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Design and evaluating the driving coil on induction coilgun

机译:感应线圈上的驱动线圈设计和评估

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The driving coils in the synchronous induction coilgun are stacked end-to-end forming a barrel. During the launching, the pulsed current flows through the driving coil, the magnetic force propel the projectile. The driving coil endures not only the outward radial force because of the magnetic flux compression, but also the axial force. In the process of designing the coil, the mechanical strength and electrical insulation should be both considered. Due to the nonlinear of insulation materials, the theoretical calculation can not reflect the true state for the driving coil. The static-state test method is analyzed and verified through experiments. The experimental results show that this method is effective in certain extent, but it neglects the axial counterforce and does not reflect the true state of launching. An improved method for evaluating the coil strength is proposed based on the analysis of the basic principle. The projectile is accelerated by the former stages, and the test coil accelerates the projectile with the initial speed. This method could test the coil mechanical strength and electrical insulation effectively similar to the practical launching. An equipment for single coil is designed based on the existing multi-stage coilgun and placed in the muzzle of the barrel. The coils is tested, and the experimental result shows that this equipment is convenient to install and detach the coil and could evaluating different types of the coil, it can reflect the true dynamic characteristics for the single coil. The structure of the driving coil could be improved combined with the dynamic-state testing and evaluating, which provide experimental reference for the mutli-stage induction coilgun design.
机译:同步感应线圈罩中的驱动线圈堆叠端到端形成桶。在发射期间,脉冲电流流过驱动线圈,磁力推动射弹。由于磁通量压缩,驱动线圈不仅耐径向力,而且是轴向力。在设计线圈的过程中,应考虑机械强度和电绝缘。由于绝缘材料的非线性,理论计算不能反映驱动线圈的真实状态。通过实验分析和验证静态测试方法。实验结果表明,这种方法在一定程度上有效,但它忽略了轴向反应,并不反映了发射的真实状态。提出了一种评估线圈强度的改进方法,基于基本原理的分析。射弹由前阶段加速,测试线圈以初始速度加速射弹。该方法可以测试线圈机械强度和电绝缘,有效地类似于实际发射。根据现有的多级线圈设计,设计了一种单线线圈,并放置在枪管的枪口中。测试线圈,实验结果表明,该设备安装和拆卸线圈,可以评估不同类型的线圈,可以反映单线线圈的真正动态特性。驱动线圈的结构可以改善与动态状态测试和评估相结合,这为Mutli-Diage Induction Coilgun设计提供了实验参考。

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