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FIALA, L.; JERMAN, M.; ROVNANÍK, P.; ČERNÝ, R.
Originální název
Basic physical, mechanical and electrical properties of electrically enhanced alkali-activated aluminosilicates
Anglický název
Druh
Článek WoS
Originální abstrakt
Alkali-activated aluminosilicates (AAAs) with electrically conductive admixtures are promising competitors to the cement-based materials enhanced in the same way. The electrical conductivity of these materials dramatically increases with a sufficient amount of admixtures, which broaden their possible applicability. Electrically optimized materials are typically used in self-heating, self-sensing or magnetic-shielding systems. However, an increase in the amount of admixtures can negatively affect the compressive or flexural strength and can lead to an increase in the porosity. Therefore, it is crucial to experimentally determine the mechanical properties in order to decide whether an electrically enhanced material is applicable in the building industry. In this research, basic physical, mechanical and electrical properties of AAAs with three types of electrically conductive admixtures in different dosages are studied. Typical representatives of spherical inclusions, carbon black (CB), graphite powder (GP) and carbon fibers (CF) as fibrous fillers, are tested. The experimental results reveal that AAAs with CB dosages higher than 4 % are promising materials that could be utilized in self-heating systems due to their sufficiently high electrical conductivity.
Anglický abstrakt
Klíčová slova
alkali-activated aluminosilicates; electrically conductive admixtures; compressive strength; flexural strength; electrical conductivity
Klíčová slova v angličtině
Autoři
Rok RIV
2018
Vydáno
01.11.2017
Místo
Ljublana
ISSN
1580-3414
Periodikum
Materiali in Tehnologije
Svazek
51
Číslo
6
Stát
Slovinská republika
Strany od
1005
Strany do
1009
Strany počet
5
BibTex
@article{BUT142315, author="FIALA, L. and JERMAN, M. and ROVNANÍK, P. and ČERNÝ, R.", title="Basic physical, mechanical and electrical properties of electrically enhanced alkali-activated aluminosilicates", journal="Materiali in Tehnologije", year="2017", volume="51", number="6", pages="1005--1009", doi="10.17222/mit.2017.051", issn="1580-2949" }