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Applications of Thin Film Thermocouples for Surface Temperature Measurement

机译:薄膜热电偶在表面温度测量中的应用

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摘要

Thin film thermocouples provide a minimally intrusive means of measuring surface temperature in hostile, high temperature environments. Unlike wire thermocouples, thin films do not necessitate any machining of the surface, therefore leaving intact its structural integrity. Thin films are many orders of magnitude thinner than wire, resulting in less disruption to the gas flow and thermal patterns that exist in the operating environment. Thin film thermocouples have been developed for surface temperature measurement on a variety of engine materials. The sensors are fabricated in the NASA Lewis Research Center's Thin Film Sensor Lab, which is a class 1000 clean room. The thermocouples are platinum-13 percent rhodium versus platinum and are fabricated by the sputtering process. Thin film-to-leadwire connections are made using the parallel-gap welding process. Thermocouples have been developed for use on superalloys, ceramics and ceramic composites, and intermetallics. Some applications of thin film thermocouples are: temperature measurement of space shuttle main engine turbine blade materials, temperature measurement in gas turbine engine testing of advanced materials, and temperature and heat flux measurements in a diesel engine. Fabrication of thin film thermocouples is described. Sensor durability, drift rate, and maximum temperature capabilities are addressed.
机译:薄膜热电偶提供了一种在恶劣的高温环境下测量表面温度的侵入性最小的方法。与线热电偶不同,薄膜不需要对表面进行任何机械加工,因此可以保持其结构完整性。薄膜比导线要薄许多个数量级,从而减少了对工作环境中存在的气流和热模式的干扰。薄膜热电偶已经开发出来,可用于多种发动机材料的表面温度测量。这些传感器是在美国宇航局刘易斯研究中心的薄膜传感器实验室制造的,该实验室为1000级洁净室。热电偶是铂相对于铂为13%的铑,并通过溅射工艺制造。薄膜到引线的连接使用平行间隙焊接工艺进行。已经开发出了用于高温合金,陶瓷和陶瓷复合材料以及金属间化合物的热电偶。薄膜热电偶的一些应用包括:航天飞机主发动机涡轮叶片材料的温度测量,燃气涡轮发动机中先进材料的温度测量以及柴油发动机中的温度和热通量测量。描述了薄膜热电偶的制造。解决了传感器的耐用性,漂移率和最高温度能力。

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