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首页> 外文期刊>IEEE Transactions on Magnetics >Dynamic Response of Cantilevered Rail Guns Attributed to Projectile/Gun Interaction—Theory
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Dynamic Response of Cantilevered Rail Guns Attributed to Projectile/Gun Interaction—Theory

机译:弹丸/枪相互作用对悬臂式轨道炮的动力响应—理论

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摘要

An analytic approach is proposed to investigate the dynamic behavior of laboratory rail guns resulting from launching a projectile. The rail gun is modeled as a beam of finite length sitting on an elastic foundation with cantilevered support at the breech end of rails. The structural response of the rail is governed by a transient fourth-order differential equation with an extra term of elastic support (containment and insulator) subjected to a transient forcing function (a moving magnetic pressure). The complete solution of the governing equation is derived and illustrated in details. The displacement solution can be further derived to obtain strain and stress profile as well as dynamic response of the rail gun. This paper mainly reports the theoretic solution which provides a step forward to predict the dynamic behavior of rail guns
机译:提出了一种分析方法来研究由于发射弹丸而导致的实验室轨道炮的动态行为。轨道炮的模型是有限长度的梁,它坐在弹性地基上,并在轨道的后膛端悬臂支撑。轨道的结构响应由瞬态四阶微分方程控制,该方程具有额外的弹性支撑(围护结构和绝缘体),其受瞬态强迫作用(移动的磁压力)影响。导出并详细说明了控制方程的完整解。可以进一步得出位移解,以获得应变和应力分布以及轨道炮的动态响应。本文主要介绍了理论解决方案,为预测轨道炮的动态行为提供了向前的一步

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