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Reusable thermal history sensing via oxidation of a divalent rare earth ion-based phosphor synthesized by the Sol-Gel process

机译:通过氧化由Sol-Gel工艺合成的二价稀土离子基磷光体进行可重复使用的热历史感测

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摘要

Temperature measurements in harsh environments, such as those present in gas turbines, are of great importance but very hard to obtain. Sometimes, on-line measurements are not possible, and instead, the temperatures during operation are recorded using so-called thermal history sensors and read off-line. Although thermal paints have been used for many years as thermal history sensors, they present some disadvantages. Recently, a new method based on irreversible changes in the emission properties of phosphor materials when they are exposed to high temperatures has been proposed. It has been demonstrated that the process of oxidation from Eu2+ to Eu3+ is temperature sensitive up to 1400°C. In this paper, we describe the manufacture of BaMgAl10O17:Eu (BAM:Eu) using a sol–gel process, and report optical properties interrogated after heat treatments in air and argon atmospheres, which confirm that after treatment in argon, the oxidation process can be reversed. This suggests a promising reusability of the phosphor as a thermal history sensor. A temperature-dependent measurand based on the change of optical properties with temperature has been defined with a dynamic range from 700°C to 1100°C. The effect of exposure time to a certain temperature on this measurand has also been addressed.
机译:在恶劣环境下(例如燃气轮机中存在的环境)中的温度测量非常重要,但很难获得。有时无法进行在线测量,而是使用所谓的热历史传感器记录运行期间的温度并离线读取。尽管热敏涂料已被用作热历史传感器多年,但它们仍存在一些缺点。近来,已经提出了一种新的方法,其基于磷光体材料暴露于高温时的发射特性的不可逆变化。已证明从Eu2 +氧化成Eu3 +的过程对温度敏感,最高可达1400°C。在本文中,我们描述了使用溶胶-凝胶工艺制造BaMgAl10O17:Eu(BAM:Eu)的方法,并报告了在空气和氩气气氛中热处理后受到质疑的光学性质,这证实了在氩气中进行处理后,氧化过程可以被颠倒。这表明磷光体作为热历史传感器具有良好的可重用性。已经定义了基于光学性质随温度变化的与温度有关的被测量物,其动态范围为700°C至1100°C。还已经解决了暴露于一定温度下的时间对此被测物的影响。

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