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作 者:王雪飞 尹建平[1] 孙加肖 WANG Xuefei;YIN Jianping;SUN Jiaxiao(School of Mechatronics Engineering, North University of China, Taiyuan 030051, China)
出 处:《弹箭与制导学报》2018年第4期85-92,共8页Journal of Projectiles,Rockets,Missiles and Guidance
基 金:国家自然科学基金(11572291);山西省研究生联合培养基地人才培养项目(20160033);中北大学第十四届科技立项项目(20171409)资助
摘 要:为提高弹药对轻型装甲的毁伤能力,提出一种内含低密度材料的新型弧锥结合药型罩。使用有限元软件LS-DYNA模拟EFP成型与侵彻的过程,分析了各曲率半径对EFP成型的影响规律。结果表明:所设计的药型罩可以形成具有PELE结构的EFP,药型罩外曲率半径取10~70 mm,装填物外曲率半径取30~60 mm,装填物内曲率半径取47~59 mm,药型罩内曲率半径取45~55 mm时EFP成形效果较好。优化得到的EFP在射入靶板时产生横向效应使其扩孔,并在穿透靶板后形成高速破片对目标内部二次毁伤。In order to improve the ammunition damage to light armor, a novel arc-cone liner which contains the low density filler was proposed. Numerical simulations by LS-DYNA were used to research the forming and penetration of the EFP. The influence of arc curvature radius on the forming of EFP was analyzed. The result shows that the liner can form a covered EFP with PELE structure. When the outer arc curvature radius of liner is 10~70 mm, the outer arc curvature radius of filler is 30~60 mm, the inner arc curvature radius of filler is 47~59 mm, the inner arc curvature radius of liner is 45~55 mm, the EFP is formed with better performance. The optimized liner can create a lateral efficiency when it enters the target, and forming high-speed fragments in the target interior to form secondary damage when it penetrates the target.
关 键 词:PELE EFP 弧锥结合罩 曲率半径 侵彻 数值模拟
分 类 号:TJ413[兵器科学与技术—火炮、自动武器与弹药工程]
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