Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave

Combination of probabilistic damage imaging (PDI) algorithm and the fusion ultrasonic guided wave damage index can be used to detect the damage in a complicated composite structure with acceptable accuracy. However, the damage signatures associated with PDI algorithm cannot accurately identify multi...

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Published in:Polymer Testing
Main Authors: Hashen Jin, Yishou Wang, Hu Sun, Weibin Li, Xinlin Qing
Format: Article
Language:English
Published: Elsevier 2022-02-01
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0142941821004098
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author Hashen Jin
Yishou Wang
Hu Sun
Weibin Li
Xinlin Qing
author_facet Hashen Jin
Yishou Wang
Hu Sun
Weibin Li
Xinlin Qing
author_sort Hashen Jin
collection DOAJ
container_title Polymer Testing
description Combination of probabilistic damage imaging (PDI) algorithm and the fusion ultrasonic guided wave damage index can be used to detect the damage in a complicated composite structure with acceptable accuracy. However, the damage signatures associated with PDI algorithm cannot accurately identify multi-defects features such as the number, position and dimension information, which greatly restrict the inspection effect in real practice. In this paper, the damage shape factor βM of each damage-impaired path is optimized to enhance the resolution of PDI algorithm. Then, a modified probabilistic damage imaging (MPDI) algorithm with the βM is proposed to identify the multi-defects existed in the curved carbon/epoxy composite structures. The validity of the algorithm is firstly checked in the curved composite structures with the single defect. The MPDI with the βM is applied to identify the depth of defect. The obtained results show that the precision of different defects identification by the MPDI algorithm is much higher than that used by the PDI algorithm. The number, position and dimension of multi-defects existed in the curved composite structure are clearly imaged by the method. This study also verifies that the majorization of damage shape factor in the MPDI algorithm is practicable and necessary for better identification of multi-defects in composite structure.
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spelling doaj-art-4ca5fca97e2b412f97386a9c4cbbfc862025-08-19T20:59:40ZengElsevierPolymer Testing0142-94182022-02-0110610746610.1016/j.polymertesting.2021.107466Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided waveHashen Jin0Yishou Wang1Hu Sun2Weibin Li3Xinlin Qing4School of Aerospace Engineering, Xiamen University, Xiamen, 361005, China; School of Electronics, Electrics and Physics, Fujian University of Technology, ChinaSchool of Aerospace Engineering, Xiamen University, Xiamen, 361005, ChinaSchool of Aerospace Engineering, Xiamen University, Xiamen, 361005, ChinaSchool of Aerospace Engineering, Xiamen University, Xiamen, 361005, China; Corresponding author.School of Aerospace Engineering, Xiamen University, Xiamen, 361005, China; Corresponding author.Combination of probabilistic damage imaging (PDI) algorithm and the fusion ultrasonic guided wave damage index can be used to detect the damage in a complicated composite structure with acceptable accuracy. However, the damage signatures associated with PDI algorithm cannot accurately identify multi-defects features such as the number, position and dimension information, which greatly restrict the inspection effect in real practice. In this paper, the damage shape factor βM of each damage-impaired path is optimized to enhance the resolution of PDI algorithm. Then, a modified probabilistic damage imaging (MPDI) algorithm with the βM is proposed to identify the multi-defects existed in the curved carbon/epoxy composite structures. The validity of the algorithm is firstly checked in the curved composite structures with the single defect. The MPDI with the βM is applied to identify the depth of defect. The obtained results show that the precision of different defects identification by the MPDI algorithm is much higher than that used by the PDI algorithm. The number, position and dimension of multi-defects existed in the curved composite structure are clearly imaged by the method. This study also verifies that the majorization of damage shape factor in the MPDI algorithm is practicable and necessary for better identification of multi-defects in composite structure.http://www.sciencedirect.com/science/article/pii/S0142941821004098Complicated composite structureUltrasonic guided waveDamage indexModified probabilistic damage imaging
spellingShingle Hashen Jin
Yishou Wang
Hu Sun
Weibin Li
Xinlin Qing
Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
Complicated composite structure
Ultrasonic guided wave
Damage index
Modified probabilistic damage imaging
title Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
title_full Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
title_fullStr Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
title_full_unstemmed Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
title_short Identification and imaging of multi-defects on a complicated composite structure by ultrasonic guided wave
title_sort identification and imaging of multi defects on a complicated composite structure by ultrasonic guided wave
topic Complicated composite structure
Ultrasonic guided wave
Damage index
Modified probabilistic damage imaging
url http://www.sciencedirect.com/science/article/pii/S0142941821004098
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AT husun identificationandimagingofmultidefectsonacomplicatedcompositestructurebyultrasonicguidedwave
AT weibinli identificationandimagingofmultidefectsonacomplicatedcompositestructurebyultrasonicguidedwave
AT xinlinqing identificationandimagingofmultidefectsonacomplicatedcompositestructurebyultrasonicguidedwave