PSI - Issue 13

Takehiro Shimada et al. / Procedia Structural Integrity 13 (2018) 1873–1878 Author name / Structural Integrity Procedia 00 (2018) 000 – 000

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Hales, R., 1983, A Method of Creep Damage Summation Based on Accumulated Strain for the Assessment of Creep-Fatigue Endurance, Journal of Fatigue of Engineering Materials and Structures, 6, 121-135. Ohno, N., Wang, J, D., 1993, Kinematic Hardening Rules with Critical State of Dynamic Recovery, Part Ⅰ : Formulation and Basic Features for Rachetting Behavior, International Journal of Plasticity, 9, 375-390 Ohno, N., Abdel-Karim, M. and Kobayashi, M., 1998, Ratchetting Characteristics of 316FR Steel at High Temperature, Part Ⅰ :Strain-Controlled Ratchetting experiments and simulations, International Journal of Plasticity, 14, 355-372 Ohno, N., Yamamoto, R., Sasaki, T. and Okumura, D., 2017, Resetting scheme for Plastic Strain Surface in Constitutive Modeling of Cyclic Plasticity, ZAMM - Journal of Applied Mathematics and Mechanics, 98, 518-531 Ohno, N., Sasaki, T., Shimada, T., Tokuda, K., Yoshida, K. and Okumura, D., 2018, Effect of Cyclic Hardening on Stress Relaxation in SUS316HTP Under Creep-Fatigue Loading at 700 ℃ : Experiments and Simulations, Journal of Theoretical and Applied Mechanics, 56, 497 510 Priest, R, H. and Ellison, E, G., 1981, A Combined Deformation Map-Ductility Exhaustion Approach to Creep-Farigue Analysis., Journal of materials Science and Engineering, 49, 7-17. RCC-MR, Design and Construction Rules for mechanical Components of FBR Nuclear Islands,2002, AFCEN, Paris Wen, J, F., Tu, S, T., Xuan, F, Z., Zhang, X, W. and Gao, X, L., 2016 Effects of Stress Level and Stress State on Creep Ductility: Evaluation of Different Models., Journal of Materials Science and Technology, 32, 695-704.

Fig. 5. Comparison of experimental number of cycles to failure and predicted number of cycles to failure based on; (a) time fraction rule, (b) ductile exhaustion method, (c) modified ductile exhaustion method.

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