Enhancing hydrogen embrittlement resistance in ferritic–pearlitic pipeline steel through degenerate pearlite formation

Enhancing hydrogen embrittlement resistance in ferritic-pearlitic pipeline steel through degenerate pearlite formation
  • Lee, Hyun Wook
  • Chung, Yoonmoon
  • Han, Hyo Joo
  • Yu, Yongjae
  • Kim, Kyutae
  • ... Han, Jeongho
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초록

This study developed a microstructural design strategy to enhance the hydrogen embrittlement resistance of ferritic–pearlitic pipeline steels. Samples collected from the surface and mid-thickness (center) of a hot-rolled thick steel plate were found to contain similar phase fractions of ferrite and pearlite, but the surface sample exhibited a higher fraction of degenerate pearlite (DP) and a lower fraction of lamellar pearlite (LP) because it cooled faster. This provided the surface sample with superior hydrogen embrittlement resistance because the continuous ferrite–cementite interfaces in the LP phase likely promoted hydrogen localization, accelerated hydrogen-induced crack formation, and induced blistering. These results suggest that pipeline steels containing pearlite phases should favor a DP structure over an LP structure to ensure their long-term sustainability in hydrogen-rich environments.

키워드

Hydrogen embrittlementHydrogen-induced crackPearlitePipeline steelINDUCED CRACKINGMICROSTRUCTURECEMENTITEDIFFUSIONTOUGHNESSBEHAVIOR
제목
Enhancing hydrogen embrittlement resistance in ferritic–pearlitic pipeline steel through degenerate pearlite formation
제목 (타언어)
Enhancing hydrogen embrittlement resistance in ferritic-pearlitic pipeline steel through degenerate pearlite formation
저자
Lee, Hyun WookChung, YoonmoonHan, Hyo JooYu, YongjaeKim, KyutaeHan, Jeongho
DOI
10.1016/j.msea.2026.150281
발행일
2026-07
유형
Article
저널명
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
965
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1 ~ 11