Improved glass-ceramic envelope for vacuum interrupters

R. Parashar
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引用次数: 3

Abstract

This study describes an improved hermetic glass-ceramic-to-metal seal which provides a high strength mechanical joint. The new sealing joint reduces electrical stress at the metal interface and is especially suitable for vacuum interrupters designed for high voltage applications requiring high reliability. An improved design of the glass-ceramic-to-metal seal is presented which uses a `U' section metal end flange. A novel high voltage vacuum interrupter design is presented for a load break switch and fault interrupting applications using fewer components than at present. It has been shown how different features can be incorporated into the glass-ceramic envelopes to avoid the requirement for metallic vapour shields or for external sheds or corrugations to enhance dielectric behaviour. The design could be used directly for an outdoor application eliminating the need for external insulation. Finite element modelling has been used to analyse the seal and interrupter design mechanically and electrically.
改进的真空灭弧玻璃陶瓷外壳
本研究描述了一种改进的密封玻璃-陶瓷-金属密封,它提供了一个高强度的机械连接。新型密封接头减少了金属界面的电应力,特别适用于要求高可靠性的高压应用的真空灭弧器。提出了一种改进的玻璃陶瓷-金属密封设计,该设计采用了“U”形金属端法兰。提出了一种新型高压真空断路开关的设计方案,用于负荷断路开关和故障断路,使用的元件比现有的少。它已经展示了如何将不同的特征整合到玻璃陶瓷外壳中,以避免对金属蒸气屏蔽或外部棚屋或波纹的要求,以增强介电性能。该设计可直接用于室外应用,无需外部绝缘。采用有限元模型对密封和断流器的机械和电气设计进行了分析。
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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