Characterization of an ORMOCER®-coated FBG sensor for relative humidity sensing

•An ORMOCER® (OR) -coated fiber Bragg grating (FBG) humidity sensor was proposed.•Two encapsulation methods were proposed for applications in complex environments.•Various humidity sensing characteristics were systematically investigated.•These characteristics were compared with Polyimide (PI) -coat...

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Published inMeasurement : journal of the International Measurement Confederation Vol. 171; p. 108851
Main Authors Guo, Jun-Yi, Shi, Bin, Sun, Meng-Ya, Zhang, Cheng-Cheng, Wei, Guang-Qing, Liu, Jie
Format Journal Article
LanguageEnglish
Published London Elsevier Ltd 01.02.2021
Elsevier Science Ltd
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Summary:•An ORMOCER® (OR) -coated fiber Bragg grating (FBG) humidity sensor was proposed.•Two encapsulation methods were proposed for applications in complex environments.•Various humidity sensing characteristics were systematically investigated.•These characteristics were compared with Polyimide (PI) -coated FBG humidity sensor.•The OR-coated FBG humidity sensor provides an innovative means for RH monitoring. In this paper, an ORMOCER® (OR)-coated fiber Bragg grating (FBG) sensor encapsulated with stainless steel was proposed for relative humidity (RH) sensing. Various sensing characteristics of the sensor, including RH and temperature sensitivity, hysteresis, repeatability, stability, and water resistance, were investigated systematically and compared with a polyimide (PI)-coated FBG humidity sensor. The results show that the OR-coated FBG humidity sensor can measure simultaneously the humidity and temperature, with sensitivity coefficients of 2.4 pm/%RH and 12.9 pm/°C, respectively. The OR-coated sensor has obvious advantages over the PI-coated sensor in terms of sensitivity, response speed, accuracy, and mechanical strength. Furthermore, two practical encapsulation methods were proposed for the sensor for applications in complex and harsh environments. Combined, the developed OR-coated FBG sensor provides an innovative means for RH monitoring.
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ISSN:0263-2241
1873-412X
DOI:10.1016/j.measurement.2020.108851