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A New High-Temperature Sensing Device by Making Use of TBC Thermistor for Intelligent Propulsion Systems

机译:一种新型高温传感装置,采用TBC热敏电阻进行智能推进系统

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Thermal barrier coating (TBC) is an important material for aero-engine as a good thermal and electrical insulator. However this ceramic layer becomes electrically conductive at elevated temperatures above 600°C. By making use of its thermal resistance sensitivity to ambient temperature a smart thermal sensor can also be formulated to monitor the surface temperature on aero-engine turbine blade. In this paper the fabrication of this new sensor is reported together with comprehensive high-temperature characterizations such as repeatability, responsiveness and measurement error evaluation under various high temperature cycling and aero-engine on-site combustion test. Results show this sensor is capable to test the surface temperature in 500-1000°C range or higher. YSZ-based (yttria-stabilized zirconia) TBC thermistor sensor shows a reliable and repeatable resistor vs temperature behavior and comparable responsiveness as conventional thermalcouple device with the measurement errors in 3%. Sensor fabrication is fairly simple just involving a platinum soldering on TBC surface for wiring connection to outside meters. A new test array based on the YSZ thermal resistor is proposed as a temperature distribution monitor and verified by the aid of thermal-electrical interactive simulations. This simple methodology can be used for quick checking of surface temperature on turbine guide vane used in combustion chamber and other relevant parts.
机译:热屏障涂层(TBC)是航空发动机作为良好热和电绝缘体的重要材料。然而,该陶瓷层在600℃高于600℃的升高温度下导电。通过利用其对环境温度的热阻敏感性,也可以配制智能热传感器以监测航空发动机涡轮叶片上的表面温度。在本文中,该新传感器的制造与综合高温表征一起报告,例如在各种高温循环和航空发动机现场燃烧试验下的可重复性,响应性和测量误差评估。结果表明,该传感器能够在500-1000°C范围内或更高的范围内测试表面温度。基于YSZ的(yTTRIA稳定的氧化锆)TBC热敏电阻传感器显示可靠且可重复的电阻VS温度行为和与传统热耦合器件相当的响应性,其中测量误差为3%。传感器制造相当简单,只是涉及TBC表面上的铂焊接,以便与外部仪表接线。提出了一种基于YSZ热电阻的新型测试阵列作为温度分布监测器,并通过热电互动模拟验证。这种简单的方法可用于快速检查燃烧室中使用的涡轮导向叶片和其他相关部件的表面温度。

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