Fatigue Crack Growth at Electrical Resistance Welding Seam of API 5L X-70 Steel Line Pipe at Varied Orientations

Author:

Taylor Craig1,Das Sreekanta2,Collins Laurie3,Rashid Muhammad3

Affiliation:

1. Centre for Engineering Research in Pipelines (CERP), University of Windsor, Windsor, ON N9B 3P4, Canada e-mail:

2. Professor Mem. ASME Centre for Engineering Research in Pipelines (CERP), University of Windsor, Windsor, ON N9B 3P4, Canada e-mail:

3. EVRAZ North America, Regina, SK S4P 3C7, Canada e-mail:

Abstract

Very few studies have been conducted concerning fatigue in steel line pipe and fewer using full-scale testing. Further, at the time of this study, no research on full-scale testing was available in open literature regarding fatigue behavior of line pipe with longitudinal cracks, despite being considered more critical than the line pipe with cracks oriented in the circumferential direction. In the current research work, fatigue crack growth was investigated in NPS 20, API 5L X-70 grade, electrical resistance welding (ERW) straight-seam steel line pipes in the base metal and at the weld seam for various orientations. It was found that there was no significant difference between fatigue crack growth in the base metal and at the weld seam for the tested stress ratio. Increasing the angle of inclination of the crack with respect to the weld line was found to decrease the rate of fatigue crack growth due to a decrease in the mode I stress component. Finally, it was observed that despite the difference in fatigue crack growth rates, the crack aspect ratios were nearly identical for all cracks at the same crack depth.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference33 articles.

1. Pipeline Investigation Report P01H004;TSB,2001

2. Rupture of Enbridge Pipeline and Release of Crude Oil Near Cohasset, Minnesota;NTSB,2004

3. Enbridge Incorporated Hazardous Liquid Pipeline Rupture and Release, Marshall, Michigan;NTSB,2010

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