1. Zhang, Q. and Scheinbeim, J. (2001). Electric EAP. In Electroactive Polymer (EAP) Actuators as Artificial Muscles – Reality, Potential and Challenges, 1st edn, Chapter 4, Ed. Bar-Cohen, Y., SPIE Press, Bellingham, Washington, DC.
2. Kofod, G., Kornbluh, R., Pelrine, R. and Sommers-Larsen, P. (2001). Actuation response of polyacrylate dielectric elastomers. In Smart Structures and Materials 2001: Electroactive Polymer Actuators and Devices, Ed. Bar-Cohen, Y., Proc. SPIE, 4329, pp. 141–147.
3. Pelrine, R., Kornbluh, R., Eckerle, J., Jeuck, P., Oh, S., Pei, Q. and Stanford, S. (2001). Dielectric elastomers: generator mode fundamentals and applications. In Smart Structures and Materials 2001: Electroactive Polymer Actuators and Devices, Ed. Bar-Cohen, Y., Proc. SPIE, 4329, pp. 148–156.
4. Szabo, J. P., Hiltz, J. A., Cameron, C. G., Underhill, R. S., Massey, J., White, B. and Leidner, J. (2003). In Elastomeric composites with high dielectric constant for use in Maxwell stress actuators. In Smart Structures and Materials 2003: Electroactive Polymer Actuators and Devices (EAPAD), Ed. Bar-Cohen, Y., Proc. SPIE, 5051, July, pp. 180–190.
5. High-speed electrically actuated elastomers with over 100% strain;Pelrine;Science,2000