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Hydrogen embrittlement of austenitic stainless steel/carbon steel dissimilar metal welds
M. M. Alelyani,
S. L.I. Chan
化學工程與材料工程學系
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深入研究「Hydrogen embrittlement of austenitic stainless steel/carbon steel dissimilar metal welds」主題。共同形成了獨特的指紋。
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Keyphrases
Hydrogen Embrittlement
100%
Austenitic Stainless Steel
100%
Carbon Steel
100%
Steel Carbon
100%
Dissimilar Weld
100%
Heat Affected Zone
50%
Filler Metal
33%
Fusion Zone
33%
Hydrogen Effect
33%
Mechanical Properties
16%
Ductility
16%
Tensile Test
16%
Fracture Surface
16%
Microstructure
16%
Plastic Deformation
16%
Tears
16%
Ductile Fracture
16%
Arc Welding Process
16%
304 Stainless Steel
16%
Gas Tungsten Arc Welding
16%
Multi-pass
16%
Transition Zone
16%
Hydrogen Diffusion
16%
Stress Deformation
16%
Welded Joint
16%
Weldment
16%
Cathodic Charging
16%
Inconel
16%
Dissimilar Metals
16%
Steel-steel
16%
Austenitic Structure
16%
Charging Techniques
16%
Microscopic Investigation
16%
Metal Combination
16%
Thin Surface Layer
16%
Tension Test
16%
Test Investigation
16%
304 Austenitic Stainless Steel
16%
Hydrogen Environment
16%
Hydrogen Embrittlement Susceptibility
16%
Material Science
Hydrogen Embrittlement
100%
Carbon Steel
100%
Weld Metal
100%
Austenitic Steel
100%
Filler Metal
33%
Surface (Surface Science)
33%
Scanning Electron Microscopy
16%
Diffusivity
16%
Ductile Fracture
16%
Plastic Deformation
16%
304 Stainless Steel
16%
Tungsten
16%
Arc Welding
16%
Indentation Hardness Testing
16%
Tensile Testing
16%
Welded Joint
16%
Welding
16%