TY - JOUR
T1 - Image-Reconstruction-Driven Magnetic-Resonance-Eddy-Current Test for Corrosion of Threaded steel bar in Concrete
AU - Liao, Leng
AU - Zhang, Jinming
AU - Wang, Mengqi
AU - Lan, Tian
N1 - Publisher Copyright:
© 2001-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - To achieve imaging and non-destructive quantification of threaded rebar corrosion in structures, commonly regarded as a highly challenging task, we introduce a three-coil Magnetic-Resonance-Eddy-Current Testing (MRECT) technique. This electromagnetic inspection system operates by generating resonance magnetic fields that enhances the interaction with steel, mitigating the influence of the ribs on the rebar and enabling detailed morphology evaluation for corrosion. Additionally, we have developed a dedicated post-processing algorithm to faithfully reconstruct the morphological profile of corroded regions. This algorithm effectively generates 2D visualizations of corrosion patterns based on the MRECT scan imaging data. The system has demonstrated exact precision in measuring corrosion depth with a mean error of only 1.342 mm. Additionally, it effectively quantifies the lateral extent of corrosion spread with an average error of 2.026 cm. This work provides effective technical support for addressing key challenges in the health monitoring of concrete structures, such as corrosion identification and structural safety assessment.
AB - To achieve imaging and non-destructive quantification of threaded rebar corrosion in structures, commonly regarded as a highly challenging task, we introduce a three-coil Magnetic-Resonance-Eddy-Current Testing (MRECT) technique. This electromagnetic inspection system operates by generating resonance magnetic fields that enhances the interaction with steel, mitigating the influence of the ribs on the rebar and enabling detailed morphology evaluation for corrosion. Additionally, we have developed a dedicated post-processing algorithm to faithfully reconstruct the morphological profile of corroded regions. This algorithm effectively generates 2D visualizations of corrosion patterns based on the MRECT scan imaging data. The system has demonstrated exact precision in measuring corrosion depth with a mean error of only 1.342 mm. Additionally, it effectively quantifies the lateral extent of corrosion spread with an average error of 2.026 cm. This work provides effective technical support for addressing key challenges in the health monitoring of concrete structures, such as corrosion identification and structural safety assessment.
KW - Corrosion of threaded rebar
KW - Electromagnetic penetration imaging
KW - Non-destructive testing
UR - https://www.scopus.com/pages/publications/105044521324
U2 - 10.1109/JSEN.2026.3705276
DO - 10.1109/JSEN.2026.3705276
M3 - Article
AN - SCOPUS:105044521324
SN - 1530-437X
JO - IEEE Sensors Journal
JF - IEEE Sensors Journal
ER -