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Slow Penetration of Ballistic Fabrics

机译:弹道织物渗透慢

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摘要

A quasistatic penetration test is designed and implemented to provide insight into the evolution and phenomenology of fabric deformation and failure during penetration. The results are needed to guide development of a physics-based computational model of fabric response to projectile impact. The test involves slowly pushing a rigidly held fragment simulator into and through a single ply fabric specimen. The stroke and load on the penetrator are recorded during the test, and a videocamera and microphone enable the fabric failure phenomena to be time-correlated with the load-stroke history. The three distinct modes of fabric failure observed in these tests―local yarn rupture, remote yarn failure, and yarn pullout―are the same modes observed in impact tests, although the extent to which each mode occurs is different in static and dynamic tests. The conditions under which the different failure modes occur and the effects on the load-stroke curve and the energy absorbed are determined.
机译:设计并实施了准静态渗透测试,以深入了解织物在渗透过程中变形和破坏的现象。需要这些结果来指导基于物理的弹丸冲击织物响应计算模型的开发。该测试包括将刚性固定的碎片模拟器缓慢推入并穿过单层织物样本。在测试过程中记录了穿透器的行程和载荷,并且摄像机和麦克风使织物破坏现象与载荷行程历史在时间上相关。尽管在静态和动态测试中每种模式发生的程度不同,但在这些测试中观察到的三种不同的织物破坏模式(局部纱线断裂,远程纱线破坏和纱线拔出)与冲击测试中观察到的模式相同。确定发生不同故障模式的条件以及对负载行程曲线和吸收的能量的影响。

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