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Theoretical analysis and coating thickness determination of a dual layer metal coated FBG sensor for sensitivity enhancement at cryogenic temperatures

机译:低温温度敏感性增强双层金属涂层FBG传感器的理论分析及涂层厚度测定

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Use of Fiber Bragg Grating (FBG) sensor is very appealing for sensing low temperature and strain in superconducting magnets because of their miniature size and the possibility of accommodating many sensors in a single fiber. The main drawback is their low intrinsic thermal sensitivity at low temperatures below 120 K. Approaching cryogenic temperatures, temperature changes lower than a few degrees Kelvin cannot be resolved, since they do not cause an appreciable shift of the wavelength diffracted by a bare FBG sensor. To improve the thermal sensitivity and thermal inertia below 77 K, the Bare FBG (BFBG) sensor can be coated with high thermal expansion coefficient materials. In this work, different metal were considered for coating the FBG sensor. For theoretical investigation, a double layered circular thick wall tube model has been considered to study the effect on sensitivity due to the mechanical properties like Young's modulus, Thermal expansion coefficient, Poisson's ratio of selected materials at a various cryogenic temperatures. The primary and the secondary coating thickness for a dual layer metal coated FBG sensor have been determined from the above study. The sensor was then fabricated and tested at cryogenic temperature range from 4- 300 K. The cryogenic temperature characteristics of the tested sensors are reported.
机译:使用光纤布拉格光栅(FBG)传感器非常有吸引力,用于在超导磁体中感测到超导磁体中的低温和应变,因为它们的微型尺寸和在单纤维中容纳许多传感器的可能性。主要缺点是低温下的低温内在热敏度低于120 k。接近低温温度,温度变化低于少数kelvin不能解决,因为它们不会导致由裸FBG传感器衍射的波长的明显偏移。为了提高低于77K的热敏灵敏度和热惯性,可以将裸FBG(BFBG)传感器涂有高热膨胀系数材料。在这项工作中,考虑了用于涂覆FBG传感器的不同金属。对于理论研究,已经考虑了一种双层圆形厚壁管模型,以研究杨氏模量,热膨胀系数,泊松在各种低温温度下所选择的材料的机械性能,对敏感性的影响。用于双层金属涂覆的FBG传感器的初级和二级涂层厚度已从上述研究确定。然后在低温温度范围内制造并测试传感器,从4-300K进行。报道了测试传感器的低温性能。

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