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A Fiber Optic Doppler Sensor and Its Application in Debonding Detection for Composite Structures

机译:光纤多普勒传感器及其在复合结构脱粘检测中的应用

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摘要

Debonding is one of the most important damage forms in fiber-reinforced composite structures. This work was devoted to the debonding damage detection of lap splice joints in carbon fiber reinforced plastic (CFRP) structures, which is based on guided ultrasonic wave signals captured by using fiber optic Doppler (FOD) sensor with spiral shape. Interferometers based on two types of laser sources, namely the He-Ne laser and the infrared semiconductor laser, are proposed and compared in this study for the purpose of measuring Doppler frequency shift of the FOD sensor. Locations of the FOD sensors are optimized based on mechanical characteristics of lap splice joint. The FOD sensors are subsequently used to detect the guided ultrasonic waves propagating in the CFRP structures. By taking advantage of signal processing approaches, features of the guided wave signals can be revealed. The results demonstrate that debonding in the lap splice joint results in arrival time delay of the first package in the guided wave signals, which can be the characteristic for debonding damage inspection and damage extent estimation.
机译:脱胶是纤维增强复合材料结构中最重要的破坏形式之一。这项工作致力于碳纤维增强塑料(CFRP)结构中搭接接头的脱胶损伤检测,该技术基于使用螺旋形光纤多普勒(FOD)传感器捕获的引导超声波信号。为了测量FOD传感器的多普勒频移,提出并比较了基于He-Ne激光和红外半导体激光两种激光源的干涉仪。 FOD传感器的位置根据搭接接头的机械特性进行了优化。随后将FOD传感器用于检测CFRP结构中传播的引导超声波。通过利用信号处理方法,可以揭示导波信号的特征。结果表明,搭接接头处的脱胶会导致第一个包装在导波信号中的到达时间延迟,这可能是脱胶损伤检查和损伤程度估计的特征。

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