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层叠式PVDF薄膜超声换能器及其频谱特性 被引量:1

Laminated PVDF Ultrasonic Transducer and Its Spectral Charactor
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摘要 提出了一种利用聚偏二氟乙烯(PVDF)压电薄膜层叠的组合结构方案设计超声换能器,用以解决柔性薄膜超声换能器输入/输出信号增益低的问题;并通过理论推导及数学软件仿真给出了该结构换能器的幅频特性。利用仿真结果可估算出层叠式结构超声探头的增益、谐振频率和通频带与PVDF薄膜厚度及薄膜层数之间的对应关系。这对于缩短高频超声探头的设计周期,降低开发成本,提高探头转换增益及检测灵敏度都具有重要意义。 A layer-built ultrasonic transducer based on PVDF piezoelectric film is proposed to solve one of the key technical issues concerning the low input/output gain in the piezoelectric film ultrasonic transducer. The ampli- tude frequency characteristics of ultrasonic transducer is educed by theory deduction and software simulation. More- over the dependence of its gain, resonance frequency and bandwidth on the thickness and the layer number of the film could be reasonably caculated by the simulation result, which is very important for shortening the design cycle, reducing the product cost of ultrasonic transducer,and improving its conversion gain and sensitivity.
出处 《压电与声光》 CAS CSCD 北大核心 2013年第3期379-382,共4页 Piezoelectrics & Acoustooptics
基金 国家自然科学基金资助项目(61076113)
关键词 聚偏二氟乙烯(PVDF)压电薄膜 层叠 幅频特性 超声换能器 PVDF piezoelectric film lamination amplitude frequency characteristics ultrasonic transducer
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  • 1罗元国,王保良,黄志尧,李海青.空气耦合式超声波无损检测技术的发展及展望[J].仪器仪表学报,2005,26(z2):742-744. 被引量:16
  • 2陈换过,闫云聚,姜节胜,刘芹.HHT在复合材料机翼盒段结构小损伤检测中的应用[J].振动与冲击,2006,25(3):81-84. 被引量:6
  • 3董正宏,王元钦,李静.航天复合材料空气耦合式超声检测技术研究及应用[J].装备指挥技术学院学报,2007,18(2):79-84. 被引量:13
  • 4夏利利,杨文革,董正宏.非接触超声检测技术在航天无损检测中的研究与应用[J].装备指挥技术学院学报,2007,18(4):58-62. 被引量:13
  • 5Kelly S P,Farlow R, Hayward G. Applications of through-air ultra-sound for rapid NDE scanning in the aerospace industry [ J ]. IEEEUltrasonics, Ferroelectrics, and Frequency Control, 1996,43(4):581-591.
  • 6Hayward G, Gachagan A.An evaluation of 1-3 connectivity compositetransducers for air coupled ultrasonic applications [ J ] . Acoust. Soc.Amer. vol., 1996,99(4) : 2148-2157.
  • 7Kleinschiraidt, Magori V. Ultrasonic robotic sensors for exact shortrange distance measurement and object identification[ J]. IEEE Ul-trasonic Symposium, 1985,(6) : 457-463.
  • 8Fionilo A S. Design and characterization of a PVDF ultrasonic rangesensor[ J] . IEEE Ultrasonics Symposium, 1992, ( 6) : 688-694.
  • 9L. Satyanarayan, Michael R. Haberman, Yves H. Berthelot. Cellularpolypropylene polymer foam as air-coupled ultrasonic transducer Ma-terials [J ] . IEEE Transactions on ultrasonics, ferroelectrics, and fre-quency control, 2010, 57( 10) : 2343-2355.
  • 100. Krauss, R. Gerlach, J. Fricke. Experimental and theoretical in-vestigations of Si02-aerogel matched pieze-transducers [ J ]. Ultra-sonics, 1994,32(3): 217-222.

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