Engineering
Joints (Structural Components)
100%
Robot
99%
Finite Element Method
98%
Delamination
74%
Parallel Manipulator
66%
Wind Turbine
64%
Transmissions
60%
Design Optimization
53%
Degree of Freedom
49%
Manipulator
48%
Tasks
46%
Finite Element Modeling
38%
Waveguide
36%
Fatigue Loading
30%
Fatigue Damage
30%
Singularities
27%
Experimental Result
25%
Revolute Joint
24%
Crack Propagation
24%
Material Optimisation
23%
Design Analysis
23%
Multiscale
22%
Crack Growth Rate
22%
Composite Structure
22%
Stop Band
22%
Laminated Composite Structure
21%
Crack Density
20%
Sandwich Structures
20%
Numerical Example
20%
Fiber-Reinforced Composite
18%
Manufacturing Constraint
18%
Composite Material
18%
High Cycle Fatigue
18%
Face Sheet
16%
Cohesive Element
16%
Kinematic Model
16%
Delamination Growth
16%
Muscle Activity
15%
Delamination Front
15%
Energy Engineering
15%
Mixed Mode
15%
Shape Design
15%
Design Sensitivity Analysis
15%
Parametric Study
15%
Beam Structure
15%
Defects
15%
Non-Crimp Fabric
15%
Optimization Method
14%
Optimization Approach
14%
Crack Front
14%
Arcan Fixture
14%
Simulation Method
14%
Body Motion
14%
Cylindrical Shell
14%
Eigenfrequencies
14%
Kinematic Analysis
14%
Epoxy Composite
13%
Illustrates
13%
Bending Stiffness
13%
Internals
13%
Binders
13%
Free Vibration
13%
Actuation
13%
Failure Mechanism
13%
Digital Image Correlation
13%
Frame
13%
Energy Release Rate
13%
Permanent Magnet
13%
Objective Function
12%
Simulation Result
12%
Constant Amplitude
12%
Offshore Wind Turbines
12%
Nonlinearity
12%
Fatigue Life
12%
Experimental Characterization
12%
Dynamic Models
12%
Optimisation Problem
11%
Process Zone
11%
Optimum Design
11%
Damage Model
11%
Failure Criterion
11%
Mechanical Design
11%
Transients
11%
Exoskeleton (Robotics)
11%
Applicability
11%
Stiffness Model
11%
Cohesive Zone
11%
Damage Evolution
11%
Fatigue Failure
11%
Optimal Design
11%
Design Parameter
11%
Loading Condition
11%
Bridging
10%
Cyclic Loading
10%
Sliding Mode Control
10%
Prosthetics
10%
Reduced Order Model
10%
Multiaxial Fatigue
10%
End-Users
10%
Crack Initiation
10%
Keyphrases
Exoskeleton
15%
Lower Limb Exoskeleton
10%
Revolute Joint
8%
Four-bar Linkage
7%
Shape Design Optimization
7%
Steady Fluids
7%
Mechanical Engineering Design
7%
Planar Four-bar Linkage
7%
Mixed-mode Crack Propagation
7%
Composite Laminates
7%
Multiple Delaminations
7%
Floating Nodes
7%
Planar Linkage
7%
Exact Synthesis
7%
Finite Element Model
7%
Walking Aids
7%
Design Control
7%
Gait Control
7%
Efficient Mechanism
7%
Passive Shoulder Exoskeleton
7%
Off-axis Cracks
5%
Constraint Equation
5%
Physical Assistance
5%
Multiaxial Fatigue
5%
Process Zone
5%
Crack Tip
5%
Viscoelastic Layer
5%
Planar Parallel Mechanism
5%
Shoulder Mechanism
5%