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Microstructure and corrosion behaviour of alloy 690-SUS 304L butt joints formed by electron beam welding
H. T. Lee
, Y. D. Lin
機械工程學系
研究成果
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同行評審
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引文 斯高帕斯(Scopus)
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Physics & Astronomy
butt joints
100%
electron beam welding
90%
corrosion
58%
microstructure
37%
fusion
31%
air
30%
tensile tests
26%
strain rate
22%
chromium carbides
18%
rapid solidification
15%
transit
14%
caps
13%
tensile strength
12%
chromium
12%
elongation
11%
stainless steels
11%
depletion
11%
precipitates
11%
grain boundaries
9%
cooling
8%
mechanical properties
8%
performance
5%
Engineering & Materials Science
Electron beam welding
89%
Corrosion
48%
Microstructure
43%
Fusion reactions
38%
Air
35%
Chromium
34%
Sodium chloride
34%
Strain rate
29%
Rapid solidification
22%
Precipitates
16%
Grain boundaries
16%
Carbides
15%
Austenitic stainless steel
15%
Elongation
14%
Tensile strength
12%
Cooling
11%
Mechanical properties
10%
Chemical Compounds
Electron Beam
69%
Corrosion
46%
Alloy
45%
Microstructure
43%
Environment
36%
Rapid Solidification
22%
Shape
21%
Grain Boundary
16%
Cooling
14%
Tensile Strength
13%
Mixture
7%
Surface
5%