レーザを用いた急速熱サイクル試験によるTBCの損傷過程
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Published in | 日本機械学会論文集 Vol. 86; no. 883; p. 19-00426 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本機械学会
2020
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Author | 樋口, 毅 水津, 竜夫 伊藤, 潔洋 荒井, 正行 林, 勇佑 鈴木, 健斗 |
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References | Mauget, F., Hamon, F., Morisset, M., Cormier, J., Riallant, F. and Mendez, J., Damage mechanisms in an EB-PVD thermal barrier coating system during TMF and TGMF testing conditions under combustion environment, International Journal of Fatigue, Vol.99 (2017), pp.225-234. Itoh, Y., Basic study of sintering behavior of zirconia thermal barrier coating, Journal of the Society of Materials Science, Japan, Vol.47, No.7 (1998), pp.672-677 (in Japanese). Takahashi, S., Test method of soundness of thermal barrier coating -thermal cycle and thermal shock-, Journal of the Surface Finishing Society of Japan, Vol.64, No.5 (2013), pp.285-289 (in Japanese). Ishizaka, K., Saitoh, K., Ito, E., Yuri, M. and Masada J., Key technologies for 1700°C class ultra high temperature gasturbine, Mitsubishi Heavy Industries Technical Review Vol.54, No.3 (2017) (in Japanese). Yanar, N. M., Helminiak, M., Meier, G. H. and Pettit, F. S., Comparison of the failures during cyclic oxidation of yttria-stabilized zirconia thermal barrier coatings fabricated via electron beam physical vapor deposition and air plasma spray, Metallurgical and Materials Transactions A, Vol.42, No.4 (2011), pp.905-921. Yang, L., Zhou, Y. C. and Lu, C., Damage evolution and rupture time prediction in thermal barrier coatings subjected to cyclic heating and cooling: An acoustic emission method, Acta Materialia, Vol.59 (2011), pp.6519-6529. Yamagishi, S., Okazaki, M., Subramanian, R., Nomura, R. and Fukanuma, H., Development of a new material test system in a simulated gas turbine combustion atmosphere, Journal of the Society of Materials Science, Japan, Vol.62, No.2 (2013), pp.143-148 (in Japanese). Witz, G., Staerk, K. F., Maggi, C. M., Krasselt, U. and Bossmann, H.P., Burner rig testing of thermal barrier coatings for lifetime prediction, Proceedings of ASME Turbo Expo 2014 (2014), Paper No. GT2014-25372. Jian, C.Y., Hashida, T., Takahashi, H. and Saito, M., Thermal shock and fatigue resistance evaluation of functionally graded coating for gas turbine blades by laser heating method, Composites Engineering, Vol.5, No.7 (1995), pp.879-889. Kumakawa, A., Kawasaki, A. and Ono, F., Method of cyclic heating for thermal-barrier coating under temperature gradient, Journal of the Surface Finishing Society of Japan, Vol.64, No.5 (2013), pp.290-295 (in Japanese). Hayashi, K., Yoneyama, M. and Okamoto, Y., Mechanical properties of MoSiM2/ZrO2 composites at room temperature, Journal of the Ceramic Society of Japan, Vol.104, No.6 (1996), pp.550-555. Fujii, T. and Takahashi, T., Estimation of thermophysical properties of coating layers for gas turbine hot parts-Part4:Thermal barrier performance change of TBC in equivalent GT condition and prediction of actual operating temperature-, Central Research Institute of Electric Power Industry Research report, W00016 (2001) (in Japanese). |
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SubjectTerms | Acoustic emission Cracking Gas turbine Laser irradiation Thermal barrier coatings |
Title | レーザを用いた急速熱サイクル試験によるTBCの損傷過程 |
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