磁致伸缩发生器作为水下声波发生器

R. Rustamaji, Kania Sawitri, M. Ahdan
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引用次数: 0

摘要

目前,有关磁致伸缩效应在水下应用的研究仍然有限。声波或声波比电磁波或光更容易在水下传播。声波或声音可以通过利用磁致伸缩效应产生,当铁磁性材料(如铁或镍)的棒被磁化并与另一个磁场相互作用时,这种效应就会发生,导致金属棒的振动。本研究旨在设计并实现一种磁致伸缩发生器,作为水下应用频率为1 ~ 10khz的声波发生器,由调谐LC振荡器电路和使用直流电压磁化的铁磁性金属棒组成。磁致伸缩发生器的测量和测试结果表明:(1)如装有薄膜,可在距离15厘米的空气中发出频率为±8.62 kHz的声波或声音而不失真,距离每增加1厘米,平均振幅下降±0.648 dB;(2)如装有薄膜并密封在防水外壳内;能够将频率为±8.31 kHz的声波在水下传播至7厘米的距离而不失真,距离每增加1厘米,平均幅度减少±4.217 dB。总的来说,所设计的磁致伸缩发生器可以在水下产生和传输声波或声音。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetostriction Generator as Acoustic Wave Generator for Underwater Applications
At this time the research related to the effect of magnetostriction for underwater applications is still limited. Acoustic or sound waves are more easily propagated underwater than electromagnetic waves or light. An acoustic wave or sound can be generated by utilizing the magnetostriction effect, where this effect occurs when a rod of ferromagnetic material such as iron or nickel is magnetized and interacts with another magnetic field, resulting in vibration of the metal rod. This research aims to design and realize a magnetostriction generator as an acoustic wave generator at a frequency of 1 to 10 kHz for underwater applications, consisting of: a tuned LC oscillator circuit, and a ferromagnetic metal rod which is magnetized using a dc voltage. The results of measurements and testing of the magnetostriction generator show: (1) if it is equipped with a membrane, can work to emit an acoustic wave or sound at a frequency of ± 8.62 kHz in the air up to a distance of 15 cm without distortion with an average amplitude decrease of ± 0.648 dB for each the distance increased by 1 cm, and (2) if equipped with a membrane and enclosed in a waterproof casing, capable of transmitting the acoustic waves at a frequency of ± 8.31 kHz underwater up to a distance of 7 cm without distortion with an average amplitude decrease of ± 4.217 dB for each the distance up 1 cm. Overall the magnetostriction generator designed can work to generate and transmit the acoustic waves or sound underwater, as expected.
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