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A Fiber Bragg Grating Interrogation System for Health Monitoring Of Metals and Composites

机译:用于金属和复合材料健康监测的光纤布拉格光栅询问系统

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This paper presents a novel Fiber-Bragg Grating interrogation system and its validation for detection of Lamb-waves and acoustic emission events on both aluminum and composite substrates. The system utilizes a robust laser demodulation technique for FBG interrogation, based upon a simple laser wavelength tracking scheme. This technique enables detection of much higher frequency strains than previous FBG interrogation techniques, enabling the use of FBG sensors in acousto-ultrasonic structural health monitoring schemes such as Lamb-wave pitch-catch and acoustic emission detection in the presence of a quasistatic strain background. The principles of the FBG interrogation system are presented, including validation of the system for detection of ultrasonic Lamb waves, and results from a 4-point bending test of a braided composite tube wherein the FBG system was used to detect crack-growth induced AE events on the braided tube. The AE data agreed well with damage index values measured by a commercial acousto-ultrasonic system.
机译:本文提出了一种新颖的光纤布拉格光栅询问系统,并对其在铝和复合材料基板上检测兰姆波和声发射事件进行了验证。该系统基于简单的激光波长跟踪方案,采用了健壮的激光解调技术进行FBG询问。这项技术能够检测到比以前的FBG询问技术高得多的频率应变,从而能够在准静态应变背景下将FBG传感器用于Lamb-wave音高捕获和声发射检测等声-超声结构健康监测方案中。介绍了FBG询问系统的原理,包括对超声波Lamb波检测系统的验证,以及编织复合管的4点弯曲测试的结果,其中FBG系统用于检测裂纹扩展诱发的AE事件在编织管上。 AE数据与商用声-超声系统测得的损伤指数值非常吻合。

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