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Effect of Rail Dimension on Current Distribution and Inductance Gradient

机译:轨道尺寸对电流分布和电感梯度的影响

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摘要

The railgun is one of the most important electromagnetic launchers that can accelerate a projectile to hypervelocity. Current distribution in railgun structure is the effective factor that determines its efficiency. Current density is affected by rails and armature geometry and dimensions. This paper investigates how the rails dimensions and spaces affect the current density distribution, magnetic flux density, and inductance gradient (L′). L′ plays an important role in the performance of an electromagnetic launcher (EML), and it determines directly the force that accelerate projectile. Finally, L′ for various dimensions are tabulated and compared with values obtained from other methods. A finite-element method is discussed to simulate a two-dimensional railgun in this study.
机译:轨道炮是最重要的电磁发射器之一,可以将弹丸加速至超高速。轨道炮结构中的电流分布是决定其效率的有效因素。电流密度受铁轨,电枢几何形状和尺寸的影响。本文研究了铁轨的尺寸和间距如何影响电流密度分布,磁通密度和电感梯度(L')。 L'在电磁发射器(EML)的性能中起着重要作用,它直接确定加速弹丸的力。最后,将各种尺寸的L'制成表格,并与从其他方法获得的值进行比较。本研究讨论了一种有限元方法来模拟二维轨道炮。

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