Engineering
Equal Channel Angular Pressing
74%
Microstructure Evolution
54%
Plastic Deformation
42%
Powder Metallurgy
37%
Microhardness
33%
Wear Property
33%
Wear Resistance
33%
Surface Morphology
30%
Absorbed Energy
27%
Pure Aluminum
27%
Room Temperature
22%
Al Matrix
22%
Hybrid Composite
22%
Fracture Surface
21%
Delamination
19%
Sintering
18%
Mass Loss
18%
Metal Matrix Composite
18%
Ultimate Tensile Strength
18%
Abrasive Wear
17%
Processing Method
17%
Extrusion Ratio
16%
Sliding Distance
16%
Fabrication Method
14%
Composite Structure
14%
Direct Extrusion
14%
Aluminum Metal
14%
High-Angle Grain Boundary
14%
Adhesive Wear
13%
Tensiles
13%
Finite Element Simulation
12%
Applied Pressure
11%
Yield Point
11%
Coefficient of Friction
11%
Alloy Sample
11%
Sliding Wear
10%
Deformation Behavior
10%
Hardness Distribution
9%
Nanocrystalline
9%
Hot Extrusion
8%
Material Removal Rate
8%
Strain Hardening
8%
Peak Force
8%
Tensile Property
8%
Applied Load
8%
Deformation Characteristic
8%
Extrusion Temperature
8%
Frictional Property
8%
Experimental Result
7%
Microstructure Observation
7%
Material Science
Equal Channel Angular Extrusion
100%
Aluminum
60%
Composite Material
53%
Plastic Deformation
39%
Microhardness
36%
Grain Size
31%
Wear Property
31%
Grain Boundary
30%
Surface Morphology
30%
Ultimate Tensile Strength
28%
Powder Metallurgy
26%
Wear Resistance
26%
Finite Element Method
26%
Homogenization
22%
Tensile Property
21%
Grain Refinement
19%
Aluminum Alloy
18%
Metal Matrix Composite
16%
Corrosion
14%
Fracture Behavior
14%
Delamination
13%
Volume Fraction
12%
Density
12%
Yield Stress
11%
Tungsten
11%
Sintering
11%
Sliding Wear
10%
Compression Load
9%
Work Hardening
9%
Nanocrystalline
8%
Aluminum Oxide
8%
Adhesive Wear
8%
Surface Roughness
7%
Inert Gas
7%
Glass Fiber
7%
High Entropy Alloys
7%
Annealing
7%
Ti-6Al-4V
7%
Arc Welding
7%
Polyvinyl Chloride
7%
Plastic Flow
7%
Dry Friction
7%
Silicon Carbide
7%
Surface Analysis
6%
Particle-Reinforcement
6%
Material Processing
6%
Carbon Fiber
5%