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A method to estimate the absolute ultrasonic nonlinearity parameter from relative measurements

Authors
Kim, JongbeomSong, Dong-GiJhang, Kyung-Young
Issue Date
May-2017
Publisher
ELSEVIER SCIENCE BV
Keywords
Ultrasonic nonlinearity parameter; Absolute parameter; Relative parameter; Al6061-T6 alloy; Thermal aging
Citation
ULTRASONICS, v.77, pp.197 - 202
Indexed
SCIE
SCOPUS
Journal Title
ULTRASONICS
Volume
77
Start Page
197
End Page
202
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/20346
DOI
10.1016/j.ultras.2017.02.013
ISSN
0041-624X
Abstract
The ultrasonic nonlinearity parameter (β) is determined from the particle displacement amplitudes of the fundamental and second-order harmonic components in an ultrasonic wave propagated through a material. This parameter is generally referred to as the absolute parameter. However, measuring the second harmonic component is especially difficult because its amplitude is usually much smaller than those of signals in typical ultrasonic measurements. For this reason, most studies use the relative parameter determined using the measured electric signal amplitudes of the fundamental and second harmonic ultrasonic waves. However, in many occasions, the absolute parameter is needed for a quantitative assessment of material degradation. This study proposes a method to estimate the absolute parameter from a measured relative parameter along with a proportionality constant between normalized absolute and relative parameters. This method is based on the observed fact that the ratio of between normalized relative and absolute parameters is identical after compensating proportionality constant. The method was experimentally validated for Al6061-T6 alloy specimens heat-treated for different aging times. The parameter determined through the proposed method were compared with the absolute parameters which were measured separately. The results show that these two parameters were close to each other within the measurement errors.
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