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Correction for the diffraction loss in the ultrasonic attenuation measurement in VHF range

Correction for the diffraction loss in the ultrasonic attenuation measurement in VHF range
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摘要 Two silicate glasses which have different acoustic properties and different thickness, were taken as the specimens, their frequency dependences of the longitudinal attenuation coefficients were measured in the frequency range of 50 to 300 MHz by the pulse reflection method, and the diffraction loss included in the measurement was corrected by theoretical calculation using A. O. Williams' expression. It has been shown that the measurement error of attenuation coefficient due to diffraction loss could be corrected very well by this method, regardless of the thickness of specimens. Two silicate glasses which have different acoustic properties and different thickness, were taken as the specimens, their frequency dependences of the longitudinal attenuation coefficients were measured in the frequency range of 50 to 300 MHz by the pulse reflection method, and the diffraction loss included in the measurement was corrected by theoretical calculation using A. O. Williams' expression. It has been shown that the measurement error of attenuation coefficient due to diffraction loss could be corrected very well by this method, regardless of the thickness of specimens.
出处 《Chinese Journal of Acoustics》 2002年第4期325-331,共7页 声学学报(英文版)
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二级参考文献4

  • 1Papadakis F P.Ultrasonic attenuation in thin specimens driven though buffer rods[].The Journal of The Acoustical Society of America.1968
  • 2Granato A,Truell R.Frequency dependence of ultrasonic attenuation in Germanium[].Journal of Applied Physics.1956
  • 3Williams A O,Jr.The piston source at high frequencies[].The Journal of The Acoustical Society of America.1951
  • 4Seki H,Granato A,Truell R.Diffraction effect in the ultrasonic field of a piston source and their importance in the accurate measurement of attenuation[].The Journal of The Acoustical Society of America.1956

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