Variation of mechanical properties and ballistic performance of fabric prepreg after resin coating processing

材料科学 复合材料 芳纶 涂层 极限抗拉强度 弹道冲击 变形(气象学) 机织物 纱线 拉伸试验 复合数 纤维
作者
Yanfei Yang,Wanwan Cao,Zihu Wang,Ji Li,Yan Zhang
出处
期刊:Composite Structures [Elsevier]
卷期号:321: 117232-117232 被引量:3
标识
DOI:10.1016/j.compstruct.2023.117232
摘要

This study aims to identify variation of mechanical properties and ballistic performance of fabric prereg after resin coating processing. An aramid fabric was coated with different resin ratio to obtain different fabric prepregs. Experimental tests and Finite Element (FE) simulations were conducted to investigate the role of resin coating. According to yarn pull-out test results, yarn mobility was restrained with increasing bonding force, which resulted in global deformation to the load. However, under ballistic impact, fabric prepregs displayed local failure and very limited Backface Signature (BFS). With increasing resin ratio, the tensile stress and energy absorption of the fabric prepregs was increased firstly and then decreased. In comparison with the neat fabric panel, the panel AF/R14 displayed the highest improvement of the tensile stress (16.28%) and specific energy absorption (21.5%). FE simulation results revealed the panel AF/R14 displayed obviously higher strain energy and frictional energy dissipation before failure than that of the neat fabric panel. When the fabric prepreg possessed appropriate bonding force, most of secondary yarns can be engaged in high strain (above 1%) during impact, which made great contribution to energy absorption as primary yarns. Therefore, resin coating on fabric can achieve improvement of ballistic performance.
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