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Fragmentation of an armour piercing projectile after impact on composite covered alumina tiles

机译:冲击穿甲复合氧化铝砖后穿甲弹的碎片

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In a typical body armour system, a hard armour plate is often used in conjunction with a soft ballistic panel. The main purpose of the armour plate is to erode and fragment an impacting projectile, such as 7.62 mm armour piercing (AP) projectiles with a very hard material core. This is made possible by employing a single ceramic tile as the strike face. This tile is covered by a sheet material. The sheet cover may improve the ballistic performance by partly maintaining the integrity of the ceramic. In this study, the effect of adding a composite cover has been investigated experimentally by ballistic testing of different types of composite-covered targets. The targets were totally perforated by a 7.62 mm AP hard steel core projectile at near-muzzle velocities (around 800 m/s). The post-impact process was monitored by high speed video, and the resulting core fragments were collected and analysed. This allowed the core fragmentation, residual velocity and kinetic energy-loss to be quantified. The results showed that the core fragmentation and the kinetic energy-loss of the projectile were most significant for the targets with the composite-cover on the back of the alumina. For targets with four composite back-layers, and an increased areal density of 9.5%, the mass of the projectile core was reduced by 61%, while the kinetic energy was reduced by 84%. The residual velocity did not vary to the same extent between the different target configurations. The mechanism behind the positive effect of a back cover is believed to be delayed opening of tensile cracks that originate from the back of the ceramic, which gives more time for interaction with the penetrator.
机译:在典型的防弹系统中,通常将硬质防弹板与软质防弹板结合使用。装甲板的主要目的是侵蚀和破碎撞击的弹丸,例如具有非常坚硬的材料核心的7.62毫米装甲穿透(AP)弹丸。通过使用单个瓷砖作为撞击面,可以实现这一点。该瓷砖被片状材料覆盖。片状覆盖物可以通过部分地保持陶瓷的完整性来改善弹道性能。在这项研究中,已通过对不同类型的复合物覆盖目标进行弹道测试,对添加复合物覆盖物的效果进行了实验研究。目标被7.62毫米AP硬钢芯射弹完全打孔,枪口速度接近(约800 m / s)。通过高速视频监控撞击后过程,并收集和分析所得的核心片段。这使得岩心破碎,残余速度和动能损失得以量化。结果表明,对于复合材料覆盖在氧化铝背面的靶,弹丸的芯破碎和动能损失最为显着。对于具有四个复合背层且目标密度增加9.5%的目标,射弹芯的质量减少61%,而动能减少84%。在不同的目标配置之间,残余速度没有以相同的程度变化。后盖积极作用背后的机理被认为是延缓了源自陶瓷背面的拉伸裂纹的打开,从而为与穿透剂的相互作用提供了更多的时间。

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