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An analytical model for ballistic impact on textile based body armour

机译:弹道对基于纺织品的防弹衣的冲击分析模型

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Polymer fibres with high tenacity and modulus such as Kevlar~? are widely used in personal protection applications. Normally these fibres are manufactured into different fabric structures before being assembled layer by layer to form personal protection panels. This paper reports on an analytical model of ballistic impact of multi-layer woven fabrics developed based on the momentum theory and analytical models of single-yarn ballistic impact proposed by previous researchers. This model incorporates the effect of various intrinsic parameters such as yarn linear density and fabric thread density and the effect of various extrinsic parameters such as the projectile dimension and mass. The model also takes into account the phenomenon of strain gradient among the panel layers and its effects on the tensile strain at the edge of the projectile and the angle between the impact line and the yarn axis. In addition, possible shear failure is also considered by using shear strength together with maximum tensile strain as the failure criteria. It has been found that the results from the analytical modelling agree closely with the experimental results. Further, the analytical modelling also reveals that the model is useful in describing the strain distribution history in the primary yarns in each layer of fabric in the panel. It has been concluded here and in other published work that during the ballistic impact of multi-layer woven fabrics shear failure occurs before tensile failure for the front layers which prevents the high strength polymer fibres reaching their full energy absorption potential.
机译:具有高强度和模量的聚合物纤维,例如Kevlar®被广泛用于个人防护应用中。通常,在将这些纤维逐层组装以形成个人防护面板之前,将它们制造成不同的织物结构。本文报道了基于动量理论开发的多层机织织物弹道影响的分析模型和先前研究人员提出的单纱弹道影响的分析模型。该模型结合了各种固有参数的影响,例如纱线的线密度和织物线密度,以及各种外部参数的影响,例如弹丸的尺寸和质量。该模型还考虑了面板层之间的应变梯度现象及其对弹丸边缘的拉伸应变以及冲击线与纱线轴线之间的夹角的影响。另外,还可以通过将剪切强度与最大拉伸应变一起用作破坏准则来考虑可能的剪切破坏。已经发现,分析建模的结果与实验结果非常吻合。此外,分析模型还显示该模型可用于描述面板中每一层织物中主纱线中的应变分布历史。在这里和在其他已发表的工作中已经得出结论,在多层机织织物的弹道冲击期间,在前层的拉伸破坏之前发生剪切破坏,这阻止了高强度聚合物纤维达到其全部能量吸收潜能。

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