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Thin-film thermocouples and strain-gauge technologies for engine applications

机译:发动机应用的薄膜热电偶和应变仪技术

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Advanced thin-film sensor techniques that can provide accurate surface strain and temperature measurements are being developed at NASA Lewis Research Center. These sensors are needed to provide minimally intrusive characterization of advanced materials (such as ceramics and composites) and structures (such as components for Space Shuttle main engine, high-speed civil transport, and general aviation aircraft) in hostile, high-temperature environments, and for validation of design codes. This paper presents two advanced thin-film sensor technologies: strain gauges and thermocouples. These sensors are sputter deposited directly onto the test articles and are only a few micrometers thick; the surface of the test article is not structurally altered and there is minimal disturbance of the gas flow over the surface. The strain gauges are palladium-13% chromium based and the thermocouples are platinum-13% rhodium versus platinum. The fabrication techniques of these thin-film sensors in a class 1000 cleanroom at the NASA Lewis Research Center are described. Their demonstration on a variety of engine materials, including superalloys, ceramics, and advanced ceramic matrix composites, in several hostile, high-temperature test environments is discussed. (C) 1998 Elsevier Science S.A. [References: 17]
机译:NASA Lewis研究中心正在开发可提供准确的表面应变和温度测量值的先进薄膜传感器技术。需要这些传感器,以便在恶劣的高温环境下,以最小的侵入特性来表征高级材料(例如陶瓷和复合材料)和结构(例如航天飞机主机,高速民用运输工具和通用航空飞机的组件),并用于验证设计规范。本文介绍了两种先进的薄膜传感器技术:应变仪和热电偶。这些传感器直接溅射沉积在测试物品上,厚度只有几微米。测试制品的表面在结构上没有改变,并且气流在表面上的干扰最小。应变片是基于钯-13%铬,热电偶是铂-13%铑对铂。描述了在NASA Lewis研究中心的1000级无尘室中这些薄膜传感器的制造技术。讨论了它们在几种恶劣的高温测试环境中对多种发动机材料(包括超级合金,陶瓷和先进的陶瓷基复合材料)的演示。 (C)1998 Elsevier Science S.A. [参考:17]

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