Material Science
High Entropy Alloys
100%
Mechanical Strength
53%
Tensile Property
34%
Rod
33%
Three Dimensional Printing
32%
Selective Laser Melting
30%
Work Hardening
22%
Medium-Entropy Alloy
20%
Heat Treatment
16%
Grain Size
15%
Yield Stress
15%
Dynamic Loads
15%
Grain Refinement
15%
Density
13%
Magnesium Alloys
13%
Austenitic Stainless Steels
13%
Young's Modulus
13%
Laser Powder Bed Fusion
13%
Crystal Orientation
11%
Plastic Deformation
10%
Magnesium Alloy
10%
Energy Density
8%
Intermetallics
8%
Mechanical Property
7%
Die Casting
6%
Beta Titanium Alloys
6%
Yttrium
6%
Corrosion
6%
Powder
6%
Tensile Loads
6%
Ti-6Al-4V
6%
Creep Property
6%
Inconel 718
6%
Powder Bed Fusion
6%
Bioglass
6%
Molybdenum
6%
Lightweight High Entropy Alloy
6%
Ultimate Tensile Strength
6%
Grain Boundary
6%
Strain Rate
6%
Stacking Fault
5%
Crystalline Material
5%
Engineering
High-Entropy Alloys
60%
Body-Centered Cubic
28%
Microstructure
27%
Crystallographic Texture
26%
Selective Laser Melting
20%
Dynamic Loads
15%
Tensile Property
14%
Tensiles
14%
Refractory High Entropy Alloy
13%
Build Direction
12%
Heat Treatment
11%
High Strain Rate
9%
Temperature Strength
8%
Additive Manufacturing
8%
Plastic Deformation
8%
Room Temperature
8%
Strain Hardening
7%
Deformation Process
7%
Implant
7%
Corrosion Property
6%
Tensile Loads
6%
Electron Beam Melting
6%
Rod
6%
Die Casting
6%
Austenitic Stainless Steel
6%
Texture Evolution
6%
Damping Capacity
6%
Metallic Element
6%
Laser Melting
6%
Precipitation Behavior
6%
Resolved Shear Stress
6%
Powder Bed Fusion
6%
Lower Strain Rate
6%
Laser Beam
6%
Young's Modulus
6%
Biomedical Application
6%
Compressive Test
6%
Stacking Fault Energy
6%
Intermediate Temperature
6%
Strain Hardening
6%
Phase Stability
5%
Strengthening Effect
5%
Melt Pool
5%