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首页> 外文期刊>IEEE Transactions on Magnetics >Dynamic Response and Armature Critical Velocity Studies in an Electromagnetic Railgun
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Dynamic Response and Armature Critical Velocity Studies in an Electromagnetic Railgun

机译:电磁轨道炮的动力响应和电枢临界速度研究

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摘要

A model is developed to investigate the dynamic response of an electromagnetic railgun structure, induced by a moving magnetic pressure during launch of projectiles. When railgun armature velocity achieves critical velocity, resonance in railgun can occur and cause high amplitude stress and strain in armatures passage and causes life decreasing and damaging in rails. Critical velocity can be considered as one of the railgun dynamic design parameters. In this study, governing equations for rails under dynamic loading conditions has been investigated. Armature critical velocity according to design parameters has also been studied. The results show that dynamic response of the EM barrel becomes critical for increased projectile velocity and lightweight barrel designs. Also, the results of numerical simulation of the bore deformation are presented in this paper under applied loads. The algorithm is used to study the dynamics of tensile stresses near the electrode surface. Accordingly, the model that accounts for projectile velocity and gun construction can be used to guide and improve barrel design
机译:开发了一个模型来研究电磁轨道枪结构的动态响应,该结构是由弹丸发射过程中的移动磁压力引起的。当电磁炮的电枢速度达到临界速度时,电磁炮中的共振会发生,并在电枢通过时引起高振幅应力和应变,并导致铁轨的寿命缩短和损坏。临界速度可以被认为是轨道炮动态设计参数之一。在这项研究中,研究了在动态载荷条件下轨道的控制方程。还研究了根据设计参数的电枢临界速度。结果表明,EM枪管的动态响应对于提高弹丸速度和轻型枪管设计至关重要。此外,本文还给出了在载荷作用下孔变形的数值模拟结果。该算法用于研究电极表面附近的拉应力的动力学。因此,考虑弹丸速度和枪支构造的模型可用于指导和改进枪管设计

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