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首页> 外文期刊>IEEE Transactions on Plasma Science >Electrical and pyrometric measurements of the decay of the anode temperature after interruption of high-current vacuum arcs and comparison with computations
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Electrical and pyrometric measurements of the decay of the anode temperature after interruption of high-current vacuum arcs and comparison with computations

机译:大电流真空电弧中断后阳极温度衰减的电学和高温测量,并与计算进行比较

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摘要

Vacuum arcs of up to 20-kA peak current were investigated. The surface temperature of the anode area melted during the anode spot mode was determined by pyrometry and the evaluation of thermionic currents. The measurements confirm the computations of heating and cooling of the anode, taking into account heat conduction melting/solidification, and evaporation. Pyrometrically obtained temperatures agree well with theory. This gives confidence in the heat conduction model and also shows that the boiling temperature was reached during arcing. Another method evaluates currents of a milliampere value after arcs of several kiloamperes and postarc currents of amperes. Experimental observation (e.g., loading of the shield surrounding the contacts) and theoretical analysis of the interfering effects support the idea that the currents measured are due to thermionic emission.
机译:研究了高达20kA峰值电流的真空电弧。通过高温测定法和热电子电流的评估来确定在阳极点模式期间熔化的阳极区域的表面温度。这些测量结果证实了阳极的加热和冷却计算,并考虑了导热熔化/凝固和蒸发。高温测得的温度与理论吻合良好。这使人们对导热模型充满信心,也表明在电弧放电过程中达到了沸腾温度。另一种方法是在几千安培的电弧和安培的弧后电流之后评估毫安值的电流。实验观察(例如,围绕触点的屏蔽的负载)和干扰效应的理论分析支持这样的观点,即所测量的电流是由于热电子发射引起的。

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