Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements

Corrosion of concrete reinforcement members has been recognized as a predominant structural deterioration mechanism for steel reinforced concrete structures. Many corrosion detection techniques have been developed for reinforced concrete structures, but a dependable one is more than desired. Acousti...

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Main Authors: Weijie Li, Changhang Xu, Siu Chun Michael Ho, Bo Wang, Gangbing Song
Format: Article
Language:English
Published: MDPI AG 2017-03-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/17/3/657
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spelling doaj-9d480bcc834e4e379c2b8dff8d28b7252020-11-24T23:38:03ZengMDPI AGSensors1424-82202017-03-0117365710.3390/s17030657s17030657Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain MeasurementsWeijie Li0Changhang Xu1Siu Chun Michael Ho2Bo Wang3Gangbing Song4Department of Mechanical Engineering, University of Houston, Houston, TX 77204-4006, USACollege of Mechanical and Electronic Engineering, China University of Petroleum, Qingdao 266580, ChinaDepartment of Mechanical Engineering, University of Houston, Houston, TX 77204-4006, USAKey Laboratory of Transportation Tunnel Engineering, Ministry of Education, Southwest Jiaotong University, Chengdu 610031, ChinaDepartment of Mechanical Engineering, University of Houston, Houston, TX 77204-4006, USACorrosion of concrete reinforcement members has been recognized as a predominant structural deterioration mechanism for steel reinforced concrete structures. Many corrosion detection techniques have been developed for reinforced concrete structures, but a dependable one is more than desired. Acoustic emission technique and fiber optic sensing have emerged as new tools in the field of structural health monitoring. In this paper, we present the results of an experimental investigation on corrosion monitoring of a steel reinforced mortar block through combined acoustic emission and fiber Bragg grating strain measurement. Constant current was applied to the mortar block in order to induce accelerated corrosion. The monitoring process has two aspects: corrosion initiation and crack propagation. Propagation of cracks can be captured through corresponding acoustic emission whereas the mortar expansion due to the generation of corrosion products will be monitored by fiber Bragg grating strain sensors. The results demonstrate that the acoustic emission sources comes from three different types, namely, evolution of hydrogen bubbles, generation of corrosion products and crack propagation. Their corresponding properties are also discussed. The results also show a good correlation between acoustic emission activity and expansive strain measured on the specimen surface.http://www.mdpi.com/1424-8220/17/3/657reinforcement corrosionreinforced concreteacoustic emissionfiber Bragg grating
collection DOAJ
language English
format Article
sources DOAJ
author Weijie Li
Changhang Xu
Siu Chun Michael Ho
Bo Wang
Gangbing Song
spellingShingle Weijie Li
Changhang Xu
Siu Chun Michael Ho
Bo Wang
Gangbing Song
Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
Sensors
reinforcement corrosion
reinforced concrete
acoustic emission
fiber Bragg grating
author_facet Weijie Li
Changhang Xu
Siu Chun Michael Ho
Bo Wang
Gangbing Song
author_sort Weijie Li
title Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
title_short Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
title_full Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
title_fullStr Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
title_full_unstemmed Monitoring Concrete Deterioration Due to Reinforcement Corrosion by Integrating Acoustic Emission and FBG Strain Measurements
title_sort monitoring concrete deterioration due to reinforcement corrosion by integrating acoustic emission and fbg strain measurements
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2017-03-01
description Corrosion of concrete reinforcement members has been recognized as a predominant structural deterioration mechanism for steel reinforced concrete structures. Many corrosion detection techniques have been developed for reinforced concrete structures, but a dependable one is more than desired. Acoustic emission technique and fiber optic sensing have emerged as new tools in the field of structural health monitoring. In this paper, we present the results of an experimental investigation on corrosion monitoring of a steel reinforced mortar block through combined acoustic emission and fiber Bragg grating strain measurement. Constant current was applied to the mortar block in order to induce accelerated corrosion. The monitoring process has two aspects: corrosion initiation and crack propagation. Propagation of cracks can be captured through corresponding acoustic emission whereas the mortar expansion due to the generation of corrosion products will be monitored by fiber Bragg grating strain sensors. The results demonstrate that the acoustic emission sources comes from three different types, namely, evolution of hydrogen bubbles, generation of corrosion products and crack propagation. Their corresponding properties are also discussed. The results also show a good correlation between acoustic emission activity and expansive strain measured on the specimen surface.
topic reinforcement corrosion
reinforced concrete
acoustic emission
fiber Bragg grating
url http://www.mdpi.com/1424-8220/17/3/657
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AT siuchunmichaelho monitoringconcretedeteriorationduetoreinforcementcorrosionbyintegratingacousticemissionandfbgstrainmeasurements
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