Published August 1989 | Version v1
Journal article

The fatigue life and fatigue-crack-through-thickness behavior of a surface-cracked plate, 3

  • 1. Yokohama National Univ. (Japan)

Description

The LBB (leak-before-break) design is one of the most important subjects for the evaluation and the assurance of safety in pressure vessels, piping systems, LNG carriers and various other structures. In the LBB design, it is necessary to evaluate precisely the lifetime of steel plate. Furthermore, the change in crack shape that occurs during the propagation after through thickness is of paramount importance. For this reason, in a previous report, the authors proposed a simplified evaluation model for the stress intensity factor after cracking through thickness. Using this model, the crack propagation behavior, crack-opening displacement and crack shape change of surface-cracked smooth specimens and surface-cracked specimens with a stress concentration were evaluated quantitatively. The present study was also done to investigate the fatigue crack propagation behavior of surface cracks subjected to combined tensile and bending stress. Estimation of fatigue crack growth was done using the Newman-Raju formula before through thickness, and using formula (7) and (8) after through thickness. Crack length ar at just through thickness increases with increasing a bending stress. Calculated fatigue crack shape showed very good agreement with experimental one. It was also found that particular crack growth behavior and change in crack shape after cracking through thickness can be explained quantitatively using the K value based on Eqs. (7) and (8). (author)

Additional details

Additional titles

Subtitle (English)
In the case of combined tensile and bending stress

Publishing Information

Journal Title
Nippon Kikai Gakkai Ronbunshu, A Hen
Journal Volume
55
Journal Issue
516
Series
Nippon Kikai Gakkai Ronbunshu, A Hen.
Journal Page Range
1740-1747
ISSN
0387-5008
CODEN
NKGAD