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Fiber Optic Thermal Health Monitoring of Composites

机译:复合材料的光纤热健康监测

摘要

A recently developed technique is presented for thermographic detection of flaws in composite materials by performing temperature measurements with fiber optic Bragg gratings. Individual optical fibers with multiple Bragg gratings employed as surface temperature sensors were bonded to the surfaces of composites with subsurface defects. The investigated structures included a 10-ply composite specimen with subsurface delaminations of various sizes and depths. Both during and following the application of a thermal heat flux to the surface, the individual Bragg grating sensors measured the temporal and spatial temperature variations. The data obtained from grating sensors were analyzed with thermal modeling techniques of conventional thermography to reveal particular characteristics of the interested areas. Results were compared with the calculations using numerical simulation techniques. Methods and limitations for performing in-situ structural health monitoring are discussed.
机译:提出了一种最新开发的技术,该技术可通过使用光纤布拉格光栅进行温度测量来对复合材料中的缺陷进行热成像检测。具有多个布拉格光栅作为表面温度传感器的单根光纤粘结到具有表面缺陷的复合材料表面。所研究的结构包括一个10层复合材料样本,该样本具有不同大小和深度的地下分层。在向表面施加热通量期间和之后,各个布拉格光栅传感器都测量了时间和空间温度变化。使用常规热成像的热建模技术分析了从光栅传感器获得的数据,以揭示感兴趣区域的特定特征。将结果与使用数值模拟技术的计算结果进行比较。讨论了进行现场结构健康监测的方法和局限性。

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