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Guided Wave and Damage Detection in Composite Laminates Using Different Fiber Optic Sensors

机译:使用不同的光纤传感器检测复合材料层板中的导波和损伤

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摘要

Guided wave detection using different fiber optic sensors and their applications in damage detection for composite laminates were systematically investigated and compared in this paper. Two types of fiber optic sensors, namely fiber Bragg gratings (FBG) and Doppler effect-based fiber optic (FOD) sensors, were addressed and guided wave detection systems were constructed for both types. Guided waves generated by a piezoelectric transducer were propagated through a quasi-isotropic carbon fiber reinforced plastic (CFRP) laminate and acquired by these fiber optic sensors. Characteristics of these fiber optic sensors in ultrasonic guided wave detection were systematically compared. Results demonstrated that both the FBG and FOD sensors can be applied in guided wave and damage detection for the CFRP laminates. The signal-to-noise ratio (SNR) of guided wave signal captured by an FOD sensor is relatively high in comparison with that of the FBG sensor because of their different physical principles in ultrasonic detection. Further, the FOD sensor is sensitive to the damage-induced fundamental shear horizontal (SH0) guided wave that, however, cannot be detected by using the FBG sensor, because the FOD sensor is omnidirectional in ultrasound detection and, in contrast, the FBG sensor is severely direction dependent.
机译:本文对使用不同光纤传感器的导波检测及其在复合材料层压板损伤检测中的应用进行了系统地研究和比较。解决了两种类型的光纤传感器,即光纤布拉格光栅(FBG)和基于多普勒效应的光纤(FOD)传感器,并为这两种类型构造了导波检测系统。压电换能器产生的引导波传播通过准各向同性碳纤维增强塑料(CFRP)层压板,并由这些光纤传感器获取。系统地比较了这些光纤传感器在超声导波检测中的特性。结果表明,FBG和FOD传感器均可用于CFRP层压板的导波和损伤检测。由于FOD传感器在超声检测中的物理原理不同,因此与FBG传感器相比,由FOD传感器捕获的导波信号的信噪比(SNR)相对较高。此外,FOD传感器对损坏引起的基本剪切水平(SH0)导波敏感,但是使用FBG传感器无法检测到,因为FOD传感器在超声波检测中是全向的,而FBG传感器则是全向的严重依赖方向。

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