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Analysis of Transient Current Distribution in Copper Strips of Different Structures for Electromagnetic Railgun

机译:电磁炮枪不同结构铜带中的瞬态电流分布分析

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摘要

A railgun is a kind of new-concept kinetic energy weapon. To overcome the local aggregation of the high pulse current on the surface of the railgun conductor, a method was introduced to abate the skin effect. On the basis of theoretical analysis, three kinds of methods were adopted to increase the current uniformity coefficient. Then, the copper strips, whose thicknesses were 40, 20, 15, and 10 mm, respectively, were simulated with a typical half-period sine waveform that had a 10-ms pulsewidth and a 2-MA peak current. The best current uniformity coefficient in the copper strips is more than 83%. Three conclusions are drawn in this paper. First, under the same conditions, the current distribution will become more uniform as the copper strips become thinner. Second, the current distribution can be improved to a certain extent by rounding strip edges. Third, the added tungsten sheaths or iron sheaths on both sides of the copper strips can further improve the current distribution. The results of this paper have great significance for improving the pulse current-carrying capability of the railgun conductors.
机译:rail弹枪是一种新概念的动能武器。为了克服高脉冲电流在轨道枪导体表面上的局部聚集,引入了一种减轻趋肤效应的方法。在理论分析的基础上,采用三种方法提高电流均匀性系数。然后,用典型的半周期正弦波形模拟厚度分别为40、20、15和10 mm的铜条,该正弦波形的脉冲宽度为10毫秒,峰值电流为2 MA。铜带中的最佳电流均匀性系数大于83%。本文得出三个结论。首先,在相同条件下,随着铜带变薄,电流分布将变得更加均匀。第二,通过使带状边缘变圆可以在一定程度上改善电流分布。第三,在铜带的两侧增加钨护套或铁护套可以进一步改善电流分布。本文结果对提高轨道炮导体的脉冲载流能力具有重要意义。

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