Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield

Aircraft structures are often subjected to many complex loads that even a minor structural damage can disrupt their load-bearing capacities and lead to catastrophic failure. Ultrasonic wavefield inspection has been available for a while and it is a great method for damage detection. However, the cha...

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Main Authors: Shahrim, Muhamad Azim, Harmin, Mohammad Yazdi, Romli, Fairuz Izzuddin, Chia, Chen Ciang, Jung-Ryul, Lee
Format: Article
Published: Aeronautical and Astronautical Society of the Republic of China ,Taiwan 2022
Online Access:http://psasir.upm.edu.my/id/eprint/100869/
https://www.ipress.tw/J0039?pWebID=588&pType=4&mSeq=1
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spelling my.upm.eprints.1008692023-07-26T02:49:18Z http://psasir.upm.edu.my/id/eprint/100869/ Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield Shahrim, Muhamad Azim Harmin, Mohammad Yazdi Romli, Fairuz Izzuddin Chia, Chen Ciang Jung-Ryul, Lee Aircraft structures are often subjected to many complex loads that even a minor structural damage can disrupt their load-bearing capacities and lead to catastrophic failure. Ultrasonic wavefield inspection has been available for a while and it is a great method for damage detection. However, the challenge lies in the complexity of the algorithm for mode isolation. For this study, the damage visualization is performed based on frequency shift of single-mode ultrasound-guided wavefield. In principle, the spatio-temporal wavefield data is transformed into the wavenumber-temporal domain and filtering is then performed using Boxcar window before mapping the data. First, a filter width for mode isolation of ultrasonic wavefield in a time-cumulated wavenumber plane is determined. Then, generation of frequency map based on ultrasound spectral imaging (USI) for damage identification is investigated. Last but not least, the comparison of accuracy between frequency analysis algorithm and variable time window amplitude mapping (VTWAM) algorithm is performed. This technique is evaluated to detect artificial damages of 2 mm and 30 mm diameter in steel plates. Overall, the results show that frequency analysis can detect the damage four times faster and the algorithm uses two-dimensional calculation instead of conventional three-dimensional of VTWAM method. Aeronautical and Astronautical Society of the Republic of China ,Taiwan 2022-09-01 Article PeerReviewed Shahrim, Muhamad Azim and Harmin, Mohammad Yazdi and Romli, Fairuz Izzuddin and Chia, Chen Ciang and Jung-Ryul, Lee (2022) Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield. Journal of Aeronautics, Astronautics and Aviation, 54 (3). art. no. 7. 297 - 306. ISSN 1990-7710 https://www.ipress.tw/J0039?pWebID=588&pType=4&mSeq=1 10.6125/JoAAA.202209_54(3).06
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description Aircraft structures are often subjected to many complex loads that even a minor structural damage can disrupt their load-bearing capacities and lead to catastrophic failure. Ultrasonic wavefield inspection has been available for a while and it is a great method for damage detection. However, the challenge lies in the complexity of the algorithm for mode isolation. For this study, the damage visualization is performed based on frequency shift of single-mode ultrasound-guided wavefield. In principle, the spatio-temporal wavefield data is transformed into the wavenumber-temporal domain and filtering is then performed using Boxcar window before mapping the data. First, a filter width for mode isolation of ultrasonic wavefield in a time-cumulated wavenumber plane is determined. Then, generation of frequency map based on ultrasound spectral imaging (USI) for damage identification is investigated. Last but not least, the comparison of accuracy between frequency analysis algorithm and variable time window amplitude mapping (VTWAM) algorithm is performed. This technique is evaluated to detect artificial damages of 2 mm and 30 mm diameter in steel plates. Overall, the results show that frequency analysis can detect the damage four times faster and the algorithm uses two-dimensional calculation instead of conventional three-dimensional of VTWAM method.
format Article
author Shahrim, Muhamad Azim
Harmin, Mohammad Yazdi
Romli, Fairuz Izzuddin
Chia, Chen Ciang
Jung-Ryul, Lee
spellingShingle Shahrim, Muhamad Azim
Harmin, Mohammad Yazdi
Romli, Fairuz Izzuddin
Chia, Chen Ciang
Jung-Ryul, Lee
Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
author_facet Shahrim, Muhamad Azim
Harmin, Mohammad Yazdi
Romli, Fairuz Izzuddin
Chia, Chen Ciang
Jung-Ryul, Lee
author_sort Shahrim, Muhamad Azim
title Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
title_short Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
title_full Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
title_fullStr Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
title_full_unstemmed Damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
title_sort damage visualization based on frequency shift of single-mode ultrasound-guided wavefield
publisher Aeronautical and Astronautical Society of the Republic of China ,Taiwan
publishDate 2022
url http://psasir.upm.edu.my/id/eprint/100869/
https://www.ipress.tw/J0039?pWebID=588&pType=4&mSeq=1
_version_ 1773545501906436096
score 13.211869