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Optimization of the structure of 1-3 piezocomposite materials to maximize the performance of an underwater acoustic transducer using equivalent circuit models and finite element method

机译:使用等效电路模型和有限元方法优化1-3压电复合材料的结构,以最大化水下声换能器的性能

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The structure of 1-3 piezocomposites has been optimized with such design variables as volume fraction of piezoceramics inside the composite and the thickness and aspect ratio of the piezoceramic pillars to enhance the performance of an underwater acoustic transducer operating in the thickness mode of the piezocomposites. Influence of the design variables on the transducer performance was analyzed with equivalent circuits and finite element method. In operation of the transducer, inter-pillar modes of vibration were likely to occur between piezoceramic pillars due to the lattice-structure of the piezocomposite, which could deteriorate the performance of the transducer. The structure of the 1-3 piezocomposite plate has been optimized to maximize transmitting, receiving and transmitting-receiving performance of the underwater acoustic transducer while preventing the coupling of the thickness mode with inter-pillar modes within the frequency range of interest. As results, volume fraction (VF) of 40.5% and aspect ratio (AR) of 0.4 showed the highest transmitting performance while VF of 30.0% and AR of 0.5 showed the highest receiving performance. For the transmitting-receiving performance, VF of 43.7% and AR of 0.5 were the optimal. Genetic algorithm was used in the optimal design. (C) 2015 The Japan Society of Applied Physics
机译:1-3压电复合材料的结构已通过以下设计变量进行了优化:复合材料内部的压电陶瓷的体积分数,压电陶瓷柱的厚度和纵横比,以增强在压电复合材料的厚度模式下工作的水下声换能器的性能。用等效电路和有限元方法分析了设计变量对传感器性能的影响。在换能器的操作中,由于压电复合材料的晶格结构,在压电陶瓷柱之间可能会发生柱间振动模式,这可能会使换能器的性能下降。 1-3压电复合材料板的结构已经过优化,可最大程度地提高水声换能器的发射,接收和发射-接收性能,同时防止厚度模式与感兴趣频率范围内的柱间模式耦合。结果,体积分数(VF)为40.5%,纵横比(AR)为0.4表现出最高的发送性能,而VF为30.0%,AR为0.5表现出最高的接收性能。对于收发性能,VF为43.7%,AR为0.5是最佳的。遗传算法被用于优化设计。 (C)2015年日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2015年第7s1期|07HB03.1-07HB03.7|共7页
  • 作者

    Pyo Seonghun; Roh Yongrae;

  • 作者单位

    Kyungpook Natl Univ, Sch Mech Engn, Taegu 702701, South Korea.;

    Kyungpook Natl Univ, Sch Mech Engn, Taegu 702701, South Korea.;

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