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基于非对称锥形法布里-珀罗光纤的耐高温应变传感器。

High-temperature-resistant strain sensor based on the asymmetric tapered Fabry-Pérot fiber.

作者信息

Song Xinping, Lv Jingwei, Wang Jianxin, Liu Wei, Wang Famei, Wang Weiqiang, Yi Zao, Liu Miao, Liu Qiang, Chu Paul K, Liu Chao

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2025 Jul 1;42(7):1031-1038. doi: 10.1364/JOSAA.559487.

Abstract

A high-temperature-resistant strain sensor based on an asymmetric tapered Fabry-Pérot fiber (FPI) structure is designed and validated experimentally. The strain sensor is constructed by fusing two standard single-mode optical fibers to form a microbubble and applying a taper on one side of the microbubble to form the asymmetric tapered structure. The strain characteristics of the sensor in the temperature range from room temperature to 425°C are determined. A good linear relationship is observed between the wavelength displacement and tensile strain in this temperature range. The strain sensitivity is 47.69 pm/µε at 25°C, and the linear response is reproducible in the range of 0-300 µε. In addition, the wavelength displacement due to the applied strain is stable with respect to each 100°C increase in the temperature, indicating that the FPI sensor has good temperature stability in the strain range between 0 and 300 µε. The average temperature sensitivity is 1.56 pm/°C in the temperature range between 25°C and 425°C, and the cross-sensitivity is very low. Our results show that the FPI sensor has strong resistance to high temperatures, boding well for applications such as aerospace components, metal processing, and gas boilers.

摘要

设计了一种基于非对称锥形法布里-珀罗光纤(FPI)结构的耐高温应变传感器,并进行了实验验证。该应变传感器是通过熔接两根标准单模光纤形成一个微气泡,并在微气泡的一侧施加锥度以形成非对称锥形结构而构建的。确定了该传感器在室温至425°C温度范围内的应变特性。在此温度范围内,观察到波长位移与拉伸应变之间存在良好的线性关系。在25°C时应变灵敏度为47.69 pm/με,在0-300 με范围内线性响应可重复。此外,由于施加的应变引起的波长位移在温度每升高100°C时保持稳定,这表明FPI传感器在0至300 με的应变范围内具有良好的温度稳定性。在25°C至425°C的温度范围内,平均温度灵敏度为1.56 pm/°C,交叉灵敏度非常低。我们的结果表明,FPI传感器具有很强的耐高温性,这对于航空航天部件、金属加工和燃气锅炉等应用来说是个好兆头。

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