Evaluation of multiaxial low cycle fatigue life under non-proportional loading considering effect of mean strain (Loading simulated thermal fatigue due to temperature fluctuation in junction piping)

Author:

MORISHITA Takahiro1,ITOH Takamoto1,KASAHARA Naoto2

Affiliation:

1. Department of Mechanical Engineering, College of Science & Engineering, Ritsumeikan University

2. Department of Nuclear Engineering and Management, School of Engineering, University of Tokyo

Publisher

Japan Society of Mechanical Engineers

Reference18 articles.

1. Bolchoun, A., Wiebesiek, J., Kaufmann, H. and Sonsino, C.M., Application of stress-based multiaxial fatigue criteria for laserbeam-welded thin aluminium joints under proportional and non-proportional variable amplitude loadings, Theoretical and Applied Fracture Mechanics, Vol.73 (2014), pp.9–16.

2. Brown, M.W. and Wang, C.H., A path-independent parameter for fatigue under proportional and non-proportional loading, Fatigue & Fracture of Engineering Materials & Structures, Vol.16, No.12 (1993), pp.1285−1298.

3. Doong, S.H., Socie, D.F. and Robertson, I.M., Dislocation substructures and nonproportional hardening, Journal of Engineering Materials and Technology, Vol.112, No.4 (1990), pp.456−465.

4. Fatemi, A. and Socie, D.F., A critical plane approach to multiaxial fatigue damage including out-of-phase loading, Fatigue & Fracture of Engineering Materials & Structures, Vol.11 (1988), pp.149−165.

5. Igarashi, M., Kamide, H., Tanaka, M. and Kimura, N., Study on temperature fluctuation characteristics for high cycle thermal fatigue in a mixing tee, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol.70, No.700 (2004), pp.3150–3157 (in Japanese).

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