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Effects of Armature Height and Position on the Performance of Induction Coil Launcher

机译:电枢高度和位置对感应线圈发射器性能的影响

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Induction coil launcher (ICL) is an electromagnetic accelerator that uses Lorentz force to accelerate a projectile with a conducting armature. In this paper, the effects of the height and starting position of the armature on the performance of the ICL were analyzed. Launching experiments were conducted to verify the analysis results. The speed of the projectile converged to a saturated value as the armature height increased. We found that there exists an optimal starting position of the armature for the highest speed. The concept of inductance gradient was adopted to explain the analysis results. It was possible to predict the acceleration characteristics and to estimate the optimal starting position using this concept. Results show that the armature height should be longer than the drive coil height ( , and the bottom of the armature should be positioned between and at the start to obtain the highest speed. The experimental results showed good agreement with the simulation analysis results.
机译:感应线圈发射器(ICL)是一种电磁加速器,利用洛伦兹力通过导电电枢使弹丸加速。本文分析了电枢的高度和起始位置对ICL性能的影响。进行了发射实验以验证分析结果。随着电枢高度的增加,弹丸的速度收敛到饱和值。我们发现,对于最高速度,存在电枢的最佳起始位置。采用电感梯度的概念来解释分析结果。使用此概念可以预测加速度特性并估计最佳起始位置。结果表明,电枢的高度应大于驱动线圈的高度(,电枢的底部应位于中间和开始时才能达到最高速度,实验结果与仿真分析结果吻合良好。

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