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1)  armour-piercing warhead
穿甲战斗部
1.
It has known well armour-piercing damage by armour-piercing warhead,yet it has discussing kinetic energy damage to hit.
既有众所周知的穿甲战斗部提供的穿甲毁伤,可能还有正在探讨的碰撞动能毁伤。
2.
Researched armour-piercing warhead penetration process with the way of numerical simulation based on LS-DYNA, it was a program that analyse dynamics.
文章论述了用基于LS-DYNA的动力学分析通用有限元程序对穿甲战斗部侵彻过程进行数值仿真。
2)  semi-armor-piercing warhead
半穿甲战斗部
1.
Numerical and Experimental Investigation on Penetration Effects of Semi-Armor-Piercing Warhead;
穿甲战斗部弹体穿甲效应数值模拟与实验研究
2.
Based on the research experience of semi-armor-piercing warhead,integrated design method for SAPW was studied by advanced engineering design method and computer technique.
文中基于半穿甲战斗部研制的经验和技术,利用先进的工程设计方法和计算机技术,完成了半穿甲战斗部集成设计方法研究。
3)  Semi-armor piercing warhead
半穿甲战斗部
1.
The head thickness design of the semi-armor piercing warhead is calculated and analyzed applying the Dimen- sional-Analysis and Similitude-Law as well by the experiment data gained in the cylinder bumping experiment,the rela- tionship curve between the length of the distorted part and its velocity is gained that can be as one of bases while desig- ning the semi-armor piercing warhead.
结合所获得的实验数据,应用因次分析和相似律的方法对半穿甲战斗部顶部厚度设计进行了计算与分析,得到变形部分长度与速度的关系曲线,可以作为半穿甲战斗部顶部厚度设计的依据之一。
4)  structural target with ribbing
半穿甲战斗部
1.
According to the structure of aircraft carrier and existing anti-ship missile warhead,the structural target with ribbings and experimental half-penetrating warhead were designed with geometer similar principle.
文中以航母等大型舰船特有的筋板结构为目标,设计制做了缩比模拟加筋靶,同时参考国内外相关文献,设计了适合于毁伤航母的半穿甲战斗部实验弹。
2.
According to the structure of aircraft carrier and existing anti-ship missile warhead, the structural target with ribbings and experimental half-penetrating warhead were designed with geometer similar principle.
本文以航母等大型舰船为目标,通过对其结构的分析,抽象出单层结构靶的模型;依据几何相似、刚度等效的原则,制做了缩比模拟加筋靶;参考国内外相关文献,依据面密度对弹体侵彻能力的影响,设计了适合于毁伤航母的半穿甲战斗部,并对加筋靶进行靶场侵彻试验,得到了多种击靶条件的终点弹道参数,为半穿甲战斗部对航母典型结构侵彻的机理和数值仿真研究提供基本的实验现象及数据,为高效毁伤大型舰船结构的半穿甲战斗部设计,提供一种技术支撑。
5)  shaped charge warhead
破甲战斗部
1.
Precision shaped charge warhead technology is a major way to improve the penetration power and stability, which consists of following key techniques: powerful explosive, precise charge, precise liner and precise assembly.
精密破甲战斗部技术是提高破甲威力和改善破甲稳定性的重要技术途径,其关键技术包括高威力炸药及其精密装药,精密药型罩和精密装配技术。
6)  warhead [英]['wɔ:,hed]  [美]['wɔr,hɛd]
战斗部
1.
Vulnerability assessment of the missile subjected to the fragment warhead;
导弹目标在破片式战斗部作用下的易损性评估
2.
Fundamental Theory of Fuze-warhead Integration Design;
引信战斗部一体化设计的基础理论
3.
Evaluated Means of Damage Probability of Explosive Warhead to Radar;
爆破式战斗部对雷达目标的毁伤效率评估方法
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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