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Impact of Surface Morphology on Arcing Induced Erosion of CuW Contacts in Gas Circuit Breakers

机译:表面形态对燃气断路器CuW触点侵蚀的影响

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In this paper, the impact of surface morphology of contacts, in particular different microstructural parameters like size and distribution of contact ingredients, on contact erosion in high voltage gas circuit breaker is investigated. It is demonstrated that the size and contiguity of copper and tungsten zones play a key role in contact erosion so that the mass loss in one specific contact after interruption of the rated short-circuit current is 2.5 times higher than that of another one, with the same dimensions and material composition. It is shown that the arc roots tend to be formed on larger copper zones and if the zones are not confined by tungsten area, the arc cross section expands resulting in a higher evaporation rate of copper areas. In addition, it is emphasized that ejection of tungsten particles after evaporation of surrounding copper areas is another mechanism leading to more contact erosion, which has to be taken into consideration in contact erosion modeling along with molten contact splash and vaporization.
机译:本文研究了触点的表面形貌,特别是不同的微观结构参数等尺寸和分布的接触成分的尺寸,在高压气体断路器中的接触腐蚀上的影响。据证明铜和钨区的尺寸和恒定在接触侵蚀中起着关键作用,使得在额定短路电流中断后一种特定接触中的质量损失比另一个电流高2.5倍。相同的尺寸和材料组成。结果表明,弧根倾向于形成在较大的铜区上,并且如果区域不受钨区域限制,则电弧横截面膨胀导致铜区域的蒸发速率较高。此外,强调,蒸发围绕铜区域后钨颗粒的喷射是另一机制,其导致更接触的侵蚀,这必须考虑到接触侵蚀模型以及熔融接触飞溅和蒸发。

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