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首页> 外文期刊>International journal of impact engineering >Novel penetrator study for defeat of ballistic missile payloads
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Novel penetrator study for defeat of ballistic missile payloads

机译:新型穿透器研究,可消除弹道导弹的有效载荷

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摘要

Aimable kinetic energy rod (KER) warheads are one of the most efficient types of kill enhancement concepts for missile interceptors that exist today. This is because these devices contain minimal explosive, allowing most of its warhead weight to be designed as lethal penetrators. These projectiles are deployed at low velocity and rely on the relative velocity for the penetration power. Static rod deployment testing was performed to investigate the spatial distribution of the spray pattern as well as its deployment velocity. Raytheon's test program deployed over 900 hexagon and cruciform rods in order to understand the physics of their deployment. In conjunction with deployment tests, novel penetrator studies were conducted , that determined that novel projectiles are better penetrators when compared with traditional cylindrical rods. A new endgame simulation was developed that predicts damage from closely spaced tumbling rods. This new simulation predicts the synergistic effects from any collateral damage against submunition and bomblet payloads. This new endgame model will allow for an analyst to optimize the rod mass, size, cross-section and L/D ratio against ballistic missile payloads.
机译:瞄准动能棒(KER)战斗部是当今存在的导弹拦截器最有效的杀伤力增强概念之一。这是因为这些装置包含的炸药极少,可以将大部分战斗部重量设计为致命的穿透器。这些弹丸以低速部署,并且依赖于相对速度来获得穿透力。进行了静态杆展开测试,以研究喷雾模式的空间分布及其展开速度。雷神公司的测试程序部署了900多个六角形和十字形杆,以了解其部署的物理原理。结合部署测试,进行了新型的穿透器研究,该研究确定了与传统圆柱棒相比,新型弹丸是更好的穿透器。开发了一种新的残局模拟,可以预测紧密间隔的翻滚杆造成的损坏。这种新的模拟预测了对子弹药和子弹有效载荷的任何附带损害所产生的协同效应。这种新的残局模型将使分析人员能够针对弹道导弹有效载荷优化杆质量,尺寸,横截面和L / D比。

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