共查询到17条相似文献,搜索用时 171 毫秒
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夹层聚能装药作用过程的数值模拟 总被引:7,自引:0,他引:7
基于凝聚炸药冲击起爆的Lee-Tarver模型,利用AUTODYN有限元计算软件对夹层聚能装药作用过程进行了数值模拟。分别对夹层聚能装药爆轰波形传播过程及其特性参数进行了数值计算,对典型聚能装药采用单一结构装药、夹层装药的射流成型过程进行了数值研究,最后对不同爆速炸药匹配关系的夹层聚能装药射流参数进行了计算分析。计算结果表明,相对于单一结构装药,夹层装药射流头部速度提高了20%,夹层聚能装药能有效提高聚能金属射流头部速度、提高侵彻深度、增加炸药装药的作功能力。 相似文献
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为了满足高侵深和大穿孔的要求,设计一种聚能杆式弹丸(jetting projectile charge, JPC),开展大尺寸钢筋混凝土墙的毁伤效应试验。在此基础上,基于修正参数的K&C(Karagozian&Case)模型进行数值模拟,研究JPC高速侵彻和爆炸冲击波对钢筋混凝土墙的联合破坏作用,分析墙体厚度对破坏效果的影响规律。结果表明,在1.67倍和2.50倍装药直径的炸高条件下,JPC均能够有效贯穿80 cm(6.67倍装药直径)厚的钢筋混凝土墙,形成直径大于6 cm(0.50倍装药直径)的柱状孔洞;聚能装药的多载荷毁伤特性决定了钢筋混凝土墙的破坏结果,爆炸冲击波能够加剧墙体正面开坑和背面崩落的破坏范围;墙体厚度对于墙体正面漏斗坑的直径与深度及内部侵彻孔洞直径均无显著影响;随着墙体厚度增大,背面漏斗坑直径逐渐减小,深度却逐渐增大。 相似文献
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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。文中还给出了这种装药与单、双锥罩聚能装药的对比、理论预估与实验结果的对比。 相似文献
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包覆板材料为陶瓷时平板装药的防护性能 总被引:1,自引:0,他引:1
运用口径36mm的精密成型装药实验,研究了等效厚度相同的碳化硅和氧化铝陶瓷平板装药的防护性能,并与包覆材料为钢的平板装药进行了对比。运用LS-DYNA3D软件,对平板装药与聚能装药的作用过程进行了三维数值模拟。实验结果显示,对于此结构的平板装药,碳化硅和氧化铝陶瓷平板装药使聚能装药侵彻能力分别下降了88%和82%,优于钢板的防护性能。数值模拟结果显示,陶瓷包覆板从边缘至中心依次出现断裂和粉碎现象,钢板与射流后部作用为断续干扰,而陶瓷板为连续干扰。 相似文献
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Experimental investigation of penetration performance of shaped charge into concrete targets 总被引:2,自引:1,他引:1
In order to develop a tandem warhead that can effectively destroy concrete targets, this paper explores the penetration performance of shaped charges with different cone angles and liner materials into concrete targets by means of experiments. The penetration process and the destruction mechanism of concrete targets by shaped charges and kinetic energy projectiles are analyzed and compared. Experimental results suggest that both kinetic energetic projectile and shaped charge are capable of destroying concrete targets, but the magnitudes of damage are different. Compared with a kinetic energy projectile, a shaped charge has more significant effect of penetration into the target, and causes very large spalling area. Hence, a shaped charge is quite suitable for first-stage charge of tandem warhead. It is also found that, with the increase of shaped charge liner cone angle, the depth of penetration decreases gradually while the hole diameter becomes larger. Penetration depth with copper liner is larger than of aluminum liner but hole diameter is relatively smaller, and the shaped charge with steel liner is between the above two cases. The shaped charge with a cone angle of 100° can form a jet projectile charge (JPC). With JPC, a hole with optimum depth and diameter on concrete targets can be formed, which guarantees that the second-stage warhead smoothly penetrates into the hole and explodes at the optimum depth to achieve the desired level of destruction in concrete targets. 相似文献
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聚能装药对混凝土靶板的侵彻研究 总被引:1,自引:0,他引:1
系统开展了不同药型罩材料、不同锥角、不同壁厚的聚能装药在不同炸高下侵彻混凝土试验, 研究了罩材料、锥角、壁厚、炸高等结构参数对漏斗坑直径、侵彻孔洞直径、漏斗坑深度以及侵彻深度等参数的影响规律;应用空腔膨胀理论计算了混凝土靶体阻力, 采用改进的伯努利方程和两阶段空腔膨胀理论获得了混凝土靶板在侵彻体作用下的侵彻深度和孔洞直径, 理论结果与试验结果基本吻合;基于AUTODYN 软件平台, 采用与试验一致的聚能装药结构, 开展了57 种工况下侵彻体成形过程的数值模拟研究, 并对其中典型工况的侵彻混凝土过程进行了数值模拟, 计算所得孔洞直径和侵彻深度与试验结果吻合较好, 在此基础上深入探讨了聚能装药作用下混凝土漏斗坑的形成机理, 分析表明, 铝药型罩的开坑机理不同于钢和铜药型罩. 相似文献
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