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Self‐sensing ionic polymer–metal composite actuating device with patterned surface electrodes

Karl Kruusamäe, Paola Brunetto, Salvatore Graziani, Andres Punning, Giovanna Di Pasquale, Alvo Aabloo

Year
2009
Citations
57

Abstract

Abstract Electroactive polymers are materials that change their properties (e.g. size and shape) while stimulated by an electric field/current. Conversely, they produce an electrical signal if bent. As both actuators and sensors, they are considered attractive for various applications, e.g. in biomedicine and robotics. Self‐sensing actuators made of these materials are still a topic of great interest among researchers. This paper proposes a new self‐sensing ionic polymer–metal composite (IPMC) actuating device. By specially patterning the opposite metal electrodes of an IPMC strip, an actuator and a sensor are formed on a single piece of the material. Self‐sensitivity is attained by measuring the changing resistance of the sensor part of the structure. This paper introduces the methods for patterning the surface of an IPMC strip and measuring the resistance change during the actuator work cycle, and gives experimental evidence of the suitability of the proposed method for the realization of a smart motion actuator. Copyright © 2009 Society of Chemical Industry

Keywords

ActuatorMaterials scienceElectroactive polymersElectrodeArtificial muscleSmart materialComposite numberNanotechnologyElectrical resistance and conductancePolymer

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