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一种基于光纤布拉格光栅的混凝土腐蚀开裂监测方法。

A Monitoring Method Based on FBG for Concrete Corrosion Cracking.

作者信息

Mao Jianghong, Xu Fangyuan, Gao Qian, Liu Shenglin, Jin Weiliang, Xu Yidong

机构信息

Ningbo Institute of Technology, Zhejiang University, Ningbo 315100, China.

College of Civil Engineering, Chongqing Jiaotong University, Chongqing 400074, China.

出版信息

Sensors (Basel). 2016 Jul 14;16(7):1093. doi: 10.3390/s16071093.

Abstract

Corrosion cracking of reinforced concrete caused by chloride salt is one of the main determinants of structure durability. Monitoring the entire process of concrete corrosion cracking is critical for assessing the remaining life of the structure and determining if maintenance is needed. Fiber Bragg Grating (FBG) sensing technology is extensively developed in photoelectric monitoring technology and has been used on many projects. FBG can detect the quasi-distribution of strain and temperature under corrosive environments, and thus it is suitable for monitoring reinforced concrete cracking. According to the mechanical principle that corrosion expansion is responsible for the reinforced concrete cracking, a package design of reinforced concrete cracking sensors based on FBG was proposed and investigated in this study. The corresponding relationship between the grating wavelength and strain was calibrated by an equal strength beam test. The effectiveness of the proposed method was verified by an electrically accelerated corrosion experiment. The fiber grating sensing technology was able to track the corrosion expansion and corrosion cracking in real time and provided data to inform decision-making for the maintenance and management of the engineering structure.

摘要

氯化物引起的钢筋混凝土腐蚀开裂是结构耐久性的主要决定因素之一。监测混凝土腐蚀开裂的全过程对于评估结构的剩余寿命以及确定是否需要维护至关重要。光纤布拉格光栅(FBG)传感技术在光电监测技术中得到了广泛发展,并已应用于许多项目。FBG能够检测腐蚀环境下的应变和温度准分布,因此适用于监测钢筋混凝土开裂。根据腐蚀膨胀导致钢筋混凝土开裂的力学原理,本研究提出并研究了基于FBG的钢筋混凝土开裂传感器的封装设计。通过等强度梁试验校准了光栅波长与应变的对应关系。通过电加速腐蚀试验验证了所提方法的有效性。光纤光栅传感技术能够实时跟踪腐蚀膨胀和腐蚀开裂,并为工程结构的维护和管理决策提供数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb55/4970139/d1cd593b2746/sensors-16-01093-g001.jpg

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