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FRANTÍK, P. ROVNANÍKOVÁ, P. KERŠNER, Z.
Original Title
Strength of AAAS Composites with Ceramic Precursor over Time
Type
conference paper
Language
English
Original Abstract
The paper deals with the approximation of the time evolution of the strengths of selected alkali-activated aluminosilicate (AAAS) composites based on ceramic precursors. Composites made of brick dust as a precursor and an alkaline activator with a silicate modulus of Ms = 0.8, 1.0, 1.2, 1.4, and 1.6 were investigated. The filler consisted of standard quartz sand in one case, and crushed brick in the other. The test specimens had nominal dimensions of 40 × 40 × 160 mm and were tested in three-point bending after 7, 28, 90, and 300 days of maturation. From each composite, 3 specimens were tested and the compressive strength was determined from the 6 specimen parts that remained after the bending tests. The obtained flexural and compressive strength values for the abovementioned 4 composite ages were approximated by the exponential function , where the coefficient a represents a horizontal asymptote to the approximation curve, i.e. the theoretical strength of the composite at time t = ∞; the exponential term of the approximation with the coefficients b and c expresses the degree of the time-dependent change of the respective compressive strength in the interval t = (0, ∞). The approximation was performed with the least squares method using genetic algorithms implemented in the Java GA package with open source code.
Keywords
Alkali-Activated Aluminosilicate, Ceramic Precursor, Compressive Strength, Flexure Strength, Time Approximation
Authors
FRANTÍK, P.; ROVNANÍKOVÁ, P.; KERŠNER, Z.
Released
9. 8. 2021
Publisher
Trans Tech Publications Ltd
Location
Switzerland
ISBN
9783035737554
Book
The 27th International Conference Concrete Days
1012-0394
Periodical
Solid State Phenomena
Year of study
322
State
Swiss Confederation
Pages from
60
Pages to
65
Pages count
6
BibTex
@inproceedings{BUT176248, author="Petr {Frantík} and Pavla {Rovnaníková} and Zbyněk {Keršner}", title="Strength of AAAS Composites with Ceramic Precursor over Time", booktitle="The 27th International Conference Concrete Days", year="2021", journal="Solid State Phenomena", volume="322", pages="60--65", publisher="Trans Tech Publications Ltd", address="Switzerland", doi="10.4028/www.scientific.net/SSP.322.60", isbn="9783035737554", issn="1012-0394" }