Engineering
Wind Turbine
100%
High Cycle Fatigue
90%
Fiber Orientation
47%
Finite Element Modeling
45%
Laminated Composite Structure
37%
Fatigue Damage
37%
Layer Thickness
32%
Offshore Wind Turbines
30%
Process Parameter
30%
Draping Process
30%
Virtual Prototyping
30%
Material Model
30%
Manufacturing Process
30%
Fiber-Reinforced Composite
30%
Computational Efficiency
30%
Powder Bed Fusion
30%
Additive Manufacturing Technology
30%
Finite Element Method
30%
Dimensional Problem
30%
Two Dimensional
30%
Blade Root
30%
Optimization Approach
27%
Fatigue Analysis
17%
Design Sensitivity Analysis
17%
Bias Extension Test
15%
Simulation Result
15%
Physical Prototyping
15%
Structural Performance
15%
Structural Design
15%
Genetic Algorithm
15%
Plane Bending
15%
Shell Element
15%
Composite Material
15%
Composite Structure
15%
Blade Geometry
15%
Max
15%
Mould Surface
15%
Composite Part
15%
Preliminary Analysis
15%
Design Parameter
15%
Constant Life Diagram
9%
S-N Curve
9%
Proportional Loading
9%
Equivalent Stress
9%
Assuming
9%
Rainflow Counting
9%
Blades Design
9%
Root Section
9%
Parametrization
9%
Function Norm
7%
Keyphrases
Manufacturing Process Parameters
30%
Offshore Wind Turbine Blade
30%
Transversely Isotropic
30%
Printing Orientation
30%
Structural Optimization
30%
Finite Element Model
30%
Root Section
30%
Additively Manufactured Metals
20%
Composite Parts
15%
Composite Mechanical Properties
15%
Parametrized
15%
Material Fabric
15%
Course Specification
15%
Drapability
15%
Layer Thickness
15%
Blade Geometry
15%
Wind Turbine Blade
15%
Solid-shell Element
15%
Out-of-plane Bending
15%
Multi-body Kinematics
15%
Multiple Courses
15%
Casting Mould
15%
Cumulative Method
9%
Layup Sequence
9%
High Cycle Fatigue Behavior
9%
P-mean
9%
Tailorability
9%
Complex Failures
9%
P-norm
9%
Strength Damage
9%
Static Fatigue
9%
Design Problems
9%
Gradient-based Approach
9%
Section Model
9%
Material Science
Laminated Composite
90%
High-Cycle Fatigue
45%
Fiber Reinforced Material
45%
Mechanical Strength
45%
Fiber-Reinforced Composite
30%
Glass Fiber
30%
Fatigue Damage
30%
Composite Material
15%
Finite Element Methods
15%
Powder Bed Fusion
15%
Three Dimensional Printing
15%
Fatigue Behavior
7%