Influence of Yield-to-Tensile Strength Ratio on Failure Assessment of Corroded Pipelines

Author:

Zhu Xian-Kui,Leis Brian N.12

Affiliation:

1. 614-458-4387

2. Battelle Memorial Institute, 505 King Avenue, Columbus, Ohio 43201

Abstract

This paper investigates the influence of yield-to-tensile strength ratio (Y∕T) on failure pressure of pipelines without and with corrosion defects. Based on deformation instability and finite strain theory, a plastic collapse model for end-capped defect-free pipes is developed. The stress-strain response of materials is characterized by a power-law hardening curve, and the plastic deformation obeys the von Mises yield criterion and the deformation theory of plasticity. Two formulas to estimate the strain hardening exponent n for a specific Y∕T are obtained, and a closed-form solution to the limit pressure of pipes is derived as a function of Y∕T. This plastic collapse model is then extended to predict the failure pressure of pipelines with corrosion defects. Numerical and experimental comparisons are presented that validate the present models which characterize the influence of Y∕T on the failure behavior of pipeline.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference20 articles.

1. Implications of the Yield Stress∕Tensile Stress Ratio to the SINTAP Failure Assessment Diagrams for Homogeneous Materials;Bannister;Eng. Fract. Mech.

2. Y∕T Significance in Line Pipe;Maxey

3. The Influence of the Yield-to-Tensile Ratio on Pipeline Behaviour—A Literature Survey;Sloterdijk

4. The Influence of the Yield-to-Tensile Ratio on Deformation Controlled Pipeline Behaviour;Sloterdijk

5. American Society of Mechanical Engineers, 1984, “Manual for Determining the Remaining Strength of Corroded Pipelines,” ASME B31G-1984, New York.

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