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TOPOLÁŘ, L.; ŠIMONOVÁ, H.; MISÁK, P.
Originální název
Effect of Concrete Mixture Composition on Acoustic Emission and Fracture Parameters Obtained from Three-point Bending Test
Anglický název
Druh
Stať ve sborníku v databázi WoS či Scopus
Originální abstrakt
This paper reports the analysis of acoustic emission signals captured during three-point bending fracture tests of concrete specimens with different mixture composition. Acoustic emission is an experimental tool well suited for monitoring fracture processes in material. The typical acoustic emission patterns were identified in the acoustic emission records for three different concrete mixtures to further describe the under-the-stress behaviour and failure development. An understanding of microstructure–performance relationships is the key to true understanding of material behaviour. The acoustic emission results are accompanied by fracture parameters determined via evaluation of load versus deflection diagrams recorded during three-point bending fracture tests.
Anglický abstrakt
Klíčová slova
acoustic emission method, three-point bending test, concrete, fracture
Klíčová slova v angličtině
Autoři
Rok RIV
2016
Vydáno
20.02.2015
Nakladatel
Trans Tech Publication
Místo
Switzerland
ISBN
978-3-03835-452-9
Kniha
Binders, Materials and Technologies in Modern Constructions
Edice
1
ISSN
1022-6680
Periodikum
Advanced Materials Research
Svazek
2015
Číslo
1100
Stát
Švýcarská konfederace
Strany od
152
Strany do
155
Strany počet
4
BibTex
@inproceedings{BUT113038, author="Libor {Topolář} and Hana {Šimonová} and Petr {Misák}", title="Effect of Concrete Mixture Composition on Acoustic Emission and Fracture Parameters Obtained from Three-point Bending Test", booktitle="Binders, Materials and Technologies in Modern Constructions", year="2015", series="1", journal="Advanced Materials Research", volume="2015", number="1100", pages="152--155", publisher="Trans Tech Publication", address="Switzerland", doi="10.4028/www.scientific.net/AMR.1100.152", isbn="978-3-03835-452-9", issn="1022-6680" }