Silver-Nanowires Coated Pitch-Tuned Coiled Polymer Actuator for Large Contractile Strain under Light-Loading

We report a pitch-tuned coiled polymer actuator (CPA) with a compliant silver-nanowires (AgNWs) electrode. For a pitch-tuning of the CPA, we sequentially implement a twist-insertion for coiling a nylon-6 fiber, mechanical pre-stretching, and a couple of thermal treatments. When heated under a light-...

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Veröffentlicht in:International journal of precision engineering and manufacturing 2018-12, Vol.19 (12), p.1895-1900
Hauptverfasser: Pyo, Dongbum, Lim, Jeong-Mook, Mun, Seongcheol, Yun, Sungryul
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container_end_page 1900
container_issue 12
container_start_page 1895
container_title International journal of precision engineering and manufacturing
container_volume 19
creator Pyo, Dongbum
Lim, Jeong-Mook
Mun, Seongcheol
Yun, Sungryul
description We report a pitch-tuned coiled polymer actuator (CPA) with a compliant silver-nanowires (AgNWs) electrode. For a pitch-tuning of the CPA, we sequentially implement a twist-insertion for coiling a nylon-6 fiber, mechanical pre-stretching, and a couple of thermal treatments. When heated under a light-loading, the pitch-tuned CPA can produce a contractile strain far beyond the original one with a limited space to contract. Since the silver-nanowires electrode established on the coiled structure retains a fairly consistent electrical property allowing repetitive Joule-heating under a large uniaxial elongation with loading, the synergetic benefits from pitch-tuning and adopting the AgNWs as a Joule-heating electrode enables the CPA to produce electrically-controllable and large contractile strain under a light-loading that can be utilized for an artificial muscle of soft micro-robot.
doi_str_mv 10.1007/s12541-018-0217-6
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subjects Actuators
Electrodes
Elongation
Engineering
Heating
Industrial and Production Engineering
Materials Science
Microrobots
Muscles
Nanowires
Regular Paper
Strain
Tuning
title Silver-Nanowires Coated Pitch-Tuned Coiled Polymer Actuator for Large Contractile Strain under Light-Loading
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