CERN大型强子对撞机高稳定性PFN放电电容器66 kV大电流试验

M. Barnes, G. Wait
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引用次数: 4

摘要

欧洲粒子物理实验室(CERN)正在建造一个大型强子对撞机(LHC),将安装在现有的27公里周长的隧道中。大型强子对撞机将配备快速脉冲磁体系统,用于注入两个反向旋转强子束。为此需要两个脉冲系统,各由4个磁体和4个脉冲形成网络(pfn)组成。TRIUMF将建造和测试5个谐振充电电源(RCPS)和9个pfn以及相关的闸流管开关单元,作为加拿大对欧洲核子研究中心LHC的一部分贡献。PFN电容器的故障可能导致不正确的光束偏转,进而损坏LHC组件。因此,电容器的可靠性必须特别高。因此,样品PFN电容器购买和测试。测试过程包括将PFN电容器从66 kV放电到10.1欧姆电阻,以大约1 Hz的频率进行500,000次循环。随后,PFN电容器从66千伏放电到2.7欧姆电阻,循环5000次。在每次测试前后测量电容值,以确定该值是否保持稳定。还测量了电容值的电压依赖性。本文介绍了试验装置和试验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High current 66 kV tests on high stability PFN discharge capacitors for CERN LHC
The European Laboratory for Particle Physics (CERN) is constructing a Large Hadron Collider (LHC) to be installed in an existing 27 km circumference tunnel. The LHC will be equipped with fast pulsed magnet systems for injecting two counter-rotating hadron beams. Two pulsed systems, of 4 magnets and 4 pulse forming networks (PFNs) each, are required for this purpose. TRIUMF will build and test 5 resonant charging power supplies (RCPS) and nine PFNs and the associated thyratron switch units as part of the Canadian contribution to CERN LHC. Failures in the PFN capacitors may lead to incorrect beam deflections that may in turn damage LHC components. For this reason the reliability of the capacitors must be exceptionally high. Hence sample PFN capacitors were purchased and tested. The test procedure included discharging the PFN capacitors from 66 kV, into a 10.1 Ohm resistance, for 500,000 cycles, at a frequency of approximately 1 Hz. Subsequently the PFN capacitors were discharged from 66 kV into a 2.7 Ohm resistance, for 5,000 cycles. The value of the capacitance was measured before and after each test to determine whether the value remained stable. Voltage dependence of the capacitance value has also been measured. The test setups and results of the tests are presented in this paper.
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