Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites
<p>The paper describes the influence of chemical modification of vapor grown carbon nanofibers (VGCnFs) on the thermal and electrical properties of the cement composites. The surface modification of nanofibers was performed by means of ozone and nitric acid treatments. It was shown that the ox...
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doaj-14fd0e7e35ef4a7fab45018334947d042020-11-25T01:40:03ZengKaunas University of TechnologyMedžiagotyra1392-13202029-72892017-08-0123215616010.5755/j01.ms.23.2.149938400Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement CompositesAgnieszka ŚLOSARCZYK0Waldemar PICHÓR1Maksymilian FRĄC2Poznan University of Technology, Institute of Structural Engineering, PolandAGH - University of Science and TechnologyAGH - University of Science and Technology<p>The paper describes the influence of chemical modification of vapor grown carbon nanofibers (VGCnFs) on the thermal and electrical properties of the cement composites. The surface modification of nanofibers was performed by means of ozone and nitric acid treatments. It was shown that the oxidized carbon nanofibers surface plays an important role in shaping the mechanical and especially electrical properties of cement composite. For cement matrix modified with carbon nanofibers subjected to oxidized treatment, the slightly increase of cement paste resistivity was observed. It confirms the better adhesion of carbon nanofibers to cement paste. However, independently of carbon nanofibers modification, the occurrence of VGCnFs in cement paste increased the electrical conductivity of the composite in comparison to the cement paste without fibers. The obtained values of electrical resistivity were comparable with values of cement composites modified with 4 mm long carbon fibers. Moreover, it was shown that the chemical modification of carbon nanofibers surface does not influence on the thermal properties of cement composites. In case of cement paste with unmodified and modified carbon nanofibers, the Seebeck voltage was proportional to the temperature difference and was independent of the oxidation degree of carbon nanofibers.</p><p>DOI: <a href="http://dx.doi.org/10.5755/j01.ms.23.2.14993">http://dx.doi.org/10.5755/j01.ms.23.2.14993</a></p>http://matsc.ktu.lt/index.php/MatSc/article/view/14993thermal and electrical properties, cement paste, surface treatment, carbon nanofibers |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Agnieszka ŚLOSARCZYK Waldemar PICHÓR Maksymilian FRĄC |
spellingShingle |
Agnieszka ŚLOSARCZYK Waldemar PICHÓR Maksymilian FRĄC Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites Medžiagotyra thermal and electrical properties, cement paste, surface treatment, carbon nanofibers |
author_facet |
Agnieszka ŚLOSARCZYK Waldemar PICHÓR Maksymilian FRĄC |
author_sort |
Agnieszka ŚLOSARCZYK |
title |
Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites |
title_short |
Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites |
title_full |
Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites |
title_fullStr |
Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites |
title_full_unstemmed |
Thermal and Electrical Characterization of the Carbon Nanofibers Based Cement Composites |
title_sort |
thermal and electrical characterization of the carbon nanofibers based cement composites |
publisher |
Kaunas University of Technology |
series |
Medžiagotyra |
issn |
1392-1320 2029-7289 |
publishDate |
2017-08-01 |
description |
<p>The paper describes the influence of chemical modification of vapor grown carbon nanofibers (VGCnFs) on the thermal and electrical properties of the cement composites. The surface modification of nanofibers was performed by means of ozone and nitric acid treatments. It was shown that the oxidized carbon nanofibers surface plays an important role in shaping the mechanical and especially electrical properties of cement composite. For cement matrix modified with carbon nanofibers subjected to oxidized treatment, the slightly increase of cement paste resistivity was observed. It confirms the better adhesion of carbon nanofibers to cement paste. However, independently of carbon nanofibers modification, the occurrence of VGCnFs in cement paste increased the electrical conductivity of the composite in comparison to the cement paste without fibers. The obtained values of electrical resistivity were comparable with values of cement composites modified with 4 mm long carbon fibers. Moreover, it was shown that the chemical modification of carbon nanofibers surface does not influence on the thermal properties of cement composites. In case of cement paste with unmodified and modified carbon nanofibers, the Seebeck voltage was proportional to the temperature difference and was independent of the oxidation degree of carbon nanofibers.</p><p>DOI: <a href="http://dx.doi.org/10.5755/j01.ms.23.2.14993">http://dx.doi.org/10.5755/j01.ms.23.2.14993</a></p> |
topic |
thermal and electrical properties, cement paste, surface treatment, carbon nanofibers |
url |
http://matsc.ktu.lt/index.php/MatSc/article/view/14993 |
work_keys_str_mv |
AT agnieszkaslosarczyk thermalandelectricalcharacterizationofthecarbonnanofibersbasedcementcomposites AT waldemarpichor thermalandelectricalcharacterizationofthecarbonnanofibersbasedcementcomposites AT maksymilianfrac thermalandelectricalcharacterizationofthecarbonnanofibersbasedcementcomposites |
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