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Design of a Novel Linear Shaped Charge and Factors Influencing its Penetration Performance

机译:一种新颖的线性形状电荷和影响其渗透性能的因素

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摘要

In this paper, a novel linear shaped charge (LSC), called a bi-apex-angle linear shaped charge (BLSC), has been designed to investigate the improvement of penetration performance. Compared with a traditional single-apex-angle LSC, a BLSC, which consists of a small-apex-angle liner and a large-apex-angle liner, has been investigated by depth-of-penetration (DOP) test. The results show that the penetration depth of BLSC is 29.72% better than that of an ordinary LSC. An Eulerian method is applied to simulate the entire process of jet formation, as well as penetration on a #45 steel target. The effectiveness of the Eulerian model is demonstrated by the good agreement of the computational results with experimental observations. Furthermore, the numerical simulation is developed to investigate the influence of liner thickness, explosive type, combination of small and large apex angle, ratio of small to all apex angle liner, and standoff distance on the penetration performance of BLSCs. The suggested work and results can provide a guide and reference for the structural design of BLSC.
机译:本文设计了一种新颖的线性形状电荷(LSC),被称为双顶角线性成形电荷(BLSC),已经设计用于研究穿透性能的改善。与传统的单顶点角度LSC相比,通过渗透深度(DOP)测试已经研究了由小顶点角衬里和大顶角衬里组成的BLSC。结果表明,BLSC的渗透深度比普通LSC的渗透深度优于29.72%。应用了欧拉米的方法来模拟喷射形成的整个过程,以及#45钢靶的渗透。通过实验观察结果,计算结果的良好一致性地证明了欧拉模型的有效性。此外,开发了数值模拟,以研究衬里厚度,爆炸式,小和大顶角的组合,小于所有顶角衬里的比例的影响,以及BLSC的穿透性能的支架距离。建议的工作和结果可以为BLSC的结构设计提供指导和参考。

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