Material Science
Activation Energy
33%
Alloying
7%
Aluminum Alloy
7%
Aluminum Nitride
10%
Amorphous Alloys
14%
Annealing
16%
Austenite
18%
Binary Alloy
13%
Bulk Metallic Glass
8%
Coarsening
13%
Cobalt-Iron Alloys
8%
Composite Material
28%
Copper Alloy
14%
Crystal Defect
9%
Crystallization Kinetics
9%
Deformation Mechanism
7%
Density
35%
Differential Scanning Calorimetry
14%
Grain Boundary
55%
Grain Refinement
45%
Grain Size
32%
Heat Treatment
13%
High Entropy Alloys
11%
Intermetallics
11%
Magnetic Property
8%
Morphology
9%
Nanocomposite
8%
Nanocrystalline
22%
Nanoparticle
7%
Nanowire
7%
Nickel Alloy
10%
Nucleation
100%
Phase Field Model
11%
Plastic Deformation
15%
Rapid Solidification
54%
Silicon Alloys
9%
Single Crystal
14%
Solid Solution
15%
Solidification
97%
Superalloys
29%
Surface (Surface Science)
11%
Thermal Conductivity
9%
Thermal Stability
17%
Transmission Electron Microscopy
8%
Ultimate Tensile Strength
11%
Volume Fraction
11%
Work Hardening
9%
X-Ray Diffraction
9%
Yield Stress
10%
Zirconium Alloy
8%
Engineering
Activation Energy
25%
Analytical Model
18%
Austenite
7%
Binary Alloy
10%
Bulk Liquid
7%
Cooling Curve
9%
Cooling Rate
11%
Corrosion-Resistant Alloy
5%
Driving Force
28%
Dynamic Recrystallization
7%
Energy Barrier
15%
Eutectics
33%
Experimental Observation
8%
Experimental Result
21%
Flow Stress
6%
Good Agreement
14%
Growth Kinetics
5%
Growth Process
7%
Growth Velocity
7%
Heat Treatment
6%
Hot Working
10%
Interface Velocity
7%
Isothermal
30%
Kinetic Model
11%
Kinetic Parameter
13%
Kinetics Analysis
8%
Melting Point
7%
Metastable Phase
9%
Microstructure Evolution
14%
Model Prediction
15%
Nanocrystalline
15%
Nanomaterial
12%
Nanoscale
11%
Nonequilibrium
33%
Nucleation Mechanism
7%
Numerical Calculation
6%
Phase Field
9%
Phase Transformation Kinetics
10%
Plastic Deformation
7%
Ray Diffraction
7%
Recalescence
27%
Remelting
12%
Single Crystal Superalloys
10%
Solid Solution
12%
Solidification Process
7%
Solute Atom
5%
Solute Concentration
7%
State Transformation
8%
Strain Rate
6%
Yield Point
6%