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Structural health monitoring for smart composites using embedded FBG sensor technology

机译:使用嵌入式FBG传感器技术对智能复合材料进行结构健康监测

摘要

Fibre-optic Bragg grating (FBG) sensors have been recognised as one of the smart localised and globalised structural health monitoring devices for many structural applications. A particular interest has been placed on embedding these sensors into advanced composites for in situ manufacturing process monitoring and then, lifetime structural health monitoring (SHM). There is no doubt that the need of maintaining structural integrity of these composites has been increased owing to an increasing use of carbon and glass fibre composites in real life structural and engineering applications. In the public transportation, the structural components of Airbus 350 XWB and Boeing 787 are made by over 50% of composite materials to replace traditional aluminium alloys. Electric vehicles have used lightweight carbon fibre composites as their chassis to overcome the weight penalty from batteries. With the advantages of high specific stiffness to weight ratio and good damping properties of polymer based composites, these composites are also used to reinforce and strengthen civil concrete structures that are located on the earthquake zones. In some critical engineering components, glass fibre composites with embedded shape memory alloy (SMA) wires are used for stiffness and shape controls during marginally operational conditions. Therefore, developing better SHM technologies is an urgent need to ensure the structural integrity and safety of structures. In this paper, FBG sensors for different SHMs are introduced and discussed. The use of the sensors with appropriate design for smart composites with sensing and actuating capacities is also presented.
机译:光纤布拉格光栅(FBG)传感器已被公认为是用于许多结构应用的智能本地化和全球化结构健康监测设备之一。人们特别关注将这些传感器嵌入先进的复合材料中,以进行原位制造过程监控,然后进行寿命结构健康监控(SHM)。毫无疑问,由于在现实生活中的结构和工程应用中越来越多地使用碳纤维和玻璃纤维复合材料,因此增加了保持这些复合材料结构完整性的需求。在公共交通中,空中客车350 XWB和波音787的结构部件由50%以上的复合材料制成,以代替传统的铝合金。电动汽车已经使用轻质碳纤维复合材料作为底盘,以克服电池带来的重量损失。由于聚合物基复合材料具有较高的比刚度/重量比和良好的阻尼特性,这些复合材料还用于增强和增强位于地震带上的民用混凝土结构。在某些关键的工程组件中,带有嵌入式形状记忆合金(SMA)线的玻璃纤维复合材料可在边际操作条件下用于刚度和形状控制。因此,迫切需要开发更好的SHM技术以确保结构的完整性和安全性。本文介绍并讨论了用于不同SHM的FBG传感器。还介绍了具有适当设计的传感器在具有感应和驱动能力的智能复合材料中的使用。

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    Lau KT;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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