Development and Life Prediction of Erosion Resistant Turbine Low Conductivity Thermal Barrier Coatings

VFS-F65-000207

5/27/2009

Authors
Abstract
Content

Future rotorcraft propulsion systems are required to operate under highly-loaded conditions and in harsh sand erosion environments, thereby imposing significant material design and durability issues. The incorporation of advanced thermal barrier coatings (TBCs) in high pressure turbine systems enables engine designs with higher inlet temperatures, thus improving the engine efficiency, power density and reliability. The impact and erosion resistance of turbine thermal barrier coating systems are crucial to the turbine coating technology application, because a robust turbine blade TBC system is a prerequisite for fully utilizing the potential coating technology benefit in the rotorcraft propulsion. This paper describes the turbine blade TBC development in addressing the coating impact and erosion resistance. Advanced thermal barrier coating systems with improved performance have also been validated in laboratory simulated engine erosion and/or thermal gradient environments. A preliminary life prediction modeling approach to emphasize the turbine blade coating erosion is also presented.

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DOI
https://doi.org/10.4050/VFS-F65-000207
Citation
Zhu, D., Miller, R., and Kuczmarski, M., "Development and Life Prediction of Erosion Resistant Turbine Low Conductivity Thermal Barrier Coatings," AHS 65th Annual Forum, Grapevine, Texas, May 27-29, 2009, Grapevine, Texas, May 27, 2009, https://doi.org/10.4050/VFS-F65-000207.
Additional Details
Publisher
Published
5/27/2009
Product Code
VFS-F65-000207
Content Type
Technical Paper
Language
English