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Electromechanical Interplay in Deformable Dielectric Elastomer Networks
Noy Cohen,
Gal Debotton
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
28
Scopus citations
Overview
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Keyphrases
Deformable
100%
Polarization Field
100%
Dielectric Elastomer
100%
Elastomer Networks
100%
Polarizability
50%
Polymer Chain
50%
Chain Length
50%
Statistical Mechanics
50%
Macro Level
50%
Stress Field
50%
Mechanics-based
50%
Closed-form Expression
50%
Electrostrictive Effect
50%
Electromechanical Loading
50%
Chain Density
50%
Electrostrictive Material
50%
Induced Deformation
50%
Microscopic Parameters
50%
Engineering
Monomer
100%
Dielectric Elastomer
100%
Polarizability
50%
Experimental Measurement
50%
Induced Deformation
50%
Stress Field
50%
Polymer Chain
50%
Closed Form Expression
50%
Polarization Field
50%
Material Science
Dielectric Material
100%
Elastomer
100%
Density
50%
Stress Field
50%
Chemical Engineering
Elastomer
100%