Diagnostic methods of detecting defects within the material with the use of active infrared thermovision

Article presents the methods of detecting defects within material with the use of active infrared thermovision. During the study ABS and PVC samples were used inside which internal structure defects and defects of glue conjunction between components were modeled. During combining composite materials...

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Main Authors: Grochalski Karol, Peta Katarzyna
Format: Article
Language:English
Published: Sciendo 2017-01-01
Series:Archives of Mechanical Technology and Materials
Subjects:
Online Access:https://doi.org/10.1515/amtm-2017-0006
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spelling doaj-6a572e2e5c75447e85ffc423b97c4c352021-09-06T19:39:53ZengSciendoArchives of Mechanical Technology and Materials2450-94692017-01-01371414410.1515/amtm-2017-0006amtm-2017-0006Diagnostic methods of detecting defects within the material with the use of active infrared thermovisionGrochalski Karol0Peta Katarzyna1Institute of Mechanical Technology, Poznan University of Technology, Piotrowo 3 Street, 60-965 Poznan, PolandInstitute of Mechanical Technology, Poznan University of Technology, Piotrowo 3 Street, 60-965 Poznan, PolandArticle presents the methods of detecting defects within material with the use of active infrared thermovision. During the study ABS and PVC samples were used inside which internal structure defects and defects of glue conjunction between components were modeled. During combining composite materials with the use of glue joints, there is a problem with homogenous distribution of the glue layer on the surface of an element, which results in the creation of defects in joint structure and the decline of active surface of adhesion forces on the combined materials. It is then necessary to control the quality of the conjunction between the glued surfaces. The use of non-contact diagnostic methods allows to analyze a larger surface which conditions in more efficient quality control process. In the study, external heat excitation was used - optical excitation with periodic variable signal (LockIn method) and unit step excitation (Pulse method). The methods of analysis of the obtained thermograms are presented.https://doi.org/10.1515/amtm-2017-0006active thermovision external forcing heat thermal images analysis diagnostic detection of defects within the material
collection DOAJ
language English
format Article
sources DOAJ
author Grochalski Karol
Peta Katarzyna
spellingShingle Grochalski Karol
Peta Katarzyna
Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
Archives of Mechanical Technology and Materials
active thermovision external forcing heat thermal images analysis diagnostic detection of defects within the material
author_facet Grochalski Karol
Peta Katarzyna
author_sort Grochalski Karol
title Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
title_short Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
title_full Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
title_fullStr Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
title_full_unstemmed Diagnostic methods of detecting defects within the material with the use of active infrared thermovision
title_sort diagnostic methods of detecting defects within the material with the use of active infrared thermovision
publisher Sciendo
series Archives of Mechanical Technology and Materials
issn 2450-9469
publishDate 2017-01-01
description Article presents the methods of detecting defects within material with the use of active infrared thermovision. During the study ABS and PVC samples were used inside which internal structure defects and defects of glue conjunction between components were modeled. During combining composite materials with the use of glue joints, there is a problem with homogenous distribution of the glue layer on the surface of an element, which results in the creation of defects in joint structure and the decline of active surface of adhesion forces on the combined materials. It is then necessary to control the quality of the conjunction between the glued surfaces. The use of non-contact diagnostic methods allows to analyze a larger surface which conditions in more efficient quality control process. In the study, external heat excitation was used - optical excitation with periodic variable signal (LockIn method) and unit step excitation (Pulse method). The methods of analysis of the obtained thermograms are presented.
topic active thermovision external forcing heat thermal images analysis diagnostic detection of defects within the material
url https://doi.org/10.1515/amtm-2017-0006
work_keys_str_mv AT grochalskikarol diagnosticmethodsofdetectingdefectswithinthematerialwiththeuseofactiveinfraredthermovision
AT petakatarzyna diagnosticmethodsofdetectingdefectswithinthematerialwiththeuseofactiveinfraredthermovision
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