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Functionalized textiles for interactive soft robotics

Nicholas Farrow, Lauren McIntire, Nikolaus Correll

Year
2017
Citations
17

Abstract

We use a conductive fabric substrate as a building material for a soft sensor to extend the functionality of soft actuators. We use PCB etching techniques to apply a pattern to the fabric, yielding distinct conductive surfaces within the same textile. We connect these via flexible wire bus embedded in silicone, terminating in a flexible PCB. We show how touch and metal objects can be localized along the length of the composite fabric strip. We demonstrate an example soft robotic application, by replacing the constraint layer component in a PneuFlex-style soft actuator with the self contained sensing strip. We show that the augmented composite actuator is able to interact with conductive objects in the environment using a capacitive touch sensing with applications in grasping and human-robot interaction.

Keywords

Soft roboticsCapacitive sensingActuatorElectrical conductorComputer scienceComposite numberRobotMaterials scienceLayer (electronics)Soft sensor

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