Home /Research /An Ultrasensitive 3D Printed Tactile Sensor for Soft Robotics
OTHER

An Ultrasensitive 3D Printed Tactile Sensor for Soft Robotics

Saeb Mousavi, David Howard, Shuying Wu, Chun Wang

Year
2018
Citations
16
Access
Open access

Abstract

A new method is presented to manufacture piezoresistive tactile sensors using fused deposition modelling (FDM)printing technology with two different filaments made of thermoplastic polyurethane (TPU) and polylactic acid-graphene (PLA-G) composite. The sensor shows very high sensitivity (gauge factor~550) and excellent recovery to bending-induced strain and can detect a wide range of pressures. This new technology opens the door for 3D printing soft robotic parts capable of tactile communications.

Keywords

Gauge factorSoft roboticsThermoplastic polyurethanePiezoresistive effectPolylactic acid3d printed3D printingMaterials scienceFused deposition modelingTactile sensor

Related papers

Browse all OTHER papers