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Characterization of Yb2O3 based optical temperature sensor for high temperature applications

机译:基于Yb2O3的高温应用光学温度传感器的特性

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A rare earth oxide based high temperature sensor is presented in this work. The rare earth is used as a selective emitter, which emits narrow band radiation at a peak wavelength of 980 nm that falls within the band edge of the Si-photodetector. The radiation results from the transition of 4f electrons in the Yb3+ ions due to thermal excitation. The radiation from the emitter, and the output (short-circuit current) of the photocell, is a function of the temperature. By inversion of Planck's law, the short-circuit current can directly be used as a measurement of temperature. The rare earth shows better performance in the range > 1500 degrees C. The sensor geometry has been tested under a variety of conditions such as varying distance (10-50 cm), area of photodetector (5 and 10 mm(2)) and materials such as pellets, coatings and powder. The temperature was calibrated by an optical pyrometer. It is found that the linearity of the sensor is within 5% over the temperature range 1200-1700 degrees C, accuracy is 2% and repeatability is 6% within the mentioned temperature range. The diverse material forms that the sensor lends itself to make it an ideal candidate for variety of applications. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文介绍了一种基于稀土氧化物的高温传感器。稀土被用作选择性发射器,它以980 nm的峰值波长发射窄带辐射,该窄带辐射落在Si光电探测器的带边缘之内。辐射是由于热激发而导致Yb3 +离子中4f电子跃迁的结果。来自发射器的辐射以及光电管的输出(短路电流)是温度的函数。通过逆普朗克定律,可以将短路电流直接用作温度测量。稀土在大于1500摄氏度的范围内表现出更好的性能。传感器的几何形状已在各种条件下进行了测试,例如变化的距离(10-50 cm),光电探测器的面积(5和10 mm(2))和材料例如颗粒,涂料和粉末。用光学高温计校准温度。可以发现,在上述温度范围内,传感器的线性度在1200至1700摄氏度的温度范围内为5%,精度为2%,重复性为6%。传感器适用于各种材料形式,使其成为各种应用的理想选择。 (c)2006 Elsevier B.V.保留所有权利。

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