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An elastomeric ionic hydrogel sensor for large strains

Prakash Manandhar, Paul Calvert, John R. Buck

Year
2011
Citations
2

Abstract

An elastomeric hydrogel membrane made of an epoxy-amine network is demonstrated to be a linear strain sensor for large strains up to 20%. Sodium chloride is added in the gel to maintain conductivity at a relatively dry state. The elastic and electrical response are both shown to be linear. Water loss from the hydrogel due to evaporation from the surface is slow. This results in a trend in the impedance of the sensor which can be easily corrected by simple signal processing. A prototype sleeve that uses these sensors for proprioceptive sensing of joint angle motion on a robotic arm is demonstrated as a potential application.

Keywords

Materials scienceElastomerComposite materialElectrical impedanceConductivitySIGNAL (programming language)EvaporationEpoxyTransducerAcoustics

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