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BODNÁROVÁ, L. HELA, R.
Original Title
Development of High-Volume High Temperature Fly Ash Concrete
Type
journal article - other
Language
English
Original Abstract
To ensure sustainable concrete building industry it is necessary to decrease consumption of natural resources for manufacture of concrete and reduce content of CO2 produced during production of cement. This approach has not only ecological impact on future activities but it can also considerably reduce cost of concrete. In the Czech Republic, about 6.5 million tons of high quality fly ash is produced during classic high temperature combustion of anthracite or brown coal for production of electric energy. Fly ash produced in such way has high content of SiO2 and low content of CaO, and it is ranked among co-called siliceous fly ash, which has outstanding pozzolanic properties. This paper describes experience from experimental development of High Volume Fly Ash Concrete (HVFAC), where over 50% of fly ash is used as substitution of Portland cement for binder. High proportion of replaced Portland cement were tested in this research; impacts on strength of concrete at the age of 7 – 180 days, consistency of concrete and other related properties were observed.
Keywords
High-Volume Fly Ash Concrete, HVFAC, Consistency of concrete, Strength of concrete at the age of 7 – 180 days, Development of temperature, High temperature.
Authors
BODNÁROVÁ, L.; HELA, R.
RIV year
2015
Released
1. 4. 2015
Publisher
TTP
Location
jižní Korea
ISBN
1660-9336
Periodical
Applied Mechanics and Materials
Year of study
Number
752-753
State
Swiss Confederation
Pages from
544
Pages to
551
Pages count
8
URL
http://www.scientific.net/AMM.752-753.544
BibTex
@article{BUT114055, author="Lenka {Bodnárová} and Rudolf {Hela}", title="Development of High-Volume High Temperature Fly Ash Concrete", journal="Applied Mechanics and Materials", year="2015", volume="2015", number="752-753", pages="544--551", doi="10.4028/www.scientific.net/AMM.752-753.544", issn="1660-9336", url="http://www.scientific.net/AMM.752-753.544" }