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Doped Oxides for High-Temperature Luminescence and Lifetime Thermometry

机译:用于高温发光和终生测温的掺杂氧化物

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The measurement of high temperatures in oxides and oxide-based structures in practical applications often presents challenges including steep thermal gradients, the presence of flames or chemically aggressive environments, and the transparency or translucency of most oxides. For turbine engines, oxide coatings are of great commercial importance, and the rapid motion of parts prohibits contact thermometry. Luminescence thermometry offers a number of advantages for measuring temperature in such systems and has been the subject of ongoing study for many years. Recent work on rare-earth-doped thermal barrier coatings, environmental barrier coatings, and related oxides has demonstrated the feasibility of luminescence thermometry to temperatures well in excess of 1000℃.The luminescent properties of these materials and the analytical techniques used to extract reproducible temperature measurements from the measured luminescence are reviewed.
机译:在实际应用中,对氧化物和基于氧化物的结构中的高温进行测量通常会带来挑战,包括陡峭的热梯度,火焰或化学侵蚀性环境的存在以及大多数氧化物的透明性或半透明性。对于涡轮发动机,氧化物涂层在商业上非常重要,并且零件的快速运动阻止了接触测温。发光测温法在此类系统中测量温度具有许多优势,并且多年来一直是研究的主题。最近对稀土掺杂的热障涂层,环境屏障涂层和相关氧化物的研究证明了发光测温法在温度超过1000℃时的可行性。这些材料的发光特性和用于提取可再现温度的分析技术审查了从测得的发光的测量结果。

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