Engineering
Hot Pressing
100%
Strain Rate
95%
Cooling Rate
83%
Isothermal
75%
Steel Structure
66%
Thermal Cycle
62%
Finite Element Modeling
60%
Test Condition
60%
Low Alloy Steel
60%
Dimensional Change
50%
Heating Rate
50%
Transmissions
50%
Compression Testing
50%
High Strength Steel
50%
Welds
50%
Martensite Start Temperature
50%
Internal Stress
50%
High Strain Rate
50%
Increasing Strain
50%
Phase Transformation Kinetics
50%
Austenitization
50%
Post Weld Heat Treatment
50%
Ti-6al-4v
50%
Processing Map
50%
Flow Stress
45%
Microstructure
41%
Residual Stress
41%
Peak Temperature
40%
Heat Affected Zone
37%
Temperature Range
35%
Start Temperature
33%
Induction Coil
25%
Cooled Gas
25%
Temperature Time
25%
Deformed Microstructure
25%
Excess Vacancy
25%
Thermal Gradient
25%
Microstructure Evolution
25%
Thermocouple
25%
Finite Element Method
25%
Strain Level
25%
Input Response
25%
Nominal Strain
25%
Temperature Distribution
25%
Strain Rate Effect
25%
Texture Evolution
25%
Deformation Condition
25%
Experimental Result
25%
Rapid Quenching
25%
Nominal Temperature
25%
Softening Behavior
25%
Iso
25%
Prior Austenite Grain
20%
Austenite Grain Size
20%
Heat Treatment
16%
Thermodynamic Model
16%
Ray Diffraction
16%
Good Match
16%
Room Temperature
16%
Retained Austenite
16%
Volumetric Strain
16%
Predictive Capability
16%
Accurate Prediction
16%
Additivity Rule
16%
Rapid Heating
16%
Experimental Measurement
16%
Slow Cooling
16%
Good Agreement
16%
Strain Transformation
16%
Residual Stress Distribution
16%
Boundary Condition
16%
Contour Method
12%
Tensiles
12%
Submerged Arc Welding
12%
Thermal Stress
12%
Early Stage
12%
Tensile Residual Stress
12%
Arc Welding Process
12%
Stainless Steel
12%
Final Microstructure
10%
Data Point
10%
Fitting Procedure
10%
Deformation Mechanism
10%
Illustrates
10%
Microsegregation
10%
Hot Working
10%
Deformation Response
10%
Alloying Element
10%
Test Sample
10%
Strain Rate Sensitivity
10%
Experimental Uncertainty
10%
Test Piece
10%
Processing Condition
10%
Crystallographic Texture
10%
Rates of Strain
10%
Material Science
High Strength Steels
100%
Residual Stress
87%
Heat Treatment
75%
Strain Rate
50%
Copper Alloys
50%
Martensite
50%
Heterogeneous Material
50%
Austenite
45%
Transmission Electron Microscopy
33%
Synchrotron X-Ray Diffraction
25%
Dilatometry
25%
Electron Microscopy
25%
Neutron Diffraction
25%
Grain Size
20%
Strain Rate Effect
16%
Nucleation
16%
Coarsening
16%
Stainless Steel
12%
Welding
12%
Arc Welding
12%
Thermal Stress
12%
Tensile Testing
12%
Diffraction Measurement
12%
Alloying
10%
Carbide
10%