Keyphrases
316L Austenitic Stainless Steel
14%
Alloy 718
21%
Austenitic Stainless Steel
15%
Crack Initiation
18%
Crack nucleation
19%
Deformation Mechanism
13%
Digital Image Correlation
37%
Dislocation
13%
Electron Backscatter Diffraction
30%
Fatigue Crack Initiation
20%
Grain Boundary
17%
Grain Scale
16%
Heaviside
12%
High Cycle Fatigue
17%
High-resolution
18%
High-resolution Digital Image Correlation (HRDIC)
31%
In Situ
15%
Lattice Rotation
28%
Localized Plastic Deformation
27%
Low Cycle Fatigue
22%
Metallic Materials
15%
Microstructural
27%
Microstructural Characteristics
21%
Microstructure
60%
Microtextured Regions
14%
Multimodal Data
12%
Ni-based Superalloy
27%
Nickel-based Superalloy
61%
Nitrided Layer
14%
Nitrides
18%
Non-metallic Inclusions
19%
Plasma Nitriding
38%
Plastic Deformation
14%
Plastic Strain Localization
14%
Polycrystalline Materials
15%
Polycrystalline Nickel
18%
Polycrystalline Nickel-based Superalloys
15%
Room Temperature
14%
Rotating Field
14%
Scanning Electron Microscope
21%
Slip Band
36%
Slip Behavior
18%
Slip Localization
31%
Stainless Steel
23%
Strain Localization
58%
Sub-grain Scale
14%
Three-dimensional (3D)
12%
Ti-6Al-4V (Ti64)
29%
Titanium Alloy
22%
Twin Boundary
30%
Material Science
Anisotropy
16%
Austenite
5%
Austenitic Stainless Steel
33%
Crack Growth
7%
Crack Initiation
37%
Creep
9%
Crystal Microstructure
13%
Crystal Plasticity
26%
Crystal Structure
8%
Deformation Mechanism
11%
Density
9%
Diffraction Measurement
7%
Edge Dislocation
34%
Elastic Moduli
6%
Electron Backscatter Diffraction
29%
Fatigue Behavior
7%
Fatigue Crack
46%
Fatigue of Materials
11%
Finite Element Method
16%
Finite Element Modeling
5%
Grain Boundary
29%
Grain Boundary Sliding
6%
Grain Size
15%
High-Cycle Fatigue
17%
Inconel 718
13%
Low-Cycle Fatigue
24%
Materials Property
6%
Morphology
10%
Nickel Alloy
8%
Nickel-Based Superalloys
100%
Nitriding
30%
Non-Metallic Inclusions
20%
Nucleation
28%
Plastic Deformation
14%
Polycrystal
10%
Polycrystalline Material
20%
Scanning Electron Microscopy
36%
Scanning Transmission Electron Microscopy
11%
Single Crystal
7%
Slip Band
9%
Stainless Steel
22%
Strain Measurement
7%
Superalloys
28%
Surface (Surface Science)
34%
Ti-6Al-4V
19%
Titanium Alloy
21%
Tomography
21%
Transmission Electron Microscopy
7%
X-Ray Diffraction
8%
Yield Stress
9%
Engineering
Assisted Nitriding
6%
Austenitic Stainless Steel
40%
Automated Microscopy
8%
Backscattered Electron
8%
Confocal Laser Scanning Microscope
8%
Conservation Equation
8%
Crack Initiation Fatigue
11%
Crystal Structure
8%
Cyclic Loading
8%
Deformation Mechanism
9%
Digital Image Correlation
66%
Distortion Function
8%
Early Stage
7%
Edge Dislocation
31%
Fatigue Crack Nucleation
9%
Finite Element Modeling
6%
Grain Orientation
14%
Grey Level
8%
High Resolution
53%
Individual Grain
11%
Lens Distortion
8%
Low Cycle Fatigue
7%
Low-Temperature
11%
Microscale
12%
Monotonic Loading
7%
Nitride Layer
16%
Nitriding
15%
Numerical Approach
8%
Pixel Accuracy
8%
Plasma Nitriding
25%
Plastic Strain
15%
Polycrystal
6%
Polycrystalline
74%
Polycrystalline Material
13%
Representative Volume Element
8%
Scanning Electron Microscope
23%
Slip Band
9%
Slip System
24%
Spatial Resolution
7%
Stainless Steel
19%
Strain Field
12%
Strain Localization
48%
Subsurface
8%
Surface Evolution
8%
Synthetic Image
9%
Tensile Test
6%
Tensiles
14%
Texturing
6%
Ti-6al-4v
14%
Yield Point
7%