Transition from Small Crack to Large Crack on Creep-Fatigue Crack Propagation

Author:

Ohtani Ryuichi,Kitamura Takayuki,Tada Naoya,Iio Shinji

Publisher

Springer Netherlands

Reference11 articles.

1. Taira, S., Ohtani, R. and Komatsu, T., Application of J-Integral to High-Temperature Crack Propagation, Part II-Fatigue Crack Propagation. J. Engineering Materials and Technology, Trans. ASME, 1979, 101, pp. 162–167.

2. Ohtani, R., Substance of Creep-Fatigue Interaction Examined from the Point of View of a Crack Propagation Mechanics. In Low Cycle Fatigue and Elasto-Plastic Behavior of Materials, ed. K.-T. Rie, Elsevier, London, 1987, pp. 211–222.

3. Ohtani, R., Kitamura, T., Nitta, A. and Kuwabara, K., High-Temperature Low-Cycle Fatigue Crack Propagation and Life Laws of Smooth Specimens Derived from the Crack Propagation Laws. In Low Cycle Fatigue, ASTM STP 942, eds. H. D. Solomon, G. R. Halford, L. R. Kaisand and B.N. Leis, American Society of Testing and Materials, Philadelphia, 1988, pp. 1163–1180.

4. Ohtani, R. and Kitamura, T., Characterization of High Temperature Strength of Metals Based on the Mechanics of Crack Propagation. In High Temperature Creep-Fatigue, eds. R. Ohtani, M. Ohnami and T. Inoue, Elsevier, London, 1988, pp. 65–90.

5. Ohtani, R., Kinami, T. and Sakamoto, H., Small Crack Propagation in High Temperature Creep-Fatigue of 304 Stainless Steel. In Role of Fracture Mechanics in Modern Technology, eds. G. C. Sih, H. Nishitani and T. Ishida, North-Holland, Amsterdam, 1987, pp. 382–392.

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1. CREEP-FATIGUE INTERACTION UNDER HIGH-TEMPERATURE CONDITIONS;Handbook of Fatigue Crack Propagation in Metallic Structures;1994

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