Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model

Determination of interfacial adhesion energies of thermal barrier coatings is important for understanding failure mechanisms and predicting their lifetime. Combined compression test with a cohesive zone finite element model, it is shown that the interfacial adhesion energy is in the range of 100–130...

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Main Authors: Zhu, W., Yang, L., Guo, J., Zhou, Y., Lu, Chunsheng
Format: Journal Article
Published: Elsevier 2015
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/10106
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author Zhu, W.
Yang, L.
Guo, J.
Zhou, Y.
Lu, Chunsheng
author_facet Zhu, W.
Yang, L.
Guo, J.
Zhou, Y.
Lu, Chunsheng
author_sort Zhu, W.
building Curtin Institutional Repository
collection Online Access
description Determination of interfacial adhesion energies of thermal barrier coatings is important for understanding failure mechanisms and predicting their lifetime. Combined compression test with a cohesive zone finite element model, it is shown that the interfacial adhesion energy is in the range of 100–130 J/m2. Based on the nonlinear delamination theory, the critical interfacial adhesion energy of delamination is 120 J/m2 and the corresponding loading phase angle is -56°. With the increase of the half-length of the crack, the crack propagation tends to be steady with a steady-state interface energy release rate of 150 J/m2, and delamination experiences almost pure mode II. These results obtained from finite element simulations and theoretical analyses are in good agreement with the available values determined by other testing methods reported in the literatures, which confirms the validity of this method.
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institution Curtin University Malaysia
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publishDate 2015
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spelling curtin-20.500.11937-101062017-09-13T14:48:43Z Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model Zhu, W. Yang, L. Guo, J. Zhou, Y. Lu, Chunsheng Finite elements Mechanical testing Thermal barrier coatings Interfacial adhesion energy Delamination Determination of interfacial adhesion energies of thermal barrier coatings is important for understanding failure mechanisms and predicting their lifetime. Combined compression test with a cohesive zone finite element model, it is shown that the interfacial adhesion energy is in the range of 100–130 J/m2. Based on the nonlinear delamination theory, the critical interfacial adhesion energy of delamination is 120 J/m2 and the corresponding loading phase angle is -56°. With the increase of the half-length of the crack, the crack propagation tends to be steady with a steady-state interface energy release rate of 150 J/m2, and delamination experiences almost pure mode II. These results obtained from finite element simulations and theoretical analyses are in good agreement with the available values determined by other testing methods reported in the literatures, which confirms the validity of this method. 2015 Journal Article http://hdl.handle.net/20.500.11937/10106 10.1016/j.ijplas.2014.08.003 Elsevier restricted
spellingShingle Finite elements
Mechanical testing
Thermal barrier coatings
Interfacial adhesion energy
Delamination
Zhu, W.
Yang, L.
Guo, J.
Zhou, Y.
Lu, Chunsheng
Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title_full Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title_fullStr Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title_full_unstemmed Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title_short Determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
title_sort determination of interfacial adhesion energies of thermal barrier coatings by compression test combined with a cohesive zone finite element model
topic Finite elements
Mechanical testing
Thermal barrier coatings
Interfacial adhesion energy
Delamination
url http://hdl.handle.net/20.500.11937/10106