Engineering
Finite Element Analysis
100%
Polymerization
64%
Multiscale
27%
Debonding
24%
Microchannel
24%
Dynamic Fracture
20%
Composite Material
20%
Thin Films
18%
Cohesive Failure
17%
Boundary Layer
16%
Matrix Interface
14%
Numerical Study
14%
Delamination
13%
Numerical Scheme
13%
Multiscale Modeling
13%
Fiber-Reinforced Polymer
12%
Crack Propagation
11%
Cohesive Model
11%
Boundary Condition
11%
Experimental Observation
11%
Two Dimensional
10%
Discretization
10%
Microscale
10%
Failure Model
10%
Fiber-Reinforced Composite
10%
Layer Interaction
10%
Cohesive Law
10%
Finite Strain
9%
Turbulent Boundary Layer
9%
Direct Numerical Simulation
9%
Objective Function
8%
Flaps
8%
Mesoscale
8%
Macroscale
8%
Dimensional Accuracy
8%
Solitary Wave
8%
Active Cooling
8%
Tensiles
7%
Stress Wave
7%
Material Interface
7%
Loading Condition
7%
Composite Panel
7%
Computational Cost
7%
Transients
7%
Maximum Temperature
7%
Genetic Algorithm
7%
Fluid-Structure Interaction
7%
Contact Law
7%
Non-Uniform Rational B-Splines
7%
Anisotropic
6%
Keyphrases
Frontal Polymerization
63%
Interface-enriched Generalized Finite Element Method
39%
Composite Materials
21%
Dynamic Fracture
20%
Cohesive Failure
19%
Finite Element Scheme
17%
Thermoset Composites
17%
Thermosetting Polymers
16%
Microvascular Composites
16%
Bi-material
15%
Actively-cooled
15%
Crack Propagation
15%
Computational Design
14%
Granular Media
14%
Dicyclopentadiene
13%
Fracture Problems
13%
Numerical Scheme
13%
Failure Model
13%
Wave Propagation
12%
Multiscale Modeling
12%
Elastodynamics
12%
Non-matching Meshes
11%
Fiber-reinforced Polymer Composites
11%
Numerical Simulation
11%
Finite Element
11%
Matrix-particle Interface
11%
Delamination
11%
Cohesive Model
10%
Direct numerical Simulation
10%
Shock Wave Boundary Layer Interaction
10%
Shape Optimization
10%
Granular Chain
10%
Particulate Composites
10%
Three-dimensional (3D)
10%
Spectral Scheme
10%
Front Velocity
10%
Cohesive Law
10%
Generalized Finite Element
10%
Two Dimensional
10%
Turbulent Boundary Layers
9%
Generalized FEM
9%
Self-assembled Monolayer
9%
Cohesive Modeling
9%
Debonding
9%
Fiber-reinforced Composites
9%
Solid Propellant
9%
Dynamic Delamination
9%
Loading Conditions
9%
Numerical Results
9%
Numerical Analysis
8%