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Intrinsic high-sensitivity sensors based on etched single-mode polymer optical fibers

机译:基于蚀刻单模聚合物光纤的本征高灵敏度传感器

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摘要

© 1989-2012 IEEE. The significance of etched single-mode polymer optical fibers and their potential for the development of high-sensitivity sensors are presented. A polymethyl methacrylate-based single-mode polymer optical fiber is etched to various diameters and it is observed that etching can lead to change in the material properties of the fiber, such as Young's modulus and thermal expansion coefficient. This can play a vital role in improving the intrinsic sensing capabilities of sensors based on etched polymer optical fiber. To demonstrate that the modified material properties of the etched polymer fiber can enhance its intrinsic sensing capabilities, sensing characteristics of etched polymer fiber Bragg gratings for strain, temperature, and pressure are obtained. From the results, it is confirmed that the sensors based on etched polymer fibers exhibit high intrinsic sensitivity compared with un-etched ones. The potential of developing a sensing system for simultaneous measurement of strain and temperature is also demonstrated.
机译:©1989-2012 IEEE。介绍了蚀刻的单模聚合物光纤的重要性及其在开发高灵敏度传感器方面的潜力。将基于聚甲基丙烯酸甲酯的单模聚合物光纤刻蚀成各种直径,并且观察到刻蚀会导致光纤的材料特性(例如杨氏模量和热膨胀系数)变化。这对于提高基于蚀刻聚合物光纤的传感器的固有传感能力起着至关重要的作用。为了证明经蚀刻的聚合物纤维的改性材料特性可以增强其固有的感测能力,获得了经蚀刻的聚合物纤维布拉格光栅的应变,温度和压力的感测特性。从结果可以确认,与未蚀刻的相比,基于蚀刻的聚合物纤维的传感器表现出高的固有灵敏度。还展示了开发用于同时测量应变和温度的传感系统的潜力。

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