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Article cité :

Simulation of failure of air plasma sprayed thermal barrier coating due to interfacial and bulk cracks using surface-based cohesive interaction and extended finite element method

ST Kyaw, IA Jones and TH Hyde
The Journal of Strain Analysis for Engineering Design 51 (2) 132 (2016)
https://doi.org/10.1177/0309324715615746

Study on Stress Development in the Phase Transition Layer of Thermal Barrier Coatings

Yijun Chai, Chen Lin, Xian Wang and Yueming Li
Materials 9 (9) 773 (2016)
https://doi.org/10.3390/ma9090773

Predicting failure within TBC system: Finite element simulation of stress within TBC system as affected by sintering of APS TBC, geometry of substrate and creep of TGO

Si Kyaw, Arthur Jones and Tom Hyde
Engineering Failure Analysis 27 150 (2013)
https://doi.org/10.1016/j.engfailanal.2012.07.005

Modelling the high temperature behaviour of TBCs using sequentially coupled microstructural–mechanical FE analyses

U. Hermosilla, M.S.A. Karunaratne, I.A. Jones, T.H. Hyde and R.C. Thomson
Materials Science and Engineering: A 513-514 302 (2009)
https://doi.org/10.1016/j.msea.2009.02.006

A mechanistic study of oxidation-induced degradation in a plasma-sprayed thermal barrier coating system.

E.P. Busso, J. Lin, S. Sakurai and M. Nakayama
Acta Materialia 49 (9) 1515 (2001)
https://doi.org/10.1016/S1359-6454(01)00060-X

Investigation by 3D FE simulations of delamination crack initiation in TBC caused by alumina growth

M. Jinnestrand and S. Sjöström
Surface and Coatings Technology 135 (2-3) 188 (2001)
https://doi.org/10.1016/S0257-8972(00)01084-7