In Situ Reinforced Heterocyclic Aramid Fiber with Nanosized Graphene Whiskers: Small Addition, Big Gains

材料科学 极限抗拉强度 络腮胡子 结晶度 复合材料 模数 杨氏模量 芳纶 弹性模量 纤维
作者
Zhihua Xiao,Yankun Sun,Zechen Li,Fangzhi Zheng,Lu Zhao,Dong Sun,Kai Zhao,Chenggen Xu,Sijia Liao,Xinlong Ma,Xiaobai Wang,Chunming Xu,Yongfeng Li
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:34 (16) 被引量:10
标识
DOI:10.1002/adfm.202313351
摘要

Abstract Heterocyclic aramid fibers (HAFs) with high strength and high modulus are widely used in the field of impact resistance. However, the weak interaction between molecular chains of HAFs seriously hinders the simultaneous improvement of strength and modulus. Herein, small addition (0.05 wt%) of nanosized acyl‐chloride‐activated graphene whiskers (NGW‐Cl) is used as reinforcements to simultaneously increase the strength and modulus of HAFs. The resultant NGW‐Cl/HAFs monofilament displays high tensile strength and modulus of 6.31 and 152 GPa, which are 19% and 18.8% higher than that of HAFs. The NGW‐Cl/HAFs multifilaments show high tensile strength and modulus of 36.16 and 1008 cN per dtex, which are 19.34% and 24.14% higher than that of HAFs. Especially, the dynamic modulus of NGW‐Cl/HAFs is up to 268.0 GPa at 200 HZ, which is increased by 92.8% compared with HAFs (139.0 GPa), showing a great application potential in high‐frequency vibration fields. Additionally, the strength and modulus of NGW‐Cl/HAFs impregnated multifilaments is up to 6.08 and 152 GPa, which is increased by 24.5% and 28.8% compared with HAFs. This apparent improvement is because the strong chemical bonding between NGW‐Cl and heterocyclic aromatic chains enhances heterocyclic aromatic chain interaction, inducing high crystallinity and orientation of HAFs.

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