Improved unitary and multicomponent gaseous insulators

M. Pace, L. Christophorou, D. James, R. Pai, R. Mathis, D. Bouldin
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引用次数: 19

Abstract

Improved unitary and multicomponent gaseous insulators are systematically designed according to detailed knowledge of fundamental electron-molecule interactions. Knowledge of the electron attachment and electron slowing-down properties of dielectric gases/mixtures as functions of electron energy is shown to be especially significant. On the basis of such knowledge it is possible to improve the gaseous dielectric's breakdown strength by effectively controlling the numbers and energies of the electrons present. Several unitary (e.g., C4+F6, c-C4F6, and iso-C4F6) and multicomponent (e.g., C4F6/SF6/N2 and c-C4+F8/C4+F6/SF6/N2) gaseous systems have been tested and found to have better DC breakdown strength properties than SF6. These findings are reported and discussed.
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改进的单组分和多组分气体绝缘体
改进的单组分和多组分气体绝缘体根据详细的知识,基本的电子-分子相互作用系统地设计。关于介电气体/混合物的电子附着和电子减速特性作为电子能量的函数的知识是特别重要的。在这种知识的基础上,有可能通过有效地控制存在的电子的数量和能量来提高气体电介质的击穿强度。几种单一(如C4+F6、c-C4F6和iso-C4F6)和多组分(如C4F6/SF6/N2和c-C4+F8/C4+F6/SF6/N2)气体体系已经过测试,发现它们具有比SF6更好的直流击穿强度特性。报告并讨论了这些发现。
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