Ma Guangsong, He Guanglin, Liu Yukuan, Guo Yachao
School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 10081, China.
Materials (Basel). 2020 Feb 17;13(4):891. doi: 10.3390/ma13040891.
To study the influence of the structural parameters of the ammunition liner of small-caliber ammunition on the forming characteristics of the projectile, an integrated circumferential multiple explosively formed projectile (MEFP) warhead with an integrated shell and the liner was initially designed, and the wall thickness of the liner is variable. LS-DYNA finite-element software is used to simulate the integral circumferential MEFP of the preliminary design, based on the numerical simulation results, the influence of the thickness at the center of the liner, and the curvature radius of the liner on the shape and velocity of the formed projectile. The numerical simulation results show that when the thickness of the center of the liner is constant and the curvature radius increases gradually, the velocity of the formed projectile decreases and the length: Diameter ratio of formed projectile decreases gradually. When the curvature radius of the liner remains unchanged, the velocity of the formed projectile decreases with the increase of the thickness of the center of the liner, and the shape of the formed projectile does not change significantly. The results show that when the design of integrating the shell and the liner was adopted for the integral circumferential MEFP warhead, the shape of the formed projectile is greatly affected by the curvature radius of the liner (curvature radius of inner and outer walls of the liner), but less by the thickness of the center of the liner. The velocity of the formed projectile is affected by the curvature radius of the inner and outer walls of the liner and the thickness of the center of the liner. Moreover, the influence of the thickness of the center of the liner on the velocity of the formed projectile is greater than that of the curvature radius of the outer wall of the liner.
为研究小口径弹药药型罩结构参数对弹丸成型特性的影响,初步设计了一种弹体与药型罩一体化的周向集成式多爆炸成型弹丸(MEFP)战斗部,药型罩壁厚可变。采用LS-DYNA有限元软件对初步设计的周向集成式MEFP进行模拟,基于数值模拟结果,研究药型罩中心厚度及药型罩曲率半径对成型弹丸形状和速度的影响。数值模拟结果表明,当药型罩中心厚度不变、曲率半径逐渐增大时,成型弹丸速度降低,成型弹丸长径比逐渐减小。当药型罩曲率半径不变时,成型弹丸速度随药型罩中心厚度的增加而降低,成型弹丸形状变化不明显。结果表明,周向集成式MEFP战斗部采用弹体与药型罩一体化设计时,成型弹丸形状受药型罩曲率半径(药型罩内外壁曲率半径)影响较大,受药型罩中心厚度影响较小。成型弹丸速度受药型罩内外壁曲率半径和药型罩中心厚度影响,且药型罩中心厚度对成型弹丸速度的影响大于药型罩外壁曲率半径的影响。