Air-coupled detection of nonlinear Rayleigh surface waves to assess material nonlinearity

Sebastian Thiele, Jin Yeon Kim, Jianmin Qu, Laurence J. Jacobs

Research output: Contribution to journalArticlepeer-review

85 Scopus citations

Abstract

This research presents a new technique for nonlinear Rayleigh surface wave measurements that uses a non-contact, air-coupled ultrasonic transducer; this receiver is less dependent on surface conditions than laser-based detection, and is much more accurate and efficient than detection with a contact wedge transducer. A viable experimental setup is presented that enables the robust, non-contact measurement of nonlinear Rayleigh surface waves over a range of propagation distances. The relative nonlinearity parameter is obtained as the slope of the normalized second harmonic amplitudes plotted versus propagation distance. This experimental setup is then used to assess the relative nonlinearity parameters of two aluminum alloy specimens (Al 2024-T351 and Al 7075-T651). These results demonstrate the effectiveness of the proposed technique - the average standard deviation of the normalized second harmonic amplitudes, measured at locations along the propagation path, is below 2%. Experimental validation is provided by a comparison of the ratio of the measured nonlinearity parameters of these specimens with ratios from the absolute nonlinearity parameters for the same materials measured by capacitive detection of nonlinear longitudinal waves.

Original languageEnglish
Pages (from-to)1470-1475
Number of pages6
JournalUltrasonics
Volume54
Issue number6
DOIs
StatePublished - Aug 2014

Keywords

  • Air-coupled transducer
  • Nonlinear ultrasound
  • Rayleigh surface waves

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