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Spatial Movement Analysis on the Intercepting Projectile in the Active Electromagnetic Armor

机译:主动电磁装甲中拦截弹的空间运动分析

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摘要

Active electromagnetic armor is a new kind of concept armor that integrates active defense and electromagnetic launch technology. During launching, the spatial movement of the intercepting projectile determines the intercepting probability for attacking the coming targets. For two perpendicular pancake coils, the intercepting projectile can be launched in different directions by changing the trigger times controlled by two switches. In this paper, a field-circuit coupled model of a two coil launcher is built first. When two coils are discharged simultaneously, the intercepting projectile is directed at the angular bisector of two coils. The eddy current in the intercepting projectile is mainly distributed near the coils, and the current density decreases dramatically along the normal direction of the surface. For different trigger times, the intercepting projectile moves in both types: linear and rotation. The moving characteristic on the intercepting projectile is analyzed. If the electromagnetic force is not exerted on the mass center along the movement of the intercepting projectile, the spatial movement may be changed. Based on the simulation results, a steerable launcher has been built. Three typical experimental results for the simultaneous discharge launching are shown under the same condition. The spatial movements for steerable launching at the simultaneous time and delay time of 1 ms are measured by the high speed camera. Compared with the experimental results, the simulation results are validated. It provides the reference for launching the projectile to intercept the coming targets.
机译:主动电磁装甲是一种将主动防御和电磁发射技术相结合的新型概念装甲。在发射过程中,拦截弹的空间运动确定了攻击即将来临的目标的拦截概率。对于两个垂直的煎饼线圈,通过更改由两个开关控制的触发时间,可以向不同方向发射拦截弹。本文首先建立了两线圈发射器的场-电路耦合模型。当两个线圈同时放电时,拦截弹指向两个线圈的角平分线。拦截弹中的涡流主要分布在线圈附近,电流密度沿表面法线方向急剧减小。对于不同的触发时间,拦截弹的运动方式为线性和旋转两种。分析了拦截弹的运动特性。如果电磁力没有沿着拦截弹的运动施加在质心上,则空间运动可能会发生变化。根据仿真结果,构建了可操纵的发射器。在相同条件下显示了同时放电启动的三个典型实验结果。高速摄像机测量了在同时进行的时间和1 ms的延迟时间可控发射的空间运动。与实验结果比较,对仿真结果进行了验证。它为发射弹头拦截即将来临的目标提供了参考。

著录项

  • 来源
    《Plasma Science, IEEE Transactions on》 |2017年第7期|1302-1307|共6页
  • 作者单位

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

    Northwest Institute of Mechanical and Electrical Engineering, Xianyang, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Projectiles; Coils; Electromagnetic forces; Integrated circuit modeling; Discharges (electric); Delays;

    机译:弹丸;线圈;电磁力;集成电路建模;放电(电);延迟;

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