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Direct Measurement of Surface Temperature upto 1500K of Turbine Blade by MEMS Embeded Thin Film Sensors

机译:MEMS嵌入式薄膜传感器直接测量表面温度高达1500k的涡轮机叶片

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Intelligent aero-engine is one of the three key projects in VAATE program. Embedded advanced sensors onto the key components such as turbine blade are highly necessary for those internet+ applications on intelligent aero-engine endeavors. In this paper, the Pt thin film sensor was fabricated onto the turbine blade surface using MEMS technology. This micro-machined embedded sensor on turbine blade is capable of measuring the high temperature up to 1300°C Very good linearity of the Pt thermal resistance vs. temperature in the sensor was observed and repeatability is good. This proves a successful ceramic coating to achieve a high temperature electrical insulation as well as a MEMS-sensor technology capable of fabricating the embedded thin film sensors directly onto the curved turbine blade surface. This high temperature sensor is small in size with a thickness within one urn and line width within a few hundred urn. This development is very useful to quantify the temperature of the sensitive spot on the turbine blade in the combustion environment for aero engine R&D purpose.
机译:智能航空发动机是VAATE计划中的三个重点项目之一。嵌入式高级传感器在诸如涡轮机叶片之类的关键部件上,对于智能航空发动机努力的互联网+应用非常必要。在本文中,使用MEMS技术制造PT薄膜传感器在涡轮叶片表面上。该微加工的嵌入式传感器在涡轮叶片上能够测量高温高温高达1300°C的PT热阻的线性度与传感器的温度相比,可重复性良好。这证明了一种成功的陶瓷涂层,以实现高温电绝缘,以及能够直接制造嵌入的薄膜传感器的MEMS传感器技术直接在弯曲的涡轮机叶片表面上。该高温传感器尺寸小,厚度在一个URN和线宽内的厚度在几百缸内。该开发对于量化Aero发动机研发目的燃烧环境中涡轮机叶片上的敏感点的温度非常有用。

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