Effect of Prestrain on Tensile and Fracture Toughness Properties of Line Pipes

Author:

Fukuda Naoki1,Hagiwara Naoto1,Masuda Tomoki1

Affiliation:

1. Pipeline Technology Center, Tokyo Gas Co., Ltd., 1-7-7, Suehiro-cho, Tsurumi-ku, Yokohama, 230-0045, Japan Tel: 81-45-505-7309 Fax: 81-45-521-1451

Abstract

To investigate the mechanical properties of pipeline subjected to plastic deformation, tensile tests and crack-tip-opening displacement (CTOD) tests were conducted on X60, X65, and X80 line pipe steels with uniaxial tensile or compressive prestrain, εpr. The tensile tests revealed that the Bauschinger effect and work hardening were dependent on the yield-to-tensile ratio (Y∕T) of the steels; the change in yield stress due to prestrain linearly depended on the Y∕T of the base metal. A critical CTOD for crack initiation decreased with increasing ∣εpr∣. Compressive prestrain had a larger effect on the reduction of the critical CTOD than tensile prestrain. The test results showed that the reduction in the critical CTOD due to tensile prestrain was predictable with a simplified theoretical model employing a critical fracture strain of the base metal.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference9 articles.

1. Interaction Between the Bauschinger Effect and Strain Aging;Williams;Metall. Trans. A

2. Experimental and Analytical Study of Cold Bending Process for Pipelines;Fududa;ASME J. Offshore Mech. Arct. Eng.

3. Prediction of Inelastic Crack Growth in Ductile Line Pipe Materials;Leis

4. Effects of Prestrain of Fracture Toughness and Fatigue-Crack Growth of Line Pipe Steels;Hagiwara;ASME J. Pressure Vessel Technol.

5. An experimental Study of the Effect of Pre-strain on the Fracture Toughness of Line Pipe Steel;Cosham

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