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Simulation of a Two-Turn Railgun and Comparison Between a Conventional Railgun and a Two-Turn Railgun by 3-D FEM

机译:3-D有限元法模拟两转Rail弹枪及常规两转Rail弹枪的比较

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The use of a multiturn railgun is a method for decreasing the current without reducing the electromagnetic force on the projectile. The objective of this paper is to study a novel multiturn railgun that can launch several separated projectiles launching synchronously or asynchronously. In addition to distributing the force on the projectiles, this method prepares the projectiles to be launched in time. The railgun has two barrels stacked in series and is powered by one pulse power supply. In this paper, by using a finite-element method, we simulate a 3-D railgun. The projectiles are in different positions. It is investigated by obtaining the self-inductance gradient and mutual inductance gradient for each position of armatures by which time of launch can be regulated through changing the configuration of the launcher. In addition, we explore how the launching time is directly proportional to the propulsive force, their relation and its limitation by the rails and armatures geometry, armatures initial positions, and armatures mass and material. Finally, with simulation results, we conclude that a two-turn railgun has a higher effective inductance gradient than a simple railgun.
机译:使用多圈轨道炮是一种在不减小弹丸上电磁力的情况下减小电流的方法。本文的目的是研究一种新型的多回转轨道炮,它可以发射几个分离的弹丸,这些弹丸可以同步或异步发射。除了在弹丸上分配力外,此方法还可以准备弹丸的及时发射。轨道炮有两个串联堆叠的枪管,由一个脉冲电源供电。在本文中,通过使用有限元方法,我们模拟了3-D轨道炮。弹丸处于不同位置。通过获取电枢每个位置的自感梯度和互感梯度来进行研究,通过改变发射器的配置可以调节发射时间。此外,我们探索发射时间如何与推进力成正比,它们之间的关系及其受铁轨和电枢几何形状,电枢初始位置以及电枢质量和材料的限制。最后,根据仿真结果,我们得出结论,两转式步枪的有效电感梯度要比简单的步枪高。

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