Přístupnostní navigace
E-application
Search Search Close
Publication detail
MIZEROVÁ, C. ROVNANÍK, P. KUSÁK, I. SCHMID, P. TOPOLÁŘ, L.
Original Title
Self-Sensing Properties of Carbon Black or Graphite Modified Fly Ash Geopolymer under Flexure
Type
conference paper
Language
English
Original Abstract
Alkaline activated materials and geopolymers are recently widely involved in studies concerning their potential for advanced composites with enhanced electrical properties. This paper reports self-sensing behaviour of fly ash mortar doped with carbon black or graphite conductive admixture subjected to loading in three-point flexural test. Development of self-sensing properties and deformations of all mortars was initially investigated under flexural loading cycles with constant amplitude, final stage of the experimental part consisted in loading till fracture. Both reference and modified geopolymers failed to achieve satisfactory self-sensing performance during the cyclic loading but certain differences in fractural properties were observed.
Keywords
geopolymer, fly ash, carbon black, graphite, self-sensing, flexure, resistivity
Authors
MIZEROVÁ, C.; ROVNANÍK, P.; KUSÁK, I.; SCHMID, P.; TOPOLÁŘ, L.
Released
14. 10. 2022
Publisher
Trans Tech Publications Ltd
Location
Switzerland
ISBN
978-3-0364-1171-2
Book
Solid State Technologies and Modern Production
1012-0394
Periodical
Solid State Phenomena
Year of study
337
State
Swiss Confederation
Pages from
103
Pages to
108
Pages count
6
URL
https://www.scientific.net/SSP.337.103
BibTex
@inproceedings{BUT179644, author="Cecílie {Mizerová} and Pavel {Rovnaník} and Ivo {Kusák} and Pavel {Schmid} and Libor {Topolář}", title="Self-Sensing Properties of Carbon Black or Graphite Modified Fly Ash Geopolymer under Flexure", booktitle="Solid State Technologies and Modern Production", year="2022", journal="Solid State Phenomena", volume="337", pages="103--108", publisher="Trans Tech Publications Ltd", address="Switzerland", doi="10.4028/p-0bn76n", isbn="978-3-0364-1171-2", issn="1012-0394", url="https://www.scientific.net/SSP.337.103" }