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A novel polyvinyl alcohol and hypromellose gap-coated humidity sensor based on a Mach-Zehnder interferometer with off-axis spiral deformation

机译:基于具有离轴螺旋变形的马赫曾德尔干涉仪的新型聚乙烯醇和羟丙甲纤维素间隙涂层湿度传感器

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摘要

A novel humidity sensor based on a Mach-Zehnder interferometer (MZI) in normal single-mode fiber (SMF) was developed and investigated. The MZI is composed of a polyvinyl alcohol coated gap that serves as a sensitive beam splitter at the input end of the MZI and an off-axis spiral deformation point that acts as a beam combiner at the output end of the MZI. The coated gap is formed between the end faces of 2 SMFs, where the humidity-sensitive polyvinyl alcohol and hypromellose film is deposited on the end face of the input SMF. The off-axis spiral deformation is achieved by twisting the lead-out fiber under continuous arc discharging with the appropriate off-axis radius. When the humidity of the external environment changes, both the refractive index and the thickness of the hygroscopic film changes, so the coupling ratio of the propagation light changes accordingly, resulting in an intensity change in the output signal of the interferometer. The interferometer was applied for high-sensitive humidity sensing in the range of 20-80%, with a sensitivity of 0.21 dB/%RH and a fast rise time of 0.795 s. Thanks to its low cost, simple preparation method, and short manufacturing time, the humidity sensor proposed in this paper can be used in a wide range of applications in the fields of structural health testing, medical treatment, industrial production, and environmental monitoring.
机译:开发并研究了一种基于普通单模光纤(SMF)中的Mach-Zehnder干涉仪(MZI)的新型湿度传感器。 MZI由涂有聚乙烯醇的间隙(在MZI的输入端用作敏感的光束分离器)和离轴螺旋形变形点(在MZI的输出端用作光束组合器)组成。在2个SMF的端面之间形成涂层间隙,在此湿度敏感的聚乙烯醇和羟丙甲纤维素薄膜沉积在输入SMF的端面上。轴外螺旋形变形是通过在连续的电弧放电下以合适的轴外半径扭曲引出光纤来实现的。当外部环境的湿度改变时,吸湿膜的折射率和厚度都改变,因此传播光的耦合比相应地改变,从而导致干涉仪的输出信号的强度改变。干涉仪用于20-80%范围内的高灵敏度湿度感测,灵敏度为0.21 dB /%RH,快速上升时间为0.795 s。由于其成本低,制备方法简单,制造时间短等优点,本文提出的湿度传感器可在结构健康测试,医疗,工业生产和环境监测领域中广泛使用。

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