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首页> 外文期刊>Journal of intelligent material systems and structures >Detecting Water Accumulation in Honeycomb Sandwich Structures by Optical-fiber-based Distributed Temperature Measurement
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Detecting Water Accumulation in Honeycomb Sandwich Structures by Optical-fiber-based Distributed Temperature Measurement

机译:通过基于光纤的分布式温度测量来检测蜂窝夹层结构中的水累积

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摘要

Water accumulation in honeycomb sandwich structures is a perceived problem for aircraft operators since it significantly degrades the structural integrity. The authors developed a fiber-optic-based technique to detect water accumulation in large-scale aircraft honeycomb sandwich structures. An optical-fiber network was formed in the adhesive layer and a Brillouin-based sensing system with high spatial resolution (specifically, pre-pump pulse Brillouin optical time domain analysis (PPP-BOTDA)) was utilized to detect the non-uniform internal temperature distribution during cooling in aircraft ascent. First, the temperature change during the ascent was investigated to evaluate the feasibility of the proposed technique. A verification test was then conducted using a Nomex honeycomb sandwich panel. The non-uniform temperature induced by water accumulation was detected from the peak-frequency distributions and the width of the Brillouin gain spectrum, which is the output of the PPP-BOTDA. The spectrum width, which represents the temperature non-uniformity within the spatial resolution of the PPP-BOTDA, could indicate the presence of smaller water accumulations compared to the peak frequency, which represents the temperature averaged over the spatial resolution, thus confirming the importance of evaluating the spectrum width. The developed system is quite useful for continuously monitoring large-scale aircraft sandwich structures.
机译:蜂窝夹层结构中的水积聚是飞机运营人的一个明显问题,因为它会大大降低结构完整性。作者开发了一种基于光纤的技术来检测大型飞机蜂窝状夹层结构中的水积聚。在粘合剂层中形成了一个光纤网络,并使用了具有高空间分辨率的基于布里渊的传感系统(特别是前泵脉冲布里渊光学时域分析(PPP-BOTDA))来检测内部温度不均匀在飞机上升期间冷却过程中的分布。首先,研究了上升过程中的温度变化,以评估所提出技术的可行性。然后使用Nomex蜂窝夹心板进行验证测试。从峰值频率分布和布里渊增益谱的宽度(由PPP-BOTDA产生)中检测出了积水引起的温度不均匀。频谱宽度代表PPP-BOTDA在空间分辨率内的温度不均匀性,与峰频率相比,它表示存在较小的水积聚,峰值频率代表在空间分辨率上平均的温度,因此证实了评估频谱宽度。所开发的系统对于连续监视大型飞机三明治结构非常有用。

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