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A review of the factors that can increase the risk of sulfide stress cracking in thermomechanical controlled processed pipeline steels

Title: A review of the factors that can increase the risk of sulfide stress cracking in thermomechanical controlled processed pipeline steels
Authors: Kei, SHS
Van Haaften, WM
Ben Britton, T
Pedrazzini, S
Item Type: Journal Article
Abstract: This review aims to improve our understanding of the important factors which influence the susceptibility of thermomechanical controlled processed (TMCP) steels to sulfide stress cracking (SSC). Mechanisms involved in hydrogen embrittlement (HE) from three perspectives are focused on: the microstructure constituents of TMCP steels; environmental factors; and fracture mechanism of SSC. Microstructures are reviewed as they affect the diffusion and trapping of hydrogen that can reduce the resistance to fracture. Environmental factors discussed highlight that when exposed to an aqueous H2S environment, a sulfide layer can form and influence the ingress of hydrogen, and this is affected by pH, temperature, and H2S partial pressure. Fracture is influenced by the nature of the crack tip and the crack tip plastic zone during crack propagation, and hydrogen can significantly affect crack tip growth. This review provides a critical assessment of the interplay between these three factors and aims to provide understanding to enhance our engineering approaches to manage and mitigate against fracture of TMCP steels.
Issue Date: Nov-2023
Date of Acceptance: 29-Jun-2023
URI: http://hdl.handle.net/10044/1/113485
DOI: 10.1002/adem.202300406
ISSN: 1438-1656
Publisher: Wiley
Journal / Book Title: Advanced Engineering Materials
Volume: 25
Issue: 21
Copyright Statement: © 2023 The Authors. Advanced Engineering Materials published by Wiley-VCH GmbH This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
Publication Status: Published
Article Number: 2300406
Online Publication Date: 2023-07-16
Appears in Collections:Materials
Faculty of Engineering



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