Thickness effect on ballistic impact behavior of hybrid carbon/Kevlar composites

IF 8.3 1区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES Composites Science and Technology Pub Date : 2024-05-29 DOI:10.1016/j.compscitech.2024.110692
Sai Zhao , Jia Huang , Junchao Cao , Yong Chen , Xiaobiao Zuo , Kai Yi , Chao Zhang
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Abstract

Carbon fiber composites have poor impact resistance that constrains their wider application in advanced engineering structures, and hybridizing carbon fibers with Kevlar fibers is an effective method to enhance their impact resistance. The ballistic impact resistance can be optimized through regulating the hybridization layout and hybrid ratio, which requires systematically exploration on the inherent failure mechanism. In this work, the ballistic impact behavior of hybrid carbon/Kevlar fiber reinforced epoxy laminates against flat-head projectile are systematically investigated. Hybrid specimens with different thicknesses and hybridization ratios are designed, tested and compared. The results reveal the strong correlation between thickness and ballistic impact performance. When laminates are relatively thin, Kevlar fiber layers at the back surface impart superior impact resistance. In contrast, the opposite result is observed when the thickness is beyond a threshold value. With an increase in the Kevlar fiber hybridization ratio, this threshold value will occur in thinner laminates. Further analysis indicates that this phenomenon is related to a shear plugging effect that dominates the different modes of impact failure.

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厚度对碳/凯芙拉混合复合材料弹道冲击行为的影响
碳纤维复合材料的抗冲击性能较差,制约了其在先进工程结构中的广泛应用,而碳纤维与凯夫拉纤维杂化是提高其抗冲击性能的有效方法。通过调节杂化布局和杂化比例可以优化抗弹道冲击性能,但这需要对其内在失效机理进行系统的探索。本文系统研究了碳/凯芙拉纤维增强环氧混合层压板对平头弹丸的弹道冲击行为。设计、测试和比较了不同厚度和混合比的混合试样。结果表明,厚度与弹道冲击性能之间存在很强的相关性。当层压板相对较薄时,后表面的凯夫拉纤维层具有更强的抗冲击性能。相反,当厚度超过临界值时,则会出现相反的结果。随着凯夫拉纤维杂化率的增加,这一临界值将出现在更薄的层压板上。进一步分析表明,这种现象与剪切堵塞效应有关,这种效应主导着不同的冲击破坏模式。
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来源期刊
Composites Science and Technology
Composites Science and Technology 工程技术-材料科学:复合
CiteScore
16.20
自引率
9.90%
发文量
611
审稿时长
33 days
期刊介绍: Composites Science and Technology publishes refereed original articles on the fundamental and applied science of engineering composites. The focus of this journal is on polymeric matrix composites with reinforcements/fillers ranging from nano- to macro-scale. CSTE encourages manuscripts reporting unique, innovative contributions to the physics, chemistry, materials science and applied mechanics aspects of advanced composites. Besides traditional fiber reinforced composites, novel composites with significant potential for engineering applications are encouraged.
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