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Low-frequency features of the ultrasound echo from an adhesively bonded layer-substrate structure 被引量:1

Low-frequency features of the ultrasound echo from an adhesively bonded layer-substrate structure
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摘要 The low-frequency features of the ultrasound reflection spectra from the structure of a single layer on a substrate bonded by a thin adhesive layer are theoretically studied; the low-frequency here means the frequency of the interrogating ultrasonic wave is less than the quart-wavelength resonance frequency of the adhesive layer. The possibility of the inversion of the thickness and the evaluation of the cohesion strength of the adhesive layer from the resonance frequency shifts of the layered system is indicated. An analytic solution to the nonlinear equation satisfied by the resonance frequency is presented by Taylor expansion method showing satisfactory agreement with the numerical results by Newton iterative method. The results indicate larger range for application than the traditional spring model for the thin adhesive layer. In a much lower frequency range the thin adhesive layer may be regarded to be a spring. The low-frequency features of the ultrasound reflection spectra from the structure of a single layer on a substrate bonded by a thin adhesive layer are theoretically studied; the low-frequency here means the frequency of the interrogating ultrasonic wave is less than the quart-wavelength resonance frequency of the adhesive layer. The possibility of the inversion of the thickness and the evaluation of the cohesion strength of the adhesive layer from the resonance frequency shifts of the layered system is indicated. An analytic solution to the nonlinear equation satisfied by the resonance frequency is presented by Taylor expansion method showing satisfactory agreement with the numerical results by Newton iterative method. The results indicate larger range for application than the traditional spring model for the thin adhesive layer. In a much lower frequency range the thin adhesive layer may be regarded to be a spring.
机构地区 InstituteofAcoustics
出处 《Chinese Journal of Acoustics》 2005年第1期33-43,共11页 声学学报(英文版)
基金 This work was supported by the National Natural Science Foundation of China (No.10234060)
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参考文献8

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同被引文献13

  • 1Lavrentyev A I,Rokhlin S I.Determination of elastic moduli,density,attenuation and thickness of a layer using ultrasonic spectroscopy at two angles[].The Journal of The Acoustical Society of America.1997
  • 2Lavrentyev A I,Rokhlin S I.An ultrasonic method for determination of elastic moduli,density, attenuation and thickness of a polymer coating on a stiff plate[].Ultrasonics.2001
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  • 9Koorosh Mirkhani,Chris Chaggares,Chris Masterson et al.Optimal design of EMAT transmitters[].NDT& International.2004
  • 10Song Weihua,Wang Xiaomin,Li Mingxuan.Analysis of chirping ultrasonic echoes from defects in laminated rubber behind a steel plate[].Technical Acoustis.2005

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