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2024 | OriginalPaper | Chapter

Evaluating the Shape of a Deformed PVDF Wearable Pressure Sensors by Analyzing an Acoustic Traveling Wave

Authors : Masoud Naghdi, Haifeng Zhang

Published in: Advances in Nonlinear Dynamics, Volume II

Publisher: Springer Nature Switzerland

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Abstract

The effect of the change in geometry of a strip due to rolling, folding, and stretching during its performance is discussed in this paper. The form of a flexible piezoelectric strip can considerably affect the time of flight (ToF) of an acoustic wave traveling alongside a strip. Different ToFs can follow the effect of curvature in the flexible strips, which can predict the geometrical shape of the strips performing as a flexible actuator or sensor.

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Literature
1.
go back to reference Li, C., Wu, P.-M., Lee, S., Gorton, A., Schulz, M.J., Ahn, C.H.: Flexible dome and bump shape piezoelectric tactile sensors using PVDF-TrFE copolymer. J. Microelectromech. Syst. 17(2), 334–341 (2008)CrossRef Li, C., Wu, P.-M., Lee, S., Gorton, A., Schulz, M.J., Ahn, C.H.: Flexible dome and bump shape piezoelectric tactile sensors using PVDF-TrFE copolymer. J. Microelectromech. Syst. 17(2), 334–341 (2008)CrossRef
2.
go back to reference Sharma, T., Aroom, K., Naik, S., Gill, B., Zhang, J.X.: Flexible thin-film PVDF-TrFE based pressure sensor for smart catheter applications. Ann.Biomed. Eng. 41(4), 744–751 (2013)CrossRef Sharma, T., Aroom, K., Naik, S., Gill, B., Zhang, J.X.: Flexible thin-film PVDF-TrFE based pressure sensor for smart catheter applications. Ann.Biomed. Eng. 41(4), 744–751 (2013)CrossRef
3.
go back to reference Chang, Y.M., Lee, J.S., Kim, K.J.: Heartbeat Monitoring Technique based on Corona-Poled PVDF Film Sensor for Smart Apparel Application. Solid State Phenomena Trans Tech Publications (2007) Chang, Y.M., Lee, J.S., Kim, K.J.: Heartbeat Monitoring Technique based on Corona-Poled PVDF Film Sensor for Smart Apparel Application. Solid State Phenomena Trans Tech Publications (2007)
4.
go back to reference Johar, M.A., Waseem, A., Hassan, M.A., Bagal, I.V., Abdullah, A., Ha, J.S.: Highly durable piezoelectric nanogenerator by heteroepitaxy of GaN nanowires on Cu foil for enhanced output using ambient actuation sources. Adv. Energy Mater. 10(47), 2002608 (2020)CrossRef Johar, M.A., Waseem, A., Hassan, M.A., Bagal, I.V., Abdullah, A., Ha, J.S.: Highly durable piezoelectric nanogenerator by heteroepitaxy of GaN nanowires on Cu foil for enhanced output using ambient actuation sources. Adv. Energy Mater. 10(47), 2002608 (2020)CrossRef
5.
go back to reference Chen, X., Han, X., Shen, Q.D.: PVDF-based ferroelectric polymers in modern flexible electronics. Adv. Electr. Mater. 3(5), 1600460 (2017)CrossRef Chen, X., Han, X., Shen, Q.D.: PVDF-based ferroelectric polymers in modern flexible electronics. Adv. Electr. Mater. 3(5), 1600460 (2017)CrossRef
6.
go back to reference Khatua, D.K., Kim, S.-J.: Perspective on the development of high performance flexible piezoelectric energy harvesters. J. Mater. Chem. C. 10(8), 2905–2924 (2022)CrossRef Khatua, D.K., Kim, S.-J.: Perspective on the development of high performance flexible piezoelectric energy harvesters. J. Mater. Chem. C. 10(8), 2905–2924 (2022)CrossRef
7.
go back to reference Wang, G., Liu, T., Sun, X.-C., Li, P., Xu, Y.-S., Hua, J.-G., et al.: Flexible pressure sensor based on PVDF nanofiber. Sens. Actuators A Phys. 280, 319–325 (2018)CrossRef Wang, G., Liu, T., Sun, X.-C., Li, P., Xu, Y.-S., Hua, J.-G., et al.: Flexible pressure sensor based on PVDF nanofiber. Sens. Actuators A Phys. 280, 319–325 (2018)CrossRef
8.
go back to reference Kervran, Y., De Sagazan, O., Crand, S., Coulon, N., Mohammed-Brahim, T., Brel, O.: Microcrystalline silicon: Strain gauge and sensor arrays on flexible substrate for the measurement of high deformations. Sens. Actuators A Phys. 236, 273–280 (2015)CrossRef Kervran, Y., De Sagazan, O., Crand, S., Coulon, N., Mohammed-Brahim, T., Brel, O.: Microcrystalline silicon: Strain gauge and sensor arrays on flexible substrate for the measurement of high deformations. Sens. Actuators A Phys. 236, 273–280 (2015)CrossRef
9.
go back to reference Matsuzaki, R., Akira, T.: Wireless flexible capacitive sensor based on ultra-flexible epoxy resin for strain measurement of automobile tires. Sens. Actuators A Phys. 140(1), 32–42 (2007)CrossRef Matsuzaki, R., Akira, T.: Wireless flexible capacitive sensor based on ultra-flexible epoxy resin for strain measurement of automobile tires. Sens. Actuators A Phys. 140(1), 32–42 (2007)CrossRef
10.
go back to reference Shin, K.-H., Moon, C.-R., Lee, T.-H., Lim, C.-H., Kim, Y.-J.: Flexible wireless pressure sensor module. Sens. Actuators A. 123, 30–35 (2015) Shin, K.-H., Moon, C.-R., Lee, T.-H., Lim, C.-H., Kim, Y.-J.: Flexible wireless pressure sensor module. Sens. Actuators A. 123, 30–35 (2015)
Metadata
Title
Evaluating the Shape of a Deformed PVDF Wearable Pressure Sensors by Analyzing an Acoustic Traveling Wave
Authors
Masoud Naghdi
Haifeng Zhang
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-50639-0_20

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