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A numerical investigation of the influence of friction on energy absorption by a high-strength fabric subjected to ballistic impact

机译:摩擦对高强度织物受弹道冲击能量吸收影响的数值研究

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A finite element analysis was conducted to study the influence of friction during ballistic impact of a rigid sphere onto a square fabric panel that was firmly clamped along its four edges. Projectile-fabric friction and yarn-yarn friction were investigated. Modeling indicates that friction dramatically affects the local fabric structure at the impact region by hindering the lateral mobility of principal yarns. Reduction of lateral yarn mobility allows the projectile to load and break more yarns so that fabric possessing a high level of friction absorbs more energy than fabric with no friction. The projectile-fabric friction delays yarn breakage by distributing the maximum stress along the periphery of the projectile-fabric contact zone. The delay of yarn breakage substantially increases the fabric energy absorption during the later stages of the impact. The yarn-yarn friction hinders the relative motion between yarns and thus resists de-crimping of fabric weave tightness. It induces the fabric to fail earlier during the impact process. The overall influence of projectile-fabric friction and yarn-yarn friction cannot be calculated by simply adding their individual effects.
机译:进行了有限元分析,以研究在刚性球弹击到方形织物面板上时的摩擦力,该方形织物面板沿其四个边缘牢固地夹紧。研究了弹织物摩擦和纱线纱线摩擦。建模表明,摩擦会通过阻碍主要纱线的横向移动性而显着影响撞击区域的局部织物结构。降低纱线横向移动性可使弹丸加载并折断更多的纱线,因此具有高摩擦力的织物比没有摩擦的织物吸收更多的能量。弹丸织物摩擦通过沿弹丸织物接触区的外围分布最大应力来延迟纱线断裂。纱线断裂的延迟在冲击的后期阶段大大增加了织物的能量吸收。纱线之间的摩擦会阻碍纱线之间的相对运动,因此可以防止织物组织紧密度降低。它会导致织物在撞击过程中较早损坏。弹丸织物摩擦力和纱线纱线摩擦力的总影响无法通过简单地将它们各自的作用相加来计算。

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