An Equivalent Creep Crack Growth Model for Probabilistic Life Prediction of Plastic Pipe Materials

Author:

Wang Yuhao1,Peng Tishun2,Lever Ernest2,Liu Yongming1

Affiliation:

1. School for Engineering of Matter, Transport and Energy, Arizona State University, 501 E Tyler Mall, ECG 301, Tempe, AZ 85287

2. Infrastructure Sector, Gas Technology Institute, 1700 S. Mount Prospect Road, Des Plaines, IL 60018-1804

Abstract

Abstract Life prediction in energy infrastructure such as gas pipelines is important to maintain the integrity of such systems. This paper explores a life prediction model for polyethylene materials in natural gas distribution pipelines under creep damage. The model uses a power law equation to describe the crack growth rate and an asymptotic solution for the stress intensity factor (SIF) calculation considering local geometry variations. The SIF solution considers the effect of stress concentration introduced by common damages in pipes such as rock impingement and slit. An effective initial crack size model is proposed for the life prediction of plastic pipes considering the intrinsic initial defect. Large loading-induced plastic deformation is included by a correction factor in the crack growth model. The model is calibrated and validated using experimental data on Aldyl-A pipes with different types of damage. Due to the stochastic nature of the crack growth process, uncertainty quantification is performed, and Monte Carlo (MC) simulation is used to estimate the failure probability. The predicted probabilistic life distributions under different loading conditions are compared with the experimental data. Some conclusions and future work are drawn based on the proposed study and experimental validation.

Funder

DOT-PHMSA

Publisher

ASME International

Subject

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

Reference22 articles.

1. Viscoelastic Creep Crack Growth: A Review of Fracture Mechanical Analyses;Mech. Time-Depend. Mater.,1997

2. Failure Investigation Report—Chevron Coahoma LPG Loop,2012

3. Failure Investigation Report—Williams Partners L.P./Transco 24, Leidy Line B Failure,2016

4. A Test for Slow Crack Growth Failure in Polyethylene Under a Constant Load;Polym. Test.,1992

5. Plastic Pipe Failure, Risk, and Threat Analysis,2009

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