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Hydrogen-enhanced cracking of 2205 duplex stainless steel
L. W. Tsay
, M. C. Young
, C. S. Shin
,
S. L.I. Chan
Department of Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
14
Scopus citations
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Keyphrases
2205 Duplex Stainless Steel
100%
H 2 S
50%
Tensile Properties
25%
X Ray Diffraction
25%
Fatigue Crack Growth Rate
25%
Transgranular
25%
Fatigue Crack Growth
25%
Tensile Crack
25%
Strain-induced
25%
Crack Surface
25%
Crack Growth
25%
Fatigue Crack Growth Test
25%
Quasi-cleavage Fracture
25%
Laboratory Air
25%
Fatigue Fracture
25%
Rolling Direction
25%
Austenite-to-martensite Phase Transformation
25%
Fatigue Fractography
25%
Gaseous Hydrogen
25%
Transmission Electron Micrograph
25%
Facet Fracture
25%
Material Science
Duplex Stainless Steel
100%
Fatigue Crack Growth
75%
Tensile Property
25%
X-Ray Diffraction
25%
Austenite
25%
Crack Growth
25%
Martensite
25%
Surface Crack
25%
Fractography
25%
Cleavage Fracture
25%