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Simulations, Experiments, and Launch Characteristics of a Multiturn Series–Parallel Rail Launcher

机译:多匝串联式平行轨道发射器的仿真,实验和发射特性

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In order to markedly improve the inductance gradient of electromagnetic (EM) railgun and current-carrying capacity of the armature, and enhance the ability to launch large mass projectiles, a system simulation analysis and preliminary experiments were carried out for the multiturn series-parallel rail launcher (MSPRL). First, the Simulink simulation model of the rail launcher system based on the circuit model was established, and the changing rules of current waveforms and armature velocities under different contact resistances were obtained. Then, an EM-structural multiphysics fields coupling model is constructed, with the supplied currents obtained earlier, the EM propelling force on the armature as well as contact force between the armature and rails were analyzed. In view of those analyses, the inductance gradient and armature velocity in bore were calculated. Finally, the test platform of the MSPRL was built to carry out preliminary verification experiments of relevant parameters. During the test, the muzzle impedance and muzzle velocity were measured, and the validities of the simulation models were verified.
机译:为了显着提高电磁轨道炮的电感梯度和电枢的载流能力,增强发射大质量弹丸的能力,对多匝串联-平行轨道进行了系统仿真分析和初步实验。发射器(MSPRL)。首先,基于电路模型建立了轨道发射系统的Simulink仿真模型,得到了不同接触电阻下电流波形和电枢速度的变化规律。然后,建立了一个EM-结构多物理场耦合模型,利用较早获得的电流,分析了EM在电枢上的推进力以及电枢与铁轨之间的接触力。鉴于这些分析,计算了孔中的电感梯度和电枢速度。最后,搭建了MSPRL的测试平台,对相关参数进行了初步的验证实验。在测试过程中,测量了枪口阻抗和枪口速度,并验证了仿真模型的有效性。

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