振动火花导致定子绕组绝缘劣化

G. Stone
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引用次数: 3

摘要

自从引入环氧云母定子绕组以来,一些涡轮发电机定子绕组显然由于各种被称为火花侵蚀或振动火花的机制而失效。该机构可在定子棒和铁芯表面之间产生相对强烈的火花。火花的强度是这样的,它可能侵蚀地壁绝缘比槽放电快得多。与正常的松散线圈/槽放电故障过程不同,火花侵蚀可能发生在绕组的任何地方,而不仅仅是在高压下工作的定子棒中。本文描述了振动火花失效过程,这似乎要求部分导电槽涂层的导电性要比普通涂层高得多;并且线圈或棒必须在槽内松动并在100/120 Hz磁力下振动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deterioration of stator winding insulation by vibration sparking
Since the introduction of epoxy mica stator windings, some turbine generator stator windings have apparently failed due to a mechanism variously referred to as spark erosion or vibration sparking. The mechanism can produce relatively intense sparking between the surface of the stator bar and the core. The intensity of the sparking is such that it may erode the groundwall insulation much more quickly than slot discharges. Unlike the normal loose coil/slot discharge failure process, spark erosion can happen anywhere in the winding, and not just in stator bars that are operating at high voltage. This paper describes the vibration sparking failure process, which seems to require that the partly conductive slot coating must be much more conductive than normal; and that the coil or bar must be loose in the slot and vibrating under the 100/120 Hz magnetic forces.
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