Cristin-resultat-ID: 2267497
Sist endret: 24. mai 2024, 10:39
NVI-rapporteringsår: 2024
Resultat
Vitenskapelig artikkel
2024

Hydrogen Embrittlement as a Conspicuous Material Challenge─Comprehensive Review and Future Directions

Bidragsytere:
  • Haiyang Yu
  • Andrés Díaz
  • Xu Lu
  • Binhan Sun
  • Yu Ding
  • Motomichi Koyama
  • mfl.

Tidsskrift

Chemical Reviews
ISSN 0009-2665
e-ISSN 1520-6890
NVI-nivå 2

Om resultatet

Vitenskapelig artikkel
Publiseringsår: 2024
Open Access

Importkilder

Scopus-ID: 2-s2.0-85192828768

Beskrivelse Beskrivelse

Tittel

Hydrogen Embrittlement as a Conspicuous Material Challenge─Comprehensive Review and Future Directions

Sammendrag

Hydrogen is considered a clean and efficient energy carrier crucial for shaping the net-zero future. Large-scale production, transportation, storage, and use of green hydrogen are expected to be undertaken in the coming decades. As the smallest element in the universe, however, hydrogen can adsorb on, diffuse into, and interact with many metallic materials, degrading their mechanical properties. This multifaceted phenomenon is generically categorized as hydrogen embrittlement (HE). HE is one of the most complex material problems that arises as an outcome of the intricate interplay across specific spatial and temporal scales between the mechanical driving force and the material resistance fingerprinted by the microstructures and subsequently weakened by the presence of hydrogen. Based on recent developments in the field as well as our collective understanding, this Review is devoted to treating HE as a whole and providing a constructive and systematic discussion on hydrogen entry, diffusion, trapping, hydrogen–microstructure interaction mechanisms, and consequences of HE in steels, nickel alloys, and aluminum alloys used for energy transport and storage. HE in emerging material systems, such as high entropy alloys and additively manufactured materials, is also discussed. Priority has been particularly given to these less understood aspects. Combining perspectives of materials chemistry, materials science, mechanics, and artificial intelligence, this Review aspires to present a comprehensive and impartial viewpoint on the existing knowledge and conclude with our forecasts of various paths forward meant to fuel the exploration of future research regarding hydrogen-induced material challenges.

Bidragsytere

Haiyang Yu

  • Tilknyttet:
    Forfatter

Andrés Díaz

  • Tilknyttet:
    Forfatter

Xu Lu

  • Tilknyttet:
    Forfatter
    ved Institutt for maskinteknikk og produksjon ved Norges teknisk-naturvitenskapelige universitet

Binhan Sun

  • Tilknyttet:
    Forfatter

Yu Ding

  • Tilknyttet:
    Forfatter
    ved Institutt for konstruksjonsteknikk ved Norges teknisk-naturvitenskapelige universitet
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