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In-bore stiffness considerations for electromagnetic projectile armatures and boreriders

机译:电磁射弹电枢和镗孔的孔内刚度考虑因素

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Experience with conventional tank cannons has shown that interaction between a projectile and gun bore determines the projectile muzzle exit conditions which greatly influences the subsequent out-of-bore flight and terminal accuracy. Significant effort has been devoted to examining this phenomenon and has led to the development of models capable of predicting the in-bore dynamic characteristics of projectile/tube interactions. These models have shown that the relative stiffness of the projectile boreriding surfaces can be a deterministic factor of the resulting in-bore motion. The armature of an EM projectile must serve a dual role, namely, provide a current path across the rails while also providing lateral support during the launch. This presents a conflict for the EM projectile designer who must ensure an armature stiff enough to maintain rail contact, yet have sufficient "spring" to absorb lateral disturbances imparted by the gun barrel. This paper reports the results of an in-bore dynamic analysis which examined the effects of varying armature and borerider stiffness. Analysis runs were conducted with a SLEKE II projectile model launched from the Task B railgun. The analysis found that maintaining equivalent contact stiffnesses for the boreriders of a saddleback sabot, such as the SLEKE II, minimizes the difference in transverse acceleration between the two contacts, thus reducing projectile in-bore balloting.
机译:传统坦克大炮的经验表明,弹丸和炮膛之间的相互作用决定了弹丸的枪口出口条件,这极大地影响了随后的膛外飞行和终端精度。已经致力于研究这种现象,并导致能够预测弹丸/管子相互作用的孔内动态特性的模型的开发。这些模型表明,抛射弹孔表面的相对刚度可能是导致钻孔运动的确定因素。 EM弹丸的电枢必须起双重作用,即提供跨轨的电流路径,同时还要在发射期间提供侧向支撑。这给EM弹丸设计者带来了冲突,他们必须确保电枢足够坚硬以保持导轨接触,同时具有足够的“弹簧”来吸收由枪管施加的横向干扰。本文报告了孔内动态分析的结果,该分析检查了电枢和镗孔刚度变化的影响。使用从Task B轨道炮发射的SLEKE II射弹模型进行了分析。分析发现,为鞍背式防撞器(如SLEKE II)的防盗装置保持等效的接触刚度,可最大程度地减小两个触点之间的横向加速度差异,从而减少弹丸的内投票。

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