Study on Fracture Modeling to Predict Brittle Fracture Resistance under Mixed Mode Loading

Author:

SHIMIZU Kazuma1,SHOJI Hiroto1,KATO Taichiro2,TANIGAWA Hiroyasu2,OHATA Mitsuru1

Affiliation:

1. Graduate school of Engineering, Osaka University

2. National Institutes for Quantum and Radiological Science and Technology

Publisher

Japan Welding Society

Subject

Metals and Alloys,Surfaces, Coatings and Films,Mechanical Engineering,Mechanics of Materials

Reference19 articles.

1. 1) Fumiyoshi Minami and Mitsuru Ohata: Constraint assessment of brittle fracture of steel components, ISO 27306 vs. FITNET FFS, Engineering Fracture Mechanics, 84 (2012), 67-82.

2. 2) Mitsuru Ohata and Fumiyoshi Minami: Equivalent CTOD Ratio β for Engineering Assessment of CTOD Correction for Constraint Loss, Journal of Pressure Vessel Technology, 134 (2012) 051403-1-51403-8.

3. 3) F. Minami, M. Ohata, M. Toyoda: T. Tanaka, K. Arimochi, Alan G. Glover and Tom H. North: Fracture Toughness Requirement for Fracture Performance Evaluation of Welded Joints Based on the Local Approach, Mis-Matching of Interfaces and Welds, Edited by K.-H. Schwalbe and M. Koçak, GKSS Research Center Publications (1997), 269-280.

4. 4) F. Minami, T. Hashida, M. Toyoda, J. Morikawa, T. Ohmura, K. Arimochi, and N. Konda: Dynamic Fracture Toughness Evaluation of Structural Steels Based on the Local Approach, Journal of the Society of Naval Architects of Japan, 84 (1998), 453-464. (in Japanese)

5. 5) M Toyoda, F Minami, C Ruggieri, K Bessyo, K Arimochi, and S Suzuki: Fracture toughness measurement for fracture performance evaluation of weldments - significance of shallow notch CTOD test, Welding International, 8-4 (1994), 279-285.

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