首页> 外文会议>Society of Photo-optical Instrumentation Engineers Europe Conference on Sensory Phenomena and Measurement Instrumentation for Smart Structures and Materials >An Integrated Fiber Optic Sensing System for in Situ Characterization of the Curing Process of Thermoset Based Composites
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An Integrated Fiber Optic Sensing System for in Situ Characterization of the Curing Process of Thermoset Based Composites

机译:一种集成光纤传感系统,用于原位表征热固性基复合材料的固化过程

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In the last decade, in light of their superior mechanical properties advanced polymer matrix composites have been indicated as the most suitable candidates as Smart Materials and Structures. However, their final properties are strongly dependent on the processing stage and key points to improve the quality and the reliability of these materials have been identified in the cure monitoring and the optimization of the manufacturing process. Based on this line of argument, an integrated fiber optic sensing system for simultaneous refractive index and temperature measurements has been designed and developed in order to monitor the curing process of thermoset based composites. A fiber optic refractometer has been designed by using the free end of the sensing optical fiber. A theoretical model has been developed for converting refractive index changes in detailed information on the extent of the curing. Its validation has been proved by comparison with calorimetric characterization. In addition, integrated fiber Bragg gratings has been used for local temperature measurements. The interrogation of the sensing Bragg grating has been implemented by using a different fiber Bragg grating able to convert the resonance wavelength shift in intensity changes. Preliminary results are presented.
机译:在过去的十年中,鉴于它们的优越机械性能,先进的聚合物基质复合材料已被指示为最合适的候选物作为智能材料和结构。然而,它们的最终性质强烈依赖于加工阶段和改善质量的关键点,并在治愈监测和制造过程的优化中鉴定了这些材料的可靠性。基于此参数的基础,设计和开发了一种用于同时折射率和温度测量的集成光纤感测系统,以监测热固性基复合材料的固化过程。通过使用感测光纤的自由端设计了光纤折射仪。已经开发了理论模型,用于转换关于固化程度的详细信息的折射率变化。通过与量热表征进行比较,已经证明了其验证。此外,集成的光纤布拉格光栅已用于局部温度测量。通过使用能够转换强度变化的谐振波长偏移的不同光纤布拉格光栅来实现感测布拉格光栅的询问。提出了初步结果。

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