Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method

Steel bars, which are commonly used as reinforcements in concrete structures, are slender rods and are good conduits for stress wave propagation. In this paper, a lead zirconate titanate (PZT)-based steel bar corrosion monitoring approach was proposed. Two PZT transducers are surface-bonded on the t...

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Main Authors: Linsheng Huo, Chuanbo Li, Tianyong Jiang, Hong-Nan Li
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/8/11/2304
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spelling doaj-56c8aa4c21e0410aa5edf2b54b86fe382020-11-25T00:50:42ZengMDPI AGApplied Sciences2076-34172018-11-01811230410.3390/app8112304app8112304Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal MethodLinsheng Huo0Chuanbo Li1Tianyong Jiang2Hong-Nan Li3Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, ChinaKey Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, ChinaSchool of Civil Engineering, Changsha University of Science and Technology, Changsha 410114, ChinaKey Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, ChinaSteel bars, which are commonly used as reinforcements in concrete structures, are slender rods and are good conduits for stress wave propagation. In this paper, a lead zirconate titanate (PZT)-based steel bar corrosion monitoring approach was proposed. Two PZT transducers are surface-bonded on the two ends of a steel rod, respectively. One works as actuator to generate stress waves, and the other functions as a sensor to detect the propagated stress waves. Time reverse technology was applied in this research to monitor the corrosion of the steel bars with a high signal to noise ratio (SNR). Accelerated corrosion experiments of steel bars were conducted. The anti-corrosion performance of the protected piezoceramic transducers was tested first, and then they were used to monitor the corrosion of the steel bar using the time reversal method. The degree of corrosion in the steel bar was determined by the ratio of mass loss during the experiment. The experimental results show that the peak values of the signal that were obtained by time reversal operation are linearly related to the degree of corrosion of the steel bar, which demonstrates the feasibility of the proposed approach for monitoring the corrosion of steel bars using the time reversal method enabled by piezoceramic transducers.https://www.mdpi.com/2076-3417/8/11/2304piezoceramic transducersteel barcorrosion detectiontime reversal methodstructural health monitoring
collection DOAJ
language English
format Article
sources DOAJ
author Linsheng Huo
Chuanbo Li
Tianyong Jiang
Hong-Nan Li
spellingShingle Linsheng Huo
Chuanbo Li
Tianyong Jiang
Hong-Nan Li
Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
Applied Sciences
piezoceramic transducer
steel bar
corrosion detection
time reversal method
structural health monitoring
author_facet Linsheng Huo
Chuanbo Li
Tianyong Jiang
Hong-Nan Li
author_sort Linsheng Huo
title Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
title_short Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
title_full Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
title_fullStr Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
title_full_unstemmed Feasibility Study of Steel Bar Corrosion Monitoring Using a Piezoceramic Transducer Enabled Time Reversal Method
title_sort feasibility study of steel bar corrosion monitoring using a piezoceramic transducer enabled time reversal method
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-11-01
description Steel bars, which are commonly used as reinforcements in concrete structures, are slender rods and are good conduits for stress wave propagation. In this paper, a lead zirconate titanate (PZT)-based steel bar corrosion monitoring approach was proposed. Two PZT transducers are surface-bonded on the two ends of a steel rod, respectively. One works as actuator to generate stress waves, and the other functions as a sensor to detect the propagated stress waves. Time reverse technology was applied in this research to monitor the corrosion of the steel bars with a high signal to noise ratio (SNR). Accelerated corrosion experiments of steel bars were conducted. The anti-corrosion performance of the protected piezoceramic transducers was tested first, and then they were used to monitor the corrosion of the steel bar using the time reversal method. The degree of corrosion in the steel bar was determined by the ratio of mass loss during the experiment. The experimental results show that the peak values of the signal that were obtained by time reversal operation are linearly related to the degree of corrosion of the steel bar, which demonstrates the feasibility of the proposed approach for monitoring the corrosion of steel bars using the time reversal method enabled by piezoceramic transducers.
topic piezoceramic transducer
steel bar
corrosion detection
time reversal method
structural health monitoring
url https://www.mdpi.com/2076-3417/8/11/2304
work_keys_str_mv AT linshenghuo feasibilitystudyofsteelbarcorrosionmonitoringusingapiezoceramictransducerenabledtimereversalmethod
AT chuanboli feasibilitystudyofsteelbarcorrosionmonitoringusingapiezoceramictransducerenabledtimereversalmethod
AT tianyongjiang feasibilitystudyofsteelbarcorrosionmonitoringusingapiezoceramictransducerenabledtimereversalmethod
AT hongnanli feasibilitystudyofsteelbarcorrosionmonitoringusingapiezoceramictransducerenabledtimereversalmethod
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