Behavior of surface crack in plates subjected to tensile loads: Analysis based on fully plastic solutions

Author:

Yagawa G.,Ueda H.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference17 articles.

1. Leak before break considerations for LMFBR structures, E5/6;Grüter,1985

2. Ductile fracture of pipes and cylindrical containers with a circumferential flaw;Erdogan;Trans. ASME, J. of Press. Vessel Technol.,1981

3. Ligament yielding of a plate with semi-elliptical surface cracks under uniform tension;Mattheck;Internat. J. of Press. Vessels and Piping,1984

4. A plastic fracture instability analysis of wall breakthrough in a circumferentially cracked pipe subjected to bending loads;Zahoor;Trans. ASME, J. of Engrg. Mater. and Technol.,1981

5. The inelastic line-spring: estimates of elastic-plastic fracture mechanics parameters for surface-cracked plates and shells;Parks;Trans. ASME, J. of Press. Vessel Technol.,1981

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1. A benchmark elastic–plastic finite element analysis of plate with a surface crack under tensile load for the development of the reference stress method;International Journal of Pressure Vessels and Piping;2024-06

2. Analytical flaw assessment;Engineering Fracture Mechanics;2018-01

3. Crack Driving Force Estimation Methods;Comprehensive Structural Integrity;2003

4. Leak before Break;Comprehensive Structural Integrity;2003

5. Basic principles of analytical flaw assessment methods;International Journal of Pressure Vessels and Piping;2000-12

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