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Laminate composites behavior under quasi-static and high velocity perforation

机译:层状复合材料在准静态和高速穿孔下的行为

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摘要

In this paper, the behavior of woven E-glass fabric composite laminate was experimentally investigated under quasi-static indentation and high velocity impact by flat-ended, hemispherical, conical (cone angle of 37 degrees and 90 degrees) and ogival (CRH of 1.5 and 2.5) cylindrical perforators. Moreover, the results are compared in order to explore the possibility of extending quasi-static indentation test results to high velocity impact test results in different characteristics such as perforation mechanisms, performance of perforators, energy absorption, friction force, etc. The effects of perforator nose shape, nose length and nose-shank connection shapes were investigated. The results showed that the quasi-static indentation test has a great ability to predict the high velocity impact behavior of the composite laminates especially in several characteristics such as perforation mechanisms, perforator performance. In both experiments, the highest performance occurs for 2.5 CRH projectile and the lowest is related to blunt projectiles. The results show that sharp perforators indicate lower values of dynamic enhancement factor and the flat-ended perforator represents the maximum dynamic enhancement factor among other perforators. Moreover, damage propagation far more occurred in high velocity impact tests then quasi-static tests. The highest damage area is mostly observed in ballistic limit of each projectile which projectile deviation strongly increases this area.
机译:本文通过平端,半球形,圆锥形(圆锥角分别为37度和90度)和锯齿状(CRH为1.5),在准静态压痕和高速冲击下,对机织E玻璃纤维织物复合层压板的性能进行了实验研究。和2.5)圆柱形穿孔器。此外,比较结果是为了探讨将准静态压痕测试结果扩展到具有不同特征的高速冲击测试结果的可能性,例如穿孔机制,穿孔器性能,能量吸收,摩擦力等。穿孔器的影响研究了鼻子的形状,鼻子的长度和鼻子-鼻子的连接形状。结果表明,准静态压痕试验具有很好的预测复合材料层合板高速冲击性能的能力,尤其是在射孔机理,射孔器性能等几个特性方面。在这两个实验中,对于2.5 CRH弹丸,性能最高,而与钝弹丸的性能最低。结果表明,尖锐的射孔器指示较低的动态增强因子值,而平端射孔器则代表其他射孔器中最大的动态增强因子。此外,在高速冲击试验中,损伤传播远多于准静态试验。在每个弹丸的弹道极限中通常观察到最大的损坏区域,而弹丸偏离会大大增加该区域。

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