计算机与现代化

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基于有限元分析的离散杆战斗部对超音速反舰导弹的毁伤仿真分析

  

  1. (海军航空工程学院,山东烟台264001

  • 收稿日期:2015-11-27 出版日期:2016-04-14 发布日期:2018-09-30
  • 作者简介:男,山东烟台人,海军航空工程学院副教授,硕士,研究方向:计算机图形学和计算机仿真; 王诚成(1985-),男,山东烟台人,讲师,博士,研究方向:武器系统建模与仿真。
  • 基金资助:
    discrete rods warhead; SAM; finite element simulation (FES); damage analysis

Damage Analysis of Discrete Rod Warhead to Supersonic Anti-ship Missile Based on FEA

  1. (Naval Aeronautical Engineering Institute, Yantai 264001, China)

  • Received:2015-11-27 Online:2016-04-14 Published:2018-09-30

摘要:

现代战争中舰空导弹是舰艇防空反导的重要手段,舰空导弹战斗部毁伤元对反舰导弹的冲击与侵彻是造成毁伤的主要因素。本文分析舰空导弹离散杆战斗部爆炸后毁伤元的运动规律,在此基础上运用有限元分析研究舰空导弹离散杆战斗部对超音速反舰导弹的毁伤能力,通过仿真实验得出结论。本研究就进一步开展超音速反舰导弹整体易损性分析提供理论支撑。

关键词: 离散杆战斗部, 超音速反舰导弹, 有限元仿真, 毁伤分析

Abstract: At present, ship to air missile is the main force of anti-missile. The warhead damage element’s impact and penetration effect are the main factors for damaging anti-ship missile. In this paper, the damage mechanism of the antiship missile is studied. Dynamic initial velocity of damage elements is modeled and simulated. The damage of discrete rods to important parts of supersonic anti-ship missile (SAM) are modeled and simulated based on finite element analysis (FEA). It’s useful  to the study of the further model of vulnerability analysis of whole SAM. 

Key words: discrete rods warhead, SAM, finite element simulation (FES), damage analysis

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