4.6 Article

Data Glove Using Soft and Stretchable Piezoresistive Sensors

Journal

MICROMACHINES
Volume 13, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/mi13030372

Keywords

stretch sensor; piezoresistive; data glove

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This research investigates the design and implementation of elastomer-based piezoresistive strain sensors and applies them to a data glove to demonstrate their application. The primary objective is to integrate two sensing piezoresistive elements as one single-piece sensor that detects the bending angles of the finger joints. Experiments conducted have demonstrated that these soft, flexible, and stretchable piezoresistive sensors are repeatable and viable for data-glove and other wearable applications.
This research investigates the design and implementation of elastomer-based piezoresistive strain sensors and applies them to a data glove to demonstrate their application. The piezoresistive strain sensors are made by mixing Ecoflex 00-30 and carbon-black nanoparticles and then using stencil and doctor blading to deposit the piezoresistive traces as a mass fabrication technique. The primary objective is to integrate two sensing piezoresistive elements as one single-piece sensor that detects the bending angles of the metacarpophalangeal and proximal interphalangeal joints of each finger. Using a unique zig-zag pattern allows to selectively mask any unwanted piezoresistive sensing. The sensor has a gage factor of 0.68. Experiments conducted have demonstrated that the use of these soft, flexible, and stretchable piezoresistive sensors is repeatable and viable sensors for data-glove and has the potential for other wearable applications.

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