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Flexible Fiber Interconnects For Soft Mechatronics
Journal article   Peer reviewed

Flexible Fiber Interconnects For Soft Mechatronics

Snehal Jain, Thileepan Stalin, Elgar Kanhere and Pablo Valdivia y Alvarado
IEEE robotics and automation letters, Vol.5(3), pp.1-1
01/07/2020

Abstract

Additive Manufacturing Fabrication Flexible Robots Integrated circuit interconnections Soft Robot Applications Soft Sensors and Actuators Strain Substrates Three-dimensional displays Wires Yarn
Recent advances in flexible electronics, soft sensors, and soft actuators are paving the way towards replacing hard printed circuit boards for soft counterparts in various applications (e.g. soft robotics, wearable devices, etc.). The need to achieve robust electrical connections between both soft components and traditional rigid components poses many challenges. In particular, the in-extensiblility of commercially available interconnects (e.g. single/multi-strand conductive wires, conductive metallic tapes, etc.) can affect the structural properties of soft components. Herein we present the design and demonstrate the fabrication method for making flexible fiber interconnects (FFI) by printing flexible guide-paths and simultaneously layering and embedding conductive yarns within. The effectiveness and robustness of the flexible interconnects for use within soft structures is characterized. Simple FFI designs can be used within structures undergoing up to 200% strains without interfering with the subtract stress-strain behavior. Electrical conductivity is also shown to be stable even during cyclic loading.

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