In Situ Observation of Creep and Fatigue Failure Behavior for Plasma-Sprayed Thermal Barrier Coating Systems

Author:

TAKAHASHI Satoru1,HARADA Yoshio2

Affiliation:

1. Department of Mechanical Engineering, Graduate School of Science and Engineering, Tokyo Metropolitan University

2. Thermal Spraying Technology R & D Laboratory, Tocalo Co., Ltd.

Publisher

Japan Society of Mechanical Engineers

Reference12 articles.

1. Directions of the development of thermal barrier coatings in energy applications

2. (2) Yoshioka, Y., Doi, H., Takeda, J., Namba, K., Okada, I., Take, K. and Ito, T., Materials Technology of Heavy-Duty Gas Turbine, Gas Turbine Society of Japan, Vol.32, No.3 (2004), pp130-173 (in Japanese).

3. (3) Wright, I.G. and Gibbons, T.B., Recent Developments in Gas Turbine Materials and Technology and Their Implications for Syngas Firing, International Journal of Hydrogen Energy, Vol.32 (2007), pp. 3610-3612.

4. (4) Mechanical Performance of Advanced Materials, Annual Report 95, Joint Research Centre, EC, (1995), p.4.

5. (5) Tzimas, E., Mullejans, H., Peteves, S. D, Bressers, J. and Stamm, W., Failure of Thermal Barrier Coating Systems under Cyclic Thermomechanical Loading, Acta Materialia, Vol.48, No.18-19 (2000), pp. 4699-4707.

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