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1)  tandem shaped charge
聚能串联装药
2)  tandem charge
串联装药
1.
A tandem charge structure of torpedo warhead is designed.
为了对比分体串联与单级装药水中爆炸对目标结构的作用效能,根据弹塑性动态力学理论分析了串联装药水下爆炸作用下固支方钢板的动态响应,完成了不同装药质量比的水下爆炸冲击作用实验。
3)  shaped charge
聚能装药
1.
Eulerian numerical simulation of a shaped charge;
聚能装药的欧拉数值模拟
2.
Study on a tandem shaped charge technique to reinforce concrete;
反钢筋混凝土串联聚能装药技术研究
3.
Study on the Mechanism of Penetrating into Concrete Using Shaped Charge Structures;
聚能装药结构对混凝土侵彻作用研究
4)  cumulative charge
聚能装药
1.
In this peper,the author thcoritically studied the relationship between the velocity jct-flow and parametcrs of hollow holc,And the off effcetive length of jct-flow with different cumulative charges(hollow charges)was tested.
对不同装药结构的射流有效长度进行了对比试验,对聚能射流的失稳及其原因进行了分析,提出了在工程爆破中增加射流稳定性和完整性的措施,对聚能装药的应用有重要的理论价值和实践意义。
2.
A new design of the S-shape cumulative charge with a tri-cone liner has been presented.
简介了一种新设计的三维S形聚能装药,并用MFD程序及多虚拟原点侵彻理论数值和解析地分析了射流的特性及侵彻能力。
5)  linear shaped charge
线性聚能装药
1.
Based on the three-dimensional nonlinear numerical simulated software of ANSYS/LS-DYNA and LS-PREPOST,the course of forming the jet of linear shaped charge and penetrating steel target by the jet of linear shaped charge is simulated with the ALE method.
基于非线性3D模拟软件AN SY S/LS-DYNA和LS-REPO ST,用ALE算法模拟线性聚能装药射流形成以及射流对某均质钢靶切割侵彻的过程。
2.
No considering the effect of the free end of linear shaped charge,a theoretic analysis and a numerical simulation analysis for the jet formation process of linear shaped charge with three different ways of initiation are performed.
以工程中常用的柔性切割器为研究对象,在不考虑端部效应的前提下,对3种起爆方式下线性聚能装药射流的形成过程进行了理论分析和数值模拟。
6)  linear shaped charge
线型聚能装药
1.
Based on a study and analysis of the effect of linear shaped charge, the paper sets forth the new method and the mechanism on presplitting cutting slots by linear shaped charge, pointing out the potential prospects of its development.
文中根据对线型聚能装药效应的分析研究 ,提出了新的聚能装药预裂切缝方法及其机理 ,并指出了其发展前景。
2.
This paper simulates numerically the process of the linear shaped charge jet formation and the penetration through the steel slab by using LS-DYNA,and makes clear that LS-DYNA can be used in the optimum design of the linear shaped charge through comparing the simulating result with the current experimental result.
利用LS-DYNA对线型聚能装药射流的形成和侵彻钢板的过程进行了数值模拟,通过其结果与现有实验结果进行对比表明LS-DYNA程序可用于线型聚能装药的优化设计。
3.
According to the geometric features of linear shaped charge (LSC), this report takes advantage of DYNA2D explicit finite element analysis (FEA) code to describe a numerical modelling of the process of its jet formation.
根据线型聚能装药的结构特点 ,利用 DYNA2 D显式有限元程序对线型聚能射流的形成过程进行了数值模拟。
补充资料:串联式空习装药战斗部
[英文]:series shaped-charge warhead
[解释]: 反坦克导弹、反坦克火箭和发射的反坦克破甲弹,一 般都采用空心装药战斗部。这种战斗部装药的端有一个圆锥形空腔,紧贴着药覆盖一个金属药型罩。空习装药 可使爆炸产生的能量聚集在对准目标的方向,同时使融化的药型罩形成一股金属射流向前方射出,把装甲击穿 。空习装药战斗部的破甲厚度通常可达药型罩锥口直径的3~5倍,所以装药的直径越大,存甲厚度越大。一般 的破甲弹只有一个空习装药战斗部。为了对付外持反作用装甲的坦克,把两个空心装药战斗部串联起来,前面一 个较小的装药先起爆,炸毁反作用装甲,然后主装药起爆,空透主装甲。这就是串联式空心装药战斗部。这两个 装药的轴线必须严格在一条直线上,破甲的效果才会更好。目前已有不少新型反坦克导弹和反坦克火箭弹采用 串联式空心装药战斗部,例如俄罗斯的AT-7反坦克导弹和 RPG-27、RPG-29反坦克火箭弹,美国的“陶”-2A反坦克导弹 ,法国和德国联合研制的“霍特”-2T、“米兰”-2T反坦克导弹,瑞典的“比尔”-2反坦克导弹和以色列的ZT-35 反坦克导弹待。
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