Plate Waves Scattering Analysis and Active Damage Detection

This study investigates and evaluates the technology of using plate waves to detect the locations and sizes of circular holes and cracks in plates. Piezoelectric ceramic discs surface-mounted on both sides of an aluminum alloy plate were used as narrow-frequency plate wave actuators and sensors, and...

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Main Author: Tai-Ho Yu
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/16/5458
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author Tai-Ho Yu
author_facet Tai-Ho Yu
author_sort Tai-Ho Yu
collection DOAJ
description This study investigates and evaluates the technology of using plate waves to detect the locations and sizes of circular holes and cracks in plates. Piezoelectric ceramic discs surface-mounted on both sides of an aluminum alloy plate were used as narrow-frequency plate wave actuators and sensors, and the antisymmetric plate wave signal was analyzed by wavelet transform in the time-frequency domain. The damage location and frequency spectrum characteristics were identified by the wave through time-of-flight difference and signal analysis of the damage scattered wave group. The plate wave signal of the damaged plate included the scattered wave signal and the plate wave signal transmitted directly between the piezoelectric discs. Under ideal conditions, the plate wave signal indicating damage can be obtained by subtracting the plate wave signal in a plate without damage from the plate wave signal scattered from actuators to sensors. This study established an optimization program based on the simplex algorithm to inversely calculate the location of the plate damage. The developed damage location objective function has a unique global minimum value that can ensure the accuracy of the damage location calculation, and good results were obtained in experiments. The spectral characteristics of the scattered plate wave were related to the type, size, wave propagation path, and incident angle of the damage. Numerical analyses of scattered spectra for various damages are needed as references to compare with experimental results in the future.
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spelling doaj.art-e4bc7fd7e57d476fac6d23d857884db32023-11-22T09:40:08ZengMDPI AGSensors1424-82202021-08-012116545810.3390/s21165458Plate Waves Scattering Analysis and Active Damage DetectionTai-Ho Yu0Department of Electronic Engineering, National United University, 2 Lien Da, Nan-Shih Li, Miaoli 36063, TaiwanThis study investigates and evaluates the technology of using plate waves to detect the locations and sizes of circular holes and cracks in plates. Piezoelectric ceramic discs surface-mounted on both sides of an aluminum alloy plate were used as narrow-frequency plate wave actuators and sensors, and the antisymmetric plate wave signal was analyzed by wavelet transform in the time-frequency domain. The damage location and frequency spectrum characteristics were identified by the wave through time-of-flight difference and signal analysis of the damage scattered wave group. The plate wave signal of the damaged plate included the scattered wave signal and the plate wave signal transmitted directly between the piezoelectric discs. Under ideal conditions, the plate wave signal indicating damage can be obtained by subtracting the plate wave signal in a plate without damage from the plate wave signal scattered from actuators to sensors. This study established an optimization program based on the simplex algorithm to inversely calculate the location of the plate damage. The developed damage location objective function has a unique global minimum value that can ensure the accuracy of the damage location calculation, and good results were obtained in experiments. The spectral characteristics of the scattered plate wave were related to the type, size, wave propagation path, and incident angle of the damage. Numerical analyses of scattered spectra for various damages are needed as references to compare with experimental results in the future.https://www.mdpi.com/1424-8220/21/16/5458plate waveswavelet transformtime-of-flight differencesimplex algorithm
spellingShingle Tai-Ho Yu
Plate Waves Scattering Analysis and Active Damage Detection
Sensors
plate waves
wavelet transform
time-of-flight difference
simplex algorithm
title Plate Waves Scattering Analysis and Active Damage Detection
title_full Plate Waves Scattering Analysis and Active Damage Detection
title_fullStr Plate Waves Scattering Analysis and Active Damage Detection
title_full_unstemmed Plate Waves Scattering Analysis and Active Damage Detection
title_short Plate Waves Scattering Analysis and Active Damage Detection
title_sort plate waves scattering analysis and active damage detection
topic plate waves
wavelet transform
time-of-flight difference
simplex algorithm
url https://www.mdpi.com/1424-8220/21/16/5458
work_keys_str_mv AT taihoyu platewavesscatteringanalysisandactivedamagedetection