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Simultaneous strain and cryogenic temperature measurement by using an improved EFPI/FBG fiber sensor

机译:使用改进的EFPI / FBG光纤传感器同时测量应变和低温

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An improved fiber sensor consisting of a fiber Bragg grating (FBG) and an extrinsic Fabry-Perot interferometric (EFPI) sensor is proposed. The interferometric cavity of the improved sensor is composed of a glass capillary tube and two sections of single-mode fiber (SMF), the segment near one of the SMF's end faces has a FBG. One of the two aligned SMFs is free along the axial direction in the testing specimen, which is different from the traditional structure. During the cryogenic test, only the glass tube and the free SMF with a FBG which exposed outside the glass tube part will be encapsulated by cryogenic adhesives on the testing oxygen-free copper specimen. The temperature and strain performance of the testing oxygen-free copper specimen were studied at high vacuums and low temperatures range 273 K to 30 K. The testing result was agreed well with the theoretical values. The improved sensor is compact, easy in fabrication and has high potentials in cryogenic temperature applications.
机译:提出了一种改进的光纤传感器,该传感器由光纤布拉格光栅(FBG)和外在法布里-珀罗干涉仪(EFPI)传感器组成。改进型传感器的干涉腔由玻璃毛细管和两段单模光纤(SMF)组成,靠近SMF端面之一的部分具有FBG。两个对齐的SMF之一在测试样品中沿轴向自由,这与传统结构不同。在低温测试过程中,只有玻璃管和暴露在玻璃管外部的带有FBG的自由SMF会被低温粘合剂包裹在测试的无氧铜样品上。在高真空和273 K至30 K的低温下研究了无氧铜试样的温度和应变性能。测试结果与理论值吻合良好。改进的传感器紧凑,易于制造,并且在低温温度应用中具有很高的潜力。

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