Mechanical Properties of the Carbon Nanotube Modified Epoxy-Carbon Fiber Unidirectional Prepreg Laminates

被引:25
作者
Bakis, Goekhan [1 ]
Wendel, Jan-Felix [1 ]
Zeiler, Rico [1 ]
Aksit, Alper [1 ]
Haublein, Markus [1 ]
Demleitner, Martin [1 ]
Benra, Jan [2 ]
Forero, Stefan [2 ]
Schuetz, Walter [2 ]
Altstaedt, Volker [1 ]
机构
[1] Univ Bayreuth, Dept Polymer Engn, FAN A, Univ Str 30, D-95448 Bayreuth, Germany
[2] FutureCarbon GmbH, Ritter von Eitzenberger Str 24, D-95448 Bayreuth, Germany
关键词
carbon nanotubes; epoxy resins; carbon fibers; nanocomposites; prepregs; fiber-reinforced composites; toughness; mechanical properties; aerospace;
D O I
10.3390/polym13050770
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The effect of plasma treatment of the multi-walled carbon nanotube (MWCNT) surface on the fracture toughness of an aerospace grade epoxy resin and its unidirectional (UD) carbon fiber prepreg laminates has attracted scientific interest. A prepreg route eliminates the possible risk of carbon nanotube filtration by unidirectional carbon fibers. X-ray photoelectron spectroscopy results suggested that oxygen atom concentration at the nanotube surface was increased from 0.9% to 3.7% after plasma modification of the carbon nanotubes. A low number (up to 0.5 wt.%) of MWCNTs was added to epoxy resin and their carbon fiber prepreg laminates. Transmission electron micrographs revealed that the plasma treatment resulted in a better dispersion and distribution of MWCNTs in the epoxy resin. Plasma-treated MWCNTs resulted in a more pronounced resistance to the crack propagation of epoxy resin. During the production of the reference and nanotube-modified prepregs, a comparable prepreg quality was achieved. Neat nanotubes agglomerated strongly in the resin-rich regions of laminates lowering the interlaminar fracture toughness under mode I and mode II loading. However, plasma-treated nanotubes were found mostly as single particles in the resin-rich regions of laminates promoting higher energy dissipation during crack propagation via a CNT pull-out mechanism.
引用
收藏
页码:1 / 14
页数:14
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