Actuator Using Electrostriction Effect of Fullerenol-Doped Polyurethane Elastomer (PUE) Films(Nano-interface Controlled Electronic Devices)(<Special Section>Recent Progress of Organic Molecular Electronics)
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概要
- 論文の詳細を見る
Polyurethane elastomer (PUE) films similar to polymer gel materials have been found to exhibit the electrostriction effect. We proposed the application their to a moving device such as an actuator without ionic solvent using the electrostriction effect of PUE. The actuators are of monomorph type fabricated by PUE film and metal electrodes evaporated at different thicknesses on the film surface. Because these actuators work at high voltage more than 1 KV, we controlled the molecular structure of the films by doping Ceo derivatives (fullerenol) into PUE so that the actuators could operate under a low voltage. In order to clear the bending mechanism of actuators, we measured the space charge of PUE films using the pulsed electroacoustic method.
- 社団法人電子情報通信学会の論文
- 2004-02-01
著者
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KYOKANE Jun
Department of Electrical Engineering, Faculty of Engineering, Osaka University
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Ueda Tsutomu
Research And Development Division Nitta Corporation Ltd.
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Kyokane J
Department Of Electrical Engineering Nara National College Of Technology
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Kyokane Jun
Department Of Electrical Engineering Nara National College Of Technology
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TSUJIMOTO Kenji
Department of Electrical Engineering, Nara National College of Technology
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YANAGISAWA Yuki
Department of Electrical Engineering, Nara National College of Technology
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FUKUMA Masumi
Department of Electrical Engineering, Matsue National College of Technology
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Fukuma Masumi
Department Of Electrical Engineering Matsue National College Of Technology
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Tsujimoto Kenji
Department Of Electrical Engineering Nara National College Of Technology
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Yanagisawa Yuki
Department Of Electrical Engineering Nara National College Of Technology
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Fukuma Masumi
Department Of Electrical Engineering Matsue College Of Technology
関連論文
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- Actuator Using Electrostriction Effect of Fullerenol-Doped Polyurethane Elastomer (PUE) Films(Nano-interface Controlled Electronic Devices)(Recent Progress of Organic Molecular Electronics)
- Space Charge Measurement in MgO/LDPE Nanocomposite up to Breakdown under DC Ramp Voltage
- Blue Electroluminescence from Poly(p-phenylene)Solubilized by Perfluoropropylation
- Syntheses and Properties of Fluoroalkylated Oligomers Containing Oligo(oxyethylene) Units
- Space Charge Characteristics of Fullerenol and Carbon Nanotube Doped Polyurethane Elastomer (PUE) Actuators(Characterization of Organic Devices)(Recent Progress in Organic Molecular Electronics)
- Optical Properties of Perfluoroalkylated Poly(diphenylacetylene)
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