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Magnetoactive elastomers with periodic and random microstructures
Evan Galipeau
, Stephan Rudykh
,
Gal Debotton
, Pedro Ponte Castañeda
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
62
Scopus citations
Overview
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Keyphrases
Periodic Microstructure
100%
Magnetoactive Elastomer
100%
Random Microstructure
100%
Magnetic Field
16%
Loading Conditions
16%
Stiffness
16%
Pure Shear
16%
Particle Distribution
16%
Finite Element Model
16%
Particle Shape
16%
Hexagonal Cells
16%
Random Distribution
16%
Magnetic Susceptibility
16%
Effective Response
16%
Local Field
16%
Closed-form Expression
16%
Effective Properties
16%
Coupling Effect
16%
Magnetically Induced
16%
Magnetostriction
16%
Actuation Stress
16%
Magnetoelastic Effect
16%
Magneto-mechanical Coupling
16%
Ponte
16%
Elliptical Fiber
16%
Periodic Distributions
16%
Deformation Concentration
16%
Effective Susceptibility
16%
Mathematics
Closed Form
100%
Finite Element Method
100%
Magnetic Field
100%
Effective Property
100%
Local Field
100%
Statistical Distribution
100%
Material Science
Elastomer
100%
Particle Shape
16%
Finite Element Modeling
16%
Magnetic Susceptibility
16%
Electrostriction
16%
Engineering
Magnetic Permeability
16%