A new model has been defined that enables the estimation of the lethal radius(radius of efficiency)of HE(High Explosive)artillery projectiles against human targets.The model is made of several modules:CAD(Computer Aid...A new model has been defined that enables the estimation of the lethal radius(radius of efficiency)of HE(High Explosive)artillery projectiles against human targets.The model is made of several modules:CAD(Computer Aided Design)modeling,fragment mass distribution estimation,fragment initial velocity prediction,fragment trajectory calculation,effective fragment density estimation,and high explosive projectile lethal radius estimation.The results were compared with the experimental results obtained based on tests in the arena used in our country,and the agreement of the results was good.This model can be used in any terminal-ballistics scenario for high explosive projectiles since it is general,parametric,fast and relatively easy to implement.展开更多
爆炸成型弹丸(Explosively Formed Projectiles,简称EFP)垂直高速冲击603装甲靶板实验,呈现了靶板入口卷边花瓣状破坏、出口具有拉伸断裂特征的外翻花瓣形穿孔、入口直径明显大于出口直径等宏观的冲击现象。为了从机理上研究EFP对装甲...爆炸成型弹丸(Explosively Formed Projectiles,简称EFP)垂直高速冲击603装甲靶板实验,呈现了靶板入口卷边花瓣状破坏、出口具有拉伸断裂特征的外翻花瓣形穿孔、入口直径明显大于出口直径等宏观的冲击现象。为了从机理上研究EFP对装甲靶板的高速冲击效应,利用ANSYS/LS-DYNA动力学仿真软件,对整个冲击过程进行了数值模拟,再现了EFP形成、开坑、稳定侵彻、尾翼侵彻和冲塞贯穿的物理过程,模拟结果与实验现象吻合较好,并从原理上分析了实验中各宏观现象产生的原因。研究结果不但认识了EFP冲击装甲靶板的机理,也可为增强装甲防护能力和优化EFP设计提供理论参考,具有重要的现实意义和较高的工程应用价值。展开更多
文摘A new model has been defined that enables the estimation of the lethal radius(radius of efficiency)of HE(High Explosive)artillery projectiles against human targets.The model is made of several modules:CAD(Computer Aided Design)modeling,fragment mass distribution estimation,fragment initial velocity prediction,fragment trajectory calculation,effective fragment density estimation,and high explosive projectile lethal radius estimation.The results were compared with the experimental results obtained based on tests in the arena used in our country,and the agreement of the results was good.This model can be used in any terminal-ballistics scenario for high explosive projectiles since it is general,parametric,fast and relatively easy to implement.
文摘爆炸成型弹丸(Explosively Formed Projectiles,简称EFP)垂直高速冲击603装甲靶板实验,呈现了靶板入口卷边花瓣状破坏、出口具有拉伸断裂特征的外翻花瓣形穿孔、入口直径明显大于出口直径等宏观的冲击现象。为了从机理上研究EFP对装甲靶板的高速冲击效应,利用ANSYS/LS-DYNA动力学仿真软件,对整个冲击过程进行了数值模拟,再现了EFP形成、开坑、稳定侵彻、尾翼侵彻和冲塞贯穿的物理过程,模拟结果与实验现象吻合较好,并从原理上分析了实验中各宏观现象产生的原因。研究结果不但认识了EFP冲击装甲靶板的机理,也可为增强装甲防护能力和优化EFP设计提供理论参考,具有重要的现实意义和较高的工程应用价值。