Dual-parameter sensing characteristics of a single fiber Bragg grating half-pasted by 1C-LV epoxy under different curing

IF 0.7 4区 物理与天体物理 Q4 OPTICS Optica Applicata Pub Date : 2021-01-01 DOI:10.37190/oa210307
Hong Li, Haoyue Zhang, Yanming Song, Fanyong Meng, Lianqing Zhu
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引用次数: 1

Abstract

A novel technology for the simultaneous and independent measurement of dual parameters is proposed and experimented. By using a single fiber Bragg grating half-pasted by 1C-LV epoxy under different curing conditions, the sensor structure is designed such that the reflective single-peak spectrum splits into a twin-peak spectrum, which makes the FBG spectrum form a natural spectral peak splitting bias. A measurement limitation exists in the FBG sensor packaging at room temperature, which can be solved by the high-temperature cured packaging method. To verify the validity of the theory and methodology, the experimental system is used. In the range from –1000 to +1000 με and from 35 to 75°C, the Bragg wavelength change is relative linear to the strain and temperature. The temperature and strain variations can be independently and simultaneously measured using the split peak, and the deviations of the FBG sensor are ±1°C and ±5 με, respectively. This single FBG sensor can realize dual-parameter measurement, which is valuable for narrow-space health monitoring.
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c - lv环氧树脂半粘贴单光纤布拉格光栅在不同固化下的双参数传感特性
提出了一种同时独立测量双参数的新技术,并进行了实验。利用c - lv环氧树脂在不同固化条件下半粘贴的单光纤布拉格光栅,设计了传感器结构,使反射单峰光谱分裂为双峰光谱,使FBG光谱形成自然的谱峰分裂偏置。光纤光栅传感器在室温下封装存在测量限制,采用高温固化封装方法可以解决这一问题。为了验证理论和方法的有效性,采用了实验系统。在-1000 ~ +1000 με和35 ~ 75℃范围内,Bragg波长的变化与应变和温度呈相对线性关系。利用劈裂峰可以同时独立测量温度和应变的变化,FBG传感器的偏差分别为±1°C和±5 με。该传感器可实现双参数测量,对窄空间健康监测具有重要的应用价值。
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来源期刊
Optica Applicata
Optica Applicata 物理-光学
CiteScore
1.00
自引率
16.70%
发文量
21
审稿时长
4 months
期刊介绍: Acoustooptics, atmospheric and ocean optics, atomic and molecular optics, coherence and statistical optics, biooptics, colorimetry, diffraction and gratings, ellipsometry and polarimetry, fiber optics and optical communication, Fourier optics, holography, integrated optics, lasers and their applications, light detectors, light and electron beams, light sources, liquid crystals, medical optics, metamaterials, microoptics, nonlinear optics, optical and electron microscopy, optical computing, optical design and fabrication, optical imaging, optical instrumentation, optical materials, optical measurements, optical modulation, optical properties of solids and thin films, optical sensing, optical systems and their elements, optical trapping, optometry, photoelasticity, photonic crystals, photonic crystal fibers, photonic devices, physical optics, quantum optics, slow and fast light, spectroscopy, storage and processing of optical information, ultrafast optics.
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