THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS

The use of low quality fuel in land based driven turbine in Saudi Arabia usually results in hot corrosion attack (Type 1) due to the penetration of V2O5 into the existing micro pores and cracks on the top coat of thermal barrier coatings (TBCs). As a result of dissolution-precipitation reaction, 4-5...

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Main Authors: ABBA ABDULHAMID ABUBAKAR, SYED SOHAIL AKHTAR
Format: Article
Language:English
Published: Taylor's University 2017-02-01
Series:Journal of Engineering Science and Technology
Subjects:
Online Access:http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_3.pdf
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spelling doaj-ea70431a1c82494f8a6ed0c93c41f0dc2020-11-24T20:49:12ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902017-02-01122318332THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGSABBA ABDULHAMID ABUBAKAR0SYED SOHAIL AKHTAR1Mechanical Engineering Department, King Fahd University of Petroleum & Minerals, Box 1094, 31261, Dhahran, Saudi ArabiaMechanical Engineering Department, King Fahd University of Petroleum & Minerals, Box 1094, 31261, Dhahran, Saudi ArabiaThe use of low quality fuel in land based driven turbine in Saudi Arabia usually results in hot corrosion attack (Type 1) due to the penetration of V2O5 into the existing micro pores and cracks on the top coat of thermal barrier coatings (TBCs). As a result of dissolution-precipitation reaction, 4-5% volumetric expansion of the coating occurs due to the tetragonal-to-monoclinic (destabilization) transformation of Zirconia. In the current work, a Phase Field Model that estimates the kinetics of micro-structural evolution during the diffusional tetragonal-to-monoclinic phase transformation in the Melt Infiltrated Reaction Zone of the top coat at 900ºC is developed. The model is sequentiallycoupled with constitutive model in order to determine the resulting stress field developed in the top coat. The results show that localized stresses are developed due to the Zirconia-destabilization transformation, and the stresses are found to be higher at the corners and curvatures formed by inter-lamella connection of the micro-pores and micro-cracks. http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_3.pdfPhase field modelMonoclinic phaseTetragonal phaseThermal barrier coatingMelt infiltrated reaction zone
collection DOAJ
language English
format Article
sources DOAJ
author ABBA ABDULHAMID ABUBAKAR
SYED SOHAIL AKHTAR
spellingShingle ABBA ABDULHAMID ABUBAKAR
SYED SOHAIL AKHTAR
THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
Journal of Engineering Science and Technology
Phase field model
Monoclinic phase
Tetragonal phase
Thermal barrier coating
Melt infiltrated reaction zone
author_facet ABBA ABDULHAMID ABUBAKAR
SYED SOHAIL AKHTAR
author_sort ABBA ABDULHAMID ABUBAKAR
title THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
title_short THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
title_full THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
title_fullStr THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
title_full_unstemmed THE EFFECT OF V2O5 MELT INFILTRATION ON THE FAILURE OF THERMAL BARRIER COATINGS
title_sort effect of v2o5 melt infiltration on the failure of thermal barrier coatings
publisher Taylor's University
series Journal of Engineering Science and Technology
issn 1823-4690
publishDate 2017-02-01
description The use of low quality fuel in land based driven turbine in Saudi Arabia usually results in hot corrosion attack (Type 1) due to the penetration of V2O5 into the existing micro pores and cracks on the top coat of thermal barrier coatings (TBCs). As a result of dissolution-precipitation reaction, 4-5% volumetric expansion of the coating occurs due to the tetragonal-to-monoclinic (destabilization) transformation of Zirconia. In the current work, a Phase Field Model that estimates the kinetics of micro-structural evolution during the diffusional tetragonal-to-monoclinic phase transformation in the Melt Infiltrated Reaction Zone of the top coat at 900ºC is developed. The model is sequentiallycoupled with constitutive model in order to determine the resulting stress field developed in the top coat. The results show that localized stresses are developed due to the Zirconia-destabilization transformation, and the stresses are found to be higher at the corners and curvatures formed by inter-lamella connection of the micro-pores and micro-cracks.
topic Phase field model
Monoclinic phase
Tetragonal phase
Thermal barrier coating
Melt infiltrated reaction zone
url http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_3.pdf
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