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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Excimer and Nd:YAG laser-based systems incorporating air-cooled fiber-optic probes for turbine engine high-temperature fluorescence intensity imaging and fluorescence decay lifetime thermometry measurements
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Excimer and Nd:YAG laser-based systems incorporating air-cooled fiber-optic probes for turbine engine high-temperature fluorescence intensity imaging and fluorescence decay lifetime thermometry measurements

机译:基于准分子和Nd:YAG激光的系统,结合了风冷光纤探头,用于涡轮发动机高温荧光强度成像和荧光衰减寿命测温法测量

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摘要

In this work, a description for a pulsed Nd:YAG laser-based system operating at 266 nm (generated by passing the 1.064 mu m fundamental wavelength through two non-linear KD*P crystals) for non-contact high-temperature 1-D thermographic phosphors fluorescence intensity and decay lifetime measurements is provided. Also, the article provides a description for a pulsed XeCl excimer laser-based system operating at 308 nm (XeCl) for non-contact high-temperature 2-D thermographic phosphor fluorescence intensity measurements. Both laser systems incorporate air-cooled fiber-optic probes for delivering the excitation laser energy to an engine part coated with thermographic phosphor (Y2O3:Eu or YAG:Tb). Furthermore, the air-cooled probe used with the Nd:YAG laser measurement system incorporates nine 1000 mu m core diameter fibers for guiding the emitted fluorescence radiation to the photomultiplier detection system. Whereas, the air-cooled probe used with the excimer laser-based system incorporates a coherent fiber-optic bundle endoscope for imaging the engine parts. The honeycomb pattern (pixelation effect) imposed on images captured by the CCD camera (12 x 13.7 mu m pixel size) coupled to the endoscope eyepiece is removed by applying digital high-frequency spatial filter to the image 2-D Fourier transform. Moreover, fluorescence decay lifetime and intensity measurements collected from Y2O3:Eu and YAG:Tb phosphors as a function of temperature are discussed. (C) 2015 Elsevier GmbH. All rights reserved.
机译:在这项工作中,描述了一种用于Nd:YAG脉冲Nd:YAG脉冲系统的系统,用于非接触式高温1-D,该系统工作于266 nm(通过将1.064μm基本波长通过两个非线性KD * P晶体而产生)提供了热成像荧光粉的荧光强度和衰减寿命测量。此外,本文还介绍了用于非接触式高温2-D热成像荧光粉荧光强度测量的,运行在308 nm(XeCl)的基于脉冲XeCl准分子激光的系统的描述。两种激光系统都包含风冷光纤探头,用于将激发激光能量传递到涂有热成像荧光粉(Y2O3:Eu或YAG:Tb)的发动机部件上。此外,与Nd:YAG激光测量系统一起使用的风冷探头结合了九根1000微米纤芯直径的光纤,用于将发出的荧光辐射引导至光电倍增管检测系统。然而,与基于准分子激光的系统一起使用的风冷探头结合了用于对发动机部件成像的相干光纤束内窥镜。通过将数字高频空间滤波器应用于图像二维傅里叶变换,可以消除施加到与内窥镜目镜耦合的CCD相机(12 x 13.7μm像素大小)捕获的图像上的蜂窝图案(像素化效果)。此外,讨论了从Y2O3:Eu和YAG:Tb荧光粉收集的荧光衰减寿命和强度测量值与温度的关系。 (C)2015 Elsevier GmbH。版权所有。

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