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Performance Evaluation of the Fiber Bragg Grating (FBG) Sensing Device and Comparison with Piezoelectric Sensors for AE Detection

机译:光纤布拉格光栅(FBG)传感装置的性能评价与AE检测压电传感器的比较

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Structural health monitoring (SHM) of engineering structures in service has assumed a significant role in assessing their safety and integrity. Several sensing modalities have been developed to monitor cracking, using acoustic emission (AE). Piezoelectric sensors are commonly used in AE systems, however, for some applications there are limitations and challenges. One alternative approach that is being investigated is using Fiber Bragg Grating (FBG) sensors which have emerged as a reliable, in situ and nondestructive tool in some applications for monitoring and diagnostics in large-scale structure. The main objective of this work is to evaluate and compare the AE sensing characteristics for FBG and piezoelectric sensors. A ball drop impact is used as the source for generating waves in an Aluminum plate. The source repeatability was verified and a 4-channel FBG AE detection device was used to compare with the response of PZT sensors, investigating amplitude and frequency response which can indicate sensitivity. The low sensitivity and slow sampling rate are identified, for the unit investigated, as the main factors limiting FBG engineering AE applications.
机译:服务中的工程结构的结构健康监测(SHM)在评估其安全性和完整性方面具有重要作用。已经开发了几种感测模式来使用声发射(AE)监测开裂。压电传感器通常用于AE系统,然而,对于某些应用,有局限性和挑战。正在研究的一种替代方法是使用光纤布拉格光栅(FBG)传感器,该传感器在一些应用中出现可靠,原位和非破坏性工具,用于在大规模结构中监测和诊断。这项工作的主要目的是评估和比较FBG和压电传感器的AE传感特性。球落撞击用作用于在铝板中产生波的源。验证了源重复性,并且使用4通道FBG AE检测装置与PZT传感器的响应进行比较,调查可以指示灵敏度的调查幅度和频率响应。对于调查的单元,确定了低灵敏度和慢速采样率,作为限制FBG工程AE应用的主要因素。

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