Song Jiageng, Tao Xigui, Yang Zailin
College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, 150001, Heilongjiang, China.
Institute of Defense Engineering, AMS, PLA, Beijing, 100850, China.
Sci Rep. 2024 Jul 24;14(1):17017. doi: 10.1038/s41598-024-67943-5.
Explosively formed projectile (EFP) has the advantages of high flight speed, high burst height, insensitivity to initial velocity, etc. To study the forming performance of multiple explosively formed projectile (MEFP) and to analyze the factors influencing the forming results. A directional pentagonal prism MEFP with five liners is proposed in this paper. Experiments were conducted to validate the performance of this MEFP. The experimental results show that the generated EFPs have high flight speeds. However, the EFP hit position on the target plate was offset, causing multiple positional penetrations. To analyze the causes of the phenomenon, a numerical simulation model of directional MEFP is established and the forming process of MEFP is numerically simulated. The simulation results indicate that the EFP fracture occurs during the forming process due to the asymmetric detonation wave, and its tail cannot be fully closed. Combined with the numerical simulation and experimental results, the forming performance of the liners used in the MEFP has been further developed. Further analysis was carried out on the effect of liner thickness and height on forming performance. It can be seen that as the thickness of the liners increases, the length of the head of EFP increase, the incidence of EFP tail fracture decreased, the aspect ratio increases and the EFP velocity decrease. As the height of the MEFP increases, the velocity of the EFP increases, the head ratio increases, the shape of the detonation wave tends to be symmetrical, and the tendency of the EFP to appear as an unclosed tail decreases.
爆炸成型弹丸(EFP)具有飞行速度高、炸高、对初速不敏感等优点。为研究多爆炸成型弹丸(MEFP)的成型性能并分析影响成型结果的因素,本文提出了一种带有五个药型罩的定向五棱柱形MEFP。进行了实验以验证该MEFP的性能。实验结果表明,产生的EFP具有较高的飞行速度。然而,EFP在靶板上的命中位置发生了偏移,导致多次位置侵彻。为分析该现象的原因,建立了定向MEFP的数值模拟模型,并对MEFP的成型过程进行了数值模拟。模拟结果表明,由于爆轰波不对称,EFP在成型过程中发生断裂,其尾部无法完全闭合。结合数值模拟和实验结果,进一步研究了MEFP中使用的药型罩的成型性能。对药型罩厚度和高度对成型性能的影响进行了进一步分析。可以看出,随着药型罩厚度的增加,EFP头部长度增加,EFP尾部断裂发生率降低,长径比增大,EFP速度降低。随着MEFP高度的增加,EFP速度增加,头部比例增加,爆轰波形状趋于对称,EFP出现未闭合尾部的趋势降低。