Reliability of Three-Electrode Spark Gaps for Synthetic Test Circuits

P. Osmokrović, M. Pesic, Z. Trifković, A. Vasic
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引用次数: 1

Abstract

Summary form only given. Development of a three-electrode spark gap, intended for use in synthetic circuits, is considered in this paper. Two types of three-electrode gas insulated spark gaps have been tested: one with the third electrode located inside the main electrode, an the other with a separate third electrode. A theoretical model which enables optimal design of the spark gap has been presented. Application of the model to both types of spark gaps enabled their optimal sizing. The following characteristics have been determined experimentally: the influence of insulating gas parameters on spark gap operation, the influence of the polarity of working and trigger voltages on spark gap operation, the influence of the trigger voltage rate of rise on spark gap operation, and the degree of spark gap irreversibility under conditions of exploitation. Three types of insulating gas have been used: SF6, N2, and a mixture of 60% SF6 with 40% N2 Additionally, three different electrode materials have been implemented: copper, steel and tungsten. Spark gap switching and delay times have been measured as indices of spark gap operation. The statistical analysis of the obtained results is presented in the paper. The testing showed that N? insulated spark gaps have better characteristics than those insulated by SF6, which may be explained by a higher concentration of free electrons in N2 compared to the electronegative SF6. It has been found that that both the switching time and its statistical dispersion increase as the trigger pulse rate of rise becomes higher, while the delay time and its statistical dispersion decreased. Behaviour of the switching time random variable indicated the appearance of irreversible changes in the SF6 insulated spark gap with copper electrodes. Irreversibility of the spark gap was not affected by either the spark gap type or the triggering mode.
合成测试电路中三电极火花隙的可靠性
只提供摘要形式。本文考虑了用于合成电路的三电极火花隙的发展。已经测试了两种类型的三电极气体绝缘火花间隙:一种是第三电极位于主电极内部,另一种是单独的第三电极。提出了火花间隙优化设计的理论模型。将该模型应用于两种类型的火花间隙,使其达到最佳尺寸。实验确定了绝缘气体参数对火花间隙运行的影响,工作电压极性和触发电压极性对火花间隙运行的影响,触发电压上升率对火花间隙运行的影响,以及开发条件下火花间隙不可逆性的程度。使用了三种绝缘气体:SF6、N2和60% SF6与40% N2的混合物。此外,还使用了三种不同的电极材料:铜、钢和钨。测量了火花隙开关和延迟时间作为火花隙操作的指标。本文对所得结果进行了统计分析。测试表明N?与电负性的SF6相比,N2中自由电子的浓度更高,这可能是由于SF6的绝缘火花隙具有更好的特性。研究发现,随着触发脉冲上升速率的增大,开关时间和统计色散增大,延迟时间和统计色散减小。开关时间随机变量的行为表明,铜电极SF6绝缘火花间隙出现不可逆变化。火花间隙的不可逆性不受火花间隙类型和触发方式的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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