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Carbon fiber coating with MWCNT in the presence of polyethyleneimine of different molecular weights and the effect on the interfacial shear strength of thermoplastic and thermosetting carbon fiber compositesCarbon fiber coating with MWCNT in the presence of polyethyleneimine of different molecular weights and the effect on the interfacial shear strength of thermoplastic and thermosetting carbon fiber composites

Other Titles
Carbon fiber coating with MWCNT in the presence of polyethyleneimine of different molecular weights and the effect on the interfacial shear strength of thermoplastic and thermosetting carbon fiber composites
Authors
Lee, DongkyuKim, YoungeunKwon, Oh HyeongPark, Won HoCho, Donghwan
Issue Date
Jun-2021
Publisher
SPRINGER JAPAN KK
Keywords
Carbon fiber coating; MWCNT; Polyethyleneimine; Polymer composites; Interfacial shear strength
Citation
CARBON LETTERS, v.31, no.3, pp.407 - 417
Journal Title
CARBON LETTERS
Volume
31
Number
3
Start Page
407
End Page
417
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/20822
DOI
10.1007/s42823-020-00169-3
ISSN
1976-4251
Abstract
The effect of multi-walled carbon nanotubes (MWCNT) coating in the presence of polyethyleneimine (PEI) of different molecular weights (MW) on the interfacial shear strength (IFSS) of carbon fiber/acrylonitrile-butadiene-styrene (ABS) and carbon fiber/epoxy composites was investigated. The IFSS between the carbon fiber and the polymer was evaluated by means of single fiber microbonding test. The results indicated that uses of the carbon fibers uncoated and coated with pristine, low MW PEI-treated, and high MW PEI-treated MWCNT significantly influenced the IFSS of both thermoplastic and thermosetting carbon fiber composites as well as the carbon fiber surface topography. The incorporation of low MW (about 1300) PEI into the carboxylated MWCNT was more effective not only to uniformly coat the carbon fiber with the MWCNT but also to improve the interfacial bonding strength between the carbon fiber and the polymer than that of high MW (about 25,000) PEI. In addition, carbon fiber/epoxy composite exhibited the IFSS much higher than carbon fiber/ABS composite due to the chemical interactions between the epoxy resin and amine groups existing in the PEI-treated MWCNT.
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