活性复合双模战斗部对钢靶毁伤行为研究

Study on Damage of Reactive Composite Dual-Mode Warhead to Steel Target

  • 摘要: 设计了一种通过改变起爆方式可在聚能射流(shaped charge jet,JET)与杆式射流(rod-shapedcharge jet,JPC)模式间转换的活性双模战斗部. 利用Autodyn仿真软件,分析了两种模式侵彻体成型过程,并通过对惰性侵彻过程和类爆轰反应过程的定量分析对比两种侵彻体对钢靶毁伤效果. 结果表明,当炸高为2倍装药口径时,JET侵彻体在侵彻深度上有明显优势,而JPC侵彻体对钢靶产生的开孔效果更显著. 开展了药型罩结构参数及炸高对活性复合双模战斗部毁伤效果影响的规律性研究,获得了药型罩壁厚、锥角和炸高变化对活性复合双模战斗部侵彻深度、平均侵孔直径及活性材料在侵孔内反应位置的影响规律.

     

    Abstract: A reactive dual-mode warhead capable of switching between shaped charge jet (JET) and rod-shaped charge jet (JPC) by changing the detonation mode was designed. The forming process of the two modes of penetrators was analyzed by Autodyn simulation software, and the damage effects of the two penetrators on the steel target were compared through quantitative analysis of the penetration process and the detonation-like reaction process. The results show that when the standoff is 2 times the diameter of the charge, the JET penetrator produces a deeper penetration hole, while the JPC penetrator produces a larger diameter penetration hole. The influence of the structural parameters of the liner and the standoff on the damage effect of the reactive composite dual-mode warhead was studied. The influence of the liner thickness, cone angle and standoff on the penetration depth, the average diameter of the penetration hole and the reaction position of the reactive material in the penetration hole was obtained.

     

/

返回文章
返回