This paper deals with the polarization process of piezoelectric nanofibrous mats of PVdF-TrFE by using a corona discharge process. With respect to traditional contact poling this process reduces the electrical breakdown risk which could easily occur when a highly porous mat is placed between two solid electrodes. Different set-up configurations were investigated by varying the applied voltage and the distance between the needle and the sample. The polarized nanofibers show a piezoelectric strain coefficients (mathrmd_33) comparable with the values of a commercial stiff film.
Gasperini L., Selleri G., Pegoraro D., Fabiani D. (2022). Corona poling for polarization of nanofibrous mats: advantages and open issues. 345 E 47TH ST, NEW YORK, NY 10017 USA : Institute of Electrical and Electronics Engineers Inc. [10.1109/CEIDP55452.2022.9985267].
Corona poling for polarization of nanofibrous mats: advantages and open issues
Gasperini L.;Selleri G.;Fabiani D.
2022
Abstract
This paper deals with the polarization process of piezoelectric nanofibrous mats of PVdF-TrFE by using a corona discharge process. With respect to traditional contact poling this process reduces the electrical breakdown risk which could easily occur when a highly porous mat is placed between two solid electrodes. Different set-up configurations were investigated by varying the applied voltage and the distance between the needle and the sample. The polarized nanofibers show a piezoelectric strain coefficients (mathrmd_33) comparable with the values of a commercial stiff film.File | Dimensione | Formato | |
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Corona_poling_for_polarization_of_nanofibrous_mats_advantages_and_open_issues.pdf
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