The influence of alkali-resistant glass fibres on properties of fine-aggregate concretes - Biblioteka Politechniki Krakowskiej

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The influence of alkali-resistant glass fibres on properties of fine-aggregate concretes

aktualizacja

Typ: referat opublikowany w czasopiśmie

Autor
Wariant tytułu
polski
Wpływ włókien ze szkła cyrkonowego na właściwości betonów drobnokruszywowych
Data wydania
2019
Opublikowane w
Vol.
262
Abstrakt
angielski
The aim of this paper is to assess the effect of modification of fine-aggregate concrete properties with zirconia alkali-resistant glass fibres. Three types of fine-aggregate composites were subject to tests: normal-weight concretes made of natural sand, non-foamed and foamed lightweight concretes made of expanded glass aggregate. The concretes were modified with the glass fibres mainly in quantities ranged from 1.0 to 5.0 kg/m3. Even such low contents resulted in the increase of both flexural and compressive strength, by up to 45 % and 26 %, respectively. In the case of normal-weight fine-aggregate concretes the applied glass fibres turned out to be especially effective in improvement of the properties in early ages. At the age of 28 days both types of concretes revealed similar percentage strength increase. In comparison to HP 12 mm the application of longer fibres (HP 24 mm) led to slightly higher results of flexural strength tests. On the other hand, the shorter fibres were definitely more effective in the improvement of compressive strength due to their greater number and more uniform dispersion in concrete volume. The used contents of alkali-resistant glass fibres did affect neither density nor water absorption of the hardened concretes.
Słowa kluczowe
glass fibers, fine-aggregate concrete, expanded glass
włókna szklane, beton drobnokruszywowy, szkło ekspandowane
Zakres stron
1-8
Język
angielski
Miejsce wydania
Wydawca
ISSN
2261-236X
Nazwa konferencji
Numer konferencji
LXIV
Miejsce konferencji
Data konferencji
2018
Uwagi
Session: Building materials engineering
Sesja: Inżynieria materiałów budowlanych
Link do publikacji
Link do Portalu CRIS PK