Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography

The paper presents Infrared Thermography (IRT) for non-destructive examination of the imperfections in the coatings layers deposited by Electric Arc Spraying (EASP), designed to assess the dimension and position of the lack of adhesion, as a typical imperfection placed at the interface between the c...

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Main Authors: A. C. Murariu, S. Crâsteţi, I. Samardzic
Format: Article
Language:English
Published: Croatian Metallurgical Society 2016-10-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/232032
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spelling doaj-6b6671e19dd5482ab14e96ab71f227562020-11-24T22:54:29ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762016-10-01554769771Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography A. C. MurariuS. CrâsteţiI. SamardzicThe paper presents Infrared Thermography (IRT) for non-destructive examination of the imperfections in the coatings layers deposited by Electric Arc Spraying (EASP), designed to assess the dimension and position of the lack of adhesion, as a typical imperfection placed at the interface between the coating layer and the base material. Metallographic analyses were used to confirm the absence or presence of imperfections, enabling establishment of the etalon for non-destructive examination and detection of adherence imperfections at the coating–substrate interface layer, together with optimum process parameters, obtained by experiments.http://hrcak.srce.hr/file/232032coatingselectric arc sprayingno n-destructive testinginfrared thermographymicrostrucure
collection DOAJ
language English
format Article
sources DOAJ
author A. C. Murariu
S. Crâsteţi
I. Samardzic
spellingShingle A. C. Murariu
S. Crâsteţi
I. Samardzic
Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
Metalurgija
coatings
electric arc spraying
no n-destructive testing
infrared thermography
microstrucure
author_facet A. C. Murariu
S. Crâsteţi
I. Samardzic
author_sort A. C. Murariu
title Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
title_short Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
title_full Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
title_fullStr Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
title_full_unstemmed Detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
title_sort detection of adherence imperfections at the inteface of substrate-coating layer by using infrared thermography
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2016-10-01
description The paper presents Infrared Thermography (IRT) for non-destructive examination of the imperfections in the coatings layers deposited by Electric Arc Spraying (EASP), designed to assess the dimension and position of the lack of adhesion, as a typical imperfection placed at the interface between the coating layer and the base material. Metallographic analyses were used to confirm the absence or presence of imperfections, enabling establishment of the etalon for non-destructive examination and detection of adherence imperfections at the coating–substrate interface layer, together with optimum process parameters, obtained by experiments.
topic coatings
electric arc spraying
no n-destructive testing
infrared thermography
microstrucure
url http://hrcak.srce.hr/file/232032
work_keys_str_mv AT acmurariu detectionofadherenceimperfectionsattheintefaceofsubstratecoatinglayerbyusinginfraredthermography
AT scrasteti detectionofadherenceimperfectionsattheintefaceofsubstratecoatinglayerbyusinginfraredthermography
AT isamardzic detectionofadherenceimperfectionsattheintefaceofsubstratecoatinglayerbyusinginfraredthermography
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