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Directed energy deposited SAF 3207/316L laminated stainless steel composite for enhanced hydrogen-embrittlement resistance and cryogenic tensile performance

delete2026-06-28
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PRE
AI
J
Jalal Kangazian
S
Soung Yeoul Ahn
J
Jae Heung Lee
R
Rae Eon Kim
B
Bon Woo Koo
M
Man Jae SaGong
J
Jin Woo Kim
D
Do Won Lee
R
Renhao Wu
H
Ho Hyeong Lee
D
Dong-Woo Suh
H
Hyoung Seop Kim *
DOI:10.1016/j.ijplas.2026.104761delete
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Abstract

Abstract

En 中文
• Icosahedral short-range ordering nucleation induced in-situ grain boundary engineering. • Composite fabrication led to pronounced hetero-deformation-induced back-stress hardening. • Cryogenic performance was enhanced via structural and microstructural design. • Hydrogen-enhanced decohesion mechanism triggered microcracking in SAF 3207 steel. • Composite fabrication enhanced H embrittlement resistance by kinetically immobilizing.

Journal

International Journal of Plasticity cover
International Journal of Plasticity
IF:
12.8
Papers:
4.0K
Citations:
2.5W

Organization

T
Tohoku University
Scholars:
3.7K
Papers: 1.4K
Citations: 3.6W
P
pohang university of science and technology
Scholars:
545
Papers: 193
Citations: 0
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