利用多物理场分析 800kV 罐式断路器合闸电阻的机械损伤特性

Yanyan Bao, Kang Liu, Feng Wang
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引用次数: 0

摘要

中国西北地区使用的 800 kV 罐式断路器中的合闸电阻片在分合闸过程中因内应力集中而多次损坏。本文利用热场发射扫描电子显微镜分析了电阻片的微观结构和成分。氧化铝陶瓷是主要成分,对电阻片的导热性和机械性能有重大影响。同时,碳成分虽然微不足道,但却提供了有效的导电路径。通过显微硬度测试系统测量了电阻片在不同径向位置上的显微硬度,结果发现电阻片在不同径向位置上的硬度是不同的,在电阻片外缘附近的硬度值最小。利用多物理场分析软件,对带有合闸电阻器的 800 kV 罐式断路器进行建模,并分析了合闸电阻器在冲击载荷下的应力变化。当合闸电阻器表面不平整时,应力集中在其外缘,导致外缘容易损坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of mechanical damage characteristics of closing resistor of 800kV tank circuit breaker with multi-physical field
The closing resistor sheet in the 800 kV tank circuit breaker, used in Northwest China, has been repeatedly damaged due to internal stress concentration during the opening and closing processes. This paper utilizes thermal field emission scanning electron microscopy to analyze the microstructure and composition of the resistor sheet. Alumina ceramic, the primary component, significantly influences the sheet’s thermal conductivity and mechanical properties. Meanwhile, the carbon component, though minor, provides an effective conductive path. The microhardness of the resistor sheet at different radial positions was measured via a microhardness test system, and it was found that the hardness of the resistor sheet at various radial positions was different and had the minimum value near the outer edge of the resistor sheet. Using multi-physics field analysis software, the 800 kV tank circuit breaker with a closing resistor was modeled, and the stress changes in the closing resistor under impact loads were analyzed. When the surface of the closing resistor was uneven, the stress concentrated on its outer edge, resulting in easily damaging the outer edge.
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