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Engineering
Austenitic Stainless Steel
100%
Situ Investigation
100%
Notch Tip
100%
Partial Dislocation
100%
Minor Effect
50%
Induced Damage
50%
Thin Foil
50%
Internal Stress
50%
Imaging Contrast
50%
Three-Point Bending Test
50%
Channelling
50%
Stacking Fault Energy
50%
Resolved Shear Stress
50%
Shear Modulus
50%
Premature Failure
50%
Dislocation Movement
50%
Crosscorrelation
50%
INIS
interactions
100%
hydrogen
100%
investigations
100%
austenitic steels
100%
stacking faults
100%
expansion
30%
reduction
30%
dislocations
30%
shear
20%
migration
20%
notches
20%
failures
10%
correlations
10%
segregation
10%
width
10%
energy
10%
foils
10%
microstructure
10%
bending
10%
damage
10%
residual stresses
10%
transmission electron microscopy
10%
loading
10%
shrinkage
10%
atoms
10%
defects
10%
electron channeling
10%
Keyphrases
Austenitic Steel
100%
In Situ Investigation
100%
Stacking Faults
100%
Ribbon
22%
Notch Tip
22%
Partial Dislocations
22%
High Strength
11%
High-Mn Austenitic Steel
11%
Dislocation
11%
Metallic Materials
11%
Minor Effect
11%
Local Shear
11%
Stress Evolution
11%
Premature Failure
11%
Microstructural Defects
11%
H Atoms
11%
Shear Modulus
11%
Constant Loading
11%
Internal Stress
11%
H-migration
11%
Stacking Fault Energy
11%
Thin Foils
11%
Three-point Bending Test
11%
Induced Damage
11%
Dislocation Movement
11%
Electron Channeling Contrast Imaging
11%
Combined Reduction
11%
Resolved Shear Stress
11%
EBSD Measurement
11%
Pre-charge
11%
Environmental Transmission Electron Microscopy
11%
Cross-correlation EBSD
11%
Earth and Planetary Sciences
Crystal Defect
100%
Austenitic Steel
100%
Cross Correlation
11%
Transmission Electron Microscopy
11%
Channelling
11%
Shear Modulus
11%
Material Science
Austenitic Stainless Steel
100%
Crystal Defect
100%
Elastic Moduli
10%
Theoretical Calculation
10%
Electron Backscatter Diffraction
10%
Transmission Electron Microscopy
10%