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Development of fiber-optic sensors for structural health monitoring applications.

机译:开发用于结构健康监测应用的光纤传感器。

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摘要

Increasing applications of composite materials in aerospace structures require developing new sensors and structural health monitoring (SHM) strategies. The sensors investigated in the present study are intended for applications in such area. The first sensor type, whispering gallery mode (WGM) sensor, is known to have ultra high sensitivity. These sensors are constructed by optically coupling a microscale resonator with an optical fiber. SHM applications require physically bonding the fiber and the particle by encapsulating the sensor system inside a solid material to maintain optimum conditions and to obtain a robust sensor, which is a significant challenge. Finding appropriate materials for encapsulation because of complex mechanical and optical requirements and developing processing methods due to the microscale structure and fragile nature of the fiber are important research tasks, which are addressed in this work. A mechanics based approach is adopted in this work to model the response of WGM sensors and also the encapsulated sensor system. A second type of sensor, called fiber-loop sensor, is developed in this study, which relies on the same optical phenomena of WGM resonances. This sensor is robust, inexpensive, and has simple instrumentation compared to the WGM sensors. This intensity modulation type sensor combines the advantage of high sensitivity of frequency-modulation based sensors and simplicity of intensity-modulation based sensors. This sensor is shown to have sensitivity of better than 10-4 N for force and 10-5 m for displacement. Fiber-loop sensors are also shown to survive at least 104 cycles of loading and unloading at high displacement. Further, they are embedded in fiber reinforced composites, which are tested under flexural loading conditions. The sensors have shown very stable and repeatable response. SHM applications are expected to benefit from the advancements in the area of fiber-optic sensors and availability of new types of sensors. It is also expected that fiber-loop sensors will find applications in other areas such as infrastructure, biomedical, and materials research.
机译:复合材料在航空航天结构中的越来越多的应用要求开发新的传感器和结构健康监测(SHM)策略。在本研究中研究的传感器旨在用于此类领域。第一种传感器类型是回音壁模式(WGM)传感器,具有超高灵敏度。这些传感器是通过将微型谐振器与光纤光学耦合而构成的。 SHM应用需要通过将传感器系统封装在固体材料内部来物理粘合纤维和颗粒,以保持最佳条件并获得坚固的传感器,这是一个巨大的挑战。由于复杂的机械和光学要求而寻找合适的封装材料,以及由于纤维的微观结构和易碎性而开发加工方法是重要的研究任务,这些工作已得到解决。在这项工作中采用了基于力学的方法来对WGM传感器以及封装的传感器系统的响应进行建模。在这项研究中开发了第二种类型的传感器,称为光纤环路传感器,它依赖于WGM共振的相同光学现象。与WGM传感器相比,该传感器坚固耐用,价格便宜,并且仪表简单。这种强度调制型传感器结合了基于频率调制的传感器的高灵敏度和基于强度调制的传感器的简单性的优点。该传感器对力的灵敏度优于10-4 N,对位移的灵敏度高于10-5 m。光纤环路传感器还显示出在高位移下可以承受至少104个加载和卸载循环。此外,它们被嵌入纤维增强复合材料中,并在弯曲载荷条件下进行了测试。传感器显示出非常稳定且可重复的响应。预计SHM应用将受益于光纤传感器领域的进步以及新型传感器的可用性。还期望光纤环路传感器将在其他领域找到应用,例如基础设施,生物医学和材料研究。

著录项

  • 作者

    Nguyen, Nguyen Quang.;

  • 作者单位

    Polytechnic Institute of New York University.;

  • 授予单位 Polytechnic Institute of New York University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:37:41

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