首页 | 本学科首页   官方微博 | 高级检索  
     

快前沿直线脉冲变压器多间隙气体开关直流自击穿特性
引用本文:孙铁平, 乔开来, 丛培天, 等. 快前沿直线脉冲变压器多间隙气体开关直流自击穿特性[J]. 强激光与粒子束, 2011, 23(01).
作者姓名:孙铁平  乔开来  丛培天  张国伟  黄涛  罗维熙  王亮平  曾正中
作者单位:1.西北核技术研究所, 西安 71 0024
摘    要:针对一种用于快前沿直线脉冲变压器(FLTD)的堆栈式多间隙气体开关,研究了电极表面粗糙度、电场不均匀系数、放电电流、气体压强等因素对开关自击穿电压分散性的影响。电极表面粗糙度0.1~0.8 μm时,击穿电压平均值没有明显变化,击穿电压分散性小于1.5%;电场不均匀系数为1.20和1.30时,电极烧蚀均匀,开关自击穿电压分散性小于2.0%;放电电流由1.1 kA增加到30.0 kA时,击穿电压的分散性增加了约2倍,电极烧蚀的作用明显增强;工作气压由0.04 MPa增加到0.30 MPa,击穿电压的分散性由1.5%增加到36%。初步分析了降低开关自击穿电压分散性的途径和方法。

关 键 词:快前沿直线脉冲变压器   多间隙开关   击穿电压分散性   表面粗糙度

Self-breakdown charicteristic of multi gap switch for fast linear transformer driver
sun tieping, qiao kailai, cong peitian, et al. Self-breakdown charicteristic of multi gap switch for fast linear transformer driver[J]. High Power Laser and Particle Beams, 2011, 23.
Authors:sun tieping  qiao kailai  cong peitian  zhang guowei  huang tao  luo weixi  wang liangping  zeng zhengzhong
Affiliation:1. Northwest Institute of Nuclear Technology,P.O.Box 69-10,Xi’an 710024,China
Abstract:The effects of surface roughness, field enhancement factor, current and gas pressure on self-breakdown voltage of a stackable multi gap switch used for fast linear transformer driver are investigated. The mean self-breakdown voltage has no remarkable change and the dispersancy of self-breakdown voltage is under 1.5% when the surface roughness is 0.4 μm to 0.8 μm. The electrode erosion is symmetrical and the dispersancy of self-breakdown voltage is under 2.0% when the field enhancement factor is 1.20 and 1.30. The dispersancy of self-breakdown voltage increase almost two times as the current is changed from 1.1 kA to 30.0 kA. The dispersancy of self breakdown voltage increases from 1.5% to 3.6% when the gas pressure is changed from 0.04 MPa to 0.30 MPa. Some methods of reducing the disp
Keywords:fast linear transformer driver  multi-gap switch  dispersancy of self-breakdown voltage  surface roughness
点击此处可从《强激光与粒子束》浏览原始摘要信息
点击此处可从《强激光与粒子束》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号