Paper
9 April 2010 The development of compact electroactive polymer actuators suitable for use in full page Braille displays
Lee J. Gorny, Brian C. Zellers, Minren Lin, Sheng Liu, Qiming M. Zhang
Author Affiliations +
Abstract
Piezoceramic actuators, presently used in commercial Braille displays, are limited by the material's relatively small strain and brittle nature. For this reason, it is a challenge to develop full page, compact, graphic Braille displays that are affordable. A newly developed material composed of P(VDF-TrFE-CFE) terpolymer blended with 5% P(VDF-CTFE) electrostrictive actuators exhibits large strains (~5% at 150V/μm), fast actuation (>5 mm/s), and has a relatively high elastic modulus (1.2 GPa). This material exhibits more than double the elastic energy density and a 50% higher modulus of the original electrostrictive terpolymer. Hence, the potential for viable actuators in compact, full page Braille displays is greater than ever, provided actuators can be manufactured reliably in quantity. This talk presents recent work in scaling production of such rolled actuators. Actuators extend .5 mm, are confined to the 2.5 mm grid spacing of conventional Braille text, generate >0.5 N force and operate at less than 200V, thus meeting the primary requirements for a commercialized Braille display. To manufacture these actuators, cast films are stretched using a roll-to-roll zone drawing machine that is capable of producing quantities of 2 μm thick film with high quality. What follows is a discussion of this machine, the roll-to-roll film stretching process and an assessment of the resulting stretched film for use as linear strain actuators, like those used in our Braille cell.
© (2010) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Lee J. Gorny, Brian C. Zellers, Minren Lin, Sheng Liu, and Qiming M. Zhang "The development of compact electroactive polymer actuators suitable for use in full page Braille displays", Proc. SPIE 7642, Electroactive Polymer Actuators and Devices (EAPAD) 2010, 76420B (9 April 2010); https://doi.org/10.1117/12.847467
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CITATIONS
Cited by 3 scholarly publications.
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KEYWORDS
Actuators

Polymers

Electroactive polymers

Manufacturing

Electrodes

Polymer thin films

Polymeric actuators

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