Abstract
We present a novel microfabrication process for realizing a new type of flexible sensory "smart skin". In this work, we focus on demonstration of a skin containing a two dimensional array of tactile sensors using polyimide and metal strain gauges. A novel polymer microfabrication approach coupled with surface release methods is demonstrated. The process yields flexible sensory skins in a low cost, efficient manner. Experimental characterization of the devices is also presented. The demonstrated sensors use metal-film strain gauges in a multiplexed two-dimensional array of tactile pixels (taxels) embedded in a polyimide thin film membrane to detect force distribution on the flexible skin. The arrays have been used to image force distributions and could be used with slip-detection friction measurement for robotic gripping application.
Cite
CITATION STYLE
Engel, J., Chen, J., Liu, C., Flachsbart, B. R., Selby, J. C., & Shannon, M. A. (2002). Development of polyimide-based flexible tactile sensing skin. In Materials Research Society Symposium - Proceedings (Vol. 736, pp. 165–170). Materials Research Society. https://doi.org/10.1557/proc-736-d4.5
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