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首页> 外文期刊>IEEE Transactions on Plasma Science >Ultimate Kinematic Characteristics of Rail Electromagnetic Launchers With an External Magnetic Field
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Ultimate Kinematic Characteristics of Rail Electromagnetic Launchers With an External Magnetic Field

机译:具有外部磁场的轨道电磁发射器的极限运动学特性

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The thermal limitations due to the circuit current are the major factors preventing the attainment of high projectile velocities and acceptable service life of railguns. To reduce the thermal load on the rails and armatures, it is necessary to reduce the amount of current flowing through them, but this decreases the electromagnetic accelerating force and limits the maximum velocities of projectiles of a given mass at a predefined acceleration distance. One method of lowering the current without reducing the electromagnetic force on the projectile is to use a railgun with augmenting rails. This paper presents the results of 3-D numerical simulations of the Joule heating of armatures and rails in railguns with one and two pairs of augmenting rails. The objective of this paper is to reduce the rate of Joule heating of armatures during acceleration and to increase the ultimate (under heating conditions) kinematic characteristics of the railguns by choosing the optimal configuration of the outer turns and optimizing the current pulse in the augmenting rails. The ultimate projectile velocities are obtained when the Joule heating of the rails and armature by electric current during the shot does not tend to increase the temperature at any point of the railgun above the melting point of the rail and armature materials. It is shown that by controlling the position and total current in the augmenting rails, it is possible to significantly reduce the thermal limitations during high-velocity electromagnetic acceleration of solids and increase the ultimate kinematic characteristics of railguns in crisis-free acceleration regimes.
机译:电路电流引起的热限制是阻碍实现高射弹速度和电磁炮可接受使用寿命的主要因素。为了减少在铁轨和电枢上的热负荷,有必要减少流过它们的电流量,但这会减小电磁加速力并限制给定质量的弹丸在预定加速距离下的最大速度。在不减小弹丸上电磁力的情况下降低电流的一种方法是使用带有增强轨道的rail弹枪。本文介绍了具有一对和两对增强导轨的电喷枪的电枢和导轨的焦耳热的3-D数值模拟结果。本文的目的是通过选择外圈的最佳配置并优化增强导轨中的电流脉冲,来降低电枢在加速过程中的焦耳加热速率,并提高枪炮的最终(在加热条件下)运动学特性。 。当弹丸过程中电流对铁轨和电枢的焦耳热不会使轨炮的任何点处的温度升高到高于铁轨和电枢材料的熔点以上时,将获得最终的弹丸速度。结果表明,通过控制增强导轨中的位置和总电流,可以显着降低固体在高速电磁加速过程中的热量限制,并可以在无危机的加速状态下提高喷枪的最终运动学特性。

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