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Lamb wave sensing using fiber Bragg grating sensors for delamination detection in composite laminates

机译:使用光纤布拉格光栅传感器的兰姆波感测用于复合材料层压板的分层检测

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摘要

The authors are constructing a damage detection system using ultrasonic waves. In this system, a piezo-ceramic actuator generates Lamb waves in a CFRP laminate. After the waves propagate in the laminate, transmitted waves are received by a fiber Bragg grating (FBG) sensor attached on the laminate using a newly developed high-speed optical wavelength interrogation system. At first, the optimal gauge length of the FBG to detect ultrasonic waves was investigated through theoretical simulations and experiments. Then, the directional sensitivity of the FBG to ultrasonic waves was evaluated experimentally. On the basis of the above results, the lmm FBG sensors were applied to the detection of Lamb waves propagated in carbon fiber reinforced plastic (CFRP) cross-ply laminates. The piezo-actuator was put on the laminate about 50mm away from the FBG sensor glued on the laminate, and three-cycle sine waves of 300kHz were excited repeatedly. The waveforms obtained by the FBG showed that S_0 and A_0 modes could be detected appropriately. Then, artificial delamination was made in the laminate by removing of a Teflon sheet embedded in the 0°/90° interface after the manufacturing. When the Lamb waves passed through the delamination, the amplitude decreased and a new wave mode appeared. These phenomena could be well simulated using a finite element method. Furthermore, since the amplitude and the velocity of the new mode increased with an increase in the delamination length, this system has a potential to evaluate the interlaminar delamination length quantitatively.
机译:作者正在构建使用超声波的损坏检测系统。在该系统中,压电陶瓷致动器在CFRP层压板中产生兰姆波。在波在层压板中传播之后,使用新开发的高速光学波长询问系统,通过安装在层压板上的光纤布拉格光栅(FBG)传感器接收透射波。首先,通过理论模拟和实验研究了用于检测超声波的FBG的最佳标距。然后,通过实验评估了FBG对超声波的方向敏感性。基于以上结果,将1mm FBG传感器用于检测在碳纤维增强塑料(CFRP)交叉层压板中传播的Lamb波。将压电致动器放置在距胶合在层压板上的FBG传感器约50mm处的层压板上,并反复激发300kHz的三周期正弦波。 FBG获得的波形表明可以正确检测到S_0和A_0模式。然后,通过在制造后去除嵌入在0°/ 90°界面中的Teflon片,从而在层压体中进行人工分层。当兰姆波穿过分层时,振幅减小,并且出现了新的波模。使用有限元方法可以很好地模拟这些现象。此外,由于新模式的幅度和速度随着分层长度的增加而增加,因此该系统具有定量评估层间分层长度的潜力。

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