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Perforation of 5083-H116 Aluminum Armor Plates with Ogive-Nose Rods and 7.62 mm APM2 Bullets

机译:带有负鼻杆和7.62毫米APM2子弹的5083-H116铝制铠装板的穿孔

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摘要

We conducted an experimental and analytical study to understand the mechanisms and dominant parameters for ogive-nose rods and 7.62 mm APM2 bullets that perforate 5083-H116 aluminum armor plates. The 20-mm-diameter, 95-mm-long, ogive-nose, 197 g, hard steel rods were launched with a gas gun to striking velocities between 230-370 m/s. The 7.62-mm-diameter, 10.7 g, APM2 bullet consists of a brass jacket, lead filler, and a 5.25 g, ogive-nose, hard steel core. The brass and lead were stripped from the APM2 bullets by the targets, so we conducted ballistic experiments with both the APM2 bullets and only the hard steel cores. These projectiles were fired from a rifle to striking velocities between 480-950 m/s. Targets were 20, 40, and 60-mm-thick, where the 40 and 60-mm-thick targets were made up of layered 20-mm-thick plates in contact with each other. The measured ballistic-limit velocities for the APM2 bullets were 4, 6, and 12% smaller than that for the hard steel cores for the 20, 40, and 60-mm-thick targets, respectively. Thus, the brass jacket and lead filler had a relatively small effect on the perforation process. In addition, we conducted large strain, compression tests on the 5083-H116 aluminum plate material for input to perforation equations derived from a cavity-expansion model for the ogive-nose rods and steel core projectiles. Predictions for the rod and hard steel core projectiles are shown to be in good agreement with measured ballistic-limit and residual velocity data. These experimental results and perforation equations display the dominant problem parameters.
机译:我们进行了一项实验和分析研究,以了解穿透5083-H116铝质装甲板的钝鼻杆和7.62毫米APM2子弹的机理和主要参数。用气枪发射直径20毫米,长95毫米,带齿鼻的197 g硬钢棒,以达到230-370 m / s的速度。直径7.62毫米,10.7克APM2子弹由黄铜外套,铅填充物和5.25克钝齿硬钢芯组成。目标从APM2子弹中剥离了黄铜和铅,因此我们对APM2子弹和仅硬质钢芯进行了弹道实验。这些弹丸从步枪发射,射速达到480-950 m / s。靶材为20、40和60毫米厚,其中40和60毫米厚的靶材是由相互接触的20毫米厚的分层板组成。对于20、40和60毫米厚的目标,APM2子弹的实测弹道极限速度分别比硬质钢芯小4、6和12%。因此,黄铜套和铅填料对穿孔过程的影响相对较小。此外,我们对5083-H116铝板材料进行了大应变压缩试验,以输入射孔方程式,该方程式是从齿鼻杆和钢芯弹丸的空腔扩展模型得出的。棒和硬钢芯弹丸的预测与测得的弹道极限和残余速度数据非常吻合。这些实验结果和射孔方程显示了主要的问题参数。

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