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1.
为了获得各参数对多爆炸成型弹丸毁伤性能的影响程度,以EFP速度和MEFP发散角为参考序列,以药型罩和装药参数为比较序列,运用灰关联理论对影响MEFP毁伤性能的参数进行了灰关联分析。在此基础上,应用灰关联分析结果完成了MEFP战斗部优化设计。结果表明:在较少样本空间前提下,采用灰关联理论可以分析获得影响多爆炸成型弹丸毁伤性能的各因素主次关系,而且经过优化后的MEFP战斗部,大大地提高了EFP的集聚性和毁伤性能。  相似文献   

2.
为提高聚能破甲战斗部的毁伤能力,设计了一种圆柱-双锥结合药型罩。用数值模拟方法,通过对该药型罩的正交优化设计,研究了药型罩圆柱部直径d、高度h、上锥角α、下锥角β对射流头部速度和侵彻深度的影响。研究结果表明,上锥角和圆柱部直径分别是影响射流头部速度和侵彻深度的主要因素。因此,在优化设计中得到了兼顾射流速度和侵彻深度的最佳药型罩结构:d=8 mm、h=12 mm、α=36°和β=56°时,射流头部速度为8 667 m/s,侵彻深度达到173.7 mm。优化设计的研究结果具有一定的实际工程指导意义,可为聚能破甲战斗部的性能提升提供有效的设计方案。  相似文献   

3.
为研究装药命中角对防护结构口部爆炸毁伤的影响规律,对直墙拱结构进行了一系列爆炸模拟分析,得到了直墙拱结构拱顶、拱脚和直墙底3个位置的爆炸应力和位移时程曲线。通过分析这3个位置的应力峰值和位移峰值,发现随着装药命中角的增大,拱顶处竖直方向荷载减小,而拱脚处水平方向荷载增大;随着装药命中角的增大,拱顶处竖直方向位移变形减小,而拱脚处水平方向位移变形增大。模拟分析得到的命中角对防护结构口部爆炸毁伤的影响规律,可供防护工程设计时参考。  相似文献   

4.
为提高MEFP对战机、导弹等空中目标的毁伤效能,综合锥形药型罩形成的球状弹丸和球缺形药型罩形成的杆状弹丸的优势,设计了一种复合型MEFP战斗部,仿真并分析了该型MEFP中各成型弹丸的形状、初速及对钢靶的毁伤效果.仿真结果表明,该复合型MEFP可以同时产生不同速度、不同形状的侵彻弹丸,从而增强了MEFP对空中目标的综合毁伤效能.  相似文献   

5.
以智能雷为研究对象,在建立智能雷扫描运动模型和命中毁伤模型的基础上,分析了MEFP智能雷攻击坦克的毁伤效能.通过建立攻击过程的蒙特卡洛模型,编制了智能雷攻击坦克目标的计算机仿真软件,计算了MEFP智能雷发射不同数目的EFP对坦克目标的毁伤概率.结果表明:MEFP智能雷攻击坦克目标的毁伤效能较高,可应用于对付大规模坦克装甲车辆的进攻和武装直升飞机的攻击.  相似文献   

6.
为了得到发射装置设计因素和超高速碎片性能间的关系,考虑了药型罩的材料、炸药种类、装药长径比、药型罩的锥角、药型罩的厚度、药型罩顶部靠近装药侧的曲率半径等设计因素,采用AUTODYNTM,结合正交试验,对超高速碎片的发射过程进行数值模拟。结果表明,3种发射装置结构分别可以提供质量为1. 533 g的紫铜碎片、速度为11. 649 km/s的铝碎片、动能为85. 6 k J的铝碎片; 2种发射装置结构均可以提供质量大于1 g、速度高于11 km/s的密实结构圆柱状碎片。验证了仿真方法的可信性,对影响碎片性能的设计因素进行了分析、排序,并得到了这些设计因素与碎片质量、速度、动能的关系。  相似文献   

7.
为了获得某新型横向扫描敏感子弹对车辆目标的命中概率,结合子弹的运动特点和作用过程,建立了子弹六自由度弹道方程组,并分析了影响子弹命中概率的主要因素,最终建立了子弹识别和命中目标的数学模型.结果表明:命中概率随子弹初始扰动、最大摆动角和弹目距离的减小而增加,当初始扰动小于0.05 rad/s,最大摆动角小于1.12°,弹...  相似文献   

8.
为了研究不同形状网栅结构对形成的MEFP破片的影响,利用LS-DYNA动力有限元程序,采用Lagrangian方法,分别对十字形网栅切割式MEFP战斗部、星形线形网栅切割式MEFP战斗部、中心圆环形网栅切割式MEFP战斗部、井字形网栅切割式MEFP战斗部成型过程进行了数值模拟研究,并对影响各自破片成型及发散角的因素进行了分析研究。通过对不同方案网栅切割式MEFP速度及散布面积对比分析,结果表明:采用井字形网栅产生的破片集聚性优于十字形、星形线形和中心圆环形结构方案。  相似文献   

9.
针对地面火炮武器末端拦截大壁厚钻地弹的作战需求,在常规火炮对空中目标命中概率计算方法的基础上,提出了"有效命中概率"概念,对影响弹目交会角的多种因素进行了分析,给出了增加炮弹穿甲能力和弹目交会角等约束条件的有效命中概率计算方法,可为火炮武器系统拦截钻地弹的可行性论证提供技术参考.  相似文献   

10.
根据射击毁伤理论和概率统计学,在现有点目标毁伤概率求解方法基础之上提出考虑目标定位误差的解析法和仿真法.计算结果表明2种方法均准确可行.通过对比分析得出不同弹药量、不同目标特性条件下,定位误差对毁伤概率的影响程度.运用解析法得出点目标的单发命中概率服从χ2分布,通过大量仿真得出目标定位误差可忽略的条件为WmaxRCEP/ω.  相似文献   

11.
The formation mechanism of an EFP(explosively formed projectile) using a double curvature liner under the overpressure effect generated by a regular oblique reflection was investigated in this paper.Based on the detonation wave propagation theory,the change of the incident angle of the detonation wave collision at different positions and the distribution area of the overpressure on the surface of the liner were calculated.Three-dimensional numerical simulations of the formation process of the EFP with tail as well as the ability to penetrate 45# steel were performed using LS-DYNA software,and the EFP ve-locity,the penetration ability,and the forming were assessed via experiments and x-ray photographs.The experimental results coincides with those of the simulations.Results indicate that the collision of the detonation wave was controlled to be a regular oblique reflection acting on the liner by setting the di-mensions of the unit charge and maintaining the pressure at the collision point region at more than 2.4 times the CJ detonation when the incident angle approached the critical angle.The distance from the liner midline to the boundary of the area within which the pressure ratio of the regular oblique reflection pressure to the CJ detonation pressure was greater than 2.5,2,and 1.5was approximately 0.66 mm,1.32 mm,and 3.3 mm,respectively.It is noted that pressure gradient caused the liner to turn inside out in the middle to form the head of the EFP and close the two tails of the EFP at approximately 120μs.The penetration depth of the EFP into a 45# steel target exceeded 30 mm,and there was radial expansion between the head and tail of the EFE increasing the penetration resistance of the EFP.Therefore,the structural size of the unit charge and the liner can be further optimized to reduce resistance to increase the penetration ability of the EFP.  相似文献   

12.
This paper studies the shaped charge jet performance in terms of different liner shapes including conical,bell,hemispherical and bi-conical liners.The critical angles and the relevant flow velocities for the zir-conium liner material were calculated analytically and numerically using Autodyn hydro-code.The relationship between the critical collapse angle and the flow velocity was determined for the conditions of jet formation and coherency.Penetration tests according to the standard testing procedures of API-RP34 (Section-Ⅱ) were performed to validate the numerical predictions of the jet performance of the studied liners.It was found that the four shaped charge liners all produced coherent jets with different performances.The penetration depth of the shaped charges with the bell and the bi-conical liner shapes increased by 10.3% and 22%,respectively,while the crater diameter of shaped charge with hemispherical liner increased by 85% representing the formation of an explosively-formed-projectile (EFP),when they are compared with the corresponding jet characteristics of a conical liner shaped charge.  相似文献   

13.
固-液旋流分离器结构优化模拟研究   总被引:1,自引:0,他引:1  
采用计算流体力学方法与流体动力学分析软件Fluent,探讨了固-液旋流分离器的溢流口直径、锥角、圆柱段长度和入口直径等主要结构参数对其颗粒溢流率的影响,并在此基础上进行结构参数的优化。结果表明,锥角、圆柱段长度和入口直径过大或过小都不利于旋流分离器的固液分离,均存在一个最佳值。对于主直径为75 mm的单锥双入口固-液旋流分离器,最佳圆柱段长度为87.0 mm,最佳入口直径为16.0 mm,最佳溢流口直径为16.5 mm,最佳锥角为6.0°。  相似文献   

14.
《防务技术》2019,15(2):179-185
In this article, parametric study of single confined fragment launch device was carried out. The configuration proposed was further studied to derive the empirical relationship for effect of fragment size, charge size, confinement thickness on fragment velocity. The simulations were carried out using ANSYS-AUTODYNE explicit solver. Fragment velocities were estimated as a function of different parametric combinations of explosive quantities, charge length to diameter ratio, fragment height to diameter ratio, confinement thickness, fragment material and fragment mass. The data was further converted to charge to metal ratio under fragment and confinement. It was observed that, increase in confinement thickness, charge quantity and decrease in fragment height increases the fragment velocity. It is also noted that, charge to metal mass ratio under fragment significantly affects the fragment velocity. At the end, an empirical relationship for fragment velocity interms of all these parameters was established. Using these relations, two velocities 1831.92 m/s and 2523.9 m/s required for NATO STANAG 4496 IM test were estimated. The design parameters for these velocities are presented. Also, the results estimated using the empirical relationship has been compared with published experimental data. Error in the predicted velocities is within the acceptable range. The empirical relationship proposed will be useful for finalization of design of the fragment launch device.  相似文献   

15.
为了研究导弹战斗部(柱壳装药)在破片场中的累积毁伤问题,在现有单破片起爆平板装药的Jacobs-Roslund经验准则的基础上,分别建立了考虑破片尺寸、破片撞击角度、柱壳装药的装药半径和壳体厚度的单球破片、双球破片冲击柱壳装药临界起爆条件的工程分析模型.该模型计算结果与数值模拟结果和现有试验结果相吻,证明利用该模型能较...  相似文献   

16.
气液同轴双离心式喷嘴喷雾特性   总被引:2,自引:0,他引:2       下载免费PDF全文
采用流体体积方法分析涡流器离心式喷嘴内部流动过程,采用单反相机和相位多普勒测速仪测量离心式喷嘴、气液同轴双离心式喷嘴的喷雾特性。发现涡流器离心式喷嘴内部流动的总压损失主要发生在涡流器槽道入口、收敛段和等直段。等直段使液膜厚度减小,喷雾锥角减小。离心式喷嘴喷雾粒径分布范围沿径向逐渐增加,轴向速度分布范围沿径向先减小后逐渐增加。气液同轴双离心式喷嘴喷雾特性受气液比影响很大,气液比小时旋流空气使喷雾锥角增加,粒径分布范围减小;气液比大时,气体膨胀压缩喷雾,使大液滴能够到达喷雾中心,喷雾外侧为二次雾化成的细小液滴。  相似文献   

17.
When a penetrator with enhanced lateral effect (PELE) impacts on a reinforced concrete (RC) target, the target is damaged with a large opening. An understanding of how PELE projectile parameters affect the opening dimension, is essential for effective design of the PELE projectile. In this study, under the condition that the impact velocity and target parameters (strength and thickness) were fixed values, the important influence factors of the PELE (jacket wall thickness B, jacket material strength Y1, filling material strength Y2 and angle of monolithic jacketθ) were determined by a dimensional analysis. Tests and simulations of the PELE penetrating the RC target were conducted to analyze the influence of these factors on opening diameter ((D), an equivalent diameter under relative kinetic energy). Based on the test and simulation results, it is found that the influence of these factors B, Y1 andθon the deformation mode of the jacket shows a similar trend:as values of the three factors decrease, the jacket deforms from small bending deformation to large one, and then to curling deformation. This causes the opening diameter to first increase with the decrease of these three factors, and then decreases. It is well known that the bending resistance of the jacket is related to these factors B, Y1 andθ. Therefore, a plastic limit bending moment (M0) of the jacket was quoted to characterize the influence of these factors on the bending deformation of the jacket and the opening diameter of the target. The influence factor Y2 causes (D) to first increase with the increase of Y2, and then decreases. A formula was developed to predict the opening diameter, whose influence parameters were considered in a dimensionless way. It has been shown that the dimensionless opening diameter (D)/d1 is dependent on two dimensionless parameters Q = (d31fc/M0) and G = (fc/Y2), where d1 and fc are the outer diameter of the projectile and the compressive strength of the target, respectively.  相似文献   

18.
为了增强柱形战斗部轴向威力,在无壳柱形战斗部底面布置单层离散的预制破片。开展圆柱形TNT装药驱动轴向预制破片飞散试验,获得预制破片的最大初速、飞散角等特征参数;运用LS-DYNA软件对装药驱动预制破片过程进行数值模拟,阐述预制破片群飞散过程;对装药驱动整体平板理论计算公式进行改进,获得预制破片的最大初速。结果表明:破片初速理论计算结果、数值计算结果和试验结果吻合良好;随着与装药底部中心距离的加大,破片初速、径向飞散角分别近似呈“抛物线”减小、增大;试验实测、理论计算得到的破片最大初速值超过2500 m/s,试验实测的径向飞散角最大约为22°,而周向飞散角则普遍较小,均值在5°以内。  相似文献   

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