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INFRARED MONITORING OF 110 GHz GYROTRON WINDOWS AT DIII―D

机译:DIII〜D的110 GHz陀螺窗口的红外监测

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摘要

The combination of low millimeter wave losses and excellent thermal conductivity with good mechanical properties make artificial chemical vapor deposition (CVD) diamonds a compelling choice for 1 MW 110 GHz gyrotron windows. Five gyrotrons are currently operating at the DIII―D tokamak. Three Gycom gyrotrons have boron nitride (BN) ceramic windows. Due to temperature increases of the windows up to about 930℃ , the pulse duration of these tubes is limited to 2 s for output power near 800 kW. Two Communications and Power Industries (CPI) gyrotrons with diamond windows are also installed and operating. The diamond disks of these windows and the construction of their water-cooling assemblies are different. This paper reviews the infrared (IR) measurements of both types of gyrotron windows, with emphasis on the two diamond designs.
机译:低毫米波损耗与出色的导热率以及良好的机械性能的结合,使人造化学气相沉积(CVD)钻石成为1 MW 110 GHz旋流器窗口的理想选择。 DIII-D托卡马克目前有五个旋流器在运行。三个Gycom旋流器具有氮化硼(BN)陶瓷窗口。由于窗的温度升高到大约930℃,因此对于输出功率接近800 kW的电子管,脉冲持续时间限制为2 s。还安装并运行了两个带有金刚石窗口的通信和电力工业(CPI)旋流器。这些窗户的金刚石盘和水冷组件的结构不同。本文回顾了两种类型的回旋窗的红外(IR)测量,重点介绍了两种金刚石设计。

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