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Analysis of the launching performance under melting restriction for electromagnetic launcher

机译:电磁发射器熔化限制下的发射性能分析

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Electromagnetic launcher based on it hypervelocity projectile of the cannonball has a bright application prospect in military. In this paper, an optimization of the structure of the armature and rails based on velocity skin effect (VSE) and the Short Path Priority (SPP) has been performed by means of the current density distribution of electromagnetic launcher model stimulated by software Maxwell 14.0. Moreover, a finite element method through Impedance matrix is applied to calculate the the inductance gradient of rails. According to this value and the theory of electromagnetic launcher, the theoretical muzzle velocity of projectile and acceleration distance with different load conditions are analyzed. It also finds that there is inversely — proportional relationship between the muzzle velocity and the mass of the projectile with no consideration of frictional force between the armature and rails. These results have reference significance for analysis of electromagnetic launcher about its best performance and the prospect on military application.
机译:基于炮弹的超高速弹丸的电磁发射器在军事上具有广阔的应用前景。本文利用Maxwell 14.0软件激发的电磁发射器模型的电流密度分布,对基于速度趋肤效应(VSE)和短路径优先级(SPP)的电枢和铁轨结构进行了优化。此外,通过阻抗矩阵的有限元方法被应用于计算钢轨的电感梯度。根据该值和电磁发射器理论,分析了不同载荷条件下弹丸的理论炮口速度和加速度距离。还发现,在不考虑电枢和铁轨之间的摩擦力的情况下,炮口速度与弹丸质量之间成反比关系。这些结果对于分析电磁发射器的最佳性能和军事应用前景具有参考意义。

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