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首页> 外文期刊>International journal of impact engineering >Influence of layer number and air gap on the ballistic performance of multi-layered targets subjected to high velocity impact by copper EFP
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Influence of layer number and air gap on the ballistic performance of multi-layered targets subjected to high velocity impact by copper EFP

机译:层数和气隙对多层靶材受铜EFP高速冲击的弹道性能的影响

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摘要

Ballistic performance of monolithic and multi-layered steel targets penetrated by EFP is investigated both experimentally and numerically. Terminal effects of multi-layered targets are summarized to assess the pros and cons of composite structures from a macro perspective. Correspondingly, morphology features of fracture surfaces and microstructure evolution of the craters are analyzed to reveal failure mechanisms of sub-structures. The results show that the monolithic target presents less effective than in-contact or spacing multi-layered targets as the dominant response of multi-layered targets is global plastic deformation and bulging which involved bending and stretching behavior. When the number of layers grows, the local plastic deformation increases rapidly and may lead to the failure of multi-layered targets. Moreover, the air gap increases the ballistic resistance of multi-layered targets especially as the width of air gap is larger than half length of projectile.
机译:通过实验和数值研究了EFP穿透的整体和多层钢靶的弹道性能。总结了多层目标的终端效应,从宏观角度评估了复合结构的优缺点。相应地,分析了断裂表面的形态特征和陨石坑的微观结构演变,揭示了亚结构的破坏机理。结果表明,整体式靶材的效果不如接触式或间隔式多层靶材,因为多层式靶材的主要响应是整体塑性变形和凸起,其中涉及弯曲和拉伸行为。当层数增加时,局部塑性变形会迅速增加,并可能导致多层目标的破坏。而且,气隙增加了多层靶的弹道阻力,特别是当气隙的宽度大于弹丸的一半长度时。

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