首页 | 官方网站   微博 | 高级检索  
     

高速模拟钢质弹丸侵彻多层靶仿真
引用本文:岳小兵,龙源,方向,谢文.高速模拟钢质弹丸侵彻多层靶仿真[J].解放军理工大学学报,2003,4(4):40-44.
作者姓名:岳小兵  龙源  方向  谢文
作者单位:解放军理工大学工程兵工程学院 江苏南京210007 (岳小兵,龙源,方向),解放军理工大学工程兵工程学院 江苏南京210007(谢文)
基金项目:中国工程物理研究院院外基金资助项目 ( 990 5 0 13 4)
摘    要:利用显式动力有限元程序对用37火炮发射的着靶速1300m/s左右钢弹侵彻大间隔多层A3薄钢靶板的过程进行了数值模拟,分析了弹速、弹重、弹形等影响因素对侵彻过程的作用规律,计算结果和实验结果得到了较好的吻合。研究表明,弹丸的比动能是衡量弹丸侵彻能力的重要参数,在一定的弹丸速度范围内,当弹靶材料和靶板结构固定时,弹丸的侵彻能力是由弹丸的比动能所决定的。

关 键 词:侵彻  数值模拟  多层间隔靶
文章编号:1009-3443(2003)04-0040-05
修稿时间:2002年11月25

Numerical Simulation of Steel Projectile Penetrating into Multi-layer Spaced Metal Plates
YUE Xiao-bing,LONG Yuan,FANG Xiang and XIE Wen.Numerical Simulation of Steel Projectile Penetrating into Multi-layer Spaced Metal Plates[J].Journal of PLA University of Science and Technology(Natural Science Edition),2003,4(4):40-44.
Authors:YUE Xiao-bing  LONG Yuan  FANG Xiang and XIE Wen
Affiliation:Engineering Institute of Engineering Corps,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Engineering Corps,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Engineering Corps,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Engineering Corps,PLA Univ.of Sci.& Tech.,Nanjing 210007,China
Abstract:Steel projectiles are launched at impact velocities of 1 300 m/s or so by a cannon. It penetrated thin A3 steel spaced targets with big distance. The process of projectile against multi-layer targets with big spacing is simulated with explicit finite element software LS-DYNA3D. The effects of various factors including the striking velocity of projectile,the mass of projectile,the L/D ratio of projectile are studied. The numerical results agree well with experimental results. The conclusion and its analysis indicate that the projectile kinematic energy ratio is a very important parameter in determining penetrating capability of the projectile.
Keywords:penetration  numerical simulation  multi-layer spaced metal plates
本文献已被 CNKI 维普 等数据库收录!
点击此处可从《解放军理工大学学报》浏览原始摘要信息
点击此处可从《解放军理工大学学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号