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Final design of an air core, compulsator driven, 60 caliber railgun system

机译:空心驱动器驱动的60口径声炮系统的最终设计

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The manufacturing phase of a laboratory-based small-caliber electromagnetic (EM) launcher and compulsator power supply is discussed. The objective of the 29-month program is to develop a compact, lightweight test bed capable of accelerating 32 g masses to 2 km/s at a rate of 10 Hz. Both the power supply and launcher feature significant component design advances which will allow the system to operate at considerably higher energy and power densities than previously demonstrated. The 750 kg compulsator will generate 2.2 kV and the silicon-controlled rectifier (SCR) switch will commutate 386 kA pulses into the 1.6-m long, 0.60 caliber augmented solid armature railgun. The final design and predicted operating characteristics of the compulsator system are described. Overall system performance parameters are reported, including results from the optimization code used to aid in the design of the compulsator system. A system design overview is presented, with emphasis on new materials and state-of-the-art machine components to be used for the first time in a compulsator.
机译:讨论了基于实验室的小口径电磁(EM)发射器和强制器电源的制造阶段。这个为期29个月的计划的目的是开发一种紧凑,轻便的测试台,该测试台能够以10 Hz的速度将32 g的质量加速到2 km / s。电源和发射器都具有显着的组件设计优势,这将使系统能够以比以前演示的更高的能量和功率密度运行。 750千克的强制脉冲发生器将产生2.2 kV的电压,可控硅(SCR)开关会将386 kA脉冲转换为1.6米长,0.60口径增强型实心电枢轨道炮。描述了该强制系统的最终设计和预测的运行特性。报告了整个系统的性能参数,包括用于优化强制系统的优化代码的结果。介绍了系统设计概述,重点介绍了新材料和最先进的机械零件,这些零件将首次在强制执行器中使用。

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