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Delamination Controlled Ballistic Resistance of Polyethylene/Polyethylene Composite Materials

机译:聚乙烯/聚乙烯复合材料的分层控制防弹性能

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摘要

We have investigated ballistic response of polyethylene/polyethylene (PE/PE) composites to impact by Uzi bullets. For comparison, limited work was carried out on PE/aramid fiber hybrids and PE fiber/Polycarbonate plate laminates. The plates exhibited an average ballistic resistance, V_50, of approximately 90 m/s per 1 kg/m~2 area density. In term of the protection level per thickness, the ballistic resistance was 76 m/s per 1 mm. Visual and microscopic examinations identified indentation and delamination as the prevailing failure mechanisms. The delamination, energy calculated on the basis of a simple delamination model considering the fracture surface energy of the matrix, was shown to fully balance the dissipated kinetic energy of the bullet, while the contribution of the fiber fracture process was negligible. This is taken as strong circumstantial evidence for the significant role of this failure process in the ballistic resistance of these composites.
机译:我们已经研究了聚乙烯/聚乙烯(PE / PE)复合材料对Uzi子弹撞击的弹道响应。为了进行比较,在PE /芳族聚酰胺纤维杂化物和PE纤维/聚碳酸酯板层压板上进行了有限的工作。平板表现出的平均防弹强度V_50 /每1 kg / m〜2密度约为90 m / s。就每厚度的保护水平而言,防弹强度为每1mm 76m ​​/ s。视觉和显微镜检查将压痕和分层确定为主要的失效机理。在考虑到基质的断裂表面能的基础上,基于简单分层模型计算的分层能量显示出,可以充分平衡子弹的耗散动能,而纤维断裂过程的贡献可忽略不计。这是这种破坏过程在这些复合材料的弹道阻力中发挥重要作用的有力的环境证据。

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