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Ultra-stiff, low mass, EM gun design

机译:超硬,轻巧的EM喷枪设计

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摘要

High performance in an electromagnetic (EM) gun implies high velocity with minimal transition from a solid to plasma armature. Factors that affect gun performance include armature integrity, bore straightness and bore stiffness. Experiences firing solid armature at CEM-UT since 1987 have shown that the lack of one or more of these three ingredients will result in less than desirable performance. This paper presents a simple, ultra-stiff and low mass EM gun design that provides five to six times the rail-to-rail structural stiffness than a conventional bolted, composite sidewall-type EM gun construction. This translates into minimal bore deflection which lessens the amount the armature must distort to maintain a low voltage contact with the rails. The EM gun design incorporates a passive preloading mechanism that maintains a compressive stress state in the bore components without the use of hydraulics. Bore preload is provided that exceeds the maximum rail-to-rail EM loads and is reacted by a composite structure that also provides longitudinal barrel stiffness. Manufacturing techniques are presented that would allow the design to be built on a small or large scale using standard manufacturing tolerances and demonstrated assembly processes. Material selection and impact on the ability to actively cool a railgun is also presented.
机译:电磁(EM)喷枪的高性能意味着在从固态电枢到等离子电枢的过渡过程中具有最小的高速。影响喷枪性能的因素包括电枢的完整性,孔的直线度和孔的刚度。自1987年以来在CEM-UT发射固体电枢的经验表明,缺少这三种成分中的一种或多种会导致性能不理想。本文介绍了一种简单,超硬且重量轻的EM喷枪设计,与传统的螺栓固定,复合侧壁型EM喷枪结构相比,其轨对轨结构刚度提供了五到六倍。这转化为最小的孔挠度,从而减少了电枢必须变形以保持与轨道的低压接触的量。 EM喷枪的设计采用了被动式预加载机制,该机制可在不使用液压装置的情况下保持孔组件中的压缩应力状态。所提供的缸孔预载荷超过了最大的轨到轨EM载荷,并且由复合结构反作用,该复合结构还提供了纵向的枪管刚度。提出了制造技术,该技术将允许使用标准制造公差和演示的组装过程以小规模或大规模构建设计。还介绍了材料选择以及对主动冷却喷枪的能力的影响。

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