Detail publikace

Quantification of Micro-cracks by Acoustic Emission Method during Setting and Hardening of Concrete

TOPOLÁŘ, L.

Originální název

Quantification of Micro-cracks by Acoustic Emission Method during Setting and Hardening of Concrete

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

As a non-traditional, non-destructive analysis method, the Acoustic Emission Method was used for civil engineering experiment. Concrete is a composite construction material frequently used in civil engineering. We know that concrete is as a man – when concrete is made it is as a baby, then it ages and its properties change in accordance to its baby life. That means it is better to monitor and change its properties when it is young as soon as possible. However, using the methods immediately after concrete birth (making the mixture) is difficult. The main aim of the article is to show the application of Acoustic Emission Method during concrete lifetime, particularly during the first days after mixing the mixture. Article describes monitoring concrete structure from their making up to a lot of month. Primary interesting part is during first day of hardening. Acoustic Emission Method has used for monitoring both samples. Expected result has been between covered and uncovered specimen.

Klíčová slova

Cocnrete, Hardening, Setting, Acoustic Emission, Temperature

Autoři

TOPOLÁŘ, L.

Rok RIV

2014

Vydáno

30. 7. 2014

Nakladatel

Trans Tech Publications

Místo

Switzerland

ISBN

978-3-03835-188-7

Kniha

Ecology and New Building Materials and Products

Edice

1

Číslo edice

1

ISSN

1022-6680

Periodikum

Advanced Materials Research

Ročník

1000

Číslo

1

Stát

Švýcarská konfederace

Strany od

199

Strany do

202

Strany počet

4

BibTex

@inproceedings{BUT108832,
  author="Libor {Topolář}",
  title="Quantification of Micro-cracks by Acoustic Emission Method during Setting and Hardening of Concrete",
  booktitle="Ecology and New Building Materials and Products",
  year="2014",
  series="1",
  journal="Advanced Materials Research",
  volume="1000",
  number="1",
  pages="199--202",
  publisher="Trans Tech Publications",
  address="Switzerland",
  doi="10.4028/www.scientific.net/AMR.1000.199",
  isbn="978-3-03835-188-7",
  issn="1022-6680"
}