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Finite Element Evaluation Of Projectile Nose Angle Effects In Ballistic Perforation Of High Strength Fabric

机译:高强度织物弹道穿孔中弹丸鼻角效应的有限元评估

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摘要

The projectile nose angle is one of the parameters having a great influence on impact and penetration into high strength fabric. In order to study these effects, a realistic finite element model of TWARON fabric at yarn level is generated with eight node solid elements. LS-DYNA, a commercial finite element code is chosen as the solver. Projectile is assumed to be rigid in the simulations. The yarns, as major load carrying component of the fabric, are set to be transversely isotropic. To allow fracture in the yarns, an erosion algorithm was added to the yarn material. Eleven finite element models were built with nose angle of the projectile ranging from 30° to 180° with and difference of 15°. Simulations are performed and the effects of several parameters including energy absorption, size of the hole made by the projectile and von-Mises stress distribution for different nose angles and time steps are investigated.
机译:弹丸鼻角是对冲击和渗透到高强度织物中有很大影响的参数之一。为了研究这些影响,使用八个结点实体元素生成了一个实际的TWARON织物在纱线水平上的有限元模型。选择商业有限元代码LS-DYNA作为求解器。在模拟中假设弹丸是刚性的。作为织物主要载荷成分的纱线被设定为横向各向同性。为了使纱线断裂,将腐蚀算法添加到了纱线材料中。建立了11个有限元模型,其中射弹的鼻角范围为30°至180°,相差15°。进行了仿真,并研究了多个参数的影响,包括能量吸收,弹丸形成的孔的大小以及不同鼻角和时间步长的von-Mises应力分布。

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