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Current-voltage characteristics of lead zirconate titanate/nickel bilayered hollow cylindrical magnetoelectric composites
Authors:Pan De-An  Zhang Shen-Gen  Tian Jian-Jun  Sun Jun-Sai  Alex A. Volinsky  Qiao Li-Jie
Affiliation:School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China; Faculty of Materials and Metallurgical Engineering, Kunming University of Science and Technology, Kunming 650093, China; Department of Mechanical Engineering, University of South Florida, Tampa FL 33620, USA
Abstract:Current--voltage measurements obtained from lead zirconatetitanate/nickel bilayered hollow cylindrical magnetoelectriccomposite showed that a sinusoidal current applied to the coppercoil wrapped around the hollow cylinder circumference inducesvoltage across the lead zirconate titanate layer thickness. Thecurrent--voltage coefficient and the maximum induced voltage in leadzirconate titanate at 1~kHz and resonance (60.1~kHz) frequenciesincreased linearly with the number of the coil turns and the appliedcurrent. The resonance frequency corresponds to theelectromechanical resonance frequency. The current--voltagecoefficient can be significantly improved by optimizing themagnetoelectric structure geometry and/or increasing the number ofcoil turns. Hollow cylindrical lead zirconate titanate/nickelstructures can be potentially used as current sensors.
Keywords:current--voltage coefficient   bilayered cylindricalcomposites   electromechanical resonance   current sensor
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