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A Four-Stage XRAM Generator as Inductive Pulsed Power Supply for a Small-Caliber Railgun

机译:四级XRAM发生器作为小口径Railgun的感应脉冲电源

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A four-stage XRAM generator is built and then applied to a railgun having a caliber of 15 $,times,$15 mm. The XRAM generator is based on 1-mH Brooks coils and on standard high-power thyristors which are employed as opening switches according to the ICCOS countercurrent commutation principle. The coils of the generator are charged with a current of 10 kA, which corresponds to an energy of 200 kJ. The current is successfully commutated and a pulse with a maximum current of 40 kA is applied to the railgun. Consequently, a projectile with a total weight of 33 g is accelerated to 157 m/s within the railgun length of 2.1 m. The semiconductor switches are exposed to a steep voltage rise due to the muzzle flash when the projectile leaves the railgun without their critical limit being exceeded. Thus, the successful operation of the XRAM generator using semiconductor switches during railgun experiments is demonstrated. Furthermore, we are able to show in a further experiment that the muzzle flash of the railgun can be significantly reduced by switching the XRAM back into charging mode when the projectile leaves the bore. This method also allows the conservation of the energy that remains in the coils after the exit of the projectile from the railgun.
机译:内置一个四级XRAM生成器,然后将其应用于口径为15毫米的轨道枪。<口径公式类型=“ inline”> $,times,$ 15 mm 。 XRAM发生器基于1-mH Brooks线圈和标准大功率晶闸管,根据ICCOS逆流换向原理,它们用作断开开关。发电机的线圈以10 kA的电流充电,这相当于200 kJ的能量。电流已成功换向,并且将最大电流为40 kA的脉冲施加到喷枪。因此,总重量为33 g的弹丸在2.1 m的射弹枪长度内加速​​到157 m / s。当弹丸离开弹丸枪时,由于枪口闪光,半导体开关会承受急剧的电压上升,而不会超出其临界极限。因此,证明了在轨道枪实验期间使用半导体开关的XRAM发生器的成功运行。此外,我们能够在进一步的实验中证明,当弹丸离开膛孔时,通过将XRAM切换回充电模式,可以大大减少轨道炮的枪口闪光。该方法还允许节省从弹枪离开弹丸后保留在线圈中的能量。

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