Performance of Piezoelectric Power Generation of Multilayered Poly(vinylidene fluoride) under High Mechanical Strain
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概要
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In this study, we examine the effective usage of a piezoelectric polymer for electric power generation on the basis of polymeric features such as high robustness, high flexibility, and easy formability. Theoretical calculation elucidates the potential of piezoelectric generation of the polymer with a large elastic strain. It is confirmed by the experimental results that the multilayered structure of the rolled poly(vinylidene fluoride) (PVDF) films enhances the performance of piezoelectric generation in proportion to the number of the PVDF layers and shows an apparent $d_{33}$ of 7.1 nC/N for the film rolled 200 times. The generated charge as a function of the applied stress shows a linear increase. As a practical usage, we design the mechanical system equipped with a lever for applying a large foot-step-derived stress to embedded PVDF films. The performance of electric power generation using the system and the charging characteristics with the relatively large load capacitor are presented.
- 2011-09-25
著者
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Nakajima Takashi
Faculty Of Science Tokyo University Of Science
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Okamura Soichiro
Faculty of Science, Tokyo University of Science, Shinjuku, Tokyo 162-8601, Japan
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Furukawa Takeo
Kobayasi Institute of Physical Research, Kokubunji, Tokyo 185-0022, Japan
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FURUKAWA Takeo
Kobayasi Institute of Physical Research
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Okaya Keiko
Faculty of Science, Tokyo University of Science, Shinjuku, Tokyo 162-8601, Japan
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Ohta Kanako
Faculty of Science, Tokyo University of Science, Shinjuku, Tokyo 162-8601, Japan
関連論文
- Ultrafast Polarization Switching in Ferroelectric Polymer Thin Films at Extremely High Electric Fields
- Performance of Piezoelectric Power Generation of Multilayered Poly(vinylidene fluoride) under High Mechanical Strain
- Electric-Field-Induced Polarization Enhancement of Vinylidene Fluoride/Trifluoroethylene Copolymer Ultrathin Films
- Intrinsic Switching Characteristics of Ferroelectric Ultrathin Vinylidene Fluoride/Trifluoroethylene Copolymer Films Revealed Using Au Electrode
- Switching Dynamics in Ferroelectric Vinylidene Fluoride–Trifluoroethylene Copolymer Thin Film with $\alpha$,$\omega$-Dihexylsexithiophene Semiconductor Layer
- Nanosecond Switching Characteristics of Ferroelectric Ultrathin Vinylidene Fluoride/Trifluoroethylene Copolymer Films under Extremely High Electric Field
- Polarization Switching Dynamics of Vinylidene Fluoride/Trifluoroethylene Copolymer Thin Films under High Electric Field at Various Temperatures
- Intrinsic Switching Characteristics of Ferroelectric Ultrathin Vinylidene Fluoride/Trifluoroethylene Copolymer Films Revealed Using Au Electrode