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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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Thermal-gradient testing of thermal barrier coatings under simultaneous attack by molten glassy deposits and its mitigation. Surface and Coatings Technology. 2010;204(16-17):2683-2688 [52] R. Vassen, X. Cao, F. Tietz, D. Basu, D. Stöver. Zirconates as new materials for thermal barrier coatings. Journal of the American Ceramic Society. 2000;83(8):2023-2028 [53] S. Krämer, J. Yang, C.G. Levi. Infiltration-inhibiting reaction of gadolinium zirconate thermal barrier coatings with CMAS melts. Journal of the American Ceramic Society. 2008;91(2):576-583 [54] S. Sampath, H. Herman. Rapid solidification and microstructure development during plasma spray deposition. Journal of Thermal Spray Technology. 1996;5(4):445-456 [55] X. Zhou, V. Shukla, W.R. Cannon, B.H. Kear. Metastable phase formation in plasma-sprayed ZrO2 (Y2O3)-Al2O3. Journal of the American Ceramic Society. 2003;86(8):1415-1420 [56] M.J. Maloney. A ceramic surface coatings has a cubic pyrochlore structure. U.S. Patent. 2000, No:6117560 [57] M.J. Maloney. Thermal Barrier Coating Systems and Materials. U.S. Patent. 2001, No:6177200 [58] Subramanian. Thermal Barrier Coating Having High Phase Stability. U.S. Patent 2001, No:6258467 [59] S.M. Lakiza, O. Fabrichnaya, C. Wang, M. Zinkevich, F. Aldinger. Phase diagram of the ZrO2–Gd2O3–Al2O3 system. Journal of the European Ceramic Society. 2006;26:233–246. [60] S. Kramer, J. Yang, C.J. Levi. Infiltration-Inhibiting Reaction of Gadolinium REFERENCES Page 100

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