A dual fracture mechanical approach for estimating notch stress intensity factor and T-stress using volumetric methods on API 5L pipe steel: Experimental study and numerical validation

Racim Boutelidja, Mohammad Mizanur Rahman*, Mouna Amara, Rami K. Suleiman, Arumugam Madhan Kumar, Fadi A. Al-Badour, Guedri Abdelmoumen, Mohammed Hadj Meliani

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

This study focuses on the evaluation of the Notch Stress Intensity Factor (NSIF) as a key parameter for estimating the material's master failure curve in API 5L pipe steel. The research encompasses both experimental investigations and numerical validations to comprehensively assess the applicability of NSIF in predicting failure behavior. Through a series of controlled experiments, various notched specimens were subjected to different loading conditions, allowing the determination of NSIF values. Concurrently, a numerical framework was developed using finite element analysis to simulate the stress distribution near the notches. The experimental results were compared with the numerical simulations to validate the accuracy of the proposed approach. This research contributes to enhancing the understanding of how NSIF can serve as a reliable indicator of failure potential in industrial applications, particularly in the context of pipeline structures. The findings highlight the significance of NSIF-based predictions in ensuring the integrity and safety of materials under varying loading conditions.

Original languageEnglish
Pages (from-to)3189-3204
Number of pages16
JournalJournal of Materials Research and Technology
Volume33
DOIs
StatePublished - 1 Nov 2024

Bibliographical note

Publisher Copyright:
© 2024 The Authors

Keywords

  • API 5L pipe steel
  • Experimental study
  • Material master failure curve
  • Notch stress intensity factor
  • Numerical validation

ASJC Scopus subject areas

  • Ceramics and Composites
  • Biomaterials
  • Surfaces, Coatings and Films
  • Metals and Alloys

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