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11.
Chain damage is a new phenomenon that occurs when a reactive jet impacts and penetrates multi-spaced plates.The reactive jet produces mechanical perforations on the spaced plates by its kinetic energy(KE),and then results in unusual chain rupturing effects and excessive structural damage on the spaced plates by its deflagration reaction.In the present study,the chain damage behavior is initially demonstrated by experiments.The reactive liners,composed of 26 wt%Al and 74 wt%PTFE,are fabricated through a pressing and sintering process.Three reactive liner thicknesses of 0.08 CD,0.10 CD and 0.12 CD(charge diameter)are chosen to carry out the chain damage experiments.The results show a chain rupturing phenomenon caused by reactive jet.The constant reaction delay time and the different penetration velocities of reactive jets from liners with different thicknesses result in the variation of the deflagration position,which consequently determines the number of ruptured plates behind the armor.Then,the finite-element code AUTODYN-3D has been used to simulate the kinetic energy only-induced rupturing effects on plates,based on the mechanism of behind armor debris(BAD).The significant discrepancies between simulations and experiments indicate that one enhanced damage mechanism,the behind armor blast(BAB),has acted on the ruptured plates.Finally,a theoretical model is used to consider the BAB-induced enhancement,and the analysis shows that the rupturing area on aluminum plates depends strongly upon the KE only-induced pre-perforations,the mass of reactive materials,and the thickness of plates.  相似文献   
12.
The influence of a magnetic field on the stability of a shaped charge jet is experimentally investigated at standoffs of 490, 650 and 800 mm. The experimental results without and with the magnetic field are compared in terms of the shaped charge jet form, stability and penetration ability. A theoretical model based on one-dimension fluid dynamics is then developed to assess the depth of penetration of the shaped charge at those three standoffs and magnetic conditions. The results show that the penetration capability can be enhanced in more than 70% by the magnetic field. The theoretical calculations are compared with the experimental results with reasonably good correlation. In addition, the parameters introduced in the theory are discussed together with the experiments at three standoffs studied.  相似文献   
13.
《防务技术》2022,18(9):1552-1562
To further explore the damage characteristics and impact response of the shaped charge to the solid rocket engine (SRE) in storage or transportation, protective armor was designed and the shelled charges model (SCM)/SRE with protective armor impacting by shaped charge tests were conducted. Air overpressures at 5 locations and axial acceleration caused by the explosion were measured, and the experimental results were compared with two air overpressure curves of propellant detonation obtained by related scholars. Afterwards, the finite element software AUTODYN was used to simulate the SCM impacted process and SRE detonation results. The penetration process and the formation cause of damage were analyzed. The detonation performance of TNT, reference propellant, and the propellant used in this experiment was compared. The axial acceleration caused by the explosion was also analyzed. By comprehensive comparison, the energy released by the detonation of this propellant is larger, and the HMX or Al particles contained in this propellant are more than the reference propellant, with a TNT equivalent of 1.168–1.196. Finally, advanced protection armor suggestions were proposed based on the theory of woven fabric rubber composite armor (WFRCA).  相似文献   
14.
基于三维N-S方程,利用有限差分数值离散方法,对考虑了燃料喷注和凹腔结构综合影响的某超燃冲压发动机燃烧室模型的内流场进行了数值模拟,与实验流动图谱进行了定性比较,并进一步探讨了燃料喷注过程的非定常特性以及凹腔结构对流动的影响。研究表明:本文数值模拟的稳态时刻流场与实验流动图谱相似;数值结果捕捉到了横向喷注燃料沿下游运动并向凹腔扩散的非定常动态变化的规律。  相似文献   
15.
直接力/气动力复合作用动能拦截弹姿态控制方法   总被引:2,自引:0,他引:2       下载免费PDF全文
针对直接力/气动力复合作用动能拦截弹的姿态控制问题,建立了拦截弹俯仰-偏航通道短周期运动模型;利用线性二次型最优跟踪控制理论结合姿控固体小火箭点火逻辑设计了复合控制系统,通过分析非线性容限得出了该系统对直接力偏差具有强鲁棒性的结论;姿控回路仿真表明系统具有快速响应特性及良好的跟踪性能,考虑侧喷干扰效应等实际条件的六自由度弹道仿真表明所设计的控制系统能够满足拦截末段直接碰撞要求。  相似文献   
16.
合成射流影响因素   总被引:15,自引:1,他引:14       下载免费PDF全文
在综合国外大量实验和数值模拟数据的基础上 ,对影响合成射流特性的驱动因素、结构因素进行了分析和总结 ,并且通过数值模拟的方法对雷诺数以及斯托罗哈数对合成射流的影响进行了研究。获得了反映合成射流激励器特征的函数关系式 ,为激励器的初步设计提供指导  相似文献   
17.
基于剩余穿深理论,依据聚能射流对钢靶板侵彻毁伤作用机理,推导出2种等效模型,并结合数值模拟建立了聚能射流侵彻下某舰船装甲钢与603钢靶板的等效关系。结果表明:当舰船钢厚度较小时,舰船钢与603装甲钢的等效厚度比约为1;当舰船钢厚度较大时,两者等效厚度比约为1.13。由此等效关系可给出用于战斗部考核性穿靶试验中相应均质靶板的确定厚度,从而为用603装甲钢靶代替该舰船钢进行聚能射流威力考核试验提供依据,达到了简化、经济、方便、有效的目的。  相似文献   
18.
破甲弹侵彻装甲板的数值仿真   总被引:1,自引:0,他引:1  
装甲装备受到弹丸攻击后,要判断内部部件的毁伤情况,采用实弹试验的方法费用高,周期长,安全性差;而采用建模仿真的方法费用低,效率高,安全性好,并且可以为预测装备内部的毁伤部件奠定基础。采用有限元法对破甲弹侵彻均质装甲板进行了数值仿真,对侵彻过程的3个阶段进行了分析,得出了破甲弹射流的动能、平均速度和冲量随时间变化的规律,为侵彻后装甲板内部部件毁伤情况的判断提供了基础数据。  相似文献   
19.
利用三维N-S方程,采用NND2M有限差分格式作为数值离散方法,对助推器与上面级分离过程的动态流场进行了数值模拟,分析了反作用推力火箭发动机的喷流对上面级弹体底部轴向作用力的影响。根据计算得到的变化规律发现,在分离距离较小的情况下,反推火箭喷流对上面级弹体的干扰作用明显,产生较大轴向作用力,对于上面级飞行稳定性有影响。  相似文献   
20.
针对同心筒自力发射结构优化与热环境改善的问题,基于雷诺平均方程及轴对称N-S方程,依托弹性变形和网格再生成方法结合的动网格技术,对3种不同结构形式同心筒发射装置的二维轴对称流场进行了非定常数值计算,得到了不同结构条件下动态的流场机理及导弹热环境特性。计算结果显示:导流器方案能实现燃气流迅速顺利排导;筒底收缩段设计能有效遮挡反溅燃气流;筒口导流板结构较好抑制了内筒的"倒吸效应",确保导弹和内筒的热安全;揭示了优化同心筒的流场结构与降温机理,可为相关研究提供参考。  相似文献   
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