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Mechanical Fatigue Resistance of Piezoelectric PVDF Polymersopen access

Authors
Shin,Youn-HwanJung, InkiPark, HyunchulPyeon, Jung JoonSon, Jeong GonKoo, Chong MinKim, Sang taeKang, Chong-Yun
Issue Date
Oct-2018
Publisher
MDPI AG
Keywords
ferroelectric; PVDF; piezoelectric; mechanical fatigue resistance; remnant polarization
Citation
MICROMACHINES, v.9, no.10, pp.1 - 8
Indexed
SCIE
SCOPUS
Journal Title
MICROMACHINES
Volume
9
Number
10
Start Page
1
End Page
8
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/16009
DOI
10.3390/mi9100503
ISSN
2072666X
Abstract
The fatigue resistance of piezoelectric PVDF has been under question in recent years. While some report that a significant degradation occurs after 106 cycles of repeated voltage input, others report that the reported degradation originates from the degraded metal electrodes instead of the piezoelectric PVDF itself. Here, we report the piezoelectric response and remnant polarization of PVDF during 107 cycles of repeated compression and tension, with silver paste-based electrodes to eliminate any electrode effect. After applying repeated tension and compression of 1.8% for 107 times, we do not observe any notable decrease in the output voltage generated by PVDF layers. The results from tension experiments show stable remnant polarization of 5.5 μC/cm2, however, the remnant polarization measured after repeated compression exhibits a 7% decrease as opposed to the tensed PVDF. These results suggest a possible anisotropic response to stress direction. The phase analyses by Raman spectroscopy reveals no significant change in the phase content, demonstrating the fatigue resistance of PVDF.
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