IROS 2022poster0 citations

Self-morphing Soft Parallel-and-coplanar Electroadhesive Grippers Based on Laser-scribed Graphene Oxide Electrodes

Jianglong Guo, Djen Kuhnel, Qiukai Qi, Chaoqun Xiang, Van Anh Ho, Charl Faul, Jonathan Rossiter

Abstract

Electroadhesion is a versatile and controllable adhesion mechanism that has been used extensively in robotics. Soft electroadhesion embodies electrostatic adhesion in soft materials and is required for shape-adaptive and safe grasping of curved objects and delicate materials. In this work, we present a soft electroadhesive fabrication method based on laser scribing graphene oxide on a silicone film, which is cost-effective, facile and green. The method can be used to generate complex electroadhesive patterns without molds or stencils. We then present a 2D finite element model to demonstrate the shape-changing behavior and electric field distributions of a dual-mode parallel dielectric elastomer actuation and coplanar electroadhesion structure. The soft electroadhesive fabrication method based on laser-scribed graphene oxide electrodes and its experimental characterization results, together with its shape-morphing simulation model are expected to enable the wider adoption of soft electroadhesion in future robotics.

BibTeX
@inproceedings{iros2022_selfmorphingsoft,
  title = {Self-morphing Soft Parallel-and-coplanar Electroadhesive Grippers Based on Laser-scribed Graphene Oxide Electrodes},
  author = {Jianglong Guo and Djen Kuhnel and Qiukai Qi and Chaoqun Xiang and Van Anh Ho and Charl Faul and Jonathan Rossiter},
  booktitle = {IROS 2022},
  year = {2022}
}