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Research and Fabrication of Broadband Ring Flextensional Underwater Transducer

机译:宽带环杂散水下换能器的研究与制作

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摘要

At present, high-speed underwater acoustic communication requires underwater transducers with the characteristics of low frequency and broadband. The low-frequency transducers also are expected to be low-frequency directional for realization of point-to-point communication. In order to achieve the above targets, this paper proposes a new type of flextensional transducer which is constructed of double mosaic piezoelectric ceramic rings and spherical cap metal shells. The transducer realizes broadband transmission by means of the coupling between radial vibration of the piezoelectric rings and high-order flexural vibration of the spherical cap metal shells. The low-frequency directional transmission of the transducer is realized by using excitation signals with different amplitude and phase on two mosaic piezoelectric rings. The relationship between transmitting voltage response (TVR), resonance frequency and structural parameters of the transducer is analyzed by finite element software COMSOL. The broadband performance of the transducer is also optimized. On this basis, the low-frequency directivity of the transducer is further analyzed and the ratio of the excitation signals of the two piezoelectric rings is obtained. Finally, a prototype of the broadband ring flextensional underwater transducer is fabricated according to the results of simulation. The electroacoustic performance of the transducer is tested in an anechoic water tank. Experimental results show that the maximum TVR of the transducer is 147.2 dB and the operation bandwidth is 1.5–4 kHz, which means that the transducer has good low-frequency, broadband transmission capability. Meanwhile, cardioid directivity is obtained at 1.4 kHz and low-frequency directivity is realized.
机译:目前,高速水下声学通信需要水下换能器,具有低频和宽带的特性。低频换能器还预计将是用于实现点对点通信的低频方向。为了实现上述目标,本文提出了一种新型的粪便换能器,该传感器由双马赛克压电陶瓷环和球形盖金属壳构成。换能器通过压电环的径向振动与球形盖金属壳的高级弯曲振动实现宽带传输。通过使用具有不同幅度和相位的激励信号来实现换能器的低频方向传输,并在两个马赛克压电环上实现不同的幅度。通过有限元软件COMSOL分析了传输电压响应(TVR),换能器的谐振频率和结构参数之间的关系。还优化了换能器的宽带性能。在此基础上,进一步分析了换能器的低频方向性,获得了两个压电环的激励信号的比率。最后,根据仿真结果制造宽带环粪便水下换能器的原型。换能器的电声性能在AneChoic水箱中进行测试。实验结果表明,换能器的最大TVR为147.2 dB,操作带宽为1.5-4 kHz,这意味着换能器具有良好的低频,宽带传输能力。同时,以1.4 kHz获得的心脂型方向性,实现了低频方向性。

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