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High-speed fluorescent thermal imaging of quench propagation in high temperature superconductor tapes

机译:高温超导磁带中淬火传播的高速荧光热成像

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摘要

Fluorescent microthermographic imaging, a method using rare-earth fluorescent coatings with temperature dependent light emission, was used for quench investigation in high temperature superconductors (HTS). A fluorophore was embedded in a polymer matrix and used as a coating on top of an HTS tape, while being excited with UV light and recorded with a high-speed camera. Simultaneously, the tape was pulsed with high amplitude, short duration DC current, and brought to quench with the help of a localised defect. The Joule heating during a quench influences the fluorescent light intensity emitted from the coating, and by recording the local variations in this intensity over time, the heating of the tape can be visualised and the developed temperatures can be calculated. In this paper, the fluorophore europium tris[3-(trifluoromethylhydroxymethylene)-(+)-camphorate] (EuTFC) provided sufficient temperature sensitivity and a usable temperature range from 77-260 K. With the help of 2500 image captures per second, the normal zone development was imaged in a 20 mu m copper stabilised HTS tape held in a liquid nitrogen bath, and using a calibration curve, the temperatures reached during the quench have been calculated.
机译:荧光微液成像,使用稀土荧光涂层具有温度依赖性发光的方法,用于在高温超导体(HTS)中淬火研究。荧光团嵌入聚合物基质中并用作HTS胶带顶部的涂层,同时用UV光激发并用高速相机记录。同时,用高幅度,短持续时间直流电流脉冲胶带,并在局部缺陷的帮助下淬火。淬火期间的焦耳加热影响从涂层发射的荧光强度,并且通过随时间记录这种强度的局部变化,可以可视化带的加热,并且可以计算出现的温度。本文中,荧光团Tris [3-(三氟甲基羟基亚甲基) - (+) - Camphorate](Eutfc)提供了足够的温度敏感性和可用的温度范围从77-260 K.借助每秒2500图像捕获,在液氮浴中保持的20μm铜稳定的HTS胶带中成像正常区域显影,并使用校准曲线,计算出在淬火期间达到的温度。

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