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Fabry-Perot Interferometer Fabricated on a Ceramic Coaxial Cable for Temperature Sensing

机译:用于温度传感的陶瓷同轴电缆制造的法布里 - 珀罗干涉仪

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Coaxial cable Fabry-Perot interferometer has been reported as a temperature sensor by drill two holes on a coaxial cable. For high temperature applications, traditional flexible cable will not deliver any signal due to the low melting point of the dielectrics. Ceramic coaxial cable can withstand high temperature, but drilling holes is not good enough to create reflectors for use in a interferometer. In this paper, we propose a method of filling the drilled holes with conductive materials to increase the reflection. The influences of the hole drilling and the material filling are studied. The resulted sensor is then tested in a furnace. The sensor can withstand as high as 650 degree celcius before abnormal behavior. The temperature response below 300 degree celcius is relatively flat, maybe due to the conflicting properties of the material when temperature rising. It is also possible that the flat behavior under 300C can be utilized as a temperature insensitive device to measure stress or other parameters.
机译:同轴电缆法布里 - 珀罗干涉仪通过在同轴电缆上钻两个孔作为温度传感器报告为温度传感器。对于高温应用,传统的柔性电缆由于电介质的低熔点而不会提供任何信号。陶瓷同轴电缆可以承受高温,但钻孔不足以产生用于干涉仪的反射器。在本文中,我们提出了一种用导电材料填充钻孔以增加反射的方法。研究了孔钻孔和材料填充物的影响。然后在炉中测试所得到的传感器。在异常行为之前,传感器可以承受高达650度CELCIUS。在300度Celcius以下的温度响应相对平坦,可能是由于温度上升时材料的矛盾。 300℃下的平坦行为也可以用作温度不敏感装置以测量应力或其他参数。

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