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A Sapphire Based Fiber Optic Dynamic Pressure Sensor for Harsh Environments: Fabrication and Characterization

机译:适用于恶劣环境的基于蓝宝石的光纤动态压力传感器:制造与表征

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This paper describes the modeling, fabrication, and characterization of a proof-of-concept dynamic pressure sensor utilizing sapphire materials for the harsh environments of gas turbine engines. The harsh environment makes conventional instrumentation unsuitable for time-resolved, continuous, direct measurements. High temperature sensing is enabled by the use of sapphire materials due to a high melting point and corrosion resistance. The availability of commercial sapphire substrates and optical fibers provides a direct path for optical sapphire sensors with a matched coefficient of thermal expansion. The dynamic pressure sensor uses a fiber optic lever transduction mechanism with a remote photodiode optical readout allowing for isolation of the electronics from the harsh environment. A circular diaphragm is formed by joining two sapphire substrates using an alumina-based high temperature epoxy. The first substrate is 50 urn thick sapphire with a sputtered titanium/platinum reflective surface. The second substrate is a 1 mm thick sapphire substrate that has been machined to form a circular back cavity. Presented along with the sensor fabrication are a systems level dynamic model and a dc exploration of the performance of the fiber optic lever transduction. Finally, initial dynamic characterization of the frequency response function and linearity are presented with a resulting sensitivity of -113dBrel V/Pa.
机译:本文描述了一种概念证明的动态压力传感器的建模,制造和特性,该传感器利用蓝宝石材料在燃气涡轮发动机的恶劣环境中使用。恶劣的环境使常规仪器不适用于时间分辨,连续,直接的测量。由于高熔点和耐腐蚀性,使用蓝宝石材料可以实现高温感应。商业蓝宝石基板和光纤的可用性为具有匹配的热膨胀系数的光学蓝宝石传感器提供了一条直接途径。动态压力传感器使用带有远程光电二极管光学读数的光纤杠杆传感机制,可将电子设备与恶劣环境隔离。通过使用基于氧化铝的高温环氧树脂将两个蓝宝石衬底接合在一起,可以形成圆形膜片。第一衬底是50微米厚的蓝宝石,具有溅射的钛/铂反射表面。第二衬底是1mm厚的蓝宝石衬底,其已经被加工以形成圆形的后腔。与传感器制造一起提出的是系统级动态模型和光纤杠杆传感性能的直流探索。最后,介绍了频率响应函数和线性度的初始动态特性,得到的灵敏度为-113dBrel V / Pa。

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