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Real-time damage detection in thermoplastic-based composite materials with embedded multi-mode optical fiber sensors

机译:具有嵌入式多模光纤传感器的热塑性基复合材料的实时损伤检测

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摘要

In this paper we describe the use of an inexpensive standard communicationgrade optical fiber for the purpose of detecting damage in glass fiber reinforced thermoplastic composite materials and hybrid fiber metal laminates based on the same composite constituent. These multi-mode, step-index optical fibers were embedded at different locations within the composite structure to assess their ability for structural health monitoring. In this study, the specimens were loaded under a three-point bend test configuration. Results from the investigation have shown that these optical fibers are capable of detecting the peak failure load in the host material when embedded at locations where structural failure initiates at peak load. The output from the optical fibers was shown to be sensitive to the applied loading conditions suggesting that they can also be used to monitor structural loading. Optical micrographs of selected specimens were obtained by sectioning the specimens at the fracture location to provide confirmation of the optical fiber results.
机译:在本文中,我们描述了使用便宜的标准通信级光纤来检测玻璃纤维增​​强的热塑性复合材料和基于相同复合成分的混合纤维金属层压板的损坏。这些多模,阶跃折射率光纤嵌入复合结构内的不同位置,以评估其进行结构健康监测的能力。在这项研究中,样品在三点弯曲测试配置下加载。研究结果表明,当这些光纤嵌入峰值载荷引起结构破坏的位置时,它们能够检测基质材料中的峰值破坏载荷。光纤的输出显示出对所施加的载荷条件敏感,表明它们也可以用于监视结构载荷。选定标本的光学显微照片是通过在断裂位置处对标本进行切片来获得的,以证实光纤的结果。

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