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Damage monitoring using fiber optic sensors and by analysing electromechanical admittance signatures obtained from piezo sensor

机译:使用光纤传感器并通过分析从压电传感器获得的机电导纳信号来监控损坏

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Damage monitoring is the need of the hour in this age of infrastructure. Many methods are being used for damage monitoring in different mechanical and civil structures. Some of them are strain based methods in which abruptly increased strain signifies the presence of damage in the structure. This article focuses on crack monitoring of a fixed-fixed beam using fiber optic sensors which can measure strain locally or globally. The two types of fiber optic sensors used in this research are fiber Bragg grating (FBG) and fiber optic polarimetric sensors (FOPS). FBG and FOPS are used for local strain monitoring (at one point only) and global strain monitoring (in the entire specimen) respectively. At the centre of the specimen, a piezoelectric wafer active sensor (PWAS) is also attached. PWAS is used to obtain electromechanical admittance (EMA) signatures. Further, these EMA signatures are analysed to access the damage state in the beam. These multiple smart materials together provide improved information on damages in the specimen which is very valuable for the structural health monitoring (SHM) of the specimen.
机译:在这个基础架构时代,损坏监视是需要小时的工作。在不同的机械和民用结构中,有许多方法用于监视损坏。其中一些是基于应变的方法,其中应变突然增加表示结构中存在损坏。本文重点介绍使用光纤传感器对固定固定梁进行裂缝监测,该传感器可以局部或全局测量应变。本研究中使用的两种类型的光纤传感器是光纤布拉格光栅(FBG)和光纤偏振传感器(FOPS)。 FBG和FOPS分别用于局部应变监测(仅在一个点)和整体应变监测(在整个样本中)。在标本的中心,还安装了压电晶片有源传感器(PWAS)。 PWAS用于获取机电导纳(EMA)签名。此外,分析这些EMA签名以访问光束中的损坏状态。这些多种智能材料共同提供了有关标本损坏的改进信息,这对于标本的结构健康监测(SHM)非常有价值。

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