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Development of Metal-Ceramic Coaxial Cable Fabry-Pérot Interferometric Sensors for High Temperature Monitoring

机译:用于高温监测的金属陶瓷同轴电缆法布里-珀罗干涉式传感器的开发

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摘要

Metal-ceramic coaxial cable Fabry-Pérot interferometric (MCCC-FPI) sensors have been developed using a stainless steel tube and a stainless steel wire as the outer and inner conductors, respectively; a tubular α-alumina insulator; and a pair of air gaps created in the insulator along the cable to serve as weak reflectors for the transmitting microwave (MW) signal. The MCCC-FPI sensors have been demonstrated for high temperature measurements using MW signals in a frequency range of 2–8 GHz. The temperature measurement is achieved by monitoring the frequency shift (Δƒ) of the MW interferogram reflected from the pair of weak reflectors. The MW sensor exhibited excellent linear dependence of Δƒ on temperature; small measurement deviations (±2.7%); and fast response in a tested range of 200–500 °C. The MCCC has the potential for further developing multipoint FPI sensors in a single-cable to achieve in situ and continuous measurement of spatially distributed temperature in harsh environments.
机译:金属陶瓷同轴电缆法布里-珀罗干涉仪(MCCC-FPI)传感器是使用不锈钢管和不锈钢线分别作为外导体和内导体开发的;管状α-氧化铝绝缘子;沿电缆在绝缘体中形成一对气隙,用作微波(MW)信号的弱反射器。 MCCC-FPI传感器已经证明可以使用2-8 GHz频率范围内的MW信号进行高温测量。通过监视从一对弱反射器反射的MW干涉图的频移(Δƒ),可以实现温度测量。 MW传感器表现出出色的Δƒ与温度线性关系;小测量偏差(±2.7%);在200–500°C的测试范围内具有快速响应。 MCCC有潜力在单根电缆中进一步开发多点FPI传感器,以实现在恶劣环境中对空间分布温度进行原位和连续测量。

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