首页> 外文期刊>Latin American Journal of Solids and Structures >Ballistic Limit of High-Strength Steel and Al7075-T6 Multi-Layered Plates Under 7.62-mm Armour Piercing Projectile Impact
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Ballistic Limit of High-Strength Steel and Al7075-T6 Multi-Layered Plates Under 7.62-mm Armour Piercing Projectile Impact

机译:高强度钢和Al7075-T6多层板在7.62毫米装甲穿透弹丸撞击下的弹道极限

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Abstract This paper presents the computational-based ballistic limit of laminated metal panels comprised of high strength steel and aluminium alloy Al7075-T6 plate at different thickness combinations to necessitate the weight reduction of existing armour steel plate. The numerical models of monolithic configuration, double-layered configuration and triple-layered configuration were developed using a commercial explicit finite element code and were impacted by 7.62 mm armour piercing projectile at velocity range of 900 to 950 m/s. The ballistic performance of each configuration plate in terms of ballistic limit velocity, penetration process and permanent deformation was quantified and considered. It was found that the monolithic panel of high-strength steel has the best ballistic performance among all panels, yet it has not caused any weight reduction in existing armour plate. As the weight reduction was increased from 20-30%, the double-layered configuration panels became less resistance to ballistic impact where only at 20% and 23.2% of weight reduction panel could stop the 950m/s projectile. The triple-layered configuration panels with similar areal density performed much better where all panels subjected to 20-30% weight reductions successfully stopped the 950 m/s projectile. Thus, triple-layered configurations are interesting option in designing a protective structure without sacrificing the performance in achieving weight reduction.
机译:摘要本文提出了一种基于计算的弹道极限,该弹道极限是由高强度钢和铝合金Al7075-T6板组成的不同厚度组合的层压板,以减轻现有装甲钢板的重量。使用商业化的显式有限元代码开发了整体构型,双层构型和三层构型的数值模型,并在速度范围为900至950 m / s的情况下受到7.62 mm穿甲弹的影响。量化并考虑了每个配置板的弹道性能,包括弹道极限速度,穿透过程和永久变形。已经发现,高强度钢的整体式板在所有板中具有最佳的防弹性能,但并未导致现有装甲板的重量减少。随着重量减轻从20%增至30%,双层结构面板对弹道冲击的抵抗力减弱,只有重量减轻面板的20%和23.2%才能阻止950m / s弹丸。具有相似面密度的三层配置面板的性能要好得多,所有重量减少了20-30%的面板均成功阻止了950 m / s的弹丸。因此,在设计保护结构而不牺牲实现轻量化的性能时,三层结构是有趣的选择。

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