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Volcanic Ash Degradation on Thermal Barrier Coatings

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Volcanic Ash Degradation on Thermal Barrier Coatings ( volcanic-ash-degradation-thermal-barrier-coatings )

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References [1] D.R. Clarke, C.G. Levi. Materials design for the next generation thermal barrier coatings. Annual Review of Materials Research. 2003;33:383-417. [2] T.M. Pollock, S. Tin. Nickel-based superalloys for advanced turbine engines: chemistry, microstructure, and properties. Journal of Propulsion and Power. 2006;22(2):361-374 [3] A.G. Evans, D.R. Mumm, J.W. Hutchinson, G.H. Meier, F.S. Pettit. Mechanisms controlling the durability of thermal barrier coatings. Progress in Materials Science. 2001;46(5):505-553. [4] W. Beele, G. Marijinissen, A. Van Lieshout. The evolution of thermal barrier coatings. Surface & Coating technology. 1999;120-121:61-67 [5] M. Betteridge M, S.W.S. Shaw. Development of superalloy. Materials Science and Technology. 1987;3:682-694 [6] R.A. Miller. Current status of thermal barrier coatings- An overview. Surface & Coating technology. 1987;30:1-11 [7] N.P. Padture, M. Gell, E.H. Jordan. Thermal barrier coatings for gas-turbine engine applications. Science. 2002;296(5566):280-284. [8] A.G. Evans, M.Y. He, J.W. Hutchinson. Mechanics-based scaling laws for the durability of thermal barrier coatings. Progress in Materials Science. 2001;46(3-4):249-271. [9] N.P. Padture, M. Gell, E.H. Jordan. Thermal barrier coatings for gas-turbine engine applications. Science. 2002;296(5566):280-284 [10] M.S.A. Karunaratne, C.M.F. Rae, R.C. Reed. On the microstructural REFERENCES Page 94

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