首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Impact, penetration, and perforation of a bonded carbon-fibre-reinforced plastic composite panel by a high-velocity steel sphere: an experimental study
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Impact, penetration, and perforation of a bonded carbon-fibre-reinforced plastic composite panel by a high-velocity steel sphere: an experimental study

机译:高速钢球对粘合碳纤维增强塑料复合板的冲击,穿透和穿孔:实验研究

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摘要

In this work, the response of a bonded carbon-fibre-reinforced plastic composite panel, which had been manufactured by bonding two laminates together, to impact, penetration, and perforation by a high-velocity steel sphere has been studied. The response of a relatively thick (about 12 mm) laminate has been compared with similar data from previous work by Hazell et al. where relatively thin monolithic laminates were impacted by the same type of projectile. It was found that the ballistic performance of the system was increased over the impact energy range of interest when compared with these similar, relatively thin composite laminates. Furthermore, both the energy absorbed per unit thickness of laminate and the level of damage as measured by a C-Scan system when the panels were perforated at normal incidence and oblique incidence were similar. This raises the prospect of reducing experimental testing at oblique angles, if the behaviour at normal incidence is known.
机译:在这项工作中,已经研究了通过将两个层压板粘合在一起而制成的碳纤维复合塑料粘合板对高速钢球的冲击,穿透和穿孔的响应。 Hazell等人先前的工作已经将相对较厚(约12 mm)层压板的响应与类似数据进行了比较。相对较薄的整体式层压板受到相同类型弹丸的影响。发现与这些类似的,相对薄的复合层压板相比,该系统的弹道性能在感兴趣的冲击能量范围内有所提高。此外,当在垂直入射和倾斜入射时对板进行穿孔时,通过层压板的每单位厚度吸收的能量和通过C-Scan系统测量的损坏程度相似。如果已知法线入射的行为,则可以减少斜角的实验测试。

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