大功率接触元件电压-温度关系的有效性

M. Gatzsche, Nils Lucke, S. Grossmann, Tom Kufner, G. Freudiger
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引用次数: 7

摘要

根据Kohlrausch于1900年建立的电压-温度(V-T)关系,可以用任意形状的隔热载流导体中的电位分布来计算相应的温度分布。一个重要的应用是确定电触点的最高温度。然而,研究人员发现,当通过辐射和对流向环境散热时,大型接触系统的V-T关系出现偏差。本研究旨在验证V-T关系对高功率应用中典型的弹簧负载接触元件的适用性,例如高压开关设备中的插件连接。带有可变冷却系统的连接器连续加载高达6.7 kA的电流,以创建大量热对称和非对称稳态工作点。测量了接触元件的温度,并与计算的V-T关系进行了比较。当负载电流随时间变化时,接触元件和相邻导体的空间分布的热容量被充电或放电,以达到适用于V-T关系的电热稳态。数值计算表明,瞬态温度分布可能存在较大差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validity of the voltage-temperature relation for contact elements in high power applications
With the voltage-temperature (V-T) relation, established by Kohlrausch in 1900, the electric potential distribution in an arbitrarily shaped, thermally insulated, current carrying conductor can be used to calculate the associated temperature distribution. An important application is the determination of the maximum temperature in electric contacts. However, researchers found deviations from the V-T relation for large contact systems when heat dissipation to the environment via radiation and convection becomes significant. The present investigation aims to verify the applicability of the V-T relation to typical spring-loaded contact elements for high power applications as for instance plug-in connections in highvoltage switchgear. A connector with a variable cooling system was continuously loaded with currents up to 6.7 kA to create a multitude of thermally symmetric and asymmetric steady-state operating points. Contact element temperatures were measured and compared to calculations with the V-T relation. When the load current varies over time, the spatially distributed heat capacity of the contact element and the adjacent conductors is charged or discharged to reach the electric-thermal steady-state for which the V-T relation applies. The transient temperature distribution may differ significantly, which is demonstrated by numerical calculations.
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