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The adhesive effect on ultrasonic Lamb wave detection sensitivity of remotely-bonded fiber Bragg grating sensors

机译:粘合对遥测光纤布拉格光栅传感器的超声波兰伯波检测灵敏度的影响

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Fiber Bragg grating (FBG) sensors are excellent transducers for ultrasonic signal detection in structural health monitoring (SHM) application. While the FBG sensors are typically bonded directly on the surface of a structure to collect signals, one of the major challenges arises from demodulating relevant information from the low amplitude signal. The authors have experimentally demonstrated that the ultrasonic wave detection sensitivity of FBG sensors can be increased by bonding optical fiber away from the FBG location. This configuration is referred to here as remote bonding. However the mechanism causing this phenomenon has not been explored. In this work, we simulate the previous experimental work through a transient analysis based on the finite element method, and the output FBG response is calculated through the transfer matrix method. We first model an optical fiber bonded on the surface of an aluminum plate with an adhesive. The consistent input signal is excited to the plate, which is detected by the directly and remotely-bonded FBGs. The effect of the presence of the adhesive around the FBG is investigated by analyzing strain and displacement along the length of the FBGs at the locations of direct and remote bonding cases, and the consequent output FBG responses. The result demonstrates that the sensitivity difference between the direct and remote bonding cases is originated from shear lag effect due to adhesive.
机译:光纤布拉格光栅(FBG)传感器是用于结构健康监测(SHM)应用中超声信号检测的出色换能器。尽管FBG传感器通常直接结合在结构的表面上以收集信号,但是主要挑战之一是从低振幅信号中解调相关信息而引起的。作者已通过实验证明,通过将光纤从FBG位置移开,可以提高FBG传感器的超声波检测灵敏度。此配置在此称为远程绑定。但是,尚未探究导致这种现象的机理。在这项工作中,我们通过基于有限元方法的瞬态分析来模拟先前的实验工作,并通过传递矩阵方法来计算输出FBG响应。我们首先对用粘合剂粘结在铝板表面上的光纤进行建模。一致的输入信号被激励到板上,由直接和远程结合的FBG检测到。通过分析在直接和远距离粘合情况下沿FBG长度方向的应变和位移,以及由此产生的FBG输出响应,来研究FBG周围存在粘合剂的影响。结果表明,直接粘合情况和远程粘合情况之间的灵敏度差异源自粘合剂引起的剪切滞后效应。

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