An eddy current testing method for detection of subsurface defects in reformer tubes

Subsurface defect detection in stainless-steel tubes is challenging due to low electrical conductivity, closed cross-sectional geometry, surface curvature and in-service inspection constraints. A probe-assisted signal processing method is proposed for high-sensitivity defect detection in reformer tubes under non-saturated conditions using eddy current testing (ECT). Slow spatial variations of the material properties along the tube are regarded as a localised baseline drift and separated from defect-induced perturbations using an information criterion-based adaptive polynomial fitting approach combined with Gaussian filtering. An enhanced ECT probe incorporating a tunnelling magnetoresistance (TMR) sensor is developed to selectively capture perturbation fields. Experimental results demonstrate that the proposed method enables reliable detection of defects located up to 90% of the tube wall thickness exceeding 10 mm and provides a robust and practical solution for non-destructive testing (NDT) of tubular structures.

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Publication Details

Journal
Nondestructive Testing And Evaluation
Published
2026-08-25
DOI
https://doi.org/10.1080/10589759.2026.2722267
Primary Topic
Non-Destructive Testing Techniques
Type
article
Field-Weighted Citation Impact
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article

An eddy current testing method for detection of subsurface defects in reformer tubes

Bo Feng, Helena G. Ramos, Lian Xie, Artur L. Ribeiro et al.
Nondestructive Testing And Evaluation
Non-Destructive Testing Techniques
article

An eddy current testing method for detection of subsurface defects in reformer tubes

Bo Feng, Helena G. Ramos, Lian Xie, Artur L. Ribeiro, Francisco C. Alegria, Prashanth Baskaran
article en

Abstract

Subsurface defect detection in stainless-steel tubes is challenging due to low electrical conductivity, closed cross-sectional geometry, surface curvature and in-service inspection constraints. A probe-assisted signal processing method is proposed for high-sensitivity defect detection in reformer tubes under non-saturated conditions using eddy current testing (ECT). Slow spatial variations of the material properties along the tube are regarded as a localised baseline drift and separated from defect-induced perturbations using an information criterion-based adaptive polynomial fitting approach combined with Gaussian filtering. An enhanced ECT probe incorporating a tunnelling magnetoresistance (TMR) sensor is developed to selectively capture perturbation fields. Experimental results demonstrate that the proposed method enables reliable detection of defects located up to 90% of the tube wall thickness exceeding 10 mm and provides a robust and practical solution for non-destructive testing (NDT) of tubular structures.

Nondestructive Testing And Evaluation
University of Lisbon (PT), Huazhong University of Science and Technology (CN)
Sustainable cities and communities
Openalex Percentile: Top 18%
Non-Destructive Testing Techniques
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