Advanced Ceramic Coatings and Materials for Extreme

Exploring complex ceramic coatings and ultra-high temperature ceramic fabrics, this factor brings readers up to date with vital new and rising findings, fabrics, and purposes. the 19 papers during this factor originate from symposia and one concentrated consultation held in January 2012, through the thirty sixth overseas convention on complicated Ceramics and Composites (ICACC). With contributions from prime ceramics and fabrics researchers from world wide, this factor explores the newest advances and key demanding situations in complex thermal and environmental coating processing and characterizations, complex put on corrosion-resistant, nanocomposite, and multi-functional coatings, thermal defense structures, and more.

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X. Chen, R. Wang, N. Yao, A. G. Evans, J. W. Hutchinson, R. W. Bruce, "Foreign Object Damage in a Thermal Barrier Systems: Mechanism and Simulations," Mater. Sei. , A352 221-231(2003). 38. A. G. Evans, N. A. Fleck, S. Faulhaber, N. Vermaak, M. Maloney, R. Darolia, "Scaling Laws Governing the Erosion and Impact Resistance of Thermal Barrier Coatings," Wear, 260 886894 (2006). 39. J. R. Nicholls, Y. Jaslier, D. S. Rickerby, "Erosion and Foreign Object Damage of Thermal Barrier Coatings," Material Science Forum, 251 [1-2] 935-948 (1997).

Figari, Microstructure and heat transfer phenomena in ceramic Thermal Barrier Coatings, J. Am. Ceram Soc. 84[4], 827 - 835, (2001). 8. R. Vaßen, M. F. Waheed, D. L. Lugscheider, C C . ), Tagungsband Conference Proceedings, Proceedings of International Thermal Spray Conference, Essen, Germany, 2002, DVS, Germany, 2002, pp. 879-883. 9. Tabakoff W. Investigation of coatings at high temperature for use in turbomachinery. Surf Coat Technol m9;30/40:91-\\5. 10. ASTM G76 - 95 Standard Test Method for "Conducting Erosion Test by Solid Particle Impingement Using Gas Jets".

50 • Advanced Ceramic Coatings and Materials for Extreme Environments II Effect of Hard Thin Film Coatings on Tribochemical Film Behavior Figure 3: Friction coefficient variation with time for the different coatings and uncoated steel substrate with lubricant A. Figure 4 shows the frictional behavior for different coatings and uncoated steel substrate tested with fully formulated synthetic lubricant B. Friction showed only a slight decrease after a run-in (1015 minutes) and similar friction behavior was observed for all the coatings and uncoated steel substrate after the run-in period.

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