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1)  multiple explosively formed projectile (MEFP)
多爆炸成形弹丸
1.
Investigation of multiple explosively formed projectile (MEFP) technology;
多爆炸成形弹丸技术研究
2)  MEFP
多弹头爆炸成形弹丸
1.
Numerical Simulation and Effect Analysis for Radial Dispersion of MEFP;
多弹头爆炸成形弹丸数值仿真及发散角影响因素
3)  multiple explosively formed penetrator
多爆炸成型弹丸
1.
At the same time,the paper study the influence on mass for the killing probabilities of multiple explosively formed penetrator intelligent mine parallel kill model.
通过建立多爆炸成型弹丸智能雷对机动目标毁伤概率计算的蒙特卡洛模型,运用计算机进行数值仿真,研究了雷体质量对多爆炸成型弹丸智能雷平行毁伤模型毁伤概率的影响,得到了智能雷武器系统在各种因素影响下对机动目标的毁伤概率,并提出了提高多爆炸成型弹丸智能雷毁伤概率能力的技术途径。
2.
According to the movement characteristic of multiple explosively formed penetrator(MEFP) intelligent mine attacking to tank top armor,a scan trail model was built.
根据多爆炸成型弹丸智能雷攻击坦克顶甲时的运动特性,建立了智能雷扫描轨迹模型。
4)  explosively formed projectiles (EFP)
爆炸成形弹丸
1.
The microstructure in explosively formed projectiles (EFP) has been investigated, The results showed that, due to adiabatic temperature rise and special plastic deformation mechanism, dynamic recovery and dynamic recrystallization have occurred in explosively formed projectiles (EFP).
研究了工业纯铁爆炸成形弹丸内微观组织变化 ,结果表明 :由于绝热温升和特有的塑性变形机制 ,弹丸在成形过程中内部组织发生动态回复和动态再结晶 ,动态回复形成亚晶 ,因变形量不均匀使亚晶粒直径分布在 0 3~ 1 5 μm之间 ,动态再结晶使弹丸内形成均匀的小于 5 μm的超细晶粒。
5)  explosively formed projectile
爆炸成形弹丸
1.
Investigation of forming mechanism of explosively formed projectiles with tails;
带尾翼爆炸成形弹丸成形机理初探
2.
This paper analyses the geometrical analogue rules of explosively formed projectile (EFP) penetrating armours with the help of similarity theory, and establishes EFP penetrating armour simulation law.
利用相似理论的知识分析了爆炸成形弹丸的穿甲模拟律问题 ,在此基础上 ,建立了爆炸成形弹丸的穿甲模拟律关系。
6)  explosively formed penetrator
爆炸成形弹丸
1.
In order to increase the damage probability of explosively formed penetrator(EFP),the warhead is designed to produce three explosively formed penetrators.
为提高爆炸成形弹丸(EFP)的毁伤概率,设计一种一次爆炸产生三枚爆炸成形弹丸的战斗部,并对所设计的多枚爆炸成形弹丸(MEFP)战斗部(以下称为三罩式战斗部)进行靶场静爆试验。
补充资料:爆炸成形

explosiveforming:利用炸药的爆炸所产生的冲击波使金属材料发生塑性形变而引起强化(形变强化)的形变加工方法。

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