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Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)

The adhesion of the scale formed on Nb-silicide based alloys at 1473 K improves when Al and Sn are in synergy with Si and Ti. This improvement is observed when there is segregation of Sn in the microstructure below the alloy/scale interface and a layer rich in intermetallics that include TM(5)Sn(2)X...

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Autores principales: Papadimitriou, Ioannis, Utton, Claire, Tsakiropoulos, Panos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6804048/
https://www.ncbi.nlm.nih.gov/pubmed/31581432
http://dx.doi.org/10.3390/ma12193217
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author Papadimitriou, Ioannis
Utton, Claire
Tsakiropoulos, Panos
author_facet Papadimitriou, Ioannis
Utton, Claire
Tsakiropoulos, Panos
author_sort Papadimitriou, Ioannis
collection PubMed
description The adhesion of the scale formed on Nb-silicide based alloys at 1473 K improves when Al and Sn are in synergy with Si and Ti. This improvement is observed when there is segregation of Sn in the microstructure below the alloy/scale interface and a layer rich in intermetallics that include TM(5)Sn(2)X compounds is formed at the interface. Data for the ternary compounds is scarce. In this paper elastic and thermodynamic properties of the Nb(5)Sn(2)Al, Ti(5)Sn(2)Si, Ti(5)Sn(2)Al and Nb(5)Sn(2)Si compounds were studied using the first-principles, pseudopotential plane-wave method based on density functional theory. The enthalpy of formation of the ternary intermetallics was calculated using the quasi-harmonic approximation. The calculations suggest that the Nb(5)Sn(2)Si is the stiffest; that the Nb(5)Sn(2)Al and Ti(5)Sn(2)Si are the most and less ductile phases respectively; and that Nb significantly increases the bulk, shear and elastic moduli of the ternary compound compared with Ti.
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spelling pubmed-68040482019-11-18 Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si) Papadimitriou, Ioannis Utton, Claire Tsakiropoulos, Panos Materials (Basel) Article The adhesion of the scale formed on Nb-silicide based alloys at 1473 K improves when Al and Sn are in synergy with Si and Ti. This improvement is observed when there is segregation of Sn in the microstructure below the alloy/scale interface and a layer rich in intermetallics that include TM(5)Sn(2)X compounds is formed at the interface. Data for the ternary compounds is scarce. In this paper elastic and thermodynamic properties of the Nb(5)Sn(2)Al, Ti(5)Sn(2)Si, Ti(5)Sn(2)Al and Nb(5)Sn(2)Si compounds were studied using the first-principles, pseudopotential plane-wave method based on density functional theory. The enthalpy of formation of the ternary intermetallics was calculated using the quasi-harmonic approximation. The calculations suggest that the Nb(5)Sn(2)Si is the stiffest; that the Nb(5)Sn(2)Al and Ti(5)Sn(2)Si are the most and less ductile phases respectively; and that Nb significantly increases the bulk, shear and elastic moduli of the ternary compound compared with Ti. MDPI 2019-10-01 /pmc/articles/PMC6804048/ /pubmed/31581432 http://dx.doi.org/10.3390/ma12193217 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Papadimitriou, Ioannis
Utton, Claire
Tsakiropoulos, Panos
Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title_full Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title_fullStr Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title_full_unstemmed Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title_short Ab Initio Study of Ternary W(5)Si(3) Type TM(5)Sn(2)X Compounds (TM = Nb, Ti and X = Al, Si)
title_sort ab initio study of ternary w(5)si(3) type tm(5)sn(2)x compounds (tm = nb, ti and x = al, si)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6804048/
https://www.ncbi.nlm.nih.gov/pubmed/31581432
http://dx.doi.org/10.3390/ma12193217
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