Keyphrases
Scanning Laser Epitaxy
90%
Additive Manufacturing
56%
Nickel-based Superalloy
51%
Microstructure
46%
Laser Powder Bed Fusion (L-PBF)
41%
Laser Directed Energy Deposition
31%
Additive Manufacturing Process
30%
Mar-M247
26%
Metal Additive Manufacturing
25%
Scanning Electron Microscopy
23%
CMSX-4
22%
Optical Microscopy
20%
Single Crystal Superalloy
19%
Hot Section Components
17%
Crack Formation
17%
Microhardness Property
16%
Fatigue Crack
16%
Gas Turbine
16%
Melt Pool
16%
Fatigue Testing
15%
Fatigue Properties
15%
Fatigue Failure
14%
Gaussian Process
14%
Microstructural Characterization
13%
Single Crystal
13%
Melt Pool Geometry
12%
AlSi10Mg
12%
Computational Modeling
11%
Fatigue Damage Assessment
11%
AA7075-T6
11%
Vickers Hardness Test
11%
Microstructure Evolution
11%
Carbides
11%
Fatigue Damage
11%
SS316L
11%
Metallic Materials
11%
Heat Treatment Effect
11%
Microstructure Properties
10%
Fatigue Life
10%
Processing Parameters
10%
Mechanical Properties
10%
Directed Energy Deposition
10%
Thermal Distortion
10%
Pin Fin
10%
Pin Fin Array
10%
Damage Classification
10%
Carbide Formation
10%
Deep Neural Network
10%
Laser Powder Bed Fusion Additive Manufacturing
10%
IN738LC
10%
Engineering
Powder Bed Fusion
67%
Additive Manufacturing
61%
Melt Pool
44%
Additive Manufacturing Process
38%
Hot Section
37%
Gas Turbine
31%
Process Parameter
30%
Gaussians
29%
Fatigue Damage
20%
Fatigue Crack
17%
Processing Parameter
17%
Fatigue Testing
16%
Ray Diffraction
16%
Fatigue Life
14%
Fatigue Failure
14%
Single Crystal Superalloys
14%
Heat Treatment
14%
Microstructure Evolution
11%
Damage Detection
11%
Polycrystalline
11%
High Resolution
11%
Fatigue Property
10%
Process Development
10%
Thermal Distortion
10%
Crystallographic Orientation
10%
Damage Classification
10%
Transfer Learning
10%
Main Reason
9%
Crack Formation
9%
Fatigue Resistance
9%
Face-Centered Cubic
9%
Centered Cubic Structure
9%
Energy Dissipation
9%
Vickers
9%
Pressure Drop
8%
Tensile Property
8%
Turbine
8%
Solidification Process
7%
Blade Turbine
7%
Good Agreement
7%
Short Crack
7%
Broad Range
7%
Tensiles
7%
Material Science
Epitaxy
100%
Three Dimensional Printing
90%
Nickel-Based Superalloys
60%
Microhardness
35%
Laser Powder Bed Fusion
34%
Superalloys
28%
Fatigue of Materials
26%
Fatigue Crack
25%
Scanning Electron Microscopy
23%
Heat Treatment
18%
Laser Directed Energy Deposition
16%
Energy-Dispersive X-Ray Spectroscopy
14%
Electron Backscatter Diffraction
14%
Carbide
13%
Directed Energy Deposition
11%
Powder Bed Fusion
10%
Solidification
10%
X-Ray Diffraction
10%
Damage Classification
10%
Fatigue Damage
10%
Metal
10%
Yield Stress
10%
Confocal Microscopy
9%
Crack Initiation
8%
Aluminum
8%
Tomography
7%
Ultimate Tensile Strength
6%
Grain Boundary
6%
Feedstock
6%
Crack Formation
6%
Creep
6%
Residual Stress
5%
Short Crack
5%
Mechanical Testing
5%
Crack Propagation
5%
Biopolymer
5%
Actuator
5%
Polycarbonate
5%
Selective Laser Melting
5%
Direct Ink Writing
5%
Material Processing
5%
Hastelloy
5%
Thermal Fatigue
5%
Ductile Material
5%
Stainless Steel
5%
Surface Defect
5%
Tensile Property
5%