Material Science
High Entropy Alloys
100%
Solidification
75%
Grain Boundary
46%
Nucleation
45%
Yield Stress
29%
Ultimate Tensile Strength
25%
Phase Field Model
24%
Coarsening
24%
Binary Alloy
24%
Superalloys
22%
Volume Fraction
20%
Density
20%
Composite Material
18%
Three Dimensional Printing
15%
Medium-Entropy Alloy
14%
Anisotropy
14%
Heat Treatment
13%
Magnesium Alloy
12%
Surface (Surface Science)
12%
Plastic Deformation
11%
Matrix Composite
10%
Crystal Growth
10%
Grain Size
10%
Scanning Electron Microscopy
10%
Aluminum
9%
Ti-6Al-4V
9%
Work Hardening
9%
Colloidal Suspension
8%
Quasicrystal
8%
Crystal Structure
8%
Liquid Interface
8%
Corrosion
7%
Solid Solution
7%
Microstructural Evolution
7%
Hastelloy
7%
Deformation Mechanism
7%
Strength Ductility Synergy
7%
Corrosion Resistance
6%
Titanium Alloy
6%
Tensile Property
6%
X-Ray Diffraction
6%
Cellular Structure
6%
Annealing
6%
Crystal Defect
5%
Creep
5%
Selective Laser Melting
5%
Phase Interface
5%
Water Splitting
5%
Laser Deposition
5%
Nanoparticle
5%
Engineering
Phase Field
64%
High-Entropy Alloys
29%
Damping Capacity
26%
Directional Solidification
22%
Eutectics
20%
Binary Alloy
18%
Field Model
15%
Ultimate Tensile Strength
14%
Simulation Result
12%
Yield Point
11%
Room Temperature
10%
Strain Amplitude
9%
Boltzmann Equation
8%
Numerical Modeling
7%
Additive Manufacturing
7%
Deformation Behavior
7%
Two Dimensional
7%
Simulated Result
7%
Thermal Gradient
7%
Experimental Result
6%
Solid Solution
6%
Anisotropic
6%
Alloy Solidification
6%
Cooling Rate
5%
Field Investigation
5%
Face-Centered Cubic
5%
Damping Property
5%
Field Method
5%
Magnetic Field
5%
Transients
5%
Plastic Deformation
5%
Colloidal Suspension
5%