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Experimental and Modeling Study on Ballistic Impact Behavior of a Woven Carbon/Epoxy Composite

机译:编织碳/环氧复合材料的弹道冲击行为实验和建模研究

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Textile composites are becoming more and more popular in armor application due to their lightweight and excellent impact resistance properties. In this paper, we investigate the ballistic impact behavior of a plain-weave carbon/epoxy composite experimentally and numerically. The impact test is conducted using a gas gun system with a cylindrical projectile. The damage phenomena and impact tolerance of the composite plates are examined under various impact velocities (220~360 m/s). An analytical approach is developed based on energy equilibrium and information of fracture pattern. It predicts the impact threshold velocity in a reasonable accuracy and the profile of residual impact velocity after penetration. On the other hand, finite element model is developed to model the damage behavior of the composite plate. The results described the progressive failure process and predicted the fracture area in both the front-side and backside of the composite panel. Overall, the presented analytical and numerical models correlate well with the experimental results. They are useful for further investigation on the quantitatively analyzing the energy absorption and failure mechanisms.
机译:由于它们的轻质和优异的抗冲击性能,纺织复合材料在盔甲应用中变得越来越受欢迎。在本文中,我们研究了实验和数值普通织物/环氧基复合材料的弹道冲击行为。使用具有圆柱形射弹的气枪系统进行冲击试验。在各种冲击速度(220〜360m / s)下检查复合板的损伤现象和抗冲差。基于能量平衡和裂缝模式信息开发了一种分析方法。它以合理的准确度和渗透后残余冲击速度的轮廓预测冲击阈值速度。另一方面,开发了有限元模型以模拟复合板的损伤行为。结果描述了逐行故障过程,并预测了复合板的前侧和背面的断裂区域。总的来说,所提出的分析和数值模型与实验结果相相关。它们可用于进一步调查定量分析能量吸收和失效机制。

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