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Arc-contact-insulating wall interactions in low voltage circuit-breakers

机译:低压断路器中的电弧接触-绝缘壁相互作用

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摘要

This experimental study deals with the interaction between an electrical arc, the contacts and the insulating side walls in low voltage circuit breakers. The influence of this on the breaking capacity, dielectric strength and device overheating after breaking are shown. In a confined volume, the arc-wall interaction defined the gaseous atmosphere in which the arc develops and depends on the nature of the insulating wall material. The gaseous atmosphere therefore fixes, in part, the arc behavior (arc voltage and arc movement) and the physical-chemical properties of the breaking medium surrounding the metallic surfaces (reducing or oxidizing). The arc-electrode interaction influences the capacity of the arc to transfer from the contacts to the arc quenching region and introduces surface pollution, through contact erosion (droplets, metallic vapors and other components). These combined effects can have a negative influence on general circuit breaker behavior.
机译:这项实验研究涉及低压断路器中电弧,触点和绝缘侧壁之间的相互作用。显示了这对断裂能力,介电强度和断裂后器件过热的影响。在有限的空间内,电弧-壁相互作用定义了电弧在其中发展的气态气氛,并取决于绝缘壁材料的性质。因此,气态气氛部分地固定了电弧行为(电弧电压和电弧运动)和包围金属表面的破裂介质的物理化学性质(还原或氧化)。电弧与电极的相互作用会影响电弧从触点转移到灭弧区域的能力,并通过接触腐蚀(液滴,金属蒸气和其他成分)引入表面污染。这些综合影响可能会对一般的断路器行为产生负面影响。

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