Page 96 - 《应用声学》2023年第1期
P. 96
92 2023 年 1 月
Li Yunkai, Wang Bowen, Zhang Bing. Study on piezo- 驱动研究 [J]. 声学学报, 2016, 41(3): 428–434.
magnetic effect of galfenol alloy and force sensor[J]. Trans- Li Yingming, Mo Xiping, Chai Yong, et al. Research on
actions of China Electrotechnical Society, 2019, 34(17): nonlinear driving manner of Galfenol transducer[J]. Acta
3615–3621. Acustica, 2016, 41(3): 428–434.
[9] Yoo J H, Flatau A B. A bending-mode Galfenol electric [13] Zheng X J, Liu X E. A nonlinear constitutive model
power harvester[J]. Journal of Intelligent Material Sys- for Terfenol-D rods[J]. Journal of Applied Physics, 2005,
tems and Structures, 2012, 23(6): 647–654. 97(5): 61.
[10] Piquette J C, McLaughlin E A, Yang G, et al. Nonlin- [14] Cohen A. A Padé approximant to the inverse Langevin
ear output control in hysteretic, saturating materials[J]. function[J]. Rheologica Acta, 1991, 30(3): 270–273.
The Journal of the Acoustical Society of America, 2001, [15] Le Gall Y, Boucher D, Lunon X, et al. A 300 Hz
110(2): 865–876. Janus-Helmholtz transducer for ocean acoustic tomog-
[11] Pan Y Z, Mo X P, Li Y M, et al. A magnetostrictive raphy[C]//Proceedings of OCEANS’93. IEEE, 1993:
underwater transducer directly driven by Iron-Gallium I278–I281.
alloy(Galfenol) without bias magnetic field[C]. Proc. [16] Zhao J, Mo X, Chai Y, et al. Research on nonlinear
OCEANS MTS/IEEE Washington, F, 2015. driving manner of Fe-Ga alloy transducer[C]//2021 OES
[12] 李英明, 莫喜平, 柴勇, 等. 铁镓复合棒换能器设计及非线性 China Ocean Acoustics (COA). IEEE, 2021: 41–45.