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Comparative Study of Railgun Housings Made of Modern Fiber Wound Materials, Ceramic, or Insulated Steel Plates

机译:现代纤维缠绕材料,陶瓷或绝缘钢板制成的轨道枪壳体的比较研究

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摘要

The acceleration in electromagnetic railguns of projectiles with a mass of several hundreds of grams up to velocities ranging between 2000 and 3000 m/s requires currents with intensities of several megamperes. In ISL rail launchers, the repulsion forces created by these currents acting on the rails can reach values in the order of 20 MN/m. The housing of the launcher has to withstand these high mechanical stresses to maintain the rails in position and thus to keep the caliber constant. In this paper, a comparative study of different possibilities of housings is presented. The limits of the actual fiber wound materials are shown and a selection of new insulating materials capable of withstanding the mechanical stresses is given. We also present the concept of a housing made of insulated steel plates allowing a good mechanical stiffness combined with a minimum loss due to eddy currents in steel. In particular, we show that the good mechanical behavior of the steel plate housing makes it possible to reach the same overall efficiency as that obtained with a fiber-wound material housing.
机译:质量为几百克的射弹电磁轨道枪的加速度直至2000至3000 m / s的速度,都需要具有几兆安的强度的电流。在ISL轨道发射器中,由这些作用在轨道上的电流产生的排斥力可以达到20 MN / m的量级。发射器的外壳必须承受这些高机械应力,以将导轨保持在适当的位置,从而保持口径恒定。在本文中,对住房的各种可能性进行了比较研究。显示了实际纤维缠绕材料的极限,并给出了能够承受机械应力的新型绝缘材料的选择。我们还提出了一种由绝缘钢板制成的壳体的概念,该壳体具有良好的机械刚度,并且由于钢中的涡流而具有最小的损耗。特别是,我们表明,钢板外壳的良好机械性能使其有可能达到与纤维缠绕材料外壳相同的整体效率。

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