By Uwe Schulz, Hua-Tay Lin, Jonathan Salem, Dongming Zhu
Papers from the yank Ceramic Society's thirty first foreign convention on complex Ceramics and Composites, held in Daytona seashore, Florida, January 21-26, 2007. specializes in contemporary advances in coating improvement, processing, structural layout, microstructure and estate characterization, and lifestyles prediction.Content:
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Additional resources for Advanced Ceramic Coatings and Interfaces II: Ceramic and Engineering Science Proceedings, Volume 28, Issue 3
Sci. 13, 1464-70(1978) Advanced Ceramic Coatings and Interfaces II · 51 Advanced Ceramic Coatings and Interfaces 11 Edited by Uwe Schulz and Hua-Tay Lin Copyright O 2008 The American Ceramic Society THERMAL IMAGING CHARACTERIZATION OF THERMAL BARRIER COATINGS J. G.
This result indicates a lower temperature capability of the hafnate compared to the zirconate materials. At lower surface temperatures (< 1300°C) the double layer systems made of YSZ/La2Zr207 perform similar as the YSZ coatings. Failure is then related to crack growth within the ceramic close to the bondcoat which is induced by the growth of the so-called thermally grown oxide (TGO) on top of the bondcoat. Here for both types of coatings a YSZ layer is present leading to similar performance data.
A. Gedwill, Evaluation of the Hot Corrosion Behaviour of Thermal Barrier Coatings Thin Solid Films, 73,447-453 (1980). 18 I. Zaplatynsky, Performance of Laser-Glazed Zirconia Thermal Barrier Coatings in Clyclic Oxidation and Corrosion Burner Rig Tests, Thin Solid Films, 95, 275-284 (1982). 19 P. Kofstad, High Temperature Corrosion, Elsevier Appi. , London, 1988. 20 R. Vaßen, D. Sebold, G. Pracht, D. Stöver, Corrosion rig testing of thermal barrier coating systems, on the 30"' Int. Cocoa Beach Conf.