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1.
基于ABAQUS/Explicit非线性有限元分析程序,通过二次开发利用含损伤的Johnson-Cook本构模拟靶板材料,对刚性平头弹丸垂直侵彻不同厚度的金属靶板进行了数值仿真,实现了侵彻过程的可视化。结果表明:网格密度对计算结果有影响,但随着网格密度增加,结果趋于收敛;侵彻过程中,弹丸与靶板发生了多次碰撞,靶板的塑性变形局限在很窄的剪切带内;对数值计算结果与试验结果进行了比较,发现二者吻合得较好。相关结论对防护结构的设计具有指导意义。  相似文献   

2.
为研究球形头部弹丸高速侵彻运动靶板的侵彻规律,运用LS-DYNA动力分析软件仿真研究了不同条件下球形头部弹丸对靶板的正侵彻效应,获得了运动靶板厚度、材料和弹丸着速3种参数对侵彻过程中弹丸弹道偏移、翻转角度和剩余速度的响应规律。结果表明,随着着速的提高,弹丸翻转幅度和弹道偏移量逐渐减小;随着靶板厚度的增加,弹丸正向翻转角度和轴向剩余速度显著减小,而弹道偏移量增大;3种材料运动靶板中,4340钢靶对弹丸弹道偏移、翻转角度和剩余速度的影响最大,Weldox460钢次之,LY12铝最小。  相似文献   

3.
为了研究弹丸对武器装备的损伤,建立弹丸侵彻多层靶板的有限元模型,对不同初速弹丸侵彻多层靶板进行仿真试验,引入等效应变及等效应力参量以精确描述靶板损伤,提出一种基于多元统计分析对靶板损伤进行评估的方法。结果表明:利用该方法所得到的计算结果与理论分析结果完全一致。这说明基于多元统计分析的靶板损伤评估方法能够正确地评价仿真实验中目标靶板的战损程度,因而可以进一步应用于装备侵彻损伤评估与易损性研究中。  相似文献   

4.
利用LS-DYNA软件对弹丸垂直侵彻贯穿C35强度混凝土靶板的过程进行了数值模拟,建立了混凝土靶板与等效靶的模型,获得混凝土靶板与等效靶的厚度转换关系.弹丸分别以1200、1000、800 m/s的速度垂直侵彻贯穿不同厚度混凝土靶板,获得不同厚度下混凝土靶板剩余穿透速度;以45#钢作为等效靶材料,根据靶体吸收动能等效原...  相似文献   

5.
为研究不同密度弹丸对武器装备的损伤,建立弹丸侵彻多层靶板的有限元模型,对不同密度弹丸侵彻多层靶板进行仿真试验。不同于传统的宏观破口尺寸损伤表征参数,引入等效应变及等效应力幅值来精确描述靶板损伤,并提出了一种基于多元统计分析对靶板损伤进行评估的方法。计算结果表明:利用该方法所得到的评估结果与理论分析结果完全一致。这说明基于多元统计分析的靶板损伤评估方法是切实可行的,可以进一步应用于装备损伤评估与易损性研究中。  相似文献   

6.
设计了30mm半穿甲弹斜侵彻陶瓷/钢复合靶的弹道试验,采用高速摄像记录了弹靶作用过程,研究了弹着角、弹丸位移以及背板变形挠度的图像测量方法,通过仿真验证了该方法的可行性与准确性.基于高速摄像序列图像对弹靶作用过程进行了测量分析,结合试验数据研究了弹着角对半穿甲弹侵彻效能的影响.结果表明:弹着角导致弹丸受靶板的不对称阻力作用,侧向力及侧向力矩使得弹丸在侵彻过程中不断偏转,表现为侵彻路径呈曲线;在相同速度条件下,随着弹着角的增大,侵靶时间延长,背板变形挠度减小,侵彻效能降低.  相似文献   

7.
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   

8.
应用AUTODYN仿真软件,对一种复合战斗部方案的爆炸成型弹丸成型性能进行了分析,结果表明,相对于传统布局方案,破片方案更改后改变了药型罩的成型过程,导致爆炸成型弹丸形状变差从而降低了毁伤性能。通过对结构参数影响进行分析,提出了优化方案,解决了破片方案调整后爆炸成型弹丸的成型问题。  相似文献   

9.
介绍了战斗部预知破片弹丸所针对的目标,给出了高速运动弹丸对目标的穿甲作用理论以及理论计算方法,并给出了计算结果;同时通过有限元分析方法在有限元分析软件中建立了弹丸对靶板侵彻的仿真计算模型并进行了计算。计算结果表明:预制破片弹丸所具备的威力不但能够侵彻给定的装甲目标,对装甲目标内部设施具有二次毁伤的效果。  相似文献   

10.
使用空气炮模拟火炮发射时的高过载环境对弹载测试仪进行测试时,弹丸撞击靶板会产生尖峰脉冲对测试仪造成严重的损伤,为提高测试仪的存活性,展开对缓冲靶板层叠方式(不同材质的靶板相互叠加的叠层结构)的研究。通过撞击动力学理论描述弹丸对靶板的压缩和侵彻行为,并结合动量守恒和能量守恒定律计算出靶板参数和传递到靶板上的冲量的关系。使用ANSYS/LS-DYNA建立弹丸正侵彻靶板模型,弹丸速度为200 m/s、质量为5.5 kg,仿真结果表明:3层总厚度450 mm的泡沫铝+泡沫铝+橡胶组合方式能有效消除尖峰脉冲并缩短弹丸对靶板的作用时间,加速度均值约为7 000g,脉宽为2.8 ms。受条件限制,空气炮试验采用弹丸质量为5.5 kg、速度为150 m/s,并将缓冲靶板的单层厚度减小到100 mm,结果表明:在泡沫铝+泡沫铝+橡胶组合方式下,弹丸结构和测试仪功能完好,加速度均值约为27 000g,脉宽为0.55 ms。  相似文献   

11.
《防务技术》2020,16(2):362-373
An increase in the use of the gun barrel will cause wear of the inner wall, which reduces the muzzle velocity and the spin rate of the projectile. The off-bore flight attitude and trajectory of the projectile also change, affecting the shooting power and the accuracy. Exterior ballistic data of a high-speed spinning projectile are required to study the performance change. Therefore, based on the barrel's accelerated life test, the whole process of projectile shooting is reproduced using numerical simulation technology, and key information on the ballistic performance change at each shooting stage are acquired. Studies have shown that in the later stages of barrel shooting, the accuracy of shooting has not decreased significantly. However, it is found that the angle of attack of the projectile increases as the wear of the barrel increases. The maximum angle of attack reaches 0.106 rad when the number of shots reaches 4300. Meanwhile, elliptical bullet hole has appeared on the target at this shooting stage. Through combining external ballistic theory with simulation results, the primary reason of this phenomenon is found to be a significant decrease in the muzzle spin rate of the projectile. At the end of the barrel life, the projectile muzzle spin rate is 57.5% lower than that of a barrel without wear.  相似文献   

12.
某型火箭炮是新型的主战装备,对其战术技术性能的研究具有重要意义。采用仿真的方法对该型武器系统对目标的毁伤过程进行研究,可以大大节约实弹射击所需经费,并且可以动态地观察毁伤过程的细节。根据某型火箭炮弹抛撒子弹模型及子弹毁伤目标性能指标,采用理论分析和计算机模拟手段,对该型火箭炮弹对面积目标的毁伤过程进行了仿真,并得出了毁伤效率随子弹枚数和CEP的变化规律。研究成果对该型武器系统的作战运用具有借鉴意义。  相似文献   

13.
《防务技术》2019,15(5):768-778
Annular grooved projectiles (AGPs) have drawn ongoing concerns as an advanced penetrator for their excellent anti-rebound capability in impacting metal plates. They could become embedded solidly in the target surface during low-velocity impact. In this investigation, the firm embedding behavior of AGP was observed by impact experiments. Corresponding numerical simulations provided a better understanding of this process. Experimental and numerical results indicated that the firm embedding behavior of AGP was mainly due to the filling-material in the groove rather than the friction between the projectile and target, unlike traditional shape such as conical projectile. According to observation, firm embedding process can generally be subdivided into four stages: initial-cratering stage, groove-filling stage, filling-material failure stage and rebound vibration stage. Moreover, the damage mechanics of target material around crater was obtained through microscopic tests. A comparison of the cross-sectional figures between the experiment and simulation proved that the analysis and the proposed method were reasonable and feasible, which further demonstrated that the firm embedding behavior has application potential in new concept warheads.  相似文献   

14.
为了研究某滑膛武器弹丸弹托的不同结构参数及摩擦系数对挤进阻力的影响,分别以弹丸弹托的不同结构参数及摩擦系数作为单一变量,利用Ansys-workbench有限元软件分别对其挤进过程进行数值模拟仿真,得到挤进阻力的变化,进而分析该结构参数对挤进阻力的影响,从而为该滑膛武器弹丸结构设计提供了重要依据,也为同类武器的弹托设计提供了一定的参考价值。  相似文献   

15.
The present study deals with development of conceptual proof for jute rubber basedflexible composite block to completely arrest the projectile impacting the target at high velocity impact of 400 m/s through numerical simulation approach using finite element (FE) method. The proposed flexible composite blocks of repeating jute/rubber/jute (JRJ) units are modelled with varying thickness from 30 mm to 120 mm in increments of 30 mm and impacted by flat (F), ogival (O) and hemispherical (HS) shaped projectiles. All the considered projectiles are impacted with proposed flexible composite blocks of different thicknesses and the penetration behaviour of the projectile in each case is studied. The penetration depth of the projectile in case of partially penetrated cases are considered and the effect of thickness and projectile shape on percentage of penetration depth is statistically analyzed using Tagu-chi's design of experiments (DOE). Results reveal that the though proposedflexible composite block with thickness of 90 mm is just sufficient to arrest the complete penetration of the projectile, considering the safety issues, it is recommended to use theflexible composite with thickness of 120 mm. The nature of damage caused by the projectile in the flexible composite is also studied. Statistical studies show that thickness of the block plays a prominent role in determining the damage resistance of the flexible composite.  相似文献   

16.
可变形定向破片战斗部模型试验和数值模拟研究   总被引:5,自引:1,他引:4       下载免费PDF全文
基于可变形定向破片战斗部的作用原理,设计了试验结构模型,并对其进行了静爆试验研究。根据试验结果,建立了有限元分析模型,利用LS-DYNA程序对可变形定向战斗部变形过程以及破片的飞散过程进行了数值模拟。结果表明,在目标方向破片密度和速度都有较大幅度增益,数值模拟与试验结果比较吻合。  相似文献   

17.
The experimental results and numerical modeling of penetration process of fluoropolymer projectiles in aluminum-based targets are presented. Analysis of mathematical models for interaction of elastoplastic projectile and target without taking additional energy released during interaction of fluoropolymer and aluminum into consideration is carried out. Energy fraction which is spent effectively on the increase in cavity volume is determined. The experimental and calculated results of penetration by combined and inert projectiles are compared.  相似文献   

18.
在分析剩余射程影响因素的基础上,以弹道特征参数弹道高y及速度矢量分量Vx和Vy为解释变量,以回归分析方法为数学工具,建立脉冲末修弹剩余射程预测模型。以目标点与弹丸预测落点之间的差值为广义弹道偏差,结合数值仿真,对落点预测导引进行深入研究,验证了回归分析模型的可行性。  相似文献   

19.
在将子弹均匀散布的椭圆区域等效转换为矩形区域的基础上,建立了适宽射向射击子母弹对矩形目标毁伤全概率计算的数学模型。通过函数转换和泛函分析给出了子弹均匀散布子母弹理想射击密度,得到了理想射击密度下对目标的毁伤概率计算公式。讨论了最有利火力分配方式的确定方法,给出了最优射向间隔和表尺差的计算公式,为便于实际应用,给出了最优火力分配计算中所需的3个参数的近似计算公式,最后给出了应用算例。  相似文献   

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