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contributor authorاحسان معاصریen
contributor authorمجید کریمیen
contributor authorبهناز بازوبندیen
contributor authorمجید بنی ادمen
contributor authorمرتضی مغربیen
contributor authorEhsan Moaserifa
contributor authorMajid Karimifa
contributor authorBehnaz Bazoubandifa
contributor authorMajid Baniadamfa
contributor authorMorteza Maghrebifa
date accessioned2020-06-06T13:40:30Z
date available2020-06-06T13:40:30Z
date issued2018
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3364559?locale-attribute=en&show=full
description abstractAn integrated structure of carbon fiber‐carbon nanotube (CF‐CNT) was introduced to epoxy composite to reinforce the matrix at both macro and nano scale. The CNTs were deposited on the surface of the CF filaments and radially aligned under applied high electric field due to the strong repulsion forces between the tubes. The CF‐CNT hybrid is believed to provide efficient stress transfer from the matrix to the CNT and subsequently CF filaments. The CNTs were also introduced in the epoxy matrix separately to reinforce the rest of the matrix. Significant improvements have been observed in the tensile strength (193%) and elastic modulus (86%) compared with traditionally reinforced composites that can be ascribed by the extensive macro‐nano scale reinforcement of the epoxy matrix. It was found that the applied electric field plays a pivotal role in the achieved improvements probably due to the radial alignment of MWCNTs on the CF filaments.en
languageEnglish
titleRemarkable enhancements in mechanical properties of epoxy composites through double reinforcing structure: Integrated structure of carbon fiber‐carbon nanotube instead of conventional reinforcing methodsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsEpoxyen
subject keywordsCompositesen
subject keywordsCarbon Fiberen
subject keywordsCarbon Nanotubeen
journal titlePolymer Compositesfa
pages1099-1108
journal volume39
journal issue2
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1068895.html
identifier articleid1068895


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