Jauregui-Vazquez D, Gutierrez-Rivera M E, Garcia-Mina D F, Sierra-Hernandez J M, Gallegos-Arellano E, Estudillo-Ayala J M, Hernandez-Garcia J C, Rojas-Laguna R
Departamento de Ingeniería Electrónica, División de Ingenierías Campus Irapuato Salamanca, Universidad de Guanajuato, Carretera Salamanca- Valle de Santiago km 3.5 + 1.8 km, 36885 Salamanca, Gto. Mexico.
Departamento de Ingeniería Mecánica, División de Ingenierías Campus Irapuato Salamanca, Universidad de Guanajuato, Carretera Salamanca- Valle de Santiago km 3.5 + 1.8 km, 36885 Salamanca, Gto. Mexico.
Opt Quantum Electron. 2021;53(5):237. doi: 10.1007/s11082-021-02871-6. Epub 2021 Apr 23.
An experimental study of the interaction between a Mylar® polymer film and a multimode fiber-optic is presented for the simultaneous fiber-optic detection of low-pressure and liquid levels. The junction between the polymer and optical fiber produces an interference spectrum with maximal visibility and free spectral range around 9 dB and 31 nm, respectively. Water pressure, which is controlled by the liquid level, stresses the polymer. As a result, the spectrum wavelength shifts to the blue region, achieving high sensitivities around 2.49 nm/kPa and 24.5 nm/m. The polymeric membrane was analyzed using a finite element model; according to the results, the polymer shows linear stress response. Furthermore, the membrane material is operated below the yielding point. Moreover, the finite analysis provides information about the stress effect over the thickness and the birefringence changes. This sensor exhibits a quadratic polynomial fitting with an adjusted R-squared of 0.9539. The proposed sensing setup offers a cost-effective alternative for liquid level and low-pressure detection.
本文介绍了一项关于聚酯薄膜聚合物(Mylar®)与多模光纤相互作用的实验研究,用于同时进行光纤低压和液位检测。聚合物与光纤的连接处产生了干涉光谱,其最大可见度和自由光谱范围分别约为9 dB和31 nm。由液位控制的水压对聚合物施加压力。结果,光谱波长向蓝色区域移动,在2.49 nm/kPa和24.5 nm/m左右实现了高灵敏度。使用有限元模型对聚合物膜进行了分析;根据结果,聚合物呈现线性应力响应。此外,膜材料在屈服点以下运行。而且,有限元分析提供了关于应力对厚度和双折射变化影响的信息。该传感器呈现二次多项式拟合,调整后的决定系数为0.9539。所提出的传感装置为液位和低压检测提供了一种经济高效的替代方案。