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A distributed optical fiber sensor for hydrogen detection based on Pd, and Mg alloys

机译:基于Pd的氢检测和Mg合金的分布式光纤传感器

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An optical fiber containing structured hydrogen sensing points, consisting of Palladium and/or Magnesium alloys is proposed and characterized. The sensitive layer is deposited on the outside of a multimode fiber, after removing the optical cladding. The sensor is based on a measurement technique which uses the Surface Plasmon Resonance effect. Compared to previous work~1 which was performed at a single wavelength of 670nm, this study was done in the range of 450 to 900nm. A continuous change in intensity is observed as a function of the hydrogen concentration between 0.5% and 4% H_2 in Ar. The response shows that the intensity transmitted can either decrease or increase, depending on the selected wavelength. The response time and the reproducibility of the detectors are also discussed. From our experiments and optical simulations we conclude that Pd covered indicator layers based on Mg alloys, such as Mg-Ti, would be even more advantageous compare to Pd layers thanks to their lower hydrogen equilibrium pressures. We will demonstrate an extended sensitivity range by juxtaposing different materials over a fiber section, having different hydrogen equilibrium pressures.
机译:含有结构化氢感测点,由钯和/或镁合金的光纤,提出了和表征。敏感层沉积在多模光纤的外侧,除去所述光学包层之后。该传感器是基于使用所述表面等离子体共振效应的测量技术。相比以前的工作〜这是在670nm处的单一波长进行1,本研究中的450到900nm的范围内已完成。在强度的连续变化被观察为0.5%和在Ar中4%之间H_2中的氢气浓度的一个函数。该响应显示,传输可以减少或增加,这取决于所选择的波长的强度。的响应时间和检测器的可重复性进行了讨论。从我们的实验和模拟的光学我们得出这样的结论的Pd覆盖基于镁合金,如Mg-Ti系指示器层,会更有利比较的Pd层由于其较低的氢平衡压力。我们将通过在纤维部分并置的不同材料,具有不同的氢平衡压力表明延长的灵敏度范围。

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