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Size effects in capped ceramic underwater sound projectors

机译:加盖的陶瓷水下声音投影仪的尺寸效果

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Cymbal transducers are small, thin Class V flextensional transducers. A single cymbal element consists of a piezoelectric disk sandwiched between two metal cymbal-shaped endcaps which serve as mechanical transformers, converting the low impedance, small extensional motion of the ceramic into high impedance, large flextensional motion of the endcap. A cymbal transducer element is very small, with a thin profile. A single element is characterized by high Q, low efficiency, and medium power capability. When comparing cymbals to other transducers, the designer should consider their use in large flexible, low cost arrays. This paper represents the work of eight researchers over a period of several years. The effects of changes in materials and dimensions on the cymbal-type flextensional transducers, in-air and water-loaded, were examined experimentally and through finite-element-analysis (FEA). Experimental and FEA calculated results matched quite well. After gaining experience and confidence in the FEA models, extensive parametric studies were performed using FEA to investigate the size and material effects on cymbal transducer characteristics. The scaling factor (i.e., overall size), endcap stiffness, and cavity design have the strongest influence on resonance frequency. Adjusting the dimensions and materials used for drivers and endcaps provides a range in the fundamental flexural frequency from about 5 to 150 kHz in water. These results also indicate trends that can be used to extend the ranges further. The scaling factor, cavity depth, and PZT thickness had the strongest effects on the projector/receiver performance (TVR/FFVS). Investigations are underway to combine and optimize some of these parameters for potentially significant improvements in bandwidth and efficiency.
机译:换能器是小型,薄型V类弯曲张力换能器。单个c元件包括一个压电盘,该压电盘夹在两个金属c形端盖之间,该端盖用作机械变压器,将陶瓷的低阻抗,小延伸运动转换为端盖的高阻抗,大挠曲运动。 c换能器元件非常小,轮廓很薄。单个元件的特点是高Q,低效率和中等功率。在将片与其他换能器进行比较时,设计人员应考虑将其用于大型,灵活,低成本的阵列中。本文代表了八位研究人员在过去几年中的工作。实验和通过有限元分析(FEA)检验了材料和尺寸变化对in型挠性换能器(在空中和在水上)的影响。实验结果和FEA计算结果非常吻合。在获得对FEA模型的经验和信心后,使用FEA进行了广泛的参数研究,以研究尺寸和材料对c换能器特性的影响。比例系数(即整体尺寸),端盖刚度和腔体设计对共振频率的影响最大。调整用于驱动器和端盖的尺寸和材料可在水中提供大约5至150 kHz的基本挠曲频率范围。这些结果还表明可用于进一步扩展范围的趋势。缩放比例,腔体深度和PZT厚度对投影仪/接收器性能(TVR / FFVS)的影响最大。正在进行研究以组合和优化其中一些参数,以潜在地显着提高带宽和效率。

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