INIS
diffraction
100%
microstructure
100%
aluminium
100%
transmission
100%
strains
100%
hardness
66%
torsion
66%
fcc lattices
66%
high pressure
66%
increasing
33%
electrons
33%
levels
33%
grain boundaries
33%
dislocations
33%
vickers hardness
33%
fragmentation
33%
processing
33%
saturation
33%
texture
33%
investigations
33%
shear
33%
Engineering
Microstructural Evolution
100%
High Pressure
100%
Transmissions
100%
Backscattered Electron
50%
Models
50%
Measurement
50%
Simple Shear
50%
Vickers
50%
Fine Grain
50%
Processing
50%
Pure Aluminum
50%
Increasing Strain
50%
Fcc Structure
50%
Fcc Material
50%
High-Angle Grain Boundary
50%
Strain Level
50%
Dislocation
50%
Material Science
Hardness
100%
Microstructural Evolution
100%
Aluminum
100%
Materials
50%
Aggregate
50%
Grain Boundary
50%
Dislocation
50%
Saturation
50%
Vickers Hardness
50%
Keyphrases
Pure Aluminum
100%
High-pressure Torsion
66%
Textural Evolution
33%
Vickers Hardness
33%
High-angle Grain Boundary
33%
FCC Structure
33%
Grain Fragmentation
33%
Hardness Measurement
33%
Simple Shear Texture
33%
Fragmentation Process
33%