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      Assessing the degradation of compliant electrodes for soft actuators

      1 , 1 , 1 , 1
      Review of Scientific Instruments
      AIP Publishing

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          High-speed electrically actuated elastomers with strain greater than 100%

          Electrical actuators were made from films of dielectric elastomers (such as silicones) coated on both sides with compliant electrode material. When voltage was applied, the resulting electrostatic forces compressed the film in thickness and expanded it in area, producing strains up to 30 to 40%. It is now shown that prestraining the film further improves the performance of these devices. Actuated strains up to 117% were demonstrated with silicone elastomers, and up to 215% with acrylic elastomers using biaxially and uniaxially prestrained films. The strain, pressure, and response time of silicone exceeded those of natural muscle; specific energy densities greatly exceeded those of other field-actuated materials. Because the actuation mechanism is faster than in other high-strain electroactive polymers, this technology may be suitable for diverse applications.
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            Electrostriction of polymer dielectrics with compliant electrodes as a means of actuation

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              Multi-functional dielectric elastomer artificial muscles for soft and smart machines

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                Author and article information

                Journal
                Review of Scientific Instruments
                Review of Scientific Instruments
                AIP Publishing
                0034-6748
                1089-7623
                October 2017
                October 2017
                : 88
                : 10
                : 105002
                Affiliations
                [1 ]École Polytechnique Fédérale de Lausanne (EPFL), Neuchâtel, Switzerland
                Article
                10.1063/1.4989464
                f1b7ada6-757b-4bd1-ae11-fb6e8eec3afe
                © 2017
                History

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