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Non-contact measurement of creep resistance of ultra-high-temperature materials

机译:非接触测量超高温材料的抗蠕变性

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摘要

Continuing pressures for higher performance and efficiency in energy conversion and propulsion systems are driving ever more demanding needs for new materials which can survive high stresses at the elevated temperatures. In such severe environments, the characterization of creep properties becomes indispensable. Conventional techniques for the measurement of creep are limited to about 1700℃. A new method which can be applied at temperatures higher than 2000℃ is strongly demanded. This paper presents a non-contact method for creep measurements of ultra-high-temperature materials at 2300℃. Using the electrostatic levitation facility at NASA MSFC, a spherical sample was rotated quickly enough to cause creep deformation due to centripetal acceleration. The deformation of the sample was captured with a digital camera, and the images were analyzed to measure creep deformation. To validate experimental results, numerical and analytical analyses on creep deformation of a rotating sphere have been conducted. The experimental, numerical, and analytical results showed good agreement with one another.
机译:在能量转换和推进系统中不断追求更高性能和效率的压力不断推动着对新材料的日益苛刻的需求,这些新材料可以在高温下承受高应力。在这种恶劣的环境中,蠕变特性的表征变得必不可少。测量蠕变的常规技术仅限于约1700℃。强烈要求可以在高于2000℃的温度下使用的新方法。本文提出了一种非接触式方法,用于测量2300℃的超高温材料的蠕变。使用NASA MSFC的静电悬浮设备,将球形样品旋转得足够快,从而由于向心加速度而引起蠕变变形。用数码相机捕获样品的变形,并分析图像以测量蠕变。为了验证实验结果,对旋转球的蠕变变形进行了数值和分析分析。实验,数值和分析结果显示出很好的一致性。

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