New engineering J-estimation schemes for complex cracked pipes based on energy equivalence concept

Author:

Park Seung-Hyun,Lee Sangmin,Brust Frederick W.,Huh Nam-Su

Funder

Seoul National University of Science and Technology

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference26 articles.

1. Pipe Crack Study Group. Investigation and evaluation of stress-corrosion cracking in piping of light water reactor plant. U.S.NRC, NUREG-0531; 1979.

2. Kramer G, Papaspyropoulos V. An assessment of circumferentially complex-cracked pipe subject to bending. U.S.NRC, NUREC/CR-4687, BMI-2142; 1986.

3. Zahoor A, Wilkowski GM, Abou-Sayed I, Marschall C, Broek D, Sampath S, Rhee H, Ahmad J. Instability predictions for circumferentially cracked type-304 stainless steel pipes under dynamic loading. EPRI, EPRI Final Report NP-2347-V2; 1982.

4. Pan J, Wilkowski GM. CSNI special meeting on leak-before-break in nuclear reactor piping. U.S.NRC, NUREG/CP-0051, CSNI Report No.82; 1983.

5. Hays RA, Vassilaros MG, Gudas JP. Fracture analysis of welded type 304 stainless steel pipe: J-R curve characterization and limit load analysis. U.S.NRC, NUREG/CR-4538 Vol.1; 1986.

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