Material Science
Solidification
100%
Thermophysical Property
96%
Density
94%
Nucleation
61%
Rapid Solidification
61%
Liquid Alloy
59%
Surface Tension
47%
Surface (Surface Science)
44%
Atomic Structure
38%
Silicon Alloys
37%
Intermetallics
35%
Thermal Expansion
33%
Diffusivity
33%
Ternary Alloy
33%
Microhardness
32%
Zirconium Alloy
29%
Niobium Alloys
24%
X-Ray Diffraction
24%
Differential Scanning Calorimetry
24%
Grain Refinement
21%
Solid Solution
20%
Grain Boundary
18%
Elastic Moduli
17%
Volume Fraction
16%
Composite Material
15%
Binary Alloy
15%
Solid Interface
14%
Short-Range Order
14%
Superalloys
14%
Nanohardness
13%
Crystal Defect
13%
Grain Size
11%
Inconel
11%
Refractory Alloys
11%
Nickel Alloy
11%
Lattice Constant
11%
Liquid Metal
10%
Transfer Process
10%
Nanoindentation
10%
Amorphous Material
10%
Si-Ge Alloys
9%
Strain Rate
9%
Creep Property
9%
Copper Alloy
9%
Microstructural Evolution
9%
Titanium
9%
Scanning Electron Microscopy
9%
Lamellar Structure
8%
Thermal Analysis
8%
Transmission Electron Microscopy
8%
Engineering
Eutectics
98%
Electromagnetic Levitation
77%
Temperature Range
55%
Cooling Rate
39%
Free Fall
37%
Growth Velocity
37%
Temperature Coefficient
33%
Experimental Result
32%
Primary α Phase
32%
Pair Distribution
30%
Microstructure Evolution
30%
Melting Point
28%
Liquidus Temperature
28%
Diffusion Coefficient
27%
Al Alloy
23%
Liquid Structure
22%
Intermetallics
20%
Fluid Viscosity
20%
Ternary Alloy
20%
Mols
19%
Melting Temperature
19%
Growth Kinetics
18%
Microhardness
17%
Dynamic Method
16%
Recalescence
16%
Growth Mode
15%
Phase Separation
15%
Alloy System
14%
Calorimeter
13%
Range Order
13%
Micromechanical Property
13%
Binary Alloy
12%
Deep Neural Network
12%
Good Agreement
12%
Droplet Size
11%
Liquid Phase
11%
Metastable Phase
11%
Ni Alloy
11%
Creep
11%
Expansion Coefficient
11%
Ideal Solution
10%
Eutectic Point
10%
Flow Distribution
10%
Experimental Measurement
10%
Eutectic Phase
10%
Metastable State
9%
Thermal Diffusivity
9%
Local Structure
9%
Solidification Process
8%
Outer Space
8%
Physics
Supercooling
78%
Electrostatics
38%
Specific Heat
35%
Eutectics
32%
Molecular Dynamics
29%
Liquid Alloys
19%
Ternary Alloy
17%
Monotectic Alloys
13%
Flow Distribution
13%
Liquid State
11%
Rapid Quenching (Metallurgy)
10%
Diffusion Coefficient
10%
Eutectic Alloys
9%
Atomic Structure
9%
Thermal Expansion
9%
Drop Tower
9%
Microgravity
8%
Microhardness
8%
Zirconium Alloy
8%
Temperature Dependence
8%
Mathematical Model
8%
Emissivity
7%
Intermetallics
6%
Chilling
5%
Drop Calorimeter
5%