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Keyphrases
Functionally Graded Materials
100%
Topology Optimization
82%
Metamaterials
75%
Negative Thermal Expansion
54%
Negative Poisson's Ratio
54%
Thermoelastic Structure
50%
Stress Mitigation
50%
Stress Formulation
50%
Energy-based
50%
Functionally Graded Structure
50%
Unified Approach
50%
Metal Additive Manufacturing
50%
Image-based
50%
Multi-material
41%
Double Negative Index
41%
Stiffness
41%
Bi-material
33%
Material Solutions
33%
Thermal Stress
33%
Pareto
33%
Design Objectives
33%
Optimization Problem
33%
Additive Manufacturing
32%
Multi-material Topology Optimization
25%
Lightweight Design
25%
Negative Index Metamaterials
25%
Strengths-based
25%
Truss Structures
25%
Thermoelastic Properties
20%
Minimization Problem
16%
Compliance Minimization
16%
Stress Constraints
16%
Material Symmetry
16%
Thermoelasticity
16%
Design Framework
16%
Design Space
16%
Material Design
16%
Negative Value
16%
Objective Changes
16%
Volume Constraint
16%
Scale Size
16%
Linear Thermoelasticity
16%
Material Microstructure
16%
Initial Design
16%
Volume Fraction
16%
Pareto Front
16%
Size Effect
16%
Optimal Structural Design
16%
Induced Stress Field
16%
Material Volume
16%
Engineering
Functionally Graded Material
100%
Rigidity
75%
Optimal Design
66%
Optimisation Problem
58%
Poisson Ratio
50%
Additive Manufacturing
50%
Strain Energy
33%
Thermal Stress
33%
Material Microstructure
25%
Design Space
25%
Spatial Distribution
25%
Design Objective
25%
Scale Size
25%
Pareto Front
25%
Size Effect
25%
Relative Importance
25%
Initial Design
25%
Material Volume
25%
Negative Value
25%
Base Material
25%
Lightweight Design
25%
Interpolation Scheme
24%
Structural Design
24%
Singularities
16%
Minimization Problem
16%
Stress Constraint
16%
Objective in Design
16%
Optimum Structural Design
16%
Energy Minimisation
16%
Elastic Strain
16%
Thermal Strain
16%
Mechanical Strain
16%
Stress Field
16%
Plane Stress
16%
Energy Term
16%
Continuous Variation
16%
Physical Meaning
16%
Design Domain
16%
Stress Peak
16%
Single Material
16%
Induced Stress
16%
Mixture Composition
16%
Problem Formulation
16%
Pure Bending
12%
Section Area
8%
Design Solution
8%
Design Criterion
8%
Nonlinearity
8%
Computational Cost
8%
Cross Section
8%