大电流GIS接触热稳定性的标度研究

S. Boggs, S. Nishiwaki, M. Toyoda, J. Kuang
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引用次数: 3

摘要

当两块金属在一个滑动的高电流触点中用中等的力推在一起时,它们通常会在10到50个点接触,这些点必须承载通过触点的所有电流。总接触面积由接触材料的受力和硬度决定;然而,接触点的数量和每个接触点的平均面积可以随接触表面的性质而变化。通过瞬态非线性有限元分析,我们求解了接触点温度随时间的函数,从而确定了接触点热稳定的条件。在此基础上,我们开发了基于物理的热时间常数和光斑热稳定的最大电流的标度规则。这些缩放规则意味着稳定接触操作的总电流为接触点数量的平方根,认识到总接触面积是固定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scaling of high current GIS contact thermal stability
When two pieces of metal are pushed together with moderate force as in a sliding high current contact, they typically touch at 10 to 50 spots which must carry all the current passing through the contact. The total contact area is determined by the force and hardness of the contact material; however, the number of contact spots and average area of each can vary with the nature of the contact surfaces. Through the use of transient nonlinear finite element analysis, we have solved for the temperature as a function of time in the contact spot to determine the conditions under which a spot is thermally stable. Based on this investigation, we have developed physically based scaling rules for thermal time constants and the maximum current for which the spot will be thermally stable. These scaling rules imply that the total current for stable contact operation goes as the square root of the number of contact spots, recognizing that the total contact area is fixed.
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