Research on FBG curvature sensor based on PET substrate and silicone package

IF 2.6 3区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Optical Fiber Technology Pub Date : 2024-09-12 DOI:10.1016/j.yofte.2024.103968
Xin Li , Zhaojie Xu , Yang Miao , Guanjun Ma , Yuze Gong , Chunwei Wang
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Abstract

To address the low repeatability and accuracy in single package form and lack of strain transfer theory analysis in composite material form of fiber Bragg grating (FBG) curvature sensors, a flexible curvature sensing test scheme for FBG based on polyethylene terephthalate (PET) substrate and silicone package is proposed. Firstly, the factors affecting the strain response of the FBG are obtained through the analysis of the multilayer strain transfer theory, and the relationship between different material encapsulation forms and the strain response of the FBG is explored through finite element simulation. Secondly, the FBG curvature sensor with optimized simulation parameters is fabricated in package, and the curvature calibration verification experiments are performed on the sensor. Finally, the experimental results show that the deviation index of the FBG curvature sensor is between −1.89 % and 1.62 %, which indicates a better repeatability consistency. Based on the computation, the maximum sensitivity of the FBG curvature sensor is 13.32 µε/m−1 when the spacing between the fiber and the substrate layer is 2.50 mm, and its error is 0.30 % comparing with the simulation of the same condition, which supports the accuracy of the theoretical analysis and simulation of the multilayer strain transfer of the encapsulated FBG sensor conducted in this paper, meanwhile, the optimal encapsulation process of the FBG curvature sensor is obtained.

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基于 PET 基底和硅胶封装的 FBG 曲率传感器研究
针对光纤布拉格光栅(FBG)曲率传感器在单一封装形式下重复性和精度较低、复合材料形式下缺乏应变传递理论分析等问题,提出了一种基于聚对苯二甲酸乙二醇酯(PET)衬底和硅胶封装的光纤布拉格光栅柔性曲率传感测试方案。首先,通过多层应变传递理论分析得到了影响 FBG 应变响应的因素,并通过有限元模拟探讨了不同材料封装形式与 FBG 应变响应之间的关系。其次,封装制作了优化仿真参数的 FBG 曲率传感器,并对传感器进行了曲率校准验证实验。最后,实验结果表明,FBG 曲率传感器的偏差指数介于 -1.89 % 和 1.62 % 之间,这表明其具有较好的重复性一致性。根据计算结果,当光纤与基底层的间距为 2.50 mm 时,FBG 曲率传感器的最大灵敏度为 13.32 µε/m-1,与相同条件下的仿真结果相比,其误差为 0.30 %,这证明了本文对封装 FBG 传感器的多层应变传递进行理论分析和仿真的准确性,同时也得到了 FBG 曲率传感器的最佳封装工艺。
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来源期刊
Optical Fiber Technology
Optical Fiber Technology 工程技术-电信学
CiteScore
4.80
自引率
11.10%
发文量
327
审稿时长
63 days
期刊介绍: Innovations in optical fiber technology are revolutionizing world communications. Newly developed fiber amplifiers allow for direct transmission of high-speed signals over transcontinental distances without the need for electronic regeneration. Optical fibers find new applications in data processing. The impact of fiber materials, devices, and systems on communications in the coming decades will create an abundance of primary literature and the need for up-to-date reviews. Optical Fiber Technology: Materials, Devices, and Systems is a new cutting-edge journal designed to fill a need in this rapidly evolving field for speedy publication of regular length papers. Both theoretical and experimental papers on fiber materials, devices, and system performance evaluation and measurements are eligible, with emphasis on practical applications.
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