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Process and Structural Health Monitoring of Composite Structures with Embedded Fiber Optic Sensors and Piezoelectric Transducers.

机译:具有嵌入式光纤传感器和压电传感器的复合结构的过程和结构健康监测。

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摘要

Advanced composite materials are becoming increasingly more valuable in a plethora of engineering applications due to properties such as tailorability, low specific strength and stiffness and resistance to fatigue and corrosion. Compared to more traditional metallic and ceramic materials, advanced composites such as carbon, aramid or glass reinforced plastic are relatively new and still require research to optimize their capabilities. Three areas that composites stand to benefit from improvement are processing, damage detection and life prediction. Fiber optic sensors and piezoelectric transducers show great potential for advances in these areas. This dissertation presents the research performed on improving the efficiency of advanced composite materials through the use of embedded fiber optic sensors and surface mounted piezoelectric transducers.;Embedded fiber optic sensors are used to detect the presence of resin during the injection stage of resin transfer molding, monitor the degree of cure and predict the remaining useful life while in service. A sophisticated resin transfer molding apparatus was developed with the ability of embedding fiber optics into the composite and a glass viewing window so that resin flow sensors could be verified visually. A novel technique for embedding optical fiber into both 2- and 3-D structures was developed. A theoretical model to predict the remaining useful life was developed and a systematic test program was conducted to verify this model. A network of piezoelectric transducers was bonded to a composite panel in order to develop a structural health monitoring algorithm capable of detecting and locating damage in a composite structure.;A network configuration was introduced that allows for a modular expansion of the system to accommodate larger structures and an algorithm based on damage progression history was developed to implement the network.;The details and results of this research are contained in four manuscripts that are included in Appendices A-D while the body of the dissertation provides background information and a summary of the results.
机译:先进的复合材料由于具有可定制性,较低的比强度和刚度以及抗疲劳和腐蚀等特性,在许多工程应用中变得越来越有价值。与更传统的金属和陶瓷材料相比,高级复合材料(例如碳,芳纶或玻璃增强塑料)相对较新,仍然需要进行研究以优化其性能。复合材料可从改进中受益的三个领域是加工,损伤检测和寿命预测。光纤传感器和压电换能器在这些领域显示出巨大的发展潜力。本文介绍了通过使用嵌入式光纤传感器和表面安装式压电传感器来提高先进复合材料效率的研究。嵌入式光纤传感器用于在树脂传递模塑注射阶段检测树脂的存在,监测治愈程度并预测使用中的剩余使用寿命。开发了一种先进的树脂传递模塑设备,该设备具有将光纤嵌入复合材料和玻璃观察窗的能力,从而可以目视验证树脂流量传感器。开发了一种将光纤嵌入2-D和3-D结构的新技术。开发了预测剩余使用寿命的理论模型,并进行了系统测试程序以验证该模型。将压电换能器网络绑定到复合面板上,以开发一种能够检测和定位复合结构中损坏的结构健康监测算法。引入了一种网络配置,可以对系统进行模块化扩展以容纳更大的结构该研究的细节和结果包含在附录AD中的四篇手稿中,而论文的主体提供了背景信息和结果摘要。

著录项

  • 作者

    Keulen, Casey James.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Engineering Aerospace.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:41

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