Preview

Plasticheskie massy

Advanced search

Investigation of the PVDF film properties polarized in glow discharge plasma

https://doi.org/10.35164/0554-2901-2024-06-13-15

Abstract

The results of investigation of effect of PVDF films polarization in glow discharge plasma on their properties are presented. The dependences of the piezoelectric coefficient d33 on the plasma polarization parameters – treatment time, discharge voltage and current density – were obtained experimentally. The IR spectra of PVDF film samples polarized in glow discharge plasma are presented. The character of the influence of polarization parameters on the values of IR spectral peaks characteristic of α- and β-phases is determined.

About the Authors

B. A. Basov
Bauman Moscow State Technical University
Russian Federation

Moscow



K. T. Makarova
Bauman Moscow State Technical University
Russian Federation

Moscow



K. M. Moiseev
Bauman Moscow State Technical University
Russian Federation

Moscow



A. S. Osipkov
Bauman Moscow State Technical University
Russian Federation

Moscow



References

1. Кочервинский В.В. Применение сегнетоэлектрических полимеров в технике и медицине. М.: Palmarium Academic Publishing, 2021. 205 с. DOI:10.23868/gc122911.

2. Kochervinskii V.V. et al. Structural, optical, and electrical properties of ferroelectric copolymer of vinylidenefluoride doped with Rhodamine 6G dye // Journal of Applied Physics. 2019. Vol. 125(I. 4). РР. 044103. DOI:10.1063/1.5067272.

3. Kawai H. The piezoelectricity of PVDF japan j // Appl. Phys. 1969. Vol. 8. P. 975. DOI:10.1143/jjap.8.975.

4. Tashiro K. Crystal Structure and Phase Transition of PVDF and Related Copolymers. In: H.S. Nalwa, Ed., Ferroelectric Polymers: Chemistry, Physics and Applications, Marcel Dekker, New York, 1995, РР. 63–180.

5. Лукиев И.В. и др. Исследование структуры и свойств полимерных композитных мембран на основе сополимера винилиденфторида с тетрафторэтиленом и поливинилиденфторида, сформированных методом электроформирования. Известия Санкт-Петербургского государственного технологического института (технического университета). 2022. N 63(89). С. 45–50. DOI 10.36807/1998-9849-2022-63-89-45-50

6. Wang Y. et al. Effects of stretching on phase transformation of PVDF and its copolymers: A review. Open Physics. 2023. Vol. 21(I.1). PP. 20220255. DOI:10.1515/phys-2022-0255.

7. Gregorio J.R., R.C. Capitao. Morphology and phase transition of high melt temperature crystallized poly (vinylidene fluoride) // Journal of Materials Science. 2000. Vol. 35. РР. 299–306. DOI:10.1023/A:1004737000016

8. Tim R. Dargaville et al. Characterization, Performance and Optimization of PVDF as a Piezoelectric Film for Advanced Space Mirror Concepts. SANDIA REPORT. SAND2005-6846. Unlimited Release Sandia National Laboratories. 2005. Р. 49.

9. McKinney J.E. et al. McKinney J. E., Davis G. T., Broadhurst M. G. Plasma poling of poly (vinylidene fluoride): piezo‐and pyroelectric response. Journal of Applied Physics. 1980. Vol. 51. PP. 1676-1681. DOI:10.1063/1.327775.

10. Giacometti J. A., Oliveira O. N. Corona charging of polymers. IEEE Transactions on Electrical Insulation. 1992. Vol. 27. PP. 924–943. https://doi.org/10.1109/14.256470.

11. Gregorio Jr R. Determination of the α, β, and γ crystalline phases of poly (vinylidene fluoride) films prepared at diff erent conditions. Journal of applied polymer science. 2006. Vol. 100. PP. 3272–3279. DOI:10.1002/app.23137

12. Кочервинский В.В. и др. Исследование подвижности в пленках сегнетоэлектрического поливинилиденфторида различной структуры. Физика твердого тела. 2010. Т. 52. N 9. С. 1841–1848.


Review

For citations:


Basov B.A., Makarova K.T., Moiseev K.M., Osipkov A.S. Investigation of the PVDF film properties polarized in glow discharge plasma. Plasticheskie massy. 2024;(6):13-15. (In Russ.) https://doi.org/10.35164/0554-2901-2024-06-13-15

Views: 321


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0554-2901 (Print)