Liu Jia, Jia Pinggang, Zhang Huixin, Tian Xiaodan, Liang Hao, Hong Yingping, Liang Ting, Liu Wenyi, Xiong Jijun
Appl Opt. 2018 May 20;57(15):4211-4215. doi: 10.1364/AO.57.004211.
In this study, a novel batch-producible fiber-optic Fabry-Perot (FP) pressure sensor based on a low-temperature co-fired ceramic technology is proposed and experimentally demonstrated for high-temperature applications. The sensor is fabricated by inserting a well-cut single-mode fiber (SMF) into a zirconia fiber ferrule, followed by insertion of the overall structure into an alumina sensor head. The FP cavity in the sensor is formed by placing the end face of the SMF in parallel to the diaphragm. The external pressure can be detected by demodulating the FP cavity length of the sensor. A theoretical analysis indicates that the pressure sensitivity can be designed flexibly by adjusting the parameters of the ceramic diaphragm, radius, and thickness. Experimental results demonstrate that the pressure sensor exhibits a high linear sensitivity of approximately 0.1 μm/kPa at room temperature in the pressure range up to 160 kPa. The repeatability error and nonlinear error of three repeatable experiments are approximately 2.60% and smaller than 0.101%, respectively. The temperature coefficient and coefficient of the pressure-sensitivity changes with temperature are 0.023 μm/°C and 0.205 nm/(kPa°C) in the temperature range of 20°C-300°C.
在本研究中,提出了一种基于低温共烧陶瓷技术的新型批量生产的光纤法布里 - 珀罗(FP)压力传感器,并针对高温应用进行了实验验证。该传感器通过将精心切割的单模光纤(SMF)插入氧化锆光纤插芯,然后将整个结构插入氧化铝传感器头中来制造。传感器中的FP腔是通过将SMF的端面与隔膜平行放置而形成的。通过解调传感器的FP腔长度可以检测外部压力。理论分析表明,通过调整陶瓷隔膜的参数、半径和厚度,可以灵活设计压力灵敏度。实验结果表明,该压力传感器在室温下、高达160 kPa的压力范围内表现出约0.1μm/kPa的高线性灵敏度。三次可重复实验的重复性误差和非线性误差分别约为2.60%和小于0.101%。在20°C至300°C的温度范围内,温度系数和压力灵敏度随温度的变化系数分别为0.023μm/°C和0.205nm/(kPa°C)。