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Ballistic performance of multi-metal systems

机译:多金属系统的弹道性能

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摘要

Ballistic resistance enhancement of armours and structures has been a prominent area of research over the years. Monolithic metallic plates have been the preferred choice for armours against high-velocity projectiles. High-strength steel is a popular choice for such systems. However, the high areal density deters in accommodating such systems in practical applications which require lightweight products. On the contrary, multi-metallic systems produced by the combination of low-density materials with similar or superior ballistic resistance as their monolithic counterparts have become attractive candidates in defence applications. However, only a limited number of comprehensive studies on the ballistic performance of multi-metal multi-layered targets are available in the literature. Moreover, these studies have drawn contradictory conclusions on the optimum arrangement of different layers and materials within the systems. In addition, existing knowledge in this area is scattered in the literature and there is a need to collate them to enhance the development of multi-metal multi-layered ballistic-resistant plate systems in order to be optimised for ballistic-related armour. This article aims to provide a comprehensive review of the effect of different metals, thickness, fracture mechanisms, feasibility of the connection types and the order of the metallic plates within targets on the ballistic performance.
机译:武器和结构的弹道抗性增强是多年来的突出研究领域。单片金属板是对高速射弹的护腿的首选选择。高强度钢是这种系统的热门选择。然而,高面积密度阻止在需要轻质产品的实际应用中容纳这种系统。相反,由于低密度材料的组合具有相似或优异的弹性阻力的多金属系统,因为它们的整体对应物成为防御应用中的吸引力。然而,在文献中只有有限数量的关于多金属多层目标的弹道性能的综合研究。此外,这些研究对系统内不同层和材料的最佳布置有矛盾的结论。此外,该区域的现有知识分散在文献中,并且需要将它们整理以增强多金属多层抗弹性板系统的发展,以便优化弹道相关的盔甲。本文旨在全面审查不同金属,厚度,断裂机制,连接类型的可行性以及在球磨道性能的目标中的金属板的顺序。

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