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Perforation and penetration of aluminium target plates by armour piercing bullets

机译:装甲穿甲弹对铝靶板的穿孔和穿透

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摘要

Experimental, analytical and numerical simulations were performed to study the ballistic resistance of 6061-T6 aluminium plates subjected to a normal impact of small calibre armour piercing bullets. Two types of bullets were used, steel and tungsten carbide core bullets. Three plate thicknesses, 101.6 mm, 76.2 mm and 25 mm, were considered. Bullets were impacted at ordnance velocity thus results range from deep penetration to complete perforation with residual velocity. Ballistic results, deformations of the plates and of the bullets are discussed and reproduced through numerical simulations using both LS-DYNA and ABAQ.US solvers; analytical models by means of a cavity expansion approach are also used. Exploiting analytical and numerical models the ballistic behaviour of the two bullets on the three plates is discussed with emphasis on the capability of the models to reproduce the physical features of the phenomena. X-ray diffraction measurements for the residual stress patterns of the plate's surface were also performed on all of the plates both before and after the tests and the experimental measurements are compared with the numerical model results. A specific discussion about tungsten carbide core bullet behaviour is reported highlighting the importance of the sabot in the impact phenomena. Although the work focuses on monolithic plates, the results and discussion can be of interest for the design of optimised multilayer armour shields.
机译:进行了实验,分析和数值模拟,以研究6061-T6铝板在小口径装甲穿甲弹的正常冲击下的弹道阻力。使用了两种类型的子弹,即钢​​芯和碳化钨芯子弹。考虑了三种板厚度,分别为101.6 mm,76.2 mm和25 mm。子弹以弹药的速度受到影响,因此结果范围从深穿透到残留速度完全射孔。讨论了弹道结果,板和子弹的变形,并通过使用LS-DYNA和ABAQ.US求解器的数值模拟对这些结果进行了再现。还使用通过腔扩展方法的分析模型。利用分析模型和数值模型,讨论了两个子弹在三个板上的弹道行为,并着重于模型再现现象物理特征的能力。在测试之前和之后,还对所有板进行了X射线衍射,以测量板表面的残余应力图案,并将实验测量值与数值模型结果进行了比较。据报道,有关碳化钨芯子弹行为的具体讨论强调了木托在撞击现象中的重要性。尽管该工作集中在整体板上,但结果和讨论对于优化多层装甲防护板的设计可能是有意义的。

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