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TOPOLÁŘ, L. PAZDERA, L. KUCHARCZYKOVÁ, B. SMUTNÝ, J. MIKULÁŠEK, K.
Originální název
Using acoustic emission methods to monitor cement composites during setting and hardening
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
Cement-based composites belong among the basic building materials used in civil engineering. Their properties are given not only by their composition but also by their behaviour after mixing as well as by the methods of curing. Monitoring the processes and phenomena during the early stages of setting is vital for determining the resulting properties and durability. The acoustic emission method is a unique non-destructive method that can detect structural changes as a cement-based composite is setting. It can also detect the onset and growth of cracks during the service life of a cement-based composite since the moment it has been mixed. The paper discusses the use of the acoustic emission method with focus on the early stage of the lifespan of a cement-based composite including the measures necessary for its use and description of the parameters of acoustic emission signals.
Klíčová slova
fine-grained cement composite; volume changes; shrinkage; acoustic emission method
Autoři
TOPOLÁŘ, L.; PAZDERA, L.; KUCHARCZYKOVÁ, B.; SMUTNÝ, J.; MIKULÁŠEK, K.
Vydáno
28. 4. 2017
Nakladatel
MDPI AG
Místo
Basel, Switzerland
ISSN
2076-3417
Periodikum
Applied Sciences - Basel
Ročník
7
Číslo
5:451
Stát
Švýcarská konfederace
Strany od
1
Strany do
11
Strany počet
URL
http://www.mdpi.com/2076-3417/7/5/451
Plný text v Digitální knihovně
http://hdl.handle.net/11012/64772
BibTex
@article{BUT135045, author="Libor {Topolář} and Luboš {Pazdera} and Barbara {Kucharczyková} and Jaroslav {Smutný} and Karel {Mikulášek}", title="Using acoustic emission methods to monitor cement composites during setting and hardening", journal="Applied Sciences - Basel", year="2017", volume="7", number="5:451", pages="1--11", doi="10.3390/app7050451", issn="2076-3417", url="http://www.mdpi.com/2076-3417/7/5/451" }