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Acoustic emission detection and position identification of transverse cracks in carbon fiber-reinforced plastic laminates by using a novel optical fiber ultrasonic sensing system

机译:利用新型光纤超声传感系统检测碳纤维增强塑料层压板中横向裂纹的声发射检测和位置识别

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摘要

Utilizing optical fiber technique to structural health monitoring of composite materials is attracting attention recently due to the inherent advantages in optical fiber sensor. However, acoustic emission signals with low energy and high frequency from transverse cracks in carbon fiber-reinforced plastic laminates are difficult to be detected by normal optical techniques. In this work, we present a phase-shifted fiber Bragg grating balanced sensing system to detect acoustic emission signals generated in a carbon fiber-reinforced plastic laminate in a three-point bending test. We demonstrated that the phase-shifted fiber Bragg grating balanced sensing system with a broad bandwidth and high sensitivity can detect high-frequency, low-energy acoustic emission signals caused by transverse cracks. In our experiments, the transverse cracks were identified very well through the detected acoustic emission signals. The relationship between the strain and the acoustic emission signals, and the typical waveforms of the acoustic emission signals were investigated. Furthermore, accurate position identification using acoustic emission detection by the phase-shifted fiber Bragg grating sensor was demonstrated. All the results obtained from the phase-shifted fiber Bragg grating sensor were compared to the results obtained from commercial lead-zirconate-titanate acoustic emission sensors. We found that the phase-shifted fiber Bragg grating balanced sensing system performance was comparable to the commercial lead-zirconate-titanate acoustic emission sensors.
机译:由于光纤传感器的固有优点,将光纤技术用于复合材料的结构健康监测近来引起人们的关注。然而,通过常规的光学技术难以检测到来自碳纤维增强塑料层压板中的横向裂缝的具有低能量和高频的声发射信号。在这项工作中,我们提出了一种相移纤维布拉格光栅平衡传感系统,以检测碳纤维增强塑料层压板中的三点弯曲测试中产生的声发射信号。我们证明了具有宽带宽和高灵敏度的相移光纤布拉格光栅平衡传感系统可以检测到由横向裂缝引起的高频,低能量声发射信号。在我们的实验中,通过检测到的声发射信号可以很好地识别出横向裂纹。研究了应变与声发射信号之间的关系,以及声发射信号的典型波形。此外,还证明了使用相移光纤布拉格光栅传感器进行声发射检测的准确位置识别。将相移光纤布拉格光栅传感器获得的所有结果与商业化锆钛酸铅声发射传感器获得的结果进行比较。我们发现相移光纤布拉格光栅平衡传感系统的性能可与商业化的锆钛酸铅声发射传感器相媲美。

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