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锥形结构超声阵列换能器研究

Research on Ultrasonic Array Transducer with Conical Structure
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摘要 传统外形构造的换能器难以适应水下高速运动。因此,在头部为圆形或椭圆形的普通阵列式换能器基础上,该文设计了一种锥形结构的超声阵列式换能器,其可适用于水下高速航行器。通过有限元仿真确定了阵元尺寸与阵列构造,分析了换能器整体的声场分布,研制换能器样机并测试其电声性能。样机测试结果与仿真结果呈现出较好的一致性,换能器指向性与发射电压响应满足使用需求。结果表明,此种换能器结构具有实际的可行性。 The transducers with traditional structure are difficult to adapt to underwater high-speed movement.This paper proposes a design scheme of ultrasonic array transducer with conical structure based on the design of ordinary array transducer with circular or elliptical head.The proposed transducer can be suitable for underwater high-speed aircraft.The size and structure of the array element are determined by finite element simulation,the overall sound field distribution of the transducer is analyzed.A prototype of the transducer is developed and its electroacoustic performance is tested.The test results of the prototype are in good agreement with the simulation results.The directivity and emission voltage response of the transducer meet the application requirements.The results show that the structure of the transducer is practical and feasible.
作者 朱时雨 王月兵 赵成功 李世平 ZHU Shiyu;WANG Yuebing;ZHAO Chenggong;LI Shiping(College of Metrology and Measurement Engineering,China Jiliang University,Hangzhou 310018,China;Beijing Institute of Electronic System Engineering,Beijing 100854,China)
出处 《压电与声光》 CAS 北大核心 2022年第2期278-282,共5页 Piezoelectrics & Acoustooptics
基金 国防军工计量“十三五”科研计划基金资助项目(JSJL2018207B007)。
关键词 锥形结构 超声 换能器 水下高速运动 conical structure ultrasonic transducer high-speed underwater motion
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  • 1刘继伍.一种小尺寸低频宽带声源换能器的设计[J].声学技术,2013,32(S1):285-286. 被引量:4
  • 2柴勇,莫喜平,刘永平,崔政.磁致伸缩-压电联合激励凹简型发射换能器[J].声学学报,2006,31(6):523-526. 被引量:16
  • 3林书玉.一种新型径向复合压电陶瓷超声换能器径向振动特性研究[J].陕西师范大学学报(自然科学版),2007,35(1):34-39. 被引量:6
  • 4W A Smith.The role of piezocomposites in ultrasonic transducers[C].IEEE Ultrasonics Symposium,1989:755-766. 被引量:1
  • 5Parrini L. New technology for the design of advanced ultra- sonic transducers for high-power applications. Ultrasonics, 2003; 41(4): 261- 269. 被引量:1
  • 6Chacon D, Rodrzguez-Corral G, Gaete-Garreton L, Riera- Franco de Sarabia E, Gallego-Juarez J A. A procedure for the efficient selection of piezoelectric ceramics constituting high-power ultrasonic transducers. Ultrasonics, 2006; 44: e517-e521. 被引量:1
  • 7Heikkola E, Miettinen K, Nieminen P. Multiobjective op- timization of an ultrasonic transducer using NIMBUS. Ul- trasonics, 2006; 44(4): 368-380. 被引量:1
  • 8Johnson M P. Velocity control and the mechanical impedance of single degree of freedom electromechanical vibrators. J. Acoust. Soc. Am., 1988; 84(6): 1994-2001. 被引量:1
  • 9Dubus B, Debus J C. Analysis of mechanical limitations of high power piezoelectric transducers using finite element modeling. Ultrasonics, 1991; 29(3): 201-207. 被引量:1
  • 10Gough P T, Knight J S. Wide bandwidth, constant beamwidth acoustic projectors: a simplified design proce- dure. Ultrasonics, 1989; 27(4): 234-238. 被引量:1

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