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ROVNANÍK, P. ŠIMONOVÁ, H. TOPOLÁŘ, L. SCHMID, P. KERŠNER, Z.
Original Title
Effect of carbon nanotubes on the mechanical fracture properties of alkali-activated materials
Type
book chapter
Language
English
Original Abstract
The chapter reports on a study of the effect of multi-walled carbon nanotubes (MWCNTs) when used as dispersed reinforcement on the fracture properties and microstructure of alkali-activated materials. The amount of MWCNTs added varied in the range of 0.05–0.2% of the mass of aluminosilicate precursor. Mechanical and fracture properties were determined using fracture tests carried out on 40 × 40 × 160 mm specimens with a central notch. The observed parameters were compressive strength, modulus of elasticity, effective fracture toughness and specific fracture energy. Specimen response during fracture tests was also monitored by means of acoustic emission, and this method was also used for the determination of cracking tendency due to autogenous and drying shrinkage occurring during the hardening process.
Keywords
geopolymer; metakaolin; slag; fly ash; carbon nanotubes; fracture parameters; acoustic emision; shrinkage
Authors
ROVNANÍK, P.; ŠIMONOVÁ, H.; TOPOLÁŘ, L.; SCHMID, P.; KERŠNER, Z.
Released
18. 12. 2017
ISBN
978-83-7365-474-7
Book
Research and modelling in civil engineering 2017
Edition
1
Edition number
Pages from
37
Pages to
50
Pages count
14
BibTex
@inbook{BUT140080, author="Pavel {Rovnaník} and Hana {Šimonová} and Libor {Topolář} and Pavel {Schmid} and Zbyněk {Keršner}", title="Effect of carbon nanotubes on the mechanical fracture properties of alkali-activated materials", booktitle="Research and modelling in civil engineering 2017", year="2017", series="1", edition="1", pages="37--50", isbn="978-83-7365-474-7" }