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Thermal Analysis of Magnetron Injection Gun for 170GHz Gyrotron

机译:170GHz回旋管磁控管注入枪的热分析

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The 170GHz gyrotron presented in this paper has an operating voltage of 75kV and a beam current up to 45A, which requires the cathode emission temperature to reach above 1000 °C. At such a high temperature, thermal expansion of the electron gun is bound to occur. In this paper, ANSYS Workbench and COMSOL Multiphysics were used to conduct a thermal analysis of the electron gun. According to the analysis results, the filament power, number and position of the electron gun structure were optimized to meet the design requirements. The maximum value of the total deformation of the overall structure of the electron gun is about 0.06mm, and the total deformation of the cathode emission belt is about 0.054mm. Besides, the thermal analysis results obtained by the two software are compared; the simulation results agree well. The deformation is within the acceptable range, which has little influence on the performance of the electron gun.
机译:本文介绍的170GHz回旋管的工作电压为75kV,电子束电流高达45A,这要求阴极发射温度达到1000°C以上。在这样的高温下,必然会发生电子枪的热膨胀。在本文中,ANSYS Workbench和COMSOL Multiphysics用于对电子枪进行热分析。根据分析结果,优化了电子枪结构的灯丝功率,数量和位置,以满足设计要求。电子枪整体结构的总变形的最大值约为0.06mm,而阴极发射带的总变形约为0.054mm。此外,比较了两个软件获得的热分析结果。仿真结果吻合良好。变形在可接受的范围内,这对电子枪的性能影响很小。

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