首页> 外文会议>Sensor Technologies and Applications, 2009. SENSORCOMM '09 >Smart Sensing Polymeric Foil with Integrated Optic Fiber Sensors: Fabrication and Characterization of a Polymeric Foil Sensitive to Strain
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Smart Sensing Polymeric Foil with Integrated Optic Fiber Sensors: Fabrication and Characterization of a Polymeric Foil Sensitive to Strain

机译:具有集成光纤传感器的智能传感聚合物箔:应变敏感聚合物箔的制备和表征

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A structural integrity monitoring system based on optical fiber sensors is an important development at the smart structures level. However, direct sensors incorporation, without a substrate structure, creates some difficulties in eventual sensor maintenance or replacement. This paper presents an approach to overcome this issue. The fabrication, using industrial processes, and characterization of a polymeric foil able to sense, gather and send sensitive information for remote analysis is explored. The described example uses fiber Bragg grating sensors embedded in laminated polymeric sheets commonly used in different industries, as automotive, aeronautic, civil, among others. The fabricated foil is capable of transferring the full deformation to the optical sensor. The presented optical sensor incorporated in the polymeric foil is fully functional with high sensitivity, 0.6 picometer by microstrain, measuring deformation up to 1.2 millimeter. The sensors distribution over the structure is only restricted by the 10 mm sensor length, the desired dynamic range window and interrogation system used.
机译:基于光纤传感器的结构完整性监控系统是智能结构一级的重要发展。然而,没有基板结构的直接传感器结合会在最终的传感器维护或更换中造成一些困难。本文提出了一种解决此问题的方法。探索了使用工业过程的制造以及能够感应,收集和发送敏感信息以进行远程分析的聚合物箔的特性。所描述的示例使用嵌入在层压聚合物片材中的光纤布拉格光栅传感器,该层压聚合物片材通常用于不同行业,例如汽车,航空,民用等。制成的箔片能够将全部变形传递给光学传感器。提出的并入聚合物箔片中的光学传感器具有完整的功能,灵敏度高,微应变为0.6皮米,可测量高达1.2毫米的变形。传感器在结构上的分布仅受10 mm传感器长度,所需的动态范围窗口和所使用的询问系统的限制。

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