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Lorentz-force hydrophone characterization

机译:洛伦兹力水听器表征

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摘要

A Lorentz-force hydrophone consists of a thin wire placed inside a magnetic field. When under the influence of an ultrasound pulse, the wire vibrates and an electrical signal is induced by the Lorentz force, which is proportional to the pulse amplitude. In this study, a compact prototype of such a hydrophone is introduced and characterized, and the previously developed hydrodynamic model is refined. It is shown that the wire tension has a negligible effect on the measurement of pressure. The frequency response of the hydrophone reaches 1 MHz for wires with diameters between 70 and 400 ??m. The hydrophone exhibits a directional response such that the signal amplitude differs by less than 3 dB as the angle of the incident ultrasound pulse varies from ??20 0; and +20 0;. The linearity of the measured signal is confirmed across the 50 kPa to 10 MPa pressure range, and an excellent resistance to cavitation is observed. This hydrophone is of interest for high-pressure ultrasound measurements including high-intensity focused ultrasound (HIFU) and ultrasonic measurements in difficult environments.
机译:洛伦兹力水听器由放置在磁场内部的细线组成。当在超声脉冲的影响下,金属丝振动,并通过与脉冲振幅成比例的洛伦兹力感应出电信号。在这项研究中,介绍并表征了这种水听器的紧凑型原型,并对先前开发的水动力模型进行了改进。结果表明,线张力对压力测量的影响可忽略不计。对于直径在70到400?m之间的导线,水听器的频率响应达到1 MHz。水听器表现出方向响应,使得随着入射超声脉冲的角度从Δθ20 0变化,信号幅度相差小于3 dB。和+20 0;。在50 kPa至10 MPa的压力范围内都可以确认测量信号的线性,并且观察到了优异的抗气蚀性。这种水听器对于高压超声测量(包括高强度聚焦超声(HIFU)和困难环境中的超声测量)非常感兴趣。

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