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Investigations on stationary electrical joints with a bare and a silver or nickel coated contact partner regarding the permissible temperature limit according to ANSI IEEE and IEO

机译:根据ANSI IEEE和IEO对裸露的和镀银或镀镍接触伙伴的固定式电气接头的允许温度极限进行研究

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In electric power transmission, copper and aluminum are mainly used as conductor materials. To improve the contact behavior, the contact surfaces of e.g. high-voltage switching devices are often coated with silver or nickel. Due to economic reasons, connecting conductors are usually uncoated. In that case, an electrical joint with only one coated contact partner is formed. With respect to the permissible temperature limit for this kind of electrical joints, a contradiction between IEC 62271 1:2007/A1:2011 and the ANSI IEEE C37.100.1:2007 exists. The limiting temperature given in the IEC is the one of the surface material with the higher valid temperature limit. On the contrary, the limiting temperature according to the standard of the ANSI IEEE is the one of the surface with the lower valid temperature limit. One major intention was to investigate the physical temperature limits of connections with only one coated contact partner. Therefore, joints with bus bars made of copper and aluminum and different coatings have been set up and aged at different temperatures. The joint resistance is measured time-dependent and evaluated. Additional investigations of the microstructure and mechanical properties were done to understand the physical aging processes.
机译:在电力传输中,铜和铝主要用作导体材料。为了改善接触行为,例如,接触表面应为高压开关设备通常涂有银或镍。由于经济原因,连接导体通常没有涂层。在那种情况下,形成仅具有一个涂覆的接触配对件的电接头。关于此类电气接头的允许温度限制,IEC 62271 1:2007 / A1:2011与ANSI IEEE C37.100.1:2007之间存在矛盾。 IEC中给出的极限温度是具有较高有效温度极限的表面材料之一。相反,根据ANSI IEEE标准的极限温度是具有较低有效温度极限的表面之一。一个主要目的是研究仅与一个带涂层的接触伙伴的连接的物理温度极限。因此,已经建立了由铜和铝制成的汇流排的接头以及不同的涂层,并在不同的温度下进行了时效处理。随时间测量并评估关节阻力。为了了解物理老化过程,还进行了微观结构和机械性能的其他研究。

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