Randjbaran Elias, Zahari Rizal, Jalil Nawal Aswan Abdul, Majid Dayang Laila Abang Abdul
Department of Aerospace Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400 Serdang, Selangor Darul Ehsan, Malaysia.
ScientificWorldJournal. 2014;2014:413753. doi: 10.1155/2014/413753. Epub 2014 May 12.
Current study reported a facile method to investigate the effects of stacking sequence layers of hybrid composite materials on ballistic energy absorption by running the ballistic test at the high velocity ballistic impact conditions. The velocity and absorbed energy were accordingly calculated as well. The specimens were fabricated from Kevlar, carbon, and glass woven fabrics and resin and were experimentally investigated under impact conditions. All the specimens possessed equal mass, shape, and density; nevertheless, the layers were ordered in different stacking sequence. After running the ballistic test at the same conditions, the final velocities of the cylindrical AISI 4340 Steel pellet showed how much energy was absorbed by the samples. The energy absorption of each sample through the ballistic impact was calculated; accordingly, the proper ballistic impact resistance materials could be found by conducting the test. This paper can be further studied in order to characterise the material properties for the different layers.
当前的研究报告了一种简便的方法,通过在高速弹道冲击条件下进行弹道测试,来研究混杂复合材料的堆叠顺序层对弹道能量吸收的影响。同时还计算了速度和吸收的能量。试样由凯夫拉纤维、碳纤维和玻璃纤维织物以及树脂制成,并在冲击条件下进行了实验研究。所有试样具有相同的质量、形状和密度;然而,各层的排列顺序不同。在相同条件下进行弹道测试后,圆柱形AISI 4340钢弹丸的最终速度显示了样品吸收了多少能量。计算了每个样品在弹道冲击下的能量吸收;据此,通过进行测试可以找到合适的抗弹道冲击材料。为了表征不同层的材料特性,本文可作进一步研究。