Fang Yu-Lin, Wang Chen-Tung, Chiang Chia-Chin
Department of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 807, Taiwan.
Sensors (Basel). 2016 Sep 9;16(9):1460. doi: 10.3390/s16091460.
The study proposes a small U-shaped bending-induced interference optical fiber sensor; this novel sensor is a probe-type sensor manufactured using a mechanical device, a heat source, optical fiber and a packaging module. This probe-type sensor overcomes the shortcomings of conventional optical fibers, including being difficult to repair and a tendency to be influenced by external forces. We manufactured three types of sensors with different curvature radiuses. Specifically, sensors with three radiuses (1.5 mm, 2.0 mm, and 3.0 mm) were used to measure common water and glucose solutions with concentrations of between 6% and 30% (the interval between concentrations was 4%). The results show that the maximal sensitivity was 0.85 dB/% and that the linearly-dependent coefficient was 0.925. The results further show that not only can the small U-shaped bending-induced interference optical fiber sensor achieve high sensitivity in the measurement of glucose solutions, but that it can also achieve great stability and repeatability.
该研究提出了一种小型U形弯曲诱导干涉光纤传感器;这种新型传感器是一种使用机械设备、热源、光纤和封装模块制造的探头式传感器。这种探头式传感器克服了传统光纤的缺点,包括难以修复以及容易受到外力影响的倾向。我们制造了三种具有不同曲率半径的传感器。具体而言,使用三种半径(1.5毫米、2.0毫米和3.0毫米)的传感器来测量浓度在6%至30%之间(浓度间隔为4%)的普通水和葡萄糖溶液。结果表明,最大灵敏度为0.85分贝/%,线性相关系数为0.925。结果还进一步表明,小型U形弯曲诱导干涉光纤传感器不仅在葡萄糖溶液测量中能够实现高灵敏度,而且还能实现高稳定性和可重复性。