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Contact Resistance and Overtemperature Behavior of New and pre- Arced Power Engineering Contacts as a Function of Ambient Temperature and Contact Force

机译:新的和预先动力工程触点的接触电阻和过温行为作为环境温度和接触力的函数

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摘要

Switching devices for power engineering are progressively decreasing in size. As a result, focus on overtemperature behavior and electrical resistance within their various contact components becomes exceedingly important, especially for the contact tips. Their behavior is important for new devices as well as for devices during their service life. Thus contacts as manufactured, as well as contacts after arcing are investigated in this paper by varying parameters such as contact force and environmental temperature using a programmable model switch. The dimensions of the model switch as well as the freely adjustable testing conditions are set according to a 160A rated molded case circuit breaker (MCCB). Silver/graphite (Ag/C), silver/nickel (Ag/Ni), silver/tungsten (Ag/W) and silver/metal oxide (Ag/SnO_2) and their combinations were investigated. It can be shown that Ag/Ni40 and Ag/SnO_2 12WPD show a stable or even decreasing contact resistance with elevated temperature while Ag/C4 and Ag/W60 end up with increased values. Results obtained are discussed on the basis of electrical conductivity, hardness as a function of temperature, the influence of arcing as well as the roughness of the contact surfaces.
机译:用于电力工程的开关装置的尺寸逐渐减小。结果,专注于其各种接触部件内的过热行为和电阻变得非常重要,特别是对于接触尖端。它们的行为对于新设备以及服务在使用寿命期间的设备非常重要。因此,通过使用可编程模型开关改变诸如接触力和环境温度的参数,在本文中研究了作为制造的触点以及电弧后的触点。根据160A额定的模压壳体断路器(MCCB)设定了模型开关的尺寸以及可自由调节的测试条件。还研究了银/石墨(AG / C),银/镍(AG / NI),银/钨(AG / W)和银/金属氧化物(AG / SNO_2)及其组合。可以显示,AG / Ni40和Ag / SnO_2 12WPD显示出稳定甚至降低升高的接触电阻,而Ag / C4和Ag / W60最终增加的值。获得的结果是基于导电性,作为温度函数的硬度,电弧的影响以及接触表面的粗糙度的讨论。

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