Xu Xiangcong, Wang Fei, Han Guoqing, Tang Huiyi, Zhou Wanfeng, Lei Xiaohua, Liu Xianming
Chongqing Materials Research Institute Co., Ltd., National Engineering Research Center for Instrument Functional Materials, Chongqing 400707, China.
Key Laboratory of Optoelectronic Technology and Systems, Ministry of Education, Chongqing University, Chongqing 400044, China.
Sensors (Basel). 2025 Jun 12;25(12):3678. doi: 10.3390/s25123678.
In the aerospace, energy and nuclear energy sectors, dynamic pressure measurement of power equipment and pressure vessels in high-temperature environments is critical for validating design, manufacturing processes and operational condition monitoring. The existing electric sensors are resistant to temperature. It is difficult to meet the pressure measurement requirements of high temperature and high-frequency responses. In this paper, combining the material properties of high-temperature co-fired ceramics (HTCC) with the structural characteristics of Fabry-Perot, an all-ceramic fiber-optic Fabry-Perot high-temperature pulsating pressure sensor based on a HTCC pressure- sensing diaphragm and ceramic high-temperature sintering process, is proposed. Experimental results show that in the pressure range of 6 MPa, the static pressure sensitivity of the sensor is 1.30 nm/MPa, and the linear goodness of fit reaches 0.99913. The dynamic response frequency of the sensor reaches 598.5 kHz. The survival time at high temperature of 800 °C is more than 80 h. The sensitivity to temperature is 0.00475 nm/°C.
在航空航天、能源和核能领域,高温环境下动力设备和压力容器的动压测量对于验证设计、制造工艺以及运行状态监测至关重要。现有的电传感器耐高温性能差,难以满足高温和高频响应的压力测量要求。本文结合高温共烧陶瓷(HTCC)的材料特性与法布里-珀罗的结构特点,提出了一种基于HTCC压力传感膜片和陶瓷高温烧结工艺的全陶瓷光纤法布里-珀罗高温脉动压力传感器。实验结果表明,在6MPa的压力范围内,该传感器的静压灵敏度为1.30nm/MPa,线性拟合优度达到0.99913。传感器的动态响应频率达到598.5kHz。在800℃高温下的存活时间超过80小时。对温度的灵敏度为0.00475nm/℃。