Material Science
Titanium Alloy
100%
Strain Rate
35%
Heat Treatment
31%
Grain Boundary
29%
Fracture Toughness
26%
Tensile Property
21%
Ti-6Al-4V
15%
Crack Propagation
15%
Deformation Mechanism
14%
Scanning Electron Microscopy
12%
Ultimate Tensile Strength
11%
Surface (Surface Science)
11%
Crack Initiation
11%
Yield Stress
11%
Nucleation
11%
Electron Backscatter Diffraction
10%
Fatigue Crack
9%
Volume Fraction
9%
Microstructural Evolution
9%
Grain Size
9%
Fracture Behavior
9%
Titanium
8%
Coarsening
7%
Anisotropy
6%
Plastic Deformation
6%
Finite Element Method
6%
Lamellar Structure
5%
Adiabatic Shear Band
5%
High-Cycle Fatigue
5%
Near-Alpha Titanium Alloys
5%
Low-Cycle Fatigue
5%
Fatigue of Materials
5%
Crack Tip
5%
Superplasticity
5%
Engineering
Hot Working
31%
Strain Rate
26%
Heat Treatment
20%
Deformation Behavior
17%
Microstructure Evolution
15%
Processing Map
12%
Flow Stress
12%
Artificial Neural Network
12%
Deformation Temperature
12%
Deformation Mechanism
11%
High Strain Rate
11%
Temperature Range
11%
Hot Pressing
11%
Tensile Property
10%
Dynamic Recrystallization
10%
Constitutive Relationship
9%
Ti-6al-4v
9%
Room Temperature
8%
Cooling Rate
8%
Rates of Strain
8%
Tensiles
8%
Phase Field
7%
Artificial Neural Network Model
7%
Isothermal Compression
7%
Microstructural Evolution
7%
Aging Temperature
7%
Processing Parameter
7%
Alpha Phase
7%
Compression Test
6%
Ultimate Tensile Strength
6%
Tensile Deformation
6%
Yield Point
6%
Dynamic Recovery
6%
Crack Propagation
6%
Phase Region
5%
Fracture Mechanism
5%
Fracture Behavior
5%
Experimental Result
5%
Rate Range
5%
Ti-6al-4v Alloy
5%
Elevated Temperature
5%
Slip System
5%
Mols
5%
Lower Strain Rate
5%