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Comparison of performances between stack and plane turn-augmented railgun

机译:叠加式和平面式增力式电磁炮的性能比较

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For stacked double-rail turn-augmented railgun, two pairs of sub-rails are stackedand. Each pair of sub-rails provide guidance for one armature, and the two armatures push forward together one projectile. While for plane single-rail turn-augmented, the augmented turns are arranged outside the main rails where one armature is placed. Since the existence of mutual inductance, launch performance of two types of railguns has enhanced. Inductance gradient (L') is an important parameter in studying electromagnetic launch. Using 3D eddy current field finite element method, total inductance gradient (self inductance gradient and mutual inductance gradient) of these two types of railguns is analyzed and calculated. Results show that inductance gradient depends on armatures' position, especially at breech nearby. Put the results into launch process simulations, and the quality of two armatures in stacked doule-rail turn-augmented railgun and one armature in plane single-rail turn-augmented railgun, the friction and the initial position of armatures are the same. Compare electromagnetic launch of these two types of railguns by ultimate calculation results, the former is obviously better than the latter.
机译:对于堆叠式双轨加长型轨道枪,需要堆叠两对子轨。每对子导轨为一个电枢提供引导,并且两个电枢将一个弹丸一起向前推动。对于平面单轨转弯增强型,增强型转弯布置在放置一个电枢的主轨外侧。由于存在互感,因此两种电磁炮的发射性能得到了增强。电感梯度(L')是研究电磁发射的重要参数。使用3D涡流场有限元方法,对这两种类型的轨道炮的总电感梯度(自感梯度和互感梯度)进行了分析和计算。结果表明,电感梯度取决于电枢的位置,特别是在附近的臀位。将结果放入发射过程仿真中,在叠置式双轨加长型轨道炮中两个电枢的质量和在平面单轨加长型轨道炮中的一个电枢的质量,电枢的摩擦力和初始位置是相同的。通过最终计算结果比较这两种类型的电磁炮的电磁发射,前者明显优于后者。

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