The Use of Electronic Components in Railgun Projectiles

R. Ciolini, M. Schneider, B. Tellini
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引用次数: 19

Abstract

This paper deals with experiments and calculations performed in order to investigate the influence of the electromagnetic hardening of payloads in a railgun. This is a complex task: besides the large amplitudes of the in-bore magnetic fields due to the pulsed current, the exit of the projectile from the muzzle and the consequences of plasma arcs have to be considered. At the muzzle the magnetic induction can drop from several Teslas to zero within some microseconds, leading to very high induced voltages and electric fields in the metallic parts of the projectile. On the other hand, the electric contact established by solid armatures tends to develop into electric arcs at high velocities during the launch. These plasma arcs as well as the closing switch transients of the railgun circuit are a source of electromagnetic radiation in a broad spectral range. Some electronic devices were selected and tested with static setups corresponding to the previous conditions. In a first phase a series of static railgun experiments (no projectile movement) was performed. In a second phase, static experiments simulating the muzzle exit conditions were carried out. Finally, the influence of electromagnetic waves emitted during railgun experiments on electronic devices was investigated, using a static setup with a conventional spark gap.
电子元件在轨道炮弹丸中的应用
本文对轨道炮有效载荷电磁硬化的影响进行了实验和计算。这是一项复杂的任务:除了脉冲电流引起的膛内磁场的大振幅外,还必须考虑弹丸从炮口出口和等离子弧的后果。在炮口处,磁感应强度可以在几微秒内从几个特斯拉降至零,从而在弹丸的金属部分产生非常高的感应电压和电场。另一方面,在发射过程中,由固体电枢建立的电接触往往在高速下发展成电弧。这些等离子弧以及轨道炮电路的闭合开关瞬态是宽光谱范围内电磁辐射的来源。选择了一些电子设备,并在与上述条件相对应的静态设置下进行了测试。在第一阶段进行了一系列静态轨道炮实验(无弹丸运动)。第二阶段进行了模拟炮口出口条件的静态实验。最后,研究了轨道炮实验过程中发射的电磁波对电子器件的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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