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Simultaneous Luminescence Pressure and Temperature Measurement System for Hypersonic Wind Tunnels

机译:高超音速风洞同时发光压力和温度测量系统

摘要

Surface pressures and temperatures are determined from visible emission brightness and green-to-red color ratioing of induced luminescence from a ceramic surface with an organic dye coating. A ceramic-dye matrix of porous silica ceramic with an adsorbed dye is developed for high-temperature pressure sensitivity and stability (up to 150 C). Induced luminescence may be excited using a broad range of incident radiation from visible blue light (488-nm wavelength) to the near ultraviolet (365 nm). Ceramic research models and test samples are fabricated using net-form slip-casting and sintering techniques. Methods of preparation and effects of adsorption film thickness on measurement sensitivity are discussed. With the present 8-bit imaging system a 10% pressure measurement uncertainty from 50 to 760 torr is estimated, with an improvement to 5% from 3 to 1500 torr with a 12-bit imaging system.
机译:表面压力和温度由可见光发射亮度和带有有机染料涂层的陶瓷表面感应发光的绿色与红色比例确定。开发了具有吸附染料的多孔二氧化硅陶瓷的陶瓷染料基体,以提高高温压力敏感性和稳定性(最高150 C)。可以使用从可见蓝光(488 nm波长)到近紫外光(365 nm)的宽范围入射辐射来激发诱导的发光。陶瓷研究模型和测试样品是使用网状滑模铸造和烧结技术制造的。讨论了制备方法和吸附膜厚度对测量灵敏度的影响。使用当前的8位成像系统,可以估计50%至760托的10%压力测量不确定度,使用12位成像系统可以将其从3到1500托提高到5%。

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  • 作者

    Buck Gregory M.;

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  • 年度 1995
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