Keyphrases
Fretting Characteristic
66%
Quenched Steel
66%
Rough Surface
66%
Tempered Steel
66%
Rough Contact
41%
Underload
33%
Short Crack
33%
Fatigue Behavior
33%
Contact Orientation
33%
Surface Orientation
33%
Friction
33%
Microstructural Barrier
33%
Cyclic R-curve
33%
Probabilistic Description
33%
Lubrication Effect
33%
Gross Sliding
30%
Partial Slip
22%
Slip-stick
22%
Gross Slip
22%
Steady State
19%
Flatons
19%
Friction Peak
19%
Fretting Behavior
19%
Surface Texture
19%
34CrNiMo6
11%
Adhesion
11%
QT Steels
11%
Microscopic Analysis
11%
Martensitic
11%
Abrasion
11%
Wear Mechanism
11%
Microstructurally Short Cracks
11%
R-curve Analysis
11%
Erratic Behavior
11%
Non-propagating Crack
11%
Defect Configuration
11%
Kitagawa-Takahashi Diagram
11%
Carbonaceous Layer
11%
Oil Decomposition
11%
Crack Size
11%
Imposed Displacements
11%
Crack Analysis
11%
Friction Test
8%
Running-in Phase
8%
Sliding Condition
8%
Fretting
8%
Threshold Level
8%
Smooth Contact
8%
Low Friction
8%
Friction Coefficient
8%
Engineering
Short Crack
55%
Tempered Steel
33%
Fretting
33%
Fatigue Behavior
33%
R-Curves
33%
Fatigue Limit
22%
Stick-Slip
22%
Residual Stress
16%
Finite Element Modeling
16%
Fatigue Strength
16%
Plane Stress
16%
Plasticity-Induced Crack Closure
16%
Axisymmetric
16%
Plasticity Effect
16%
Fatigue Design
16%
Bauschinger Effect
16%
Plane Strain Condition
16%
Constraint Condition
16%
Fatigue Crack
16%
Transients
16%
Textured Surface
11%
Fit Model
11%
Defect Size
11%
Propagating Crack
11%
Crack Length
11%
Microstructural Feature
11%
Curve Analysis
11%
Loading History
11%
Crack Size
11%
Material Science
Fretting
100%
Rough Surface
66%
Surface (Surface Science)
38%
Short Crack
33%
Fatigue Behavior
33%
Lubrication
33%
Plasticity-Induced Crack Closure
16%
Residual Stress
16%
Finite Element Modeling
16%
Fatigue Crack
16%
Surface Damage
16%
Microscopy
11%
Oxidation Reaction
11%
Coefficient of Friction
8%
Surface Texture
8%
Friction Material
8%