Engineering
Fault Diagnosis
64%
Strain Rate
61%
Experimental Result
58%
Rolling Bearings
45%
Unmanned Aerial Vehicle
43%
Impact Loads
32%
Tensiles
30%
Finite Element Analysis
27%
High Strain Rate
25%
Bearing Fault Diagnosis
25%
Feature Extraction
24%
Loading Rate
23%
Ultrasonics
23%
Failure Behavior
23%
Simulation Result
22%
Fatigue Behavior
22%
Rotating Machinery
21%
Constitutive Model
19%
Split Hopkinson Pressure Bar
19%
Static Loading
18%
Plastic Deformation
17%
Hopkinson
17%
Dynamic Loads
17%
Hopkinson Bar
16%
Compression Strength
16%
Failure Mechanism
16%
Impact Damage
16%
Target Tracking
16%
Elevated Temperature
16%
Rolling Process
15%
Compressive Strength
15%
Tracking (Position)
15%
Multiscale
15%
Dynamic Response
15%
Fretting Fatigue
14%
Two Dimensional
14%
Deep Learning Method
14%
Strain Rate Sensitivity
14%
Rates of Strain
13%
Impact Test
13%
Finite Element Modeling
13%
Fatigue Life
13%
Flow Stress
12%
Compressive Behavior
12%
Loading Condition
12%
Convolutional Neural Network
11%
Reinforcement Learning
11%
Shot Peening
11%
Equal Channel Angular Pressing
11%
Delamination
11%
Impact Velocity
11%
Aero-Engines
11%
Tensile Loads
11%
Room Temperature
11%
Fracture Strength
11%
Ti-6al-4v
10%
Good Agreement
10%
Joints (Structural Components)
10%
Compressive Residual Stress
10%
Numerical Model
10%
Residual Stress
10%
Stainless Steel
10%
Stress Wave
10%
Deformation Behavior
10%
Digital Image Correlation
10%
Quadcopter
10%
Finite Element Simulation
9%
Rod
9%
Speed Camera
9%
Rotors
9%
Energy Absorption
9%
Impact Resistance
9%
Deformation Mechanism
9%
Failure Process
9%
Failure Mode
9%
Tracking Algorithm
9%
Damage Behavior
9%
Fixed Wings
9%
Lithium-Ion Batteries
9%
Strain Hardening
9%
Crack Growth
8%
Test Result
8%
Sliding Mode Control
8%
Ti-6al-4v Alloy
8%
Autoencoder
8%
Nanocrystalline
8%
Ultimate Tensile Strength
8%
Fracture Surface
8%
Actuator
8%
Composite Panel
8%
Tensile Test
8%
Corrosion Fatigue
8%
Dynamic Behavior
8%
Testing Machine
7%
Failure Strain
7%
Yield Point
7%
Carbon Composite
7%
Recurrent
7%
Sound Source
7%
Composite Structure
7%
Material Science
Composite Material
100%
Strain Rate
81%
Surface (Surface Science)
70%
Fretting Fatigue
43%
Fatigue of Materials
39%
Finite Element Method
35%
Plastic Deformation
32%
Fatigue Behavior
31%
Titanium Alloy
30%
Density
25%
Deformation Mechanism
24%
Aircraft
24%
Impact Loads
24%
Fracture Toughness
22%
Residual Stress
22%
Shot Peening
22%
Ti-6Al-4V
21%
Dynamic Loads
21%
Aluminum
20%
Carbon Fiber
18%
Equal Channel Angular Extrusion
18%
Static Loading
17%
Grain Size
16%
Delamination
15%
Work Hardening
15%
Composite Laminate
15%
Ultimate Tensile Strength
13%
Scanning Electron Microscopy
13%
Grain Boundary
12%
Nanocrystalline
12%
Film
12%
Aluminum Alloy
12%
Shear Band
12%
Compressive Strength
11%
Finite Element Modeling
11%
Mechanical Metamaterials
10%
Magnesium Alloy
10%
Corrosion
10%
Amorphous Metal
10%
Stainless Steel
10%
Yield Stress
9%
Magnesium Alloys
9%
Nanostructure
9%
Crack Growth
9%
Wear Resistance
9%
Lithium Ion Battery
9%
Crack Propagation
9%
Dynamic Fracture
9%
Metamaterial
9%
Impact Testing
8%
Volume Fraction
8%
Titanium
7%
Perovskite Solar Cell
7%
Impact Resistance
7%
Three Dimensional Printing
7%
Crack Initiation
7%
Tensile Loads
7%
Bulk Metallic Glass
7%
Fretting Wear
7%
Waveguide
7%
Corrosion Fatigue
7%
Fiber-Reinforced Composite
6%
Carbon Carbon Composites
6%
Matrix Composite
6%
Graphene
6%
Crack Tip
6%
Polycrystal
6%
Indentation
6%
Fretting
6%
Crystal Defect
6%
Microhardness
6%
Surface Modification
6%
Thermoelectrics
5%
High Entropy Alloys
5%
Laminated Composite
5%
Composite Films
5%
Effect of Strain
5%
Alloying
5%
High Strength Steel
5%
Nanocomposite
5%
Polyetheretherketone
5%
Reinforced Plastic
5%
Mechanical Testing
5%
Fatigue Crack
5%
Adiabatic Shear Band
5%
Metal Matrix Composite
5%
Multilayer Film
5%
Stress Concentration
5%
Stress Field
5%
Composite Material
5%
Aluminosilicate
5%
Stress Intensity Factor
5%
Shear Strength
5%
Elastic Moduli
5%
Grain Refinement
5%
Glass Fiber
5%
Nucleation
5%
Cermet
5%