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Corrosion Enhancement for FGM Coolant Pipes Subjected to High-Temperature and Hydrostatic Pressure
Kai Chien Lo,
Hsin Yi Lai
機械工程學系
研究成果
:
Article
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同行評審
5
引文 斯高帕斯(Scopus)
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Engineering & Materials Science
Bismuth
100%
Hydrostatic pressure
90%
Functionally graded materials
88%
Eutectics
78%
Coolants
70%
Lead
69%
Pipe
56%
Corrosion
56%
Silicon
46%
Solid solutions
33%
Coatings
33%
Temperature
29%
Corrosion resistance
27%
Corrosion resistant coatings
21%
Liquids
19%
Oxide films
18%
Composite materials
17%
Nuclear power plants
13%
Stress concentration
12%
Fatigue of materials
10%
Physics & Astronomy
coolants
84%
hydrostatic pressure
75%
bismuth
73%
eutectics
72%
corrosion
67%
augmentation
45%
coatings
40%
silicon
32%
corrosion resistance
30%
solid solutions
24%
high temperature environments
21%
composite materials
18%
nuclear power plants
18%
margins
16%
liquids
15%
high strength
15%
safety
14%
stress distribution
13%
oxide films
13%
engineering
11%
Chemical Compounds
Coolant
99%
Eutectics
76%
Corrosion
53%
Pressure
43%
Solid Solution
24%
Nuclear Power Plant
21%
Environment
16%
Liquid
16%
Composite Material
14%
Corrosion Resistance
13%
Safety
12%
Alloy
10%
Strength
9%
Surface
9%
Resistance
9%
Oxide
8%
Liquid Film
7%