
Low Frequency Ultrasonic Method for Characterizing Ultra-Thin
Bi-Layer Composite
Zhang Rui1, Wan Mingxi1, Li Gang1, Cao Wenwu2
(1. Xi'an Jiaotong University, Xi'an 710049, China; 2. Pennsylvania State University)
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Abstract: A low-frequency ultrasonic (Lamb-like) wave method is used for
characterizing the shear, longitudinal wave velocities, the thickness, and the density of
ultra-thin two-layered bonding composite. The layer thickness is only a fraction of the
ultrasound wavelength so that the echoes from the front and back surfaces cannot be
separated in the time domain. The least square method and the secant algorithm are applied
to determine the governing parameters basing on the measured dispersion curve of the low
frequency Lamb wave propagating along the composite. The reasons for evaluation error of
the parameters and the sensitivity of the method for different parameters are analyzed.
The technique is employed experimentallly to characterize the ultra-thin aluminum and
brass layers of the aluminum/brass composite with thickness down to five percent of the
ultrasonic wavelength by using a pair of broadband longitudinal wave transducers of 2MHz.
It is observed that the nominal value agrees well with the estimation.
Keywords: adhesive composites;ultrasonic QNDE;ultrasonic Lambª²like
wave;dispersion property