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INFLUENCE OF THE EMBEDDED STRUCTURE ON THE EFP FORMATION OF COMPACT TERMINAL SENSITIVE PROJECTILE

机译:嵌入式结构对紧凑型终端敏感射弹EFP形成的影响

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To improve the damage efficiency of compact terminal sensitive projectile withEFP warhead, it is vital to understand how the embedded structure (ES) affects the EFPforming performance. In this paper, the corresponding numerical investigation is focusedon, in which the fluid-structure interaction (FSI) method and the experimental verificationare used. Based on the obtained quantitative relations between the forming performance andα (the ratio of height to maximum radius of ES), an optimal design is further provided. Theresults indicate that: when the embedded structural length and width range 0.1-0.3D and0.1-0.2D (D: diameter of EFP warhead) at a fixed volume, respectively, EFP formingvelocity nearly keeps as a constant, 1760 m/s; the height of ES has a dramatic effect on thepropagating range of detonation wave, resulting in significant influence on the aerodynamicshape and length-to-diameter ratio of EFP; under the given constraints, the EFPlength-diameter ratio can reach the optimal value 2.76, when the height of ES is 0.22D.
机译:提高紧凑型敏感射弹的损伤效率EFP弹头,了解嵌入式结构如何影响EFP至关重要形成性能。在本文中,相应的数值调查集中在一起在,其中流体结构相互作用(FSI)方法和实验验证使用。基于所获得的成型性能与成型性关系α(高度与ES的最大半径的比率),还提供了最佳设计。这结果表明:当嵌入式结构长度和宽度范围0.1-0.3d时0.1-0.2d(d:EFP弹头的直径),分别以固定体积,EFP成型速度几乎保持恒定,1760米/秒; ES的高度对此有巨大影响传播爆轰波的范围,导致对空气动力学的显着影响EFP的形状和长度到直径比;根据给定的约束,EFP当ES的高度为0.22D时,长度直径比可以达到最佳值2.76。

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