Material Science
Friction Welding
41%
Superalloys
33%
Composite Material
25%
Aluminum Alloy
25%
Ultimate Tensile Strength
23%
Shear Strength
23%
Surface (Surface Science)
21%
Friction Stir Welding
21%
Intermetallics
20%
Scanning Electron Microscopy
19%
Bonded Joint
19%
High Entropy Alloys
17%
Brazing
16%
Welded Joint
16%
Ti-6Al-4V
15%
Stainless Steel
14%
Grain Boundary
14%
Aluminum
13%
Titanium Alloy
13%
Medium-Entropy Alloy
12%
Filler Metal
11%
Carbide
11%
Microhardness
10%
Plastic Deformation
10%
Grain Size
10%
Solid Solution
9%
Spot Welding
9%
Fracture Toughness
9%
304 Stainless Steel
8%
Heat Treatment
7%
Aluminum Oxide
7%
Solidification
7%
Single Crystal
7%
Tensile Property
7%
Microstructural Evolution
6%
Yield Stress
6%
X-Ray Diffraction
6%
Finite Element Method
6%
Three Dimensional Printing
6%
Energy-Dispersive X-Ray Spectroscopy
6%
Nucleation
5%
Finite Element Modeling
5%
Fracture Behavior
5%
Interface Friction
5%
Shear Testing
5%
Boride
5%
Engineering
Joints (Structural Components)
100%
Friction Welding
42%
Diffusion Bonding
29%
Interlayer
23%
Weld
21%
Friction Stir Welding
18%
Ultimate Tensile Strength
13%
Ti-6al-4v
12%
Rotation Speed
11%
Transients
11%
Base Metal
10%
Microstructure Evolution
10%
Shear Strength
9%
Temperature Distribution
9%
Plastic Deformation
8%
Bonding Temperature
8%
Intermetallics
8%
Analytical Model
8%
Liquid Phase
7%
Finite Element Analysis
6%
High-Entropy Alloys
6%
State Diffusion
6%
Brazing
6%
Entropy Production
5%
Tensile Property
5%
304 Stainless Steel
5%
Filler Metal
5%
Spot Welding
5%
Peak Temperature
5%
Stainless Steel
5%
Microhardness
5%
Backplate
5%
Additive Manufacturing
5%