Shen Yonghua, Wang Yangwei, Yan Zhaopu, Cheng Xingwang, Fan Qunbo, Wang Fuchi, Miao Cheng
School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, China.
National Key Laboratory of Science and Technology on Material under Shock and Impact, Beijing 100081, China.
Materials (Basel). 2021 Jul 28;14(15):4208. doi: 10.3390/ma14154208.
The effect of projectile nose shape on the ballistic performance of the ultra-high molecular weight polyethylene (UHMWPE) composite was studied through experiments and simulations. Eight projectiles such as conical, flat, hemispherical, and ogival nose projectiles were used in this study. The deformation process, failure mechanisms, and the specific energy absorption (SEA) ability were systematically investigated for analyzing the ballistic responses on the projectile and the UHMWPE composite. The results showed that the projectile nose shape could invoke different penetration mechanisms on the composite. The sharper nose projectile tended to shear through the laminate, causing localized damage zone on the composite. For the blunt nose projectile penetration, the primary deformation features were the combination of shear plugging, tensile deformation, and large area delamination. The maximum value of specific energy absorption (SEA) was 290 J/(kg/m) for the flat nose projectile penetration, about 3.8 times higher than that for the 30° conical nose projectile. Furthermore, a ballistic resistance analytical model was built based on the cavity expansion theory to predict the energy absorption ability of the UHMWPE composite. The model exhibited a good match between the ballistic resistance curves in simulations with the SEA ability of the UHMWPE composite in experiments.
通过实验和模拟研究了弹丸头部形状对超高分子量聚乙烯(UHMWPE)复合材料弹道性能的影响。本研究使用了八种弹丸,如圆锥形、平头、半球形和卵形头部弹丸。系统地研究了变形过程、失效机制和比能量吸收(SEA)能力,以分析弹丸和UHMWPE复合材料的弹道响应。结果表明,弹丸头部形状可在复合材料上引发不同的穿透机制。头部较尖的弹丸倾向于剪切穿过层压板,在复合材料上造成局部损伤区域。对于钝头弹丸的穿透,主要变形特征是剪切冲塞、拉伸变形和大面积分层的组合。平头弹丸穿透时比能量吸收(SEA)的最大值为290 J/(kg/m),约为30°圆锥形头部弹丸的3.8倍。此外,基于空穴扩张理论建立了弹道阻力分析模型,以预测UHMWPE复合材料的能量吸收能力。该模型在模拟中的弹道阻力曲线与实验中UHMWPE复合材料的SEA能力之间表现出良好的匹配。