航空学报 > 2009, Vol. 30 Issue (2): 348-356

压电-光纤综合结构健康监测系统的研究及验证

袁慎芳,邱雷,王强,苗苗,余振华   

  1. 南京航空航天大学 智能材料与结构航空科技重点实验室
  • 收稿日期:2007-11-11 修回日期:2008-05-19 出版日期:2009-02-15 发布日期:2009-02-15
  • 通讯作者: 袁慎芳

Application Research of a Hybrid Piezoelectric-optic Fiber Integrated Structural Health Monitoring System

Yuan Shenfang, Qiu Lei, Wang Qiang, Miao Miao, Yu Zhenhua   

  1. The Aeronautical Key Laboratory for Smart Materials and Structures, Nanjing University of Aeronautics and Astronautics
  • Received:2007-11-11 Revised:2008-05-19 Online:2009-02-15 Published:2009-02-15
  • Contact: Yuan Shenfang

摘要:

以某型无人机机翼盒段试验件为对象,进行了压电-光纤综合结构健康监测系统的研究。自主研发了国内首台集成压电多通道扫查系统,可实现多达552个激励传感通道的损伤自动扫查,并同光纤光栅解调系统组合,自行开发了集成健康监测系统软件,构成了压电-光纤综合结构健康监测系统。基于该系统进行了大型碳纤维复合材料盒段试验件弯扭强度实验过程中的结构健康监测功能验证研究,监测结构尺寸达4000 m×1200 m×0.265 m,监测对象包括结构的应变场分布及抽钉失效。系统监测了全盒段上下壁板共34点的应变场分布情况,应变场监测准确;监测系统不仅对结构抽钉的缺失实现了准确监测,而且可以分辨所实验结构的4种抽钉缺失程度。

关键词: 结构健康监测, PZT, Bragg光纤光栅, 传感阵列, 应变, 监测, 连接失效

Abstract:

This article presents the research on the development of a hybrid piezoelectric-optic fiber sensor array-based integrated structural health monitoring (SHM) system and its function evaluation on a composite unmanned aerial vehicle (UAV) wing box specimen. First, a multi-channel SHM scanning system for piezoelectronic transducer (PZT) sensor arrays is developed. This system can automatically scan up to 552 PZT actuator-sensor channels. With this PZT sensor scanning system and the fiber Bragg grating (FBG) interrogation system as hardware, an integrated system software is designed to control the damage monitoring and estimation process. These three parts form a hybrid piezoelectricoptic fiber sensor arraybased integrated SHM system. Based on this system, a SHM evaluation research is performed on a composite UAV wing box specimen with the dimension of 4000 m×1200 m×0.265 m. The SHM monitored objects are the strain distribution on the wing box skins and the joint failure which occurs during its strength experiments. Totally 34 strain points are monitored. The test proves that the system can monitor the occurrence of joint failure successfully. In addition, it can distinguish 4 kinds of joint failure grades.

Key words: structural health monitoring, PZT, fiber Bragg grating, sensor array, strain, monitoring, joint failure

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