Non-contact leaky Lamb wave imaging based on pulsed laser and ultrasound microphone

Citations

SCOPUS

1

초록

A local wavenumber estimation (LWE) method based on a scanning laser Doppler vibrometer (SLDV) is derived using a frequency-wavenumber domain filtering method. LWE methods based on a standing wave have recently been investigated. This technique utilizes SLDV data in the steady-state excitation of a fixed frequency. Despite its various advantages, the LWE method uses contact actuators to provide sufficient vibrating energy. In this study, we solved the cost and complexity problems of using SLDV by replacing it with an ultrasound microphone. We also measured the shallow defect of an aluminum plate using a noncontact-LWE method. A Nd:YAG laser with wavelength of 532 nm and an ultrasound microphone with a frequency range of 2200 kHz were both used to detect the shallow defect in the aluminum plate. The LWE image resulting from the pulsed laser has a low signal-to-noise ratio (SNR) and presents wave pattern artifacts because of a low excitation energy. To address this problem, we acquired several data from different laser point positions and constructed LWE images. Because the artifacts in these images are non-correlated, the averaging process removes the artifacts and significantly improves the SNR.

키워드

delay and sum imagelamb wavePMN-PT sensorultrasonic touchscreenAluminum platingDefectsExcited statesFrequency estimationImage enhancementLaser excitationMicrophonesNeodymium lasersSignal to noise ratioSurface wavesUltrasonic applicationsUltrasonic wavesYttrium aluminum garnetDelay and sumsFrequency rangesFrequency-wavenumber domainsLeaky Lamb wavesLow signal-to-noise ratioLow-excitation energyPt sensorsScanning laser doppler vibrometerPulsed lasers
제목
Non-contact leaky Lamb wave imaging based on pulsed laser and ultrasound microphone
저자
Kang, K.C.Hun, Kim Y.Park, K.K.
DOI
10.1109/ULTSYM.2019.8925599
발행일
2019-00
유형
Conference Paper
저널명
IEEE International Ultrasonics Symposium, IUS
2019-October
페이지
1571 ~ 1574