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使用空心同轴电缆法布里-珀罗谐振器进行高达1000°C的位移和应变测量。

Displacement and Strain Measurement up to 1000 °C Using a Hollow Coaxial Cable Fabry-Perot Resonator.

作者信息

Zhu Chen, Chen Yizheng, Zhuang Yiyang, Huang Jie

机构信息

Department of Electrical and Computer Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USA.

出版信息

Sensors (Basel). 2018 Apr 24;18(5):1304. doi: 10.3390/s18051304.

Abstract

We present a hollow coaxial cable Fabry-Perot resonator for displacement and strain measurement up to 1000 °C. By employing a novel homemade hollow coaxial cable made of stainless steel as a sensing platform, the high-temperature tolerance of the sensor is dramatically improved. A Fabry-Perot resonator is implemented on this hollow coaxial cable by introducing two highly-reflective reflectors along the cable. Based on a nested structure design, the external displacement and strain can be directly correlated to the cavity length of the resonator. By tracking the shift of the amplitude reflection spectrum of the microwave resonator, the applied displacement and strain can be determined. The displacement measurement experiment showed that the sensor could function properly up to 1000 °C. The sensor was also employed to measure the thermal strain of a steel plate during the heating process. The stability of the novel sensor was also investigated. The developed sensing platform and sensing configurations are robust, cost-effective, easy to manufacture, and can be flexibly designed for many other measurement applications in harsh high-temperature environments.

摘要

我们展示了一种用于高达1000℃位移和应变测量的空心同轴电缆法布里-珀罗谐振器。通过采用一种新型自制的由不锈钢制成的空心同轴电缆作为传感平台,显著提高了传感器的耐高温能力。通过沿电缆引入两个高反射率反射器,在这种空心同轴电缆上实现了法布里-珀罗谐振器。基于嵌套结构设计,外部位移和应变可直接与谐振器的腔长相关联。通过跟踪微波谐振器幅度反射谱的偏移,可以确定施加的位移和应变。位移测量实验表明,该传感器在高达1000℃时仍能正常工作。该传感器还用于测量钢板在加热过程中的热应变。还研究了新型传感器的稳定性。所开发的传感平台和传感配置坚固耐用、成本效益高、易于制造,并且可以灵活设计用于恶劣高温环境中的许多其他测量应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/731e/5982504/328542fd006b/sensors-18-01304-g001.jpg

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