Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing

This study investigates the detection of stress corrosion cracking (SCC) using eddy current testing with bobbin and array probes. The conventional bobbin probe method has limitation in detecting some outer diameter (OD) initiated axial and circumferential cracks in SS304 tubes with a diameter of 25...

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Main Authors: Subramanian Chandran, Larence Pushparaj, N Sankar, Nivash Sankar, Sebastien Savard, David Aubé, Jitender Yadav
Format: Article
Language:deu
Published: NDT.net 2025-04-01
Series:e-Journal of Nondestructive Testing
Online Access:https://www.ndt.net/search/docs.php3?id=30797
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author Subramanian Chandran
Larence Pushparaj
N Sankar
Nivash Sankar
Sebastien Savard
David Aubé
Jitender Yadav
author_facet Subramanian Chandran
Larence Pushparaj
N Sankar
Nivash Sankar
Sebastien Savard
David Aubé
Jitender Yadav
author_sort Subramanian Chandran
collection DOAJ
description This study investigates the detection of stress corrosion cracking (SCC) using eddy current testing with bobbin and array probes. The conventional bobbin probe method has limitation in detecting some outer diameter (OD) initiated axial and circumferential cracks in SS304 tubes with a diameter of 25.4 mm and a thickness of 1.65 mm. In contrast, these cracks were detected by array probe technology at a higher probability of detection. This discrepancy led to a detailed examination of SCC detection in SS304 tubes by inducing Artificial SCC with varying depths.
format Article
id doaj-art-62dfe6a6b15e478d9b59111caa7c76a6
institution Kabale University
issn 1435-4934
language deu
publishDate 2025-04-01
publisher NDT.net
record_format Article
series e-Journal of Nondestructive Testing
spelling doaj-art-62dfe6a6b15e478d9b59111caa7c76a62025-08-20T03:52:52ZdeuNDT.nete-Journal of Nondestructive Testing1435-49342025-04-0130410.58286/30797Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current TestingSubramanian ChandranLarence PushparajN SankarNivash SankarSebastien SavardDavid AubéJitender Yadav This study investigates the detection of stress corrosion cracking (SCC) using eddy current testing with bobbin and array probes. The conventional bobbin probe method has limitation in detecting some outer diameter (OD) initiated axial and circumferential cracks in SS304 tubes with a diameter of 25.4 mm and a thickness of 1.65 mm. In contrast, these cracks were detected by array probe technology at a higher probability of detection. This discrepancy led to a detailed examination of SCC detection in SS304 tubes by inducing Artificial SCC with varying depths. https://www.ndt.net/search/docs.php3?id=30797
spellingShingle Subramanian Chandran
Larence Pushparaj
N Sankar
Nivash Sankar
Sebastien Savard
David Aubé
Jitender Yadav
Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
e-Journal of Nondestructive Testing
title Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
title_full Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
title_fullStr Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
title_full_unstemmed Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
title_short Enhanced Detection Probability of OD-Initiated SCC(Transgranular & Intergranular) in SS304 Tubes Using Array Eddy Current Testing
title_sort enhanced detection probability of od initiated scc transgranular amp amp intergranular in ss304 tubes using array eddy current testing
url https://www.ndt.net/search/docs.php3?id=30797
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