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Perforation of AA5083-H116 aluminium plates with conical-nose steel projectiles―experimental study

机译:锥鼻钢弹射穿AA5083-H116铝板的实验研究

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摘要

The interest regarding use of aluminium alloys in lightweight protective structures is today increasing. Even so, the number of experimental and computational investigations giving detailed information on such problems is still rather limited. In this paper, perforation experiments have been performed on AA5083-H116 aluminium plates with thicknesses varying between 15 and 30mm impacted by 20mm diameter, 98 mm long, HRC 53 conical-nose hardened steel projectiles. In all tests, initial and residual velocities of the projectile were measured and a digital high-speed camera system was used to photograph the penetration and perforation process. Based on these measurements, impact versus residual velocity curves of the target plates were constructed and the ballistic limit velocity of each target was obtained. An analytical perforation model from the open literature is then used to predict the ballistic limit velocity, and excellent agreement with the experimental data is found. The experimental results are finally compared to similar experiments on steel and concrete targets, and the capacity of the different materials is evaluated in relation to total weight.
机译:如今,有关在轻质保护结构中使用铝合金的兴趣正在增加。即便如此,提供有关此类问题的详细信息的实验和计算研究的数量仍然相当有限。在本文中,已经对厚度为15至30mm的AA5083-H116铝板进行了穿孔实验,该板受20mm直径,98mm长,HRC 53锥形鼻硬化钢弹丸的影响。在所有测试中,均测量了弹丸的初始速度和残余速度,并使用数字高速照相机系统拍摄了穿透和射孔过程。基于这些测量,构建了目标板的冲击速度与残余速度曲线,并获得了每个目标的弹道极限速度。然后,使用公开文献中的分析性射孔模型来预测弹道极限速度,并且发现与实验数据极为吻合。最后将实验结果与在钢和混凝土靶材上进行的类似实验进行比较,并根据总重量评估了不同材料的容量。

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