Engineering
Ti-6al-4v Alloy
100%
Elements
100%
Heat Treatment
100%
Kinetic
100%
Cooling Rate
22%
Reduction
22%
Models
22%
Induction Heating
22%
Microstructure
22%
Initial Microstructure
11%
Hot Working
11%
Measured Data
11%
Microstructure Evolution
11%
Mechanisms
11%
Electric Furnace
11%
Processing
11%
Subroutine
11%
Temperature
11%
Phase Titanium Alloy
11%
Adiabatic Temperature
11%
Temperature Rise
11%
Mechanical Properties
11%
Finite Element Simulation
11%
Slow Heating Rate
11%
Furnace
11%
Processing Window
11%
Gas Fuel Manufacture
11%
Alloy
11%
Heating Rate
11%
Porosity
11%
Physics
Alloy
100%
Finite Element Methods
100%
Kinetics
100%
Microstructure
44%
Revisions
22%
Heating
22%
Temperature
22%
Fractions
22%
Cooling
22%
Region
22%
Induction Heating
22%
Model
22%
Technology
11%
Hot Working
11%
Boundaries
11%
Strain Distribution
11%
Titanium Alloys
11%
Mechanical Work
11%
Porosity
11%
Splitting
11%
Strength of Materials
11%
Simulation
11%
Material Science
Alloy
100%
Ti-6Al-4V
100%
Strain
55%
Microstructure
44%
Temperature
22%
Grain Growth
22%
Mechanical Property
11%
Titanium Alloys
11%
Coarsening
11%
Hot Working
11%
Void Fraction
11%