The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs

This study investigated the effects of acid-treated MWCNTs on the workability, compressive and tensile strength, porosity, and microstructure of CNT/cement composites. While workability decreased with acid treatment of CNTs, compressive and tensile strength improved significantly. Strength was also...

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Main Authors: Su-Tae Kang, Jun-Yeong Seo, Sun-Hong Park
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2015/308725
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spelling doaj-a8f1f3658e544af0815f5627cd17353c2020-11-25T00:06:43ZengHindawi LimitedAdvances in Materials Science and Engineering1687-84341687-84422015-01-01201510.1155/2015/308725308725The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTsSu-Tae Kang0Jun-Yeong Seo1Sun-Hong Park2Department of Civil Engineering, Daegu University, 201 Daegudae-ro, Jillyang, Gyeongsan 712-714, Republic of KoreaDepartment of Civil Engineering, Daegu University, 201 Daegudae-ro, Jillyang, Gyeongsan 712-714, Republic of KoreaSsangyong Remicon Co., Ltd., 17-12, Goegok 4-gil, Haepyeong, Gumi 730-871, Republic of KoreaThis study investigated the effects of acid-treated MWCNTs on the workability, compressive and tensile strength, porosity, and microstructure of CNT/cement composites. While workability decreased with acid treatment of CNTs, compressive and tensile strength improved significantly. Strength was also enhanced by using acid-treated CNTs alone, compared to using a surfactant with acid-treated CNTs. MIP analysis revealed that the porosity decreases from using acid-treated CNTs and that using acid-treated CNTs without a surfactant was more effective in reducing the size of micropores. A SEM analysis revealed improved CNT dispersion and dense hydration products in cement composites containing acid-treated CNTs. Ultimately, the use of acid-treated CNTs improved the CNT dispersion within CNT/cement composites, enhanced the pore structure, and formed denser hydration products around CNTs.http://dx.doi.org/10.1155/2015/308725
collection DOAJ
language English
format Article
sources DOAJ
author Su-Tae Kang
Jun-Yeong Seo
Sun-Hong Park
spellingShingle Su-Tae Kang
Jun-Yeong Seo
Sun-Hong Park
The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
Advances in Materials Science and Engineering
author_facet Su-Tae Kang
Jun-Yeong Seo
Sun-Hong Park
author_sort Su-Tae Kang
title The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
title_short The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
title_full The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
title_fullStr The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
title_full_unstemmed The Characteristics of CNT/Cement Composites with Acid-Treated MWCNTs
title_sort characteristics of cnt/cement composites with acid-treated mwcnts
publisher Hindawi Limited
series Advances in Materials Science and Engineering
issn 1687-8434
1687-8442
publishDate 2015-01-01
description This study investigated the effects of acid-treated MWCNTs on the workability, compressive and tensile strength, porosity, and microstructure of CNT/cement composites. While workability decreased with acid treatment of CNTs, compressive and tensile strength improved significantly. Strength was also enhanced by using acid-treated CNTs alone, compared to using a surfactant with acid-treated CNTs. MIP analysis revealed that the porosity decreases from using acid-treated CNTs and that using acid-treated CNTs without a surfactant was more effective in reducing the size of micropores. A SEM analysis revealed improved CNT dispersion and dense hydration products in cement composites containing acid-treated CNTs. Ultimately, the use of acid-treated CNTs improved the CNT dispersion within CNT/cement composites, enhanced the pore structure, and formed denser hydration products around CNTs.
url http://dx.doi.org/10.1155/2015/308725
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