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  4. Matrix stiffness dependent electro-mechanical response of dipole grafted silicones
 
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2012
Journal Article
Title

Matrix stiffness dependent electro-mechanical response of dipole grafted silicones

Abstract
The properties of dielectric elastomer actuators can be optimized by modifying the dielectric or mechanical properties of the dielectric elastomer. This paper presents the simultaneous control of both dielectric and mechanical properties, in a silicone elastomer network comprising cross-linker, chains and grafted molecular dipoles. Chains with two different molecular weights were each combined with varying amounts of grafted dipole. Chemical and physical characterization showed that networks with stoichiometric control of cross-linking density and permittivity were obtained, and that longer chain lengths resulted in higher electrical field response due to the reduction in cross-linking density and correspondingly in mechanical stiffness. Both actuation sensitivities were enhanced by 6.3 and 4.6 times for the short and long chain matrix material, respectively.
Author(s)
Kussmaul, B.
Risse, S.
Wegener, M.
Kofod, G.
Krüger, H.
Journal
Smart materials and structures : SMS  
DOI
10.1088/0964-1726/21/6/064005
Language
English
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
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