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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Calibration of miniature medical ultrasonic hydrophones for frequencies in the range 100 to 500 kHz using an ultrasonically absorbing waveguide
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Calibration of miniature medical ultrasonic hydrophones for frequencies in the range 100 to 500 kHz using an ultrasonically absorbing waveguide

机译:使用超声波吸收波导管对微型医疗超声波水听器在100至500 kHz范围内的频率进行校准

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摘要

Enhancements to the existing primary standard optical interferometer and narrowband tone-burst comparison calibration methods for miniature medical ultrasonic hydrophones of the membrane type over the frequency range 100 to 500 kHz are described. Improvements were realized through application of an ultrasonically absorbing waveguide made of a low-frequency-absorbing tile used in sonar applications which narrows the spatial extent of the broad acoustic field. The waveguide was employed in conjunction with a sonar multilayered polyvinylidene difluoride (PVDF) hydrophone used as a transmitting transducer covering a frequency range of 100 kHz to 1 MHz. The acoustic field emanating from the ultrasonically absorbing waveguide reduced the significance of diffracted acoustic waves from the membrane hydrophone ring and the consequent interference of this wave with the direct acoustic wave received by the active element of the hydrophone during calibration. Four membrane hydrophone make/ models with ring sizes (defined as the inner diameter of the annular mounting ring of the hydrophone) in the range 50 to 100 mm were employed along with a needle hydrophone. A reference membrane hydrophone, calibrated using the NPL primary standard optical interferometer in combination with the ultrasonically absorbing waveguide, was subsequently used to calibrate the other four hydrophones by comparison, again using the ultrasonically absorbing waveguide. In comparison to existing methods, the use of the ultrasonically absorbing waveguide enabled the low-frequency calibration limit of a membrane hydrophone with a ring diameter of 50 mm to be reduced from 400 kHz to 200 kHz.
机译:描述了对现有的初级标准光学干涉仪和窄带音突发比较校准方法的增强,该校准方法适用于100至500 kHz频率范围的膜片型微型医用超声水听器。通过应用超声波吸收波导实现了改进,该超声波吸收波导由用于声纳应用的低频吸收瓦制成,从而缩小了宽声场的空间范围。该波导与声纳多层聚偏二氟乙烯(PVDF)水听器结合使用,该声波器用作覆盖100 kHz至1 MHz频率范围的发射换能器。从超声吸收波导管发出的声场降低了膜式水听器环上衍射声波的重要性,并降低了该波对标定期间水听器的有源元件接收的直接声波的干扰。与针式水听器一起使用了四个膜式水听器品牌/型号,其环形尺寸(定义为水听器的环形安装环的内径)在50到100 mm之间。使用NPL初级标准光学干涉仪结合超声吸收波导进行校准的参考水听器随后用于比较,从而校准了其他四个水听器,再次使用超声吸收波导。与现有方法相比,超声吸收波导的使用可使环径为50 mm的膜式水听器的低频校准极限从400 kHz降低到200 kHz。

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