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Impact damage detection in CFRP using fiber Bragg gratings

机译:CFRP中使用光纤布拉格光栅的冲击损伤检测

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A fiber-optic ultrasonic sensing system was constructed with fiber Bragg gratings based on the intensity modulation of light reflected from fiber Bragg grating sensors. This fiber-optic system consists of fiber Bragg gratings for sensing and filtering, a broadband light source as well as a photo detector. The feasibility of damage monitoring using the fiber-optic system was investigated. Transient ultrasonic Lamb waves generated with a piezoceramic pulser were propagated in a cross-ply CFRP with visible impact damage. The response of the fiber Bragg grating sensor to the Lamb wave propagated through the damaged area was compared with a reference response in an intact area. Frequency characteristics of the response signal were analyzed in order to evaluate Lamb wave interaction with damage. Moreover, Lamb wave detection using a piezoceramic sensor was performed to compare with the response of the fiber Bragg grating sensor. The experimental results demonstrated that fiber Bragg grating sensors are comparable to piezoceramic sensors in ultrasonic detection and the fiber-optic system proved to be effective in impact damage detection of CFRP.
机译:基于光纤布拉格光栅传感器反射的光的强度调制,使用光纤布拉格光栅构造了光纤超声传感系统。该光纤系统由用于传感和滤波的布拉格光纤光栅,宽带光源以及光电探测器组成。研究了使用光纤系统进行损坏监测的可行性。由压电陶瓷脉冲发生器产生的瞬态超声波兰姆波在具有可见冲击破坏的交叉CFRP中传播。将光纤布拉格光栅传感器对通过受损区域传播的兰姆波的响应与完整区域中的参考响应进行了比较。分析了响应信号的频率特性,以评估带损伤的兰姆波相互作用。此外,进行了使用压电陶瓷传感器的兰姆波检测,以与光纤布拉格光栅传感器的响应进行比较。实验结果表明,光纤布拉格光栅传感器在超声波检测方面可与压电陶瓷传感器媲美,并且光纤系统被证明可有效检测CFRP的冲击损伤。

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