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DEVELOPMENT OF INORGANIC FLUORESCENT COATINGS FOR HIGH TEMPERATURE AEROSPACE APPLICATIONS

机译:高温航空应用无机荧光涂层的研制

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For many years, phosphor thermometry has been used for non-contact measurements in hostile high temperature environments, including large blackbody radiation backgrounds, vibration, rotation, fire/flame, pressure, or noise. Often these environments restrict the use of more common thermocouples or infrared thermometric techniques. In particular, temperature measurements inside jet turbines, rocket engines, or similar devices are especially amenable to fluorescence techniques. Often the fluorescent materials are used as powders, either suspended in binders and applied like paint or applied as high temperature sprays. These coatings will quickly assume the same temperature as the surface to which they are applied. The temperature dependence of fluorescent materials is a function of the base matrix atoms and a small quantity of added activator or "dopant" ions. Often for high temperature applications, the selected materials are refractory and include rare earth ions. Phosphors like Y{sub}3Al{sub}5O{sub}12 (YAG) doped with Eu, Dy, or Tm, Y{sub}2O{sub}3 doped with Eu, or similar rare earth compounds, will survive high temperatures and can be configured to emit light that changes rapidly in lifetime and intensity. For example, fluorescence from YAG:Dy was recently observed at 1,600°C at the Oak Ridge National Laboratory (ORNL) National Transportation Research Center (NTRC) in Tennessee. This paper will give research results applicable to the use of phosphors for thermometry purposes.
机译:多年来,磷光体温度已被用于敌对的高温环境中的非接触式测量,包括大型黑体辐射背景,振动,旋转,火/火焰,压力或噪音。通常,这些环境通常限制使用更常见的热电偶或红外温度技术。特别地,射流涡轮机,火箭发动机或类似装置内的温度测量尤其适用于荧光技术。通常,荧光材料用作粉末,悬浮在粘合剂中并涂抹涂料或用作高温喷雾剂。这些涂层将迅速地假设与它们的表面相同的温度。荧光材料的温度依赖性是基质基质原子的函数和少量添加的活化剂或“掺杂剂”离子。通常用于高温应用,所选择的材料是难治性的,包括稀土离子。磷光体如y {sub} 3Al {sub} 50 {sub} 12(yag)掺杂有欧盟,dy或tm,y {sub} 3掺杂有欧盟的eu或类似稀土化合物的y {sub} 3将存活高温并且可以配置为发出速度和强度快速变化的光。例如,在田纳西州橡树岭国家实验室(ORNL)国家运输研究中心(NTRC)的1,600°C,最近观察到YAG:Dy的荧光。本文将提供适用于使用磷光体的研究结果以进行温度目的。

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