首页> 外文会议>Conference on Smart Materials II, Dec 16-18, 2002, Melbourne, Australia >In situ health monitoring of bonded composite repairs using a novel fibre Bragg grating sensing arrangement
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In situ health monitoring of bonded composite repairs using a novel fibre Bragg grating sensing arrangement

机译:使用新型光纤布拉格光栅传感装置对粘合复合材料的修复进行原位健康监测

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As the replacement costs of military aircraft escalate, there is an increasing trend to operate existing aircraft well beyond their original design life. As the fleet ages, structural problems such as airframe corrosion and cracking are becoming significant issues. In recent years, bonded composite patches or doublers have been developed to repair or reinforce defective regions of the airframe. However certification concerns have limited most application of these bonded composite repairs to secondary structures. In order to alleviate certification concerns, and thus facilitate the implementation of this repair technology to critical damage in primary structure, the "smart patch" approach has been proposed. This approach involves incorporating sensors into the composite patch to self-monitor patch health. This paper describes the use of optical fibre Bragg gratings to measure the changes in thermal residual strain that occur when a composite patch starts to disbond from the parent structure. Conventionally, the Bragg sensing mechanism relies on a shift in reflected wavelength, which requires the use of costly optical measurement tools. A modified sensing arrangement is proposed, which incorporates two Bragg gratings, and a fibre optic coupler. The reflection from the first Bragg grating acts as a reference source for an active Bragg grating on the patch. This modified arrangement allows a relative wavelength shift to be translated into a change in the optical power, which can be measured easily using a low cost interrogation system. The modified sensing arrangement also allows us to more readily miniaturise the opto-electrical interrogation system, thus enabling these systems to be more easily implemented on operational aircraft.
机译:随着军用飞机的更换成本不断上升,操作现有飞机的趋势已大大超过其原始设计寿命。随着机队的老化,机体腐蚀和破裂等结构性问题已成为重要问题。近年来,已开发出粘合的复合补片或倍增剂来修复或增强机身的缺陷区域。但是,出于认证方面的考虑,这些粘结的复合材料修补剂在大多数情况下都不能用于二级结构。为了减轻对认证的关注,从而促进该修复技术对主要结构的严重损坏的实施,已经提出了“智能补丁”方法。此方法涉及将传感器合并到复合补丁中以自我监控补丁的运行状况。本文介绍了使用光纤布拉格光栅来测量复合贴片开始从母体结构上剥离时所产生的热残余应变的变化。通常,布拉格传感机制依赖于反射波长的偏移,这需要使用昂贵的光学测量工具。提出了一种改进的感测装置,其包括两个布拉格光栅和一个光纤耦合器。来自第一布拉格光栅的反射充当贴片上有源布拉格光栅的参考源。这种改进的布置允许将相对波长偏移转换为光功率的变化,这可以使用低成本的查询系统轻松测量。修改后的传感装置还使我们能够更轻松地将光电查询系统小型化,从而使这些系统更易于在飞机上实现。

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