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Novel aluminum-carbon materials
Iwona Jasiuk
, Sabrina Nilufar
, Lourdes Salamanca-Riba
, Romaine Isaacs
, Sid Siddiqi
Mechanical Science and Engineering
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
Bioengineering
Carl R. Woese Institute for Genomic Biology
Aerospace Engineering
Biomedical and Translational Sciences
Civil and Environmental Engineering
Center for the Study of Global Gender Equity
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Keyphrases
Covetics
100%
Carbon Materials
100%
Ultimate Tensile Strength
100%
AA7075
100%
Microstructure
50%
Scanning Electron Microscopy
50%
Electron Microscopy
50%
Low Density
50%
Yield Strength
50%
Mechanical Properties
50%
Young's Modulus
50%
High Elongation
50%
Nanoindentation
50%
High Strength
50%
Carbon Content
50%
Nanoindentation Technique
50%
Structural Scale
50%
Engineering Application
50%
Aluminum Alloy
50%
Novel Metals
50%
High Hardness
50%
Local Modulus of Elasticity
50%
Vickers Hardness
50%
Base Metals
50%
0.2% Yield Strength
50%
Superior Mechanical Properties
50%
Tensile Elongation
50%
Vickers
50%
Transmision
50%
Rockwell Hardness
50%
Metal-carbon
50%
Engineering
Ultimate Tensile Strength
100%
Vickers
100%
Yield Point
100%
Microscale
50%
Mesoscale
50%
Young's Modulus
50%
Macroscale
50%
Engineering Application
50%
Tensiles
50%
Al Alloy
50%
Base Metal
50%
Modulus of Elasticity
50%
Base Material
50%
Material Science
Yield Stress
100%
Aluminum
100%
Ultimate Tensile Strength
100%
Nanoindentation
100%
Density
50%
Elastic Moduli
50%
Scanning Electron Microscopy
50%
Electron Microscopy
50%
Young's Modulus
50%
Aluminum Alloy
50%
Vickers Hardness
50%