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首页> 外文期刊>International journal of impact engineering >Stress Analysis Of The Rails Of A New High Velocity Armature Design In An Electromagnetic Launcher
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Stress Analysis Of The Rails Of A New High Velocity Armature Design In An Electromagnetic Launcher

机译:电磁发射器中新型高速电枢设计导轨的应力分析

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In an electromagnetic launcher, the magnetic field creates a dynamic force that moves the armature forward. In an electromagnetic launcher, the armature reaches a critical velocity during the launch which causes high amplitude stress and strain. In addition, high stress and strain damage the rails and reduces its life span. The purpose of this paper is to investigate the effect of armature velocity as well as the rails physical and geometrical properties on the dynamic response of the rails in an electromagnetic launcher. In this study the second moment of inertia of the rails cross-section, Young modulus, foundation stiffness and density of the rails are constant in location and time. In our formulation of governing non-linear differential equations, Maxwell equations and deflection equation are applied to the rails under dynamic loading. To solve the non-linear governing differential equations a finite difference method is utilized.
机译:在电磁发射器中,磁场产生的动力使电枢向前移动。在电磁发射器中,电枢在发射过程中达到临界速度,这会导致高振幅应力和应变。另外,高应力和应变会损坏导轨并缩短其使用寿命。本文的目的是研究电枢速度以及导轨的物理和几何特性对电磁发射器中导轨动态响应的影响。在这项研究中,钢轨截面的第二惯性矩,钢轨的杨氏模量,地基刚度和密度在位置和时间上都是恒定的。在我们制定的控制非线性微分方程的公式中,将麦克斯韦方程和挠度方程应用于动载荷下的轨道。为了求解非线性控制微分方程,采用了有限差分法。

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