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Influence of different encapsulation types and shapes of polydimethylsiloxane on the temperature sensitivity of the FBG

机译:不同包封类型及其形状对聚二甲基硅氧烷对FBG温度敏感性的影响

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Fiber Bragg grating (FBG) is formed by the periodic structure in the core of the optical fiber and is one of the widely-used types of fiber optic sensors. FBGs are primarily sensitive to strain and temperature. For sensory application is an important encapsulation of FBG to achieve maximum sensitivity to the desired measurand and ensure of protection against damage. Interesting way to encapsulate FBG is the use of elastomer polydimethylsiloxane (PDMS). Authors of this paper followed on previous research regarding encapsulation of FBG and analyzed the influence of different encapsulation types and shapes of PDMS on the temperature sensitivity and change of the reflected Bragg wavelength of the FBG. Realization of encapsulation is composed of three parts: FBG insertion to a regular form with the liquid PDMS, curing in a temperature box with a constant temperature 100 °C ± 5 % and 24 hours relaxation. Analysis of temperature sensitivity and reflected Bragg wavelength was carried out after curing including relaxation time and it using the broadband source of light LED (Light-Emitting Diode) with central wavelength 1550 ran and the optical spectrum analyzer OSA 203.
机译:光纤布拉格光栅(FBG)通过光纤的核心中的周期性结构形成,是广泛使用的光纤传感器之一。 FBGS主要对应变和温度敏感。对于感官应用是FBG的重要封装,以实现对所需测量的最大敏感性,并确保防止损坏。封装FBG的有趣方式是使用弹性体聚二甲基硅氧烷(PDMS)。本文的作者跟随先前关于FBG的封装研究并分析了PDMS对FBG的反射布拉格波长的温度敏感性和变化的不同包封类型和形状的影响。封装的实现由三部分组成:FBG插入与液体PDMS的常规形式,在温度箱中固化,恒温为100°C±5%和24小时弛豫。在固化之后进行温度敏感性和反射布拉格波长的分析,包括弛豫时间,并使用具有中心波长1550的宽带光源(发光二极管)和光谱分析仪OSA 203。

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