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Determination of the vacancy migration enthalpy by Monte Carlo simulation of the short-range order kinetics by a vacancy diffusion mechanism in Ni-Al alloys.


 
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1. Title Title of document Determination of the vacancy migration enthalpy by Monte Carlo simulation of the short-range order kinetics by a vacancy diffusion mechanism in Ni-Al alloys.
 
2. Creator Author's name, affiliation, country Y.BELKADI, M.Benkaddour, J. Barkani, D.Bahia, A. Benkaddour, S. Ramdani; Morocco
 
3. Subject Discipline(s)
 
3. Subject Keyword(s) Superalloys; Vacancy defect; Atomic order; Atomic mobility; Monte Carlo Simulation; Electrical resistivity.
 
4. Description Abstract

Nickel-based superalloys are used for the manufacture of pieces evolving in hot parts of aircraft engines. They are constituted of a Ni3-Al long-range ordered intermetallic phase dispersed in a short-range order matrix corresponding to a nickel-based solid solution [1]. These materials have the particularity of having a high melting temperature, a relatively low density, a good resistance to oxidation and an extreme hardness [2]. Their performance strongly depends on the structural and dimensional stability (creep). They are therefore conditioned by atomic mobility and the properties of the vacancies. We proposed to study, a series of Nickel based alloys, presenting a short-range order and constituting the matrix' basis of these superalloys. In this work, the isothermal curves of electrical resistivity corresponding to ordering kinetics in a series of Ni-Al alloys, by the Monte Carlo method, were calculated up to the fourth neighbors. We have determined the migration enthalpies of the vacancy in these so-called alloys by the method of slope change [3].

 
5. Publisher Organizing agency, location
 
6. Contributor Sponsor(s)
 
7. Date (YYYY-MM-DD) 21-05-2019
 
8. Type Status & genre Peer-reviewed Article
 
8. Type Type
 
9. Format File format PDF
 
10. Identifier Uniform Resource Identifier https://revues.imist.ma/index.php/morjchem/article/view/16303
 
10. Identifier Digital Object Identifier (DOI) https://doi.org/10.48317/IMIST.PRSM/morjchem-v7i2.16303
 
11. Source Title; vol., no. (year) Moroccan Journal of Chemistry; Vol 7, No 2 (2019)
 
12. Language English=en en
 
13. Relation Supp. Files
 
14. Coverage Geo-spatial location, chronological period, research sample (gender, age, etc.)
 
15. Rights Copyright and permissions Copyright (c) 2019 Moroccan Journal of Chemistry