Output performance analysis of a piezoelectric micro nuclear battery powered by radioisotopes

This paper investigates the output performance (output voltage, electrical energy output, power output) of a piezoelectric micro nuclear battery powered by radioisotopes. The theoretical formulations are base on Euler–Bernoulli beam theory and include the effects of load nonlinearity due to radioact...

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Veröffentlicht in:Physica scripta 2024-12, Vol.99 (12), p.125218
Hauptverfasser: Yang, Ruikai, Wang, Zhongqiang, Li, Lingfeng, Wang, Xingyu, Chen, Yu, Peng, Jianshe, Yang, Jie, Yang, Liu
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container_issue 12
container_start_page 125218
container_title Physica scripta
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creator Yang, Ruikai
Wang, Zhongqiang
Li, Lingfeng
Wang, Xingyu
Chen, Yu
Peng, Jianshe
Yang, Jie
Yang, Liu
description This paper investigates the output performance (output voltage, electrical energy output, power output) of a piezoelectric micro nuclear battery powered by radioisotopes. The theoretical formulations are base on Euler–Bernoulli beam theory and include the effects of load nonlinearity due to radioactive source. By employing extended Hamilton’s principle, the nonlinear electromechanical Lagrange equations are derived then solved by using Runge–Kutta method to obtain the dynamic output response. The results based on present electromechanical dynamic model are validated through direct comparisons with the results in the open literatures. The effects of initial gap, length of the piezoelectric layer, thickness of the collector and load impedance on the output voltage, energy output and power output of the piezoelectric micro nuclear battery are discussed in detail.
doi_str_mv 10.1088/1402-4896/ad8caf
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subjects micro nuclear battery
nickel-63 radioisotope
output performance
piezoelectricity
title Output performance analysis of a piezoelectric micro nuclear battery powered by radioisotopes
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