquisition Source
Glenn Research Center
Document Type
Reprint (Version printed in journal)
Authors
Bozzolo, Guillermo
(Ohio Aerospace Inst. Cleveland, OH United States)
Noebe, Ronald D.
(NASA Glenn Research Center Cleveland, OH United States)
Honecy, Frank
(NASA Glenn Research Center Cleveland, OH United States)
Date Acquired
August 20, 2013
Publication Date
January 1, 2000
Publication Information
Publication: Intermetallics
Publisher: Elsevier Science Ltd.
Volume: 8
ISSN: 0966-9795
Subject Category
Metals And Metallic Materials
Distribution Limits
Public
Copyright
Other

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