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A study of deepwater bender disk transducer

机译:深水弯管盘式换能器的研究

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摘要

The bender disc transducer is a kind of low frequency sound source which is widely used in the sonobuoy and disposable underwater acoustic countermeasure equipment. It has the characteristics of low frequency, small size, simple structure and is light in weight. Traditional bender disc transducers with a cavity structure are not suitable in deep water resistance. In order to solve this problem, a free flooded structure is used in the bender disc transducer-which has a hole opening around the ring cavity structure without changing the external volume of the transducer. The water can thus enter the transducer, which greatly improves traditional bender disc transducer performance in deep water resistance. The acoustic properties of the deep water bender disc transducer are analyzed by using ANSYS finite element software The influences of its structural dimensions on the transducer resonant frequency and on the maximum transmitting voltage response are calculated. On the basis of the analysis, the structural parameters of the prototype transducer are determined and the performances of a virtual transducer are simulated and calculated. Finally, according to the simulation results of the software, the bender disc transducer is processed and manufactured. In conclusion its properties are tested. By the prototype performance test of the bender disk transducer, it is known that the resonant frequency is 5590Hz in air; the resonance frequency is 2000Hz in water; the radial maximum transmitting voltage response level(TVR} is 113.9dB (//μPa-m); and, the -3dB bandwidth of the transmitting voltage response curve can cover 1.9kHz to 2.2kHz. The axial maximum transmitting voltage response level is 115.8dB (//μPa-m); and, the -3dB bandwidth of the transmitting voltage response curve can cover 1.9kHz to 204kHz.
机译:弯曲盘式换能器是一种低频声源,广泛用于声波浮标和一次性水下声学对策设备中。具有低频,体积小,结构简单,重量轻的特点。具有腔结构的传统弯曲盘式换能器不适合用于深水阻力。为了解决该问题,在弯曲盘式换能器中使用了自由溢流结构,该结构在不改变换能器的外部体积的情况下在环形腔结构周围具有孔口。水因此可以进入换能器,这在深水阻力方面大大提高了传统的弯碟换能器性能。使用ANSYS有限元软件分析了深水弯盘式换能器的声学特性。计算了其结构尺寸对换能器共振频率和最大发射电压响应的影响。在分析的基础上,确定了原型换能器的结构参数,并对虚拟换能器的性能进行了仿真和计算。最后,根据软件的仿真结果,加工制造了弯碟换能器。总之,已经测试了其性质。通过弯曲盘式换能器的原型性能测试,可以知道空气中的共振频率为5590Hz。在水中共振频率为2000Hz。径向最大发射电压响应电平(TVR}为113.9dB(//μPa-m),发射电压响应曲线的-3dB带宽可以覆盖1.9kHz至2.2kHz,轴向最大发射电压响应电平为115.8dB dB(//μPa-m);并且,发射电压响应曲线的-3dB带宽可以覆盖1.9kHz至204kHz。

著录项

  • 来源
  • 会议地点 Harbin(CN)
  • 作者

    Tianfang Zhou; Yu Lan; Wei Lu;

  • 作者单位

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum; Plastics; Acoustics;

    机译:铝;塑料;声学;
  • 入库时间 2022-08-26 13:55:29

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