COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo

Corrosion poses significant safety and cost challenges in the aeronautic industry. Ultrasonic Lamb Waves (LW), emitted and received by a sparse array of piezoelectric elements (PZT), offer an efficient, cost-effective, and versatile solution for corrosion monitoring. This dataset corresponds to two...

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Main Authors: C. Nicard, M. Rébillat, O. Devos, M. El May, F. Letellier, S. Dubent, M. Thomachot, M. Fournier, P. Masse, N. Mechbal
Format: Article
Language:English
Published: Elsevier 2025-04-01
Series:Data in Brief
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Online Access:http://www.sciencedirect.com/science/article/pii/S2352340925001258
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author C. Nicard
M. Rébillat
O. Devos
M. El May
F. Letellier
S. Dubent
M. Thomachot
M. Fournier
P. Masse
N. Mechbal
author_facet C. Nicard
M. Rébillat
O. Devos
M. El May
F. Letellier
S. Dubent
M. Thomachot
M. Fournier
P. Masse
N. Mechbal
author_sort C. Nicard
collection DOAJ
description Corrosion poses significant safety and cost challenges in the aeronautic industry. Ultrasonic Lamb Waves (LW), emitted and received by a sparse array of piezoelectric elements (PZT), offer an efficient, cost-effective, and versatile solution for corrosion monitoring. This dataset corresponds to two experiments involving a LW solution based on a sparse PZT array and able to monitor corrosion pit growth on a 316L stainless steel plate during controlled corrosion. The corrosion pit size is electrochemically controlled by the imposed electrical potential and the injection of a corrosive NaCl solution through a capillary at the desired pit location. Simultaneously, the corrosion pit growth is monitored in-situ every 10 seconds using a sparse array of 4 PZTs bonded to the back of the steel plate. Two independent experiments were conducted to assess the repeatability of this approach. The collected dataset collected can facilitate the development of Structural Health Monitoring (SHM) algorithms and methodologies, provide data for waves/damage interaction modeling, and help bridging the gap between research and industry in this domain.
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spelling doaj-art-3263a5cd8de54deea685b3e34c5ec40f2025-08-20T02:17:28ZengElsevierData in Brief2352-34092025-04-015911139310.1016/j.dib.2025.111393COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodoC. Nicard0M. Rébillat1O. Devos2M. El May3F. Letellier4S. Dubent5M. Thomachot6M. Fournier7P. Masse8N. Mechbal9PIMM11 https://x.com/LabPimm/., CNAM / CNRS / Arts et Métiers Institute of Technology, Paris, France; I2M22 https://x.com/LaboI2M/., University of Bordeaux / CNRS / Arts et Métiers Institute of technology, Bordeaux, FrancePIMM11 https://x.com/LabPimm/., CNAM / CNRS / Arts et Métiers Institute of Technology, Paris, France; Corresponding author.I2M22 https://x.com/LaboI2M/., University of Bordeaux / CNRS / Arts et Métiers Institute of technology, Bordeaux, FranceI2M22 https://x.com/LaboI2M/., University of Bordeaux / CNRS / Arts et Métiers Institute of technology, Bordeaux, FrancePIMM11 https://x.com/LabPimm/., CNAM / CNRS / Arts et Métiers Institute of Technology, Paris, FrancePIMM11 https://x.com/LabPimm/., CNAM / CNRS / Arts et Métiers Institute of Technology, Paris, FranceCedrat Technologies, Meylan, FranceCedrat Technologies, Meylan, FranceRESCOLL, Talence, FrancePIMM11 https://x.com/LabPimm/., CNAM / CNRS / Arts et Métiers Institute of Technology, Paris, FranceCorrosion poses significant safety and cost challenges in the aeronautic industry. Ultrasonic Lamb Waves (LW), emitted and received by a sparse array of piezoelectric elements (PZT), offer an efficient, cost-effective, and versatile solution for corrosion monitoring. This dataset corresponds to two experiments involving a LW solution based on a sparse PZT array and able to monitor corrosion pit growth on a 316L stainless steel plate during controlled corrosion. The corrosion pit size is electrochemically controlled by the imposed electrical potential and the injection of a corrosive NaCl solution through a capillary at the desired pit location. Simultaneously, the corrosion pit growth is monitored in-situ every 10 seconds using a sparse array of 4 PZTs bonded to the back of the steel plate. Two independent experiments were conducted to assess the repeatability of this approach. The collected dataset collected can facilitate the development of Structural Health Monitoring (SHM) algorithms and methodologies, provide data for waves/damage interaction modeling, and help bridging the gap between research and industry in this domain.http://www.sciencedirect.com/science/article/pii/S2352340925001258Piezoelectric transducersSparse arrayPitting corrosionStructural health monitoringUltrasonic Lamb wavesControlled electrochemical experiments
spellingShingle C. Nicard
M. Rébillat
O. Devos
M. El May
F. Letellier
S. Dubent
M. Thomachot
M. Fournier
P. Masse
N. Mechbal
COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
Data in Brief
Piezoelectric transducers
Sparse array
Pitting corrosion
Structural health monitoring
Ultrasonic Lamb waves
Controlled electrochemical experiments
title COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
title_full COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
title_fullStr COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
title_full_unstemmed COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
title_short COQTEL project dataset : Corrosion quantification trough extended use of Lamb wavesZenodo
title_sort coqtel project dataset corrosion quantification trough extended use of lamb waveszenodo
topic Piezoelectric transducers
Sparse array
Pitting corrosion
Structural health monitoring
Ultrasonic Lamb waves
Controlled electrochemical experiments
url http://www.sciencedirect.com/science/article/pii/S2352340925001258
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