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A bio-inspired multi degree of freedom actuator based on a novel cylindrical ionic polymer-metal composite material.

, , , , and . Robotics Auton. Syst., 62 (1): 53-60 (2014)

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Aquatic robotic propulsor using ionic polymer-metal composite artificial muscle., , and . IROS, page 1269-1274. IEEE, (2004)Design and Modeling of a New Biomimetic Soft Robotic Jellyfish Using IPMC-Based Electroactive Polymers., and . Front. Robotics and AI, (2019)A Novel Ionic Polymer Metal ZnO Composite (IPMZC)., , and . Sensors, 11 (5): 4674-4687 (2011)A Soft-Robotic Harbor Porpoise Pectoral Fin Driven by Coiled Polymer Actuators as Artificial Muscles., , , and . Adv. Intell. Syst., 1 (4): 1900028 (2019)Multidirectional Cylindrical Piezoelectric Force Sensor: Design and Experimental Validation., , , and . Sensors, 20 (17): 4840 (2020)Hydroxychloroquine-induced hyperpigmentation., , , , , , and . The Journal of dermatology, 39 (10): 859--860 (October 2012)A bio-inspired multi degree of freedom actuator based on a novel cylindrical ionic polymer-metal composite material., , , , and . ICAR, page 435-440. IEEE, (2011)A bio-inspired multi degree of freedom actuator based on a novel cylindrical ionic polymer-metal composite material., , , , and . Robotics Auton. Syst., 62 (1): 53-60 (2014)An electroactive IPMC-based cylindrical robotic platform., , , and . URAI, page 713-714. IEEE, (2013)Numerical and experimental investigation of a biomimetic robotic jellyfish actuated by Ionic Polymer-Metal Composite., , , , , and . URAI, page 204-205. IEEE, (2016)