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Rapid Fabrication of Electro-Adhesive Devices with Inkjet Printed Electrodes

Academic Article
Publication Date:
2020
abstract:
This letter proposes a procedure for the rapid prototyping and on-demand manufacturing of thin film flexible electro-adhesive devices (EADs) made with a commercial polyimide dielectric layer, inkjet printed interdigitated silver electrodes and blade coated silicone elastomer encapsulation backing. As a proof demonstration, flexible thin-film EADs featuring 9.6 cm active area, 315 ?m thickness and 0.7 g weight have been manufactured and tested over different adhering substrates showing peak adhesive shear stresses of up to 56.67 kPa, fast response time (11 ms for initial activation and 0.3 s for full electrification) and little energy requirements (from 1.3 mJ for initial activation to 20 mJ for full electrification and with a subsequent power consumption of about 1 mW for long-term grasp holding). Practical application of the manufactured EADs within a gripper for the grasping and handling of real objects that include a glass bottle, a hollow carbon fiber tube, a cardboard box, a box with thin polypropylene envelope and a polypropylene bottle is also demonstrated.
Iris type:
01.01 Articolo in rivista
Keywords:
electro-adhesion; Grippers and other end-effectors; inkjet printing; soft sensors and actuators
List of contributors:
Vertechy, Rocco; Chen, Yi; Berdozzi, Nicolò; MOLINARI TOSATTI, Lorenzo; Fassi, Irene
Authors of the University:
FASSI IRENE
MOLINARI TOSATTI LORENZO
Handle:
https://iris.cnr.it/handle/20.500.14243/409446
Published in:
IEEE ROBOTICS AND AUTOMATION LETTERS
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85080903673&origin=inward
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