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Hydrogen embrittlement in super duplex stainless steels

  • X. Z. Liang
  • , G. H. Zhao
  • , M. F. Dodge
  • , T. L. Lee
  • , H. B. Dong*
  • , P. E.J. Rivera-Díaz-del-Castillo
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

In super duplex stainless steels (SDSSs), both austenite and ferrite are susceptible to hydrogen embrittlement, however there is a lack of understanding into the effect of hydrogen in each phase. In this study, in neutron diffraction was applied on hydrogen-charged (H-charged) samples to investigate the hydrogen embrittlement behaviour in super duplex stainless steels. The result reveals that austenite maintains good plasticity during tensile testing, whilst a loss of it is realised in ferrite. Fractography analysis reveals the diffusion of hydrogen induced a brittle-to-ductile transition from the sample surface towards the centre; hydrogen embrittlement vanishes as the specimen's centre is approached, while it is demonstrated to disappear first in austenite but not in ferrite. This transition can be predicted by applying a physics-based hydrogen embrittlement model which incorporates the effects of hydrogen concentration, hydrogen diffusivity, residual stress, loading state and temperature. The present work demonstrates the dissimilar susceptibility of austenite and ferrite to hydrogen embrittlement, providing a tool to describe it.

Original languageEnglish
Article number100524
JournalMaterialia
Volume9
DOIs
Publication statusPublished - Mar 2020

Bibliographical note

Publisher Copyright:
© 2019

Keywords

  • Crack propagation
  • Hydrogen embrittlement
  • Neutron diffraction
  • Super duplex stainless steel (SDSS)

ASJC Scopus subject areas

  • General Materials Science

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