不同锥角对真空可加工陶瓷闪络特性的影响

Xue-Zeng Huang, Jiang-Yang Zhan, Nan Zheng, H. Mu, Guanjun Zhang
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引用次数: 1

摘要

真空中表面闪络是一种复杂的表面和界面现象,严重制约了高压电真空器件的发展。将一种具有优良切削性能和良好表面电性能的可加工陶瓷引入真空绝缘系统,并考虑到常用的截锥结构,加工出不同锥角的可加工陶瓷样品。研究了真空脉冲电压下的表面闪络电压,并对不同锥角下的电场分布和表面电荷密度进行了数值模拟。实验结果表明,圆锥绝缘子的闪络电压高于圆柱绝缘子,正锥角截锥体的闪络电压远高于负锥角截锥体的闪络电压,且~45°锥角截锥体的闪络电压最高。认为锥角对阴极三结的电场和表面电荷分布有重要影响。当锥角为正时,CTJ的电场和表面电荷分布较小,当锥角为负时,这些值较大,因此其较高的CTJ电场和表面电荷导致闪络电压低于正角时,并且电子的自由程短,电子与绝缘子表面碰撞的能量降低,导致闪络电压高于圆柱形绝缘子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of different coning angles on flashover characteristics across machinable ceramic in vacuum
Surface flashover in vacuum is a kind of complicated surface and interface phenomena, which seriously restricts the development of high voltage electro-vacuum devices. Introducing a kind of machinable ceramic with excellent machinable performance and good surface electrical capability into vacuum insulation system, and considering the commonly used truncated cone structure, machinable ceramic samples with different coning angles are machined. Their surface flashover voltage are investigated under pulsed voltage in vacuum, and the electric field distributions and surface charge density of different coning angles are numerically simulated. The experimental results indicate that, the flashover voltage of cone insulators is higher than that of cylindrical insulators, the flashover voltage of truncated cone samples with positive coning angle is much higher than that of with negative coning angles, and the flashover voltage with ~45° conical frustum is highest. It is considered that, the coning angle plays an important role on the electric field of cathode triple junction (CTJ) and surface charge distribution. When the coning angle is positive, the electric field of CTJ and surface charge distribution is smaller, and when the coning angle is negative, these values are bigger, so its higher CTJ electric field and surface charge result in a lower flashover voltage than that with positive angle, and also the short free path of electrons and decreased energy of electrons colliding with insulator surface lead to a higher flashover voltage than that of cylindrical insulators.
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