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应用于工业X射线二极管的金属陶瓷阴极发射特性研究。

Investigation on emission characteristics of metal-ceramic cathode applied to industrial X-ray diode.

作者信息

Xun Ma, Jianqiang Yuan, Hongwei Liu, Hongtao Li, Lingyun Wang, Ping Jiang

机构信息

Key Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, China.

出版信息

Rev Sci Instrum. 2016 Jun;87(6):063301. doi: 10.1063/1.4947496.

Abstract

The industrial x-ray diode with high impedance configuration is usually adopted to generate repetitive x-ray, but its performance would be worsened due to lower electric field on the cathode of diode when a voltage of several hundreds of kV is applied. To improve its performance, a novel metal-ceramic cathode is proposed in this paper. Key factors (width, relative permittivity of ceramic, and so on) affecting electric field distribution on triple points are analyzed by electrostatic field calculation program, so as to optimize the design of this novel cathode. Experiments are done to study the characteristics including emission current of cathode, diode voltage duration, diode mean dynamic impedance, and diode impedance drop velocity within diode power duration. The results show that metal-ceramic cathode could improve diode performance by enhancing emission current and stabling impedance; the impedance drop velocity of diode with spoke-shaped metal-ceramic cathode was reduced to -5 Ω ns(-1) within diode power duration, comparing to -15 Ω ns(-1) with metal foil cathode.

摘要

具有高阻抗配置的工业X射线二极管通常用于产生重复的X射线,但是当施加几百千伏的电压时,由于二极管阴极上的电场较低,其性能会变差。为了提高其性能,本文提出了一种新型的金属陶瓷阴极。通过静电场计算程序分析了影响三点电场分布的关键因素(宽度、陶瓷的相对介电常数等),以便优化这种新型阴极的设计。进行实验以研究包括阴极发射电流、二极管电压持续时间、二极管平均动态阻抗以及二极管功率持续时间内的二极管阻抗下降速度等特性。结果表明,金属陶瓷阴极可以通过增强发射电流和稳定阻抗来提高二极管性能;与金属箔阴极相比,具有辐条形金属陶瓷阴极的二极管在二极管功率持续时间内的阻抗下降速度降低到-5Ωns-1,而金属箔阴极的为-15Ωns-1。

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