Second-harmonic generation in focused beam fields of phased-array transducers in a nonlinear solid with a stress-free boundary

Author:

Jeong Hyunjo1,Zhang Shu-zeng2,Li Xiong-bing2

Affiliation:

1. Department of Mechanical Engineering, Wonkwang University, Iksan 54538, South Korea

2. School of Traffic and Transportation Engineering, Central South University, 410075 Changsha, China

Abstract

Abstract In nonlinear acoustic harmonic generation in solids with stress-free boundaries, such a boundary is known to destructively change the second harmonic generation, and the pulse-echo method is not practically applicable. Focused beams have often been used for fluid nonlinearity and biomechanical imaging in pulse-echo test setups. This paper considers the focused beam fields of linear phased-array transducers to ensure that pulse-echo harmonic generation can be applied to solids with stress-free boundaries. The fundamental and second-harmonic beam fields that are focused and reflected at the stress-free and rigid boundaries are calculated and their properties are investigated in terms of the received average fields. The phase difference between the two second-harmonic components after reflection from the boundary—that is, the reflected and the newly generated second harmonic—is emphasized. The phase difference is used to explain the improved and accumulated second harmonic observed in the simulation results.

Funder

National Research Foundation of Korea

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Engineering (miscellaneous),Safety, Risk, Reliability and Quality,Control and Systems Engineering

Reference22 articles.

1. Review of second harmonic generation measurement techniques for material state determination in metals;Matlack;J Nondestruct Eval,2015

2. Determination of the nonlinear ultrasonic parameter β using a Michelson interferometer;Hurley;Meas Sci Technol

3. Receiver calibration and the nonlinearity parameter measurement of thick solid samples with diffraction and attenuation corrections;Jeong;Ultrasonics,2017

4. Calibration of focused ultrasonic transducers and absolute measurements of fluid nonlinearity with diffraction and attenuation corrections;Zhang,2017

5. Evaluation of B/A nonlinear parameter using an acoustic self-calibrated pulse-echo method;Vander;Appl Phys Lett,2008

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