NUMERICAL SIMULATION OF RHOMBIC FRAGMENT PENETRATING INTO BALLISTIC GELATIN

Rui-guo Han, F. Dong, Zide Liu
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Abstract

In order to study the penetration effects of rhombic fragment penetrating into the ballistic gelatin, a numerical model was established by using Ansys/Ls-Dyna. The penetrating process and the transient response of gelatin were simulated using the proposed model which was validated by experiment. The effects of fragment mesh size, model simplification method and incident angle on simulation accuracy were analyzed by numerical simulation. The results indicated that the mesh size significantly influenced the accuracy of numerical results and computing time. The simulation result of the simplified 1/2 model of the fragment was apparently different from the experimental data, while that of whole model was coincident with the experimental results. In addition, the incident angle obviously affected the penetration depth, and the maximum difference of penetration depth at the similar initial velocity and different incident angles was about 40mm.
菱形破片穿透弹道明胶的数值模拟
为了研究菱形破片穿透弹道明胶的穿透效应,利用Ansys/Ls-Dyna软件建立了数值模型。利用该模型模拟了明胶的渗透过程和瞬态响应,并通过实验进行了验证。通过数值模拟分析了碎片网格尺寸、模型简化方法和入射角对仿真精度的影响。结果表明,网格尺寸对数值结果的精度和计算时间有显著影响。碎片简化1/2模型的仿真结果与实验数据有明显差异,而整个模型的仿真结果与实验结果吻合。入射角对侵彻深度有明显影响,相同初速和不同入射角下侵彻深度的最大差异约为40mm。
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