Engineering
Applied Load
16%
Blade Turbine
16%
Carburized Steel
16%
Constitutive Relationship
14%
Continuous Variation
21%
Crack Closure
23%
Crack Front
14%
Crack Growth
91%
Crack Growth Behavior
21%
Crack Growth Rate
15%
Crack Tip
95%
Crack Tip Opening Displacement
16%
Cracking Behavior
50%
Edge Crack
14%
Elevated Temperature
33%
Experimental Investigation
16%
Failure Behavior
16%
Failure Strength
16%
Fatigue Crack
50%
Fatigue Crack Growth
84%
Fatigue Crack Propagation
16%
Fatigue Failure
16%
Finite Element Method
12%
Fracture Surface
14%
Growth Mechanism
16%
High Cycle Fatigue
33%
High Resolution
14%
Induced Cracking
16%
Load Cycle
25%
Load Test
14%
Mechanical Fatigue Test
25%
Micro Crack
12%
Microcracks
12%
Microstructure
30%
Multiscale
16%
Numerical Study
16%
Perfluorosulfonic Acid
38%
Plastic Deformation
14%
Plastic Zone
43%
Proton Exchange Membrane
16%
Protonation
16%
Resolution Image
14%
Retardation
49%
Scanning Electron Microscope
38%
Schmids Factor
30%
Selective Laser Melting
16%
Small Crack
16%
Strain Field
33%
Stress Ratio
22%
Tensiles
14%
Material Science
Activation Energy
8%
Battery (Electrochemical Energy Engineering)
16%
Carburization
5%
Constitutive Modeling
16%
Crack Closure
7%
Crack Growth
100%
Crack Initiation
8%
Crack Propagation
8%
Crack Tip
61%
Crack Tip Opening Displacement
16%
Elastic Moduli
16%
Electron Backscatter Diffraction
22%
Fatigue Crack
38%
Fatigue Crack Growth
85%
Fatigue of Materials
28%
Finite Element Method
12%
Focused Ion Beam
8%
Grain Boundary
8%
High-Cycle Fatigue
67%
Mechanical Property
21%
Mechanical Strength
29%
Method in Fracture Mechanics
8%
Microcracks
12%
Microstructure Characterization
5%
Nickel-Based Superalloys
67%
Nucleation
30%
Oxide Compound
8%
Plastic Deformation
19%
Residual Stress
9%
Scanning Electron Microscopy
50%
Selective Laser Melting
16%
Small Crack
16%
Strain Rate
16%
Stress Concentration
8%
Stress Relaxation
16%
Tensile Property
16%
Titanium Alloys
33%
Yield Stress
16%