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Oxidation of differently prepared Al-Mg alloy powders in oxygen
Hongqi Nie
,
Mirko Schoenitz
,
Edward L. Dreizin
Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
28
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Keyphrases
Activation Energy
16%
Al-Mg Alloy
100%
Al-Mg-Si
33%
Alloy Particles
16%
Alloy Powder
100%
Amorphous Alumina
16%
Apparent Activation Energy
16%
Diffraction
16%
Energy Change
16%
Internal Surface
16%
Inward Diffusion
16%
Mass Ratio
16%
Measurement Weights
16%
Mechanically Alloyed Powders
16%
Oxidation Dynamics
16%
Oxidation Rate
16%
Oxidation Stage
100%
Oxide Shell
50%
Oxygen Diffusion
33%
Oxygen Ions
16%
Particle Size
16%
Particle Size Distribution
33%
Rate Limiting
16%
Reaction Interface
16%
Scanning Electron Microscopy
16%
Spherical Powder
16%
Spinel
16%
Spinel Phases
16%
Thermogravimetry
33%
Threshold Temperature
16%
Weight Gain
16%
Engineering
Activation Energy
50%
Aluminum Oxide
50%
Apparent Activation Energy
50%
Energy Change
50%
Individual Particle
50%
Interface Reaction
50%
Internal Surface
50%
Mass Ratio
50%
Mg-Al Alloy
100%
Mols
50%
Oxidation Rate
50%
Oxygen Ion
50%
Ray Diffraction
50%
Step Oxidation
50%
Threshold Temperature
50%
Material Science
Activation Energy
20%
Aluminum Oxide
10%
Amorphous Material
10%
Magnesium Alloys
100%
Magnesium Oxide
10%
Oxidation Reaction
100%
Oxide Compound
30%
Particle Size Analysis
20%
Powder
100%
Scanning Electron Microscopy
10%