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Effective Behavior of Nematic Elastomer Membranes
Pierluigi Cesana
, Paul Plucinsky
, Kaushik Bhattacharya
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
29
Scopus citations
Overview
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Keyphrases
Scale Feature
100%
Wrinkling
100%
Effective Behavior
100%
Elastomer Membrane
100%
Nematic Elastomers
100%
Oscillation
50%
Liquid Crystal Elastomers
50%
Effective Energy Density
50%
Microstructure
25%
Stress State
25%
Uniaxial Tension
25%
Shear Stress
25%
Γ-limit
25%
Shear Strain
25%
Thin Membrane
25%
Deformation Gradient
25%
Equibiaxial Tension
25%
Biaxial Tension
25%
Elastic Membrane
25%
Effective State
25%
Bulk-flow Model
25%
Planar Deformation
25%
Nematic Director
25%
No-fines
25%
Engineering
Scale Feature
100%
Fine Scale
100%
Elastomer
100%
Effective Energy
50%
Biaxial Tension
50%
Flux Density
50%
Liquid Crystal Elastomer
50%
Thin Membrane
25%
Deformation Gradient
25%
Elastic Membrane
25%
Shear Strain
25%
Material Science
Elastomer
100%
Energy Density
100%
Liquid Crystal Elastomer
100%
Shear Strain
50%