Stretching the Capabilities of Energy Harvesting: Electroactive Polymers Based on Dielectric Elastomers

Author:

Kornbluh Roy D.,Pelrine Ron,Prahlad Harsha,Wong-Foy Annjoe,McCoy Brian,Kim Susan,Eckerle Joseph,Low Tom

Publisher

Springer New York

Reference27 articles.

1. Bar-Cohen Y (ed) (2004) Electroactive polymer (EAP) actuators as artificial muscles: reality, potential and challenges, vol 2. SPIE Press, Bellingham, WA

2. Pelrine R, Kornbluh R, Pei Q, Joseph J (2000) High-speed electrically actuated elastomers with over 100% strain. Science 287(5454):836–839

3. Kornbluh R, Pelrine R, Pei Q, Oh S, Joseph J (2000) Ultrahigh strain response of field-actuated elastomeric polymers. In: Proceedings of SPIE, smart structures and materials 2000: electroactive polymer actuators and devices (EAPAD), vol 3987, p 51

4. Brochu P, Pei Q (2010) Advances in dielectric elastomers for actuators and artificial muscles. Macromol Rapid Commun 31(1):10–36

5. Carpi F, DeRossi D, Kornbluh R, Pelrine R, Sommer-Larsen P (2008) Dielectric elastomers as electromechanical transducers. Fundamentals, materials, devices, models and applications of an emerging electroactive polymer technology. Elsevier, Amsterdam, The Netherlands

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