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用于航空航天应用的采用连续碳纳米管纱线的可扩展高拉伸模量复合层压板。

Scalable High Tensile Modulus Composite Laminates Using Continuous Carbon Nanotube Yarns for Aerospace Applications.

作者信息

Evers Cecil E, Vondrasek Britannia, Jolowsky Claire N, Park Jin Gyu, Czabaj Michael W, Ku Bailee E, Thagard Kaylee R, Odegard Gregory M, Liang Zhiyong

机构信息

FAMU-FSU College of Engineering, High-Performance Materials Institute, Florida State University, 2005 Levy Avenue, Tallahassee, Florida 32311, United States.

Department of Mechanical Engineering, University of Utah, Salt Lake City, Utah 84112, United States.

出版信息

ACS Appl Nano Mater. 2023 Jun 16;6(13):11260-11268. doi: 10.1021/acsanm.3c01266. eCollection 2023 Jul 14.

Abstract

An approach is established for fabricating high-strength and high-stiffness composite laminates with continuous carbon nanotube (CNT) yarns for scaled-up mechanical tests and potential aerospace structure applications. Continuous CNT yarns with up to 80% degree of nanotube alignment and a unique self-assembled graphitic CNT packing result in their specific tensile strengths of 1.77 ± 0.07 N/tex and an apparent specific modulus of 92.6 ± 3.2 N/tex. Unidirectional CNT yarn reinforced composite laminates with a CNT concentration of greater than 80 wt % and minimal microscale voids are fabricated using filament winding and aerospace-grade resin matrices. A specific tensile strength of up to 1.71 GPa/(g cm) and specific modulus of 256 GPa/(g cm) are realized; the specific modulus exceeds current state-of-the-art unidirectional carbon fiber composite laminates. The specific modulus of the laminates is 2.76 times greater than the specific modulus of the constituent CNT yarns, a phenomenon not observed in carbon fiber reinforced composites. The results demonstrate an effective approach for fabricating high-strength CNT yarns into composites for applications that require specific tensile modulus properties that are significantly beyond state-of-the-art carbon fiber composites and potentially open an unexplored performance region in the Ashby chart for composite material applications.

摘要

建立了一种用于制造具有连续碳纳米管(CNT)纱线的高强度和高刚度复合层压板的方法,用于扩大规模的力学测试和潜在的航空航天结构应用。具有高达80%纳米管排列度的连续CNT纱线以及独特的自组装石墨化CNT堆积结构,使其比拉伸强度达到1.77±0.07 N/tex,表观比模量达到92.6±3.2 N/tex。使用纤维缠绕和航空级树脂基体制造了CNT浓度大于80 wt%且微观孔隙率最小的单向CNT纱线增强复合层压板。实现了高达1.71 GPa/(g cm)的比拉伸强度和256 GPa/(g cm)的比模量;该比模量超过了当前最先进的单向碳纤维复合层压板。层压板的比模量比组成的CNT纱线的比模量大2.76倍,这一现象在碳纤维增强复合材料中未观察到。结果表明,对于需要特定拉伸模量性能且显著超越当前最先进碳纤维复合材料的应用,将高强度CNT纱线制成复合材料是一种有效的方法,并且可能在复合材料应用的阿什比图中开辟一个未被探索的性能区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e5e/10353548/88560039c78d/an3c01266_0002.jpg

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