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Optical fiber sensors based on novel polyimide for humidity monitoring of building materials

机译:基于新型聚酰亚胺的光纤传感器,用于建筑材料的湿度监测

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摘要

This paper presents novel preparation methods of polyimide and coupling agent, coated on the fiber Bragg grating (FBG) sensor for monitoring relative humidity (RH). The sensing mechanism that the volume change of the moisture- sensitive polyimide induces the shift of the Bragg wavelength of FBG is used in the RH sensor. The performance of the polymer-coated RH sensor was evaluated under laboratory conditions of temperature over a range of values (20.0-80.0 degrees C) and humidity over a range of RH values (25.0-95.0%). The time response and RH sensitivity of the sensor based on novel polyimide and coupling agent was improved, compared to the previous. A new packaged RH sensor was designed, which was used in detecting the moisture diffusion and evolutions inside of sample made of building materials which exposed to a controlled environment in the lab after casting. Relative humidity inside of sample with time was 100% in the first phase of vapor-saturated, slowly reduced in the latter phase. The results indicate the RH sensor developed provides a feasible method to detect the influence of environment on moisture inside the material in the drying process.
机译:本文提出了一种新的制备聚酰亚胺和偶联剂的方法,该方法涂覆在光纤布拉格光栅(FBG)传感器上以监测相对湿度(RH)。 RH传感器采用了对湿度敏感的聚酰亚胺的体积变化引起FBG布拉格波长移动的传感机制。在实验室条件下,在温度范围内(20.0-80.0摄氏度)和相对湿度范围内(25.0-95.0%)的湿度下,评估了聚合物涂层的RH传感器的性能。与以前相比,基于新型聚酰亚胺和偶联剂的传感器的时间响应和相对湿度灵敏度得到了改善。设计了一种新型的包装好的RH传感器,该传感器用于检测由建筑材料制成的样品在浇铸后暴露于实验室中受控环境下的水分扩散和散发。在蒸汽饱和的第一阶段中,样品内部的相对湿度随时间变化为100%,在第二阶段中缓慢降低。结果表明,所开发的RH传感器为检测环境对干燥过程中物料内部水分的影响提供了一种可行的方法。

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