射弹
介观物理学
材料科学
弹道冲击
凯夫拉
比例(比率)
复合材料
计算
计算机模拟
数值分析
比例模型
结构工程
机械
计算机科学
环氧树脂
工程类
航空航天工程
数学
物理
数学分析
算法
量子力学
冶金
作者
Quoc Hoan Pham,Tuan-Long Chu,Toufik Kanit,A. Imad
标识
DOI:10.1177/00219983231153956
摘要
In this paper, multi-scale numerical modelling analysis is proposed to study the ballistic responses of a Kevlar KM2 woven fabric. Three meso-microscopic multi-scale numerical models are conducted by varying the number of microscopic primary yarns in the impact zone from 2 to 10. In each model, we analyse the evolution of the contact force, the projectile velocity and the fabric energies. An analysis of the failure modes of each configuration is also performed. Results of the three multi-scale models and a mesoscopic model are compared in order to find the optimal number of microscopic primary yarns to predict the fabric’s ballistic behaviour. It is highlighted that the multi-scale model consumes a reasonable computation cost. Furthermore, with the primary yarns modelled in the fibre scale, this model can fully describe the complex physical phenomena, such as fibre failure and the interaction between fibres, fibres and yarns, that occur during the impact.
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