4 MV静电加速器调试中出现的问题及解决方案  被引量:4

Debugging of 4 MV electrostatic accelerator

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作  者:孙振武[1] 李玉晓[1] 姜胜南[1] 李涛[1] 郑世全[1] 刘柱华[2] 霍裕平[1] 

机构地区:[1]郑州大学物理工程学院,河南郑州450052 [2]中国科学院高能物理研究所,北京100080

出  处:《强激光与粒子束》2005年第7期1117-1120,共4页High Power Laser and Particle Beams

摘  要:4MV静电加速器由高压系统、离子源及束流系统、控制系统和气体系统四部分组成。调试中出现了离子源不起弧、加速管破裂、控制系统失灵和输电带输电能力降低等技术问题,分析了出现这些问题的原因,然后分别采取了相应的措施加以解决:变换工作流程,在每次关机前先把引出电压降为零,开机时等离子源起弧后再把引出电压升到预定值;对过渡法兰进行车加工,重新封装;对高压端的控制设备采取屏蔽措施,在输入、输出端使用TVS二极管,对控制软件进行抗干扰设计;对绝缘气体进行循环干燥等。调试出了流强为100μA、能量在3MeV以上的稳定质子流。The 4 MV electrostatic accelerator consists of four parts, a high voltage system, an lon source and beam transmission system, a control system and a gas system. Some technical problems arose during the debugging of the accelerator. The ion source did not produce arc. The accelerator tube cracked. The control system was out of order. The transporting capacity of the charge belt degraded. The corresponding reasons were analyzed and some measures were adopted to solve the problems. The drawing voltage was raised to its predetermined position after the ion source produced arc and should be reduced to zero before turning off the accelerator. Transition flange was lathed and the accelerator tube was re-assembled. The control equipment at high voltage was shielded. TVS diodes were installed at the input and output ends. Some measures against disturbance were adopted in software. The insulation gas was dried circularly. Finally, a stable 100 μA and 3 MeV proton beam was ejected from the accelerator.

关 键 词:静电加速器 加速管 离子源 离子束 

分 类 号:TL505[核科学技术—核技术及应用]

 

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