Wearable soft artificial skin for hand motion detection with embedded microfluidic strain sensing
Jean-Baptiste Chossat, Yiwei Tao, Vincent Duchaine, Yong-Lae Park
Abstract
This paper describes the design and manufacturing of soft artificial skin with an array of embedded soft strain sensors for detecting various hand gestures by measuring joint motions of five fingers. The proposed skin was made of a hyperelastic elastomer material with embedded microchannels filled with two different liquid conductors, an ionic liquid and a liquid metal. The ionic liquid microchannels were used to detect the mechanical strain changes of the sensing material, and the liquid metal microchannels were used as flexible and stretchable electrical wires for connecting the sensors to an external control circuit. The two heterogeneous liquid conductors were electrically interfaced through flexible conductive threads to prevent the two liquid from being intermixed. The skin device was connected to a computer through a microcontroller instrumentation circuit for reconstructing the 3-D hand motions graphically. The paper also presents preliminary calibration and experimental results.
BibTeX
@inproceedings{icra2015_wearablesoftarti,
title = {Wearable soft artificial skin for hand motion detection with embedded microfluidic strain sensing},
author = {Jean-Baptiste Chossat and Yiwei Tao and Vincent Duchaine and Yong-Lae Park},
booktitle = {ICRA 2015},
year = {2015}
}