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Keyphrases
Mechanical Behavior
100%
Porous Tantalum
100%
Direct Compression
100%
Ultra-high Molecular Weight Polyethylene (UHMWPE)
100%
Microstructural
40%
Design Parameters
40%
Monoblock
40%
Polyethylene Thickness
40%
Porosity
20%
Biological Structures
20%
Proposed Design
20%
Two Dimensional
20%
Operating Conditions
20%
Finite Element Model
20%
Factorial Analysis
20%
Structural Response
20%
Stiffness
20%
Parametric Analysis
20%
Apparent Elastic Modulus
20%
Finite Element Modeling
20%
Total Joint Replacement
20%
Porosity Level
20%
Stress-strain
20%
Elastic Stress
20%
Metal Backing
20%
Polyethylene Layer
20%
Fixation Properties
20%
Overall Stiffness
20%
One-component
20%
Wear Properties
20%
Implant Stiffness
20%
Layer Thickness
20%
Small Strain
20%
Structure Stiffness
20%
Modeling Approaches
20%
INIS
compression
100%
evaluation
100%
porous materials
100%
tantalum
100%
polyethylenes
100%
molecular weight
83%
design
66%
stiffness
66%
thickness
50%
microstructure
33%
porosity
33%
implants
33%
finite element method
33%
parametric analysis
33%
levels
16%
interactions
16%
values
16%
strains
16%
wear
16%
increasing
16%
layers
16%
metals
16%
modeling
16%
Engineering
High Molecular Weight Polyethylene
100%
Porosity
100%
Mechanical Property
100%
Rigidity
80%
Design Parameter
40%
Implant
20%
Joints (Structural Components)
20%
Finite Element Modeling
20%
Two Dimensional
20%
Parametric Study
20%
Main Parameter
20%
Structural Response
20%
Parametric Analysis
20%
Layer Thickness
20%
Elastic Stress
20%
Wear Property
20%
Modulus of Elasticity
20%
Fem Model
20%
Material Science
Mechanical Property
100%
Polyethylene
100%
Tantalum
100%
Finite Element Modeling
33%
Elastic Moduli
16%
Wear Property
16%