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Research on the Low Frequency Broadband Piezoelectric-Magnetostrictive Hybrid Transducer

机译:低频宽带压电 - 磁致伸缩混合传感器研究

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摘要

The effective ways for underwater transducer to lower its operating frequency, to broaden its bandwidth, and to develop its miniaturization are investigated. According to the theory of coupled multimode vibrations, a novel Hybrid transducer is developed. Different from the traditional Hybrid transducer, the improved point is the low frequency vibration controlled by the zigzag piezoelectric section and the high frequency vibration controlled by the one-dimensional magnetostrictive section. Through building the equivalent circuit model and finite element model, the performances of transducer will be predicted. The analysis shows that FEM is suitable for analyzing such a Hybrid underwater transducer within 5% deviation. The corresponding tests show that the volume and weight of the Hybrid transducer undergo a sharp drop after improvement. The novel Hybrid transducer has a distinct advantage in low frequency, bandwidth, and miniaturization. The prototype has the resonance at 1.82 kHz and 3.76 kHz. It can be used effectively in the bandwidth of 1.5 kHz to 5 kHz. Its main body has an external diameter of 54 mm. The whole prototype is 235 mm long and weighs 2.61 kg.
机译:研究了水下传感器以降低其运行频率的有效方法,以扩大其带宽,并开发其小型化。根据耦合多模振动理论,开发了一种新型混合换能器。与传统的混合传感器不同,改进点是由Z字形压电部分控制的低频振动和由一维磁致伸缩部分控制的高频振动。通过构建等效电路模型和有限元模型,将预测换能器的性能。分析表明,有限元件适用于在5%偏差范围内分析这种混合水下换能器。相应的测试表明,混合换能器的体积和重量在改进后经历急剧下降。新型混合传感器在低频,带宽和小型化中具有明显的优势。原型具有1.82 kHz和3.76 kHz的共振。它可以有效地使用1.5 kHz至5 kHz的带宽。其主体外径为54毫米。整个原型长235毫米,重2.61千克。

著录项

  • 作者

    Duo Teng; Ning Zhu;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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