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Effect of alloying on elastic properties of ternary Ni-Al-Ti system: Experimental validation

Sidnov, K. P. (author)
National University of Science and Technology MISIS, Russia; RAS, Russia
Belov, D. S. (author)
National University of Science and Technology MISIS, Russia
Ponomareva, A. V. (author)
National University of Science and Technology MISIS, Russia
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Abrikosov, Igor (author)
Linköpings universitet,Teoretisk Fysik,Tekniska fakulteten
Zharmukhambetova, A. M. (author)
National Research Tomsk State University, Russia
Skripnyak, Natalia (author)
Linköpings universitet,Teoretisk Fysik,Tekniska fakulteten,National Research Tomsk State University, Russia
Barannikova, S. A. (author)
National Research Tomsk State University, Russia; RAS, Russia
Rogachev, A. S. (author)
National University of Science and Technology MISIS, Russia; RAS, Russia
Rouvimov, S. (author)
University of Notre Dame, IN 46556 USA
Mukasyan, A. S. (author)
University of Notre Dame, IN 46556 USA
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 (creator_code:org_t)
ELSEVIER SCIENCE SA, 2016
2016
English.
In: Journal of Alloys and Compounds. - : ELSEVIER SCIENCE SA. - 0925-8388 .- 1873-4669. ; 688, s. 534-541
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Using combustion synthesis approach we fabricated B2 NiAl intermetallic compound as well as quasibinary Ni(Al50Ti50) alloy, where half Al atoms are randomly substituted by transitional metal Ti. Youngs modulus for synthesized materials was measured and appeared to be 222 +/- 10 GPa for NiAl and 175 +/- 15 GPa for Ni(Al50Ti50) phases. Using first-principles simulations in the framework of the Density Functional Theory, we investigate the elastic properties of Ni(Al1-xTix) system, including single-crystal, as well as polycrystalline elastic moduli. Direct comparison of the experimental and theoretical values of the Youngs modulus demonstrates that the employed theoretical approach allows carefully predict elastic properties of NiAl-based intermetallics. In particular, we predict that alloying NiAl with Ti should increase the ductility of the intermetallic phase. (C) 2016 Elsevier B.V. All rights reserved.

Subject headings

NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)

Keyword

Combustion synthesis; NiAl-based superalloys; Ti doping; Module of elasticity; First-principles simulations; Ductility

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