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首页> 外文期刊>Sensors and Actuators, A. Physical >Investigation on temperature-dependent dielectric properties of ETFE fluoropolymer for microwave temperature sensing applications
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Investigation on temperature-dependent dielectric properties of ETFE fluoropolymer for microwave temperature sensing applications

机译:用于微波温度传感应用的ETFE含氟聚合物温度依赖性介电学性能研究

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This paper investigates temperature-dependent dielectric properties of fluoropolymers for the development of original low-profile and cost-effective microwave temperature sensors. Here, ethylene tetrafluoroethylene (ETFE) was chosen for its superior resistance to common solvents, excellent thermal stability and high selectivity compared to other fluoropolymers. The temperature-dependent dielectric constant of the commercially available ETFE sheet named "Fluon" was equated and analyzed. A dual-resonant circuit in coplanar waveguide technology (CPW) was designed and prototyped to achieve temperature sensing. To integrate temperature sensing capability within the device, one resonator was covered by the Fluon sheet while the other one remained uncovered. From there, specific schemes achievable with either electromagnetic (EM) reflected and transmitted through the CPW line were studied and validated. A differential approach comparing the variable resonance with Fluon to the static resonance without Fluon was implemented for reflected signals. At the same time, S21 phase shifting reflecting slowdown/acceleration of the EM field was fulfilled for transmitted signals. Experimental tests were performed within the 23 degrees C-80 degrees C temperature range. The sensor exhibits a sensitivity of 4.07 MHz/C which is significantly better than the results obtained with other sensing approaches and technologies in the literature. The overall phase shift is 13.35, leading to a sensitivity of 0.235 degrees/degrees C. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文研究了含氟聚合物的温度依赖性介电性能,用于开发原始低调和经济高效的微波温度传感器。这里,与其他含氟聚合物相比,选择乙烯四氟乙烯(ETFE)的优异耐溶剂,优异的热稳定性和高选择性。等式和分析了名为“FluOn”的市售ETFE片材的温度依赖性介电常数。设计和原型设计了共谐振电路(CPW),以实现温度感测。为了将温度传感能力集成在装置内,熔融板覆盖一个谐振器,而另一个谐振器仍未被揭示。从那里,研究并验证了通过CPW线路反射和传输的电磁(EM)可实现的具体方案。为反射信号实现了与没有氟释的静态共振的可变共振比较的差分方法。同时,对发送信号满足了反映反映EM场的减速/加速度的S21相移/加速度。在23摄氏度C-80℃的温度范围内进行实验测试。传感器表现出4.07MHz / C的灵敏度,这明显优于与文献中的其他传感方法和技术获得的结果。总相移为13.35,导致敏感性为0.235度/℃,2019年Elsevier B.V.保留所有权利。

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