首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Ballistic response of 12.7 mm armour piercing projectile against perforated armour developed from structural steel
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Ballistic response of 12.7 mm armour piercing projectile against perforated armour developed from structural steel

机译:12.7 mm穿甲弹对由结构钢制成的穿孔装甲的弹道响应

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This study investigates ballistic response of a developed perforated armour plate against 12.7 mm armour piercing tracer projectile. Experimental as well as numerical studies were carried out and the penetration of the projectile through a base aluminium plate was determined with and without the perforated armour plate. The armour piercing projectiles were able to penetrate the base armour plate in successive impacts. However, the combination of the perforated and base armour plates was able to stop the penetration of the armour piercing projectile. A finite element method-based numerical model was developed to investigate the defeating phenomenon of perforated and base armour plate combination. It was observed that the asymmetric impact of the projectile core did not produce large enough bending to fracture the core. However, the high hardness of the developed perforated plate was able to shatter the projectile core in multiple fragments which were then unable to penetrate the base armour plate. Craters of varying depths were observed on the impact side of the base armour plate. The research showed that the selected structural steel can be successfully used for ballistic protection.
机译:这项研究调查了一个发达的穿孔的装甲板对12.7毫米装甲穿甲示踪弹的弹道反应。进行了实验和数值研究,并确定了有无多孔铠装板时弹丸穿过铝基板的穿透力。穿甲弹在连续的撞击中能够穿透基础装甲板。但是,穿孔和基础装甲板的结合能够阻止装甲穿甲弹的穿透。建立了基于有限元方法的数值模型,以研究穿孔板和基础装甲板组合的破坏现象。观察到弹丸芯的不对称冲击没有产生足够大的弯曲以使芯破裂。但是,发达的多孔板的高硬度能够使弹丸芯破碎成多个碎片,然后无法穿透基础装甲板。在基础装甲板的撞击侧观察到了不同深度的火山口。研究表明,所选结构钢可以成功用于弹道防护。

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