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Fracture mechanics testing and crack propagation modelling in polypropylene pipes

Imad Barsoum (Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates)
Hamda Almansoori (Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates)
Aaesha Ahmed Almazrouei (Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates)
Ebru Gunister (Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates)

International Journal of Structural Integrity

ISSN: 1757-9864

Article publication date: 31 March 2020

Issue publication date: 13 April 2021

292

Abstract

Purpose

The main aim of this study is to determine the fracture toughness and accordingly to predict the fracture initiation, crack propagation and mode of crack extension accurately in polypropylene subsea pipes subjected to internal pressure.

Design/methodology/approach

Tensile test was performed following the ISO 527–1 standard. An elastic-plastic constitutive model was developed based on the tensile test results, and it is implemented in the FEA model to describe the constitutive behaviour of the polypropylene material. Three-point bend tests with linear-elastic fracture mechanics (LEFM) approach were conducted following ISO-13586 standard, from which the average fracture toughness of the polypropylene pipe material in crack-opening mode was found as KIc = 3.3 MPa√m. A numerical model of the experiments is developed based on the extended finite element method (XFEM), which showed markedly good agreement with the experimental results.

Findings

The validated XFEM modelling approach is utilised to illustrate its capabilities in predicting fracture initiation and crack propagation in a polypropylene subsea pipe subjected to an internal pressure containing a semi-elliptical surface crack, which agrees well with existing analytical solutions. The XFEM model is capable of predicting the crack initiation and propagation in the polypropylene pipe up to the event of leakage.

Originality/value

The methodology proposed herein can be utilised to assess the structural integrity and resistance to fracture of subsea plastic pipes subjected to operational loads (e.g. internal pressure).

Keywords

Acknowledgements

The authors are in debt to Mr. Shrinivas Bojanampati at Khalifa University for his assistance with the test setup and to Union Pipes Industry (UPI) in Abu Dhabi for providing the test samples.

Citation

Barsoum, I., Almansoori, H., Almazrouei, A.A. and Gunister, E. (2021), "Fracture mechanics testing and crack propagation modelling in polypropylene pipes", International Journal of Structural Integrity, Vol. 12 No. 2, pp. 271-283. https://doi.org/10.1108/IJSI-01-2020-0006

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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