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Biobased and Programmable Electroadhesive Metasurfaces

Qinyu Li, Antoine Le Duigou, Jianglong Guo, Vijay Kumar Thakur, Jonathan Rossiter, Liwu Liu, Jinsong Leng, Fabrizio Scarpa

Year
2022
Citations
9

Abstract

for convex shapes. The actuated adhesive surface shapes are generated via the architected metasurface structure, incorporating an electroadhesive component integrated with the programmable biobased materials. This biobased metasurface stimulated by the external environment provides a large taxonomy of shapes─from flat, circular, single/double concave, and wavy, to piecewise, polynomial, trigonometric, and airfoil configurations. The objects handled by the biobased metasurface can be fragile because of the high conformal matching between contacting surfaces and the absence of compressive adhesion. These natural fiber-based and environmentally friendly electroadhesive metasurfaces can significantly improve the design of programmable object handling technologies, and also provide a sustainable route to lower the carbon and emission footprint of smart structures and robotics.

Keywords

Materials scienceAdhesiveSmart materialComputer scienceComposite material

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