Thermal imaging dataset from composite material academic samples inspected by pulsed thermography

This paper presents a thermal imaging dataset from composite material samples (carbon and glass fiber reinforced plastic) that were inspected by pulsed thermography with the goal of detecting and characterizing subsurface defective zones (Teflon inserts representing delaminations between plies). The...

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Main Authors: Jorge Erazo-Aux, Humberto Loaiza-Correa, Andres David Restrepo-Giron, Clemente Ibarra-Castanedo, Xavier Maldague
Format: Article
Language:English
Published: Elsevier 2020-10-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920312075
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spelling doaj-5988eb1d768a440896f0201deefe49292020-11-25T04:00:57ZengElsevierData in Brief2352-34092020-10-0132106313Thermal imaging dataset from composite material academic samples inspected by pulsed thermographyJorge Erazo-Aux0Humberto Loaiza-Correa1Andres David Restrepo-Giron2Clemente Ibarra-Castanedo3Xavier Maldague4Escuela de Ingeniería Eléctrica y Electrónica, Universidad del Valle, Cali, VA 760032, Colombia; Facultad de Ingeniería, Institución Universitaria Antonio José Camacho, Cali, VA 760046, Colombia; Corresponding author at: Escuela de Ingeniería Eléctrica y Electrónica, Universidad del Valle, Cali, VA 760032, Colombia.Escuela de Ingeniería Eléctrica y Electrónica, Universidad del Valle, Cali, VA 760032, Colombia; Corresponding authors.Escuela de Ingeniería Eléctrica y Electrónica, Universidad del Valle, Cali, VA 760032, Colombia; Corresponding authors.Computer Vision and Systems Laboratory, Laval University, Quebec City, QC G1V 0A6, Canada; Corresponding authors.Computer Vision and Systems Laboratory, Laval University, Quebec City, QC G1V 0A6, CanadaThis paper presents a thermal imaging dataset from composite material samples (carbon and glass fiber reinforced plastic) that were inspected by pulsed thermography with the goal of detecting and characterizing subsurface defective zones (Teflon inserts representing delaminations between plies). The pulsed thermography experiment was applied to 6 academic plates (inspected from both sides) all having the dimensions of 300 mm x 300 mm x 2 mm and same distribution of defects but made of different materials: three plates on carbon fiber-reinforced plastic (CFRP) and three plates made on glass fiber reinforced plastic (GFRP) specimens with three different geometries: planar, curved and trapezoidal. Each plate contains 25 inserts having length/depth ratios between 1.7 and 75. Two FX60 BALCAR photographic flashes (6.2 kJ per flash) were used to generate the heat pulse (2 ms duration), an X6900 FLIR infrared camera using ResearchIR software to record the thermal images and a custom-built software/control unit to synchronize data recording with pulse generation. Finally, the dataset proposed consists of 12 sequences of approximately 2000 images of 512 × 512 pixels each.http://www.sciencedirect.com/science/article/pii/S2352340920312075Thermal imagingComposite materialsPulsed thermographyNon-destructive testing
collection DOAJ
language English
format Article
sources DOAJ
author Jorge Erazo-Aux
Humberto Loaiza-Correa
Andres David Restrepo-Giron
Clemente Ibarra-Castanedo
Xavier Maldague
spellingShingle Jorge Erazo-Aux
Humberto Loaiza-Correa
Andres David Restrepo-Giron
Clemente Ibarra-Castanedo
Xavier Maldague
Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
Data in Brief
Thermal imaging
Composite materials
Pulsed thermography
Non-destructive testing
author_facet Jorge Erazo-Aux
Humberto Loaiza-Correa
Andres David Restrepo-Giron
Clemente Ibarra-Castanedo
Xavier Maldague
author_sort Jorge Erazo-Aux
title Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
title_short Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
title_full Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
title_fullStr Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
title_full_unstemmed Thermal imaging dataset from composite material academic samples inspected by pulsed thermography
title_sort thermal imaging dataset from composite material academic samples inspected by pulsed thermography
publisher Elsevier
series Data in Brief
issn 2352-3409
publishDate 2020-10-01
description This paper presents a thermal imaging dataset from composite material samples (carbon and glass fiber reinforced plastic) that were inspected by pulsed thermography with the goal of detecting and characterizing subsurface defective zones (Teflon inserts representing delaminations between plies). The pulsed thermography experiment was applied to 6 academic plates (inspected from both sides) all having the dimensions of 300 mm x 300 mm x 2 mm and same distribution of defects but made of different materials: three plates on carbon fiber-reinforced plastic (CFRP) and three plates made on glass fiber reinforced plastic (GFRP) specimens with three different geometries: planar, curved and trapezoidal. Each plate contains 25 inserts having length/depth ratios between 1.7 and 75. Two FX60 BALCAR photographic flashes (6.2 kJ per flash) were used to generate the heat pulse (2 ms duration), an X6900 FLIR infrared camera using ResearchIR software to record the thermal images and a custom-built software/control unit to synchronize data recording with pulse generation. Finally, the dataset proposed consists of 12 sequences of approximately 2000 images of 512 × 512 pixels each.
topic Thermal imaging
Composite materials
Pulsed thermography
Non-destructive testing
url http://www.sciencedirect.com/science/article/pii/S2352340920312075
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