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The effects of projectile injection on rail ablation in arc-driven railguns

机译:射弹注射对电弧驱动轨道炮中的轨道烧蚀的影响

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The effects of the projectile injection velocity on the rail ablation in a plasma arc driven railgun have been experimentally studied in this paper. The round bore of the railgun has a calibre of 16 mm and length of 0.6 m. The rails and the insulators were made of copper and fiber-glass epoxy, respectively. A helium gas gun was used as the injector which is able to accelerate a projectile of 8 gram to the velocities of 900 m/s. The barrel was connected to the breech of the railgun through an insulated section where two wires were installed to measure the injection velocity of projectile. The experimental results show that the ablation of copper rails can be markedly reduced if the projectile is injected at a velocity greater than 500 m/s. In addition, the current dependence of ablated mass of the rail has been examined for the experimental data without injection. It is concluded that the ablated mass is basically proportional to the peak current density through the rails.
机译:本文通过实验研究了等离子弧驱动轨道炮中弹丸注射速度对轨道烧蚀的影响。轨道枪的圆孔直径为16 mm,长度为0.6 m。导轨和绝缘子分别由铜和玻璃纤维环氧树脂制成。使用氦气枪作为喷射器,该喷射器能够将8克的弹丸加速至900 m / s的速度。枪管通过绝缘部分连接到电磁炮的枪膛,在绝缘部分安装了两条线以测量弹丸的注入速度。实验结果表明,如果以大于500 m / s的速度注入弹丸,则可以显着减少铜轨的烧蚀。另外,已经检查了轨道的烧蚀质量对电流的依赖性,以获取没有注入的实验数据。结论是,烧蚀质量基本上与通过轨道的峰值电流密度成正比。

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