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Hyperinelasticity. Part II: A stretch-based formulation
Afshin Anssari-Benam
School of Electrical and Mechanical Engineering
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peer-review
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Engineering
Elastomer
100%
Model Parameter
100%
Crystallinity
100%
Principal Stretch
100%
Volume Ratio
50%
Hydrogel
50%
Hardening Behavior
50%
Energy Function
50%
Compressive Deformation
50%
Scalar Field
50%
Rate Deformation
50%
Principal Invariant
50%
Tensile Deformation
50%
Liquid Crystal
50%
Core Model
50%
Deformation Energy
50%
Semicrystalline Polymer
50%
INIS
deformation
100%
modeling
66%
applications
66%
volume
33%
range
33%
polymers
33%
elastomers
33%
power
16%
implementation
16%
simulation
16%
yields
16%
hardening
16%
energy
16%
datasets
16%
foams
16%
capture
16%
hydrogels
16%
scalar fields
16%
augmentation
16%
liquid crystals
16%
Physics
Elastomer
100%
Crystallinity
100%
Liquid Crystal
50%
Crystal Structure
50%
Material Science
Elastomer
100%
Hydrogel
50%
Crystal Structure
50%
Liquid Crystal
50%
Semi-Crystalline Polymer
50%
Chemical Engineering
Elastomer
100%
Hydrogel
50%