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Oxidation and melting of aluminum nanopowders
Mikhaylo A. Trunov
, Swati M. Umbrajkar
,
Mirko Schoenitz
, Joseph T. Mang
,
Edward L. Dreizin
Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
183
Scopus citations
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Keyphrases
Particle Size Distribution
100%
Low Melting Temperature
100%
Aluminum Powder
100%
Oxidation Behavior
100%
Melting Behavior
100%
Aluminum Nanopowder
100%
Nano-sized Aluminum Powder
100%
Particle Size
50%
Explosives
50%
Room Temperature
50%
Nanotechnology
50%
Propellant
50%
Ignition
50%
Oxidation Kinetics
50%
Thermogravimetric Analysis
50%
Melting Temperature
50%
Nanopowder
50%
Pyrotechnics
50%
Thermodynamic Model
50%
Differential Scanning Calorimetry
50%
Aluminum Oxidation
50%
Mass Increase
50%
Gas Mixture
50%
Melting Enthalpy
50%
Size Distribution Model
50%
Micron-sized Aluminum Powder
50%
Powder Samples
50%
Small-angle X-ray Scattering
50%
Argon Gas
50%
Melting Curve
50%
Nanometer-sized
50%
Argon Atmosphere
50%
Material Science
Powder
100%
Aluminum
100%
Oxidation Reaction
100%
Nanopowder
100%
Particle Size Analysis
25%
Differential Scanning Calorimetry
12%
Gas Mixture
12%
Thermogravimetric Analysis
12%
Engineering
Nanopowder
100%
Aluminum Powder
100%
Melting Temperature
60%
Experimental Observation
20%
Nanometre
20%
Room Temperature
20%
Ignition
20%
Thermodynamic Model
20%
Gas Mixture
20%
Distribution Model
20%
Melting Curve
20%
Nominal Size
20%
Melting Behavior
20%
Chemical Engineering
Enthalpy
100%
Differential Scanning Calorimetry
100%