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Application of porous metal foams in hybrid armor systems

机译:多孔金属泡沫在混合装甲系统中的应用

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The U.S. Army has a strong interest in developing lightweight integral armor for ballistic protection. An advanced hybrid armor system was designed and fabricated with aluminum foam inserts between the strike plate and the backing plate. This new armor design utilizes the shock wave attenuation capability, high specific structural stiffness and low density of closed cell aluminum foams to enhance the overall ballistic performance. One-dimensional (1-D) and three-dimensional (3-D) finite element models of multi-layer armor containing aluminum foams impacted by a 20-mm fragment simulation projectile (FSP) have been developed to investigate the dynamic deformation of aluminum foam. Ballistic tests were conducted and the results indicated that armor targets incorporating aluminum foams have advantageous effects in shielding the shock wave generated by the projectile impact, effectively preventing premature failure of the backing plate. The ballistic stress wave experiments showed that the metal foam is effective in absorbing the impact-induced stress wave, and may thus delay or even prevent the onset of brittle fracture of ceramic layers and improve system performance. Evaluation of the dynamic deflection behind the targets showed that the metal foam was effective in containing rearward deformation of ballistic targets. Thus, metal foams may be useful for controlling backface deformation and spalling, and thereby provide added protection to equipment and personnel. These attributes of the aluminum foam used in hybrid armor systems add a new dimension to the design and effectiveness of lightweight armor systems for future armored vehicles.
机译:美国陆军对开发用于弹道保护的轻型整体装甲非常感兴趣。设计并制造了一种先进的混合装甲系统,在打击板和背板之间装有泡沫铝嵌件。这种新的装甲设计利用了冲击波衰减能力,高比结构刚度和闭孔泡沫铝的低密度来增强整体弹道性能。为了研究铝的动态变形,建立了包含20mm碎片模拟弹丸(FSP)冲击的含泡沫铝的多层装甲的一维(1-D)和三维(3-D)有限元模型。泡沫。进行了弹道测试,结果表明,结合了泡沫铝的装甲目标在屏蔽由弹丸撞击产生的冲击波方面具有有利的作用,有效地防止了背板的过早损坏。弹道应力波实验表明,金属泡沫材料能够有效吸收冲击引起的应力波,因此可以延迟甚至防止陶瓷层脆性断裂的发生,并改善系统性能。对目标后面的动态变形的评估表明,金属泡沫可有效地抑制弹道目标的向后变形。因此,金属泡沫可用于控制背面变形和剥落,从而为设备和人员提供额外的保护。混合装甲系统中使用的泡沫铝的这些特性为轻型装甲系统的设计和有效性增加了新的维度,可用于未来的装甲车。

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