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基于聚合物涂覆的毛细管空芯光纤的曲率纤维传感器的灵敏度增强。

Sensitivity Enhancement of Curvature Fiber Sensor Based on Polymer-Coated Capillary Hollow-Core Fiber.

机构信息

Electronics Department, DICIS, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8, Salamanca 36885, Mexico.

CONACYT-Electronics Department, DICIS, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8, Salamanca 36885, Mexico.

出版信息

Sensors (Basel). 2020 Jul 5;20(13):3763. doi: 10.3390/s20133763.

Abstract

In this paper, we propose and experimentally demonstrate a simple technique to enhance the curvature sensitivity of a bending fiber optic sensor based on anti-resonant reflecting optical waveguide (ARROW) guidance. The sensing structure is assembled by splicing a segment of capillary hollow-core fiber (CHCF) between two single-mode fibers (SMF), and the device is set on a steel sheet for measuring different curvatures. Without any surface treatment, the ARROW sensor exhibits a curvature sensitivity of 1.6 dB/m in a curvature range from 0 to 2.14 m. By carefully coating half of the CHCF length with polydimethylsiloxane (PDMS), the curvature sensitivity of the ARROW sensor is enhanced to -5.62 dB/m, as well as an increment in the curvature range (from 0 to 2.68 m). Moreover, the covered device exhibits a low-temperature sensitivity (0.038 dB/°C), meaning that temperature fluctuations do not compromise the bending fiber optic sensor operation. The ARROW sensor fabricated with this technique has high sensitivity and a wide range for curvature measurements, with the advantage that the technique is cost-effective and easy to implement. All these features make this technique appealing for real sensing applications, such as structural health monitoring.

摘要

本文提出并实验验证了一种简单的技术,以增强基于反谐振反射光波导(ARROW)导波的弯曲光纤传感器的曲率灵敏度。传感结构由两段单模光纤(SMF)之间拼接一段毛细管空心光纤(CHCF)组成,该器件安装在钢板上用于测量不同的曲率。在没有任何表面处理的情况下,ARROW 传感器在 0 到 2.14 m 的曲率范围内表现出 1.6 dB/m 的曲率灵敏度。通过仔细地用聚二甲基硅氧烷(PDMS)涂覆 CHCF 长度的一半,ARROW 传感器的曲率灵敏度增强到-5.62 dB/m,曲率范围也增大(从 0 到 2.68 m)。此外,该覆盖器件具有较低的温度灵敏度(0.038 dB/°C),这意味着温度波动不会影响弯曲光纤传感器的工作。使用这种技术制造的 ARROW 传感器具有高灵敏度和宽曲率测量范围,其优点是技术经济高效且易于实现。所有这些特性使得该技术在结构健康监测等实际传感应用中具有吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ef/7374301/8e5af07b0c89/sensors-20-03763-g001.jpg

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