Engineering
Absorption Performance
16%
Boundary Condition
15%
Cell Model
20%
Computer Simulation
90%
Constitutive Model
30%
Deformation Behavior
35%
Deformation Mode
58%
Demonstrates
19%
Dynamic Behavior
46%
Dynamic Loads
42%
Dynamic Response
18%
Effect of Strain
24%
Electron Beam Melting
15%
Energy Absorption
41%
Energy Engineering
18%
Experimental Result
66%
Failure Analysis
15%
Failure Mode
14%
Finite Element Method
27%
Finite Element Modeling
34%
Fixed Points
22%
Flow Stress
21%
Fracture Behavior
49%
Generated Plasma
28%
Good Agreement
38%
High Strain Rate
37%
High-Entropy Alloys
25%
Hot Working
23%
Impact Loads
36%
Impact Velocity
30%
Mechanical Response
21%
Melt Process
18%
Metal Fiber
30%
Microstructure
60%
Microstructure Evolution
15%
Numerical Prediction
25%
Pretreatment
17%
Rates of Strain
22%
Room Temperature
17%
Selective Laser Melting
24%
Stainless Steel
18%
Static Loading
37%
Stiffened Plate
28%
Strain Rate
100%
Strain Rate Sensitivity
23%
Stress-Strain Curve
20%
Tensile Property
14%
Tensile Test
21%
Tensiles
49%
Ti-6al-4v
15%
Material Science
Aluminum
37%
Amorphous Material
9%
Amorphous Metal
22%
Carrier Concentration
15%
Cellular Material
9%
Composite Material
10%
Crystal Plasticity
15%
Crystal Structure
45%
Deformation Mechanism
18%
Density
45%
Dynamic Loads
25%
Effect of Strain
13%
Finite Element Method
17%
Finite Element Modeling
24%
Fracture Behavior
34%
Grain Size
19%
High Entropy Alloys
40%
Homogenization
13%
Impact Loads
21%
Lattice Material
10%
Magnesium
10%
Matrix Composite
55%
Mechanical Property
53%
Mechanical Strength
83%
Mechanical Testing
17%
Medium-Entropy Alloy
10%
Metamaterial
10%
Particle Reinforced Composites
11%
Plastic Deformation
25%
Scanning Electron Microscopy
17%
Selective Laser Melting
17%
Single Crystal
20%
Sintering
10%
Stacking Fault
8%
Stainless Steel
26%
Static Loading
20%
Steel Fiber
16%
Strain Rate
99%
Surface Structure
9%
Tensile Property
20%
Three Dimensional Printing
19%
Ti-6Al-4V
10%
Titanium
61%
Titanium Carbide
10%
Tungsten
8%
Tungsten Alloys
57%
Ultimate Tensile Strength
9%
Work Hardening
18%
Yield Stress
23%
Yield Surface
8%