Creep-Fatigue Interaction on Small Crack Propagation in a Single Crystal Superalloy under Thermomechanical Fatigue Condition

Author:

YAMAZAKI Yasuhiro1,OMIYA Yuta2

Affiliation:

1. School of Engineering, Chiba Univ.

2. Graduate School of Science and Engineering, Chiba Univ. (Currently Tokyo Electron)

Publisher

Society of Materials Science, Japan

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference32 articles.

1. 1) K. Abudu, U. Igie, I. Roumeliotis and R. Hamilton, “Impact of gas turbine flexibility improvements on combined cycle gas turbine performance”, Applied Thermal Engineering, Vol. 189, 116703 (2021).

2. 2) N . Nguyen and J. Mitra, “An investigation into the role of gas turbines in supporting renewable energy integration”, 2018 North American Power Symposium (NAPS) (2018).

3. 3) TG. Isaiah, S. Dabbashi, D. Bosak, S. Sampath, G. Di Lorenzo and P. Pilidis, “Life analysis of industrial gas turbines used as a back-up to renewable energy sources”, Procedia CIRP, Vol. 38. pp. 239-244 (2015).

4. 4) K. Oyama, Y. Kamata and R. Matsumura, “About GTCC operation status and efforts to improve proof stress”, Journal of the Turbine Society of Japan, Vol. 49, pp. 414-420 (2021).

5. 5) A. Ito and D. Kobayashi, “Degradation evaluation of 1300°C-class 1st-stage gas turbine blades after long-term service”, Proceedings of International Gas Turbine Congress 2015 Tokyo, pp. 614-619 (2015).

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