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ROVNANÍK, P.; MIZEROVÁ, C.; KUSÁK, I.; SCHMID, P.
Original Title
Self-Sensing Properties of Alkali-Activated Slag Composite with Carbon Black during Bending Test
English Title
Type
Paper in proceedings (conference paper)
Original Abstract
Aluminosilicate materials are generally considered electrical insulators. In order to achieve enhanced electrical conductivity these materials must doped with suitable conductive admixtures such as carbon black. These composites gain the importance in the new field of applications such as self-sensing materials or self-monitoring structures. This paper presents a study on self-sensing properties of alkali-activated slag composite with 2 and 4% of carbon black as conductive filler during repeated flexural and till fracture loading in the configuration of three-point bending test. The results showed that best performance of the self-sensing properties was achieved with 4% of carbon black, though both the compressive and flexural strengths were deteriorated.
English abstract
Keywords
Slag; Alkali Activation; Carbon Black; Sensing Properties
Key words in English
Authors
RIV year
2020
Released
16.08.2019
Publisher
Trans Tech publications
Location
Švýcarsko
ISBN
978-3-0357-1550-7
Book
Binders, Materials and Technologies in Modern Construction V
Edition
softcover
1662-9779
Periodical
Solid State Phenomena
Volume
296
Number
1
State
Swiss Confederation
Pages from
167
Pages to
172
Pages count
6
URL
https://www.scientific.net/SSP.296.167
BibTex
@inproceedings{BUT158053, author="Pavel {Rovnaník} and Cecílie {Mizerová} and Ivo {Kusák} and Pavel {Schmid}", title="Self-Sensing Properties of Alkali-Activated Slag Composite with Carbon Black during Bending Test", booktitle="Binders, Materials and Technologies in Modern Construction V", year="2019", series="softcover", journal="Solid State Phenomena", volume="296", number="1", pages="167--172", publisher="Trans Tech publications", address="Švýcarsko", doi="10.4028/www.scientific.net/SSP.296.167", isbn="978-3-0357-1550-7", issn="1012-0394", url="https://www.scientific.net/SSP.296.167" }