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Identifying the bond and abrasion behavior of alkali activated concretes by central composite design method
- Publication Year :
- 2017
-
Abstract
- WOS: 000393002700019<br />In this paper, bond strength and abrasion resistance of alkali activated concretes (AAC) were examined experimentally by using the central composite design (CCD) method. AAC were designed and produced considering the sodium concentration (SC), silicate modules (SM), curing temperature (CT) and exposed curing time (ECT) as the CCD's independent parameters. Twenty-one AAC mixtures were established depend on the various combinations of independent parameters in CCD at 95% confidence level. Effects of each independent parameter on the dependent parameters were statistically analyzed using experimental measurements and best possible combination of the independent parameters were defined for the maximization of the compressive strength, split tensile strength, UPV and bond behavior of AAC and for the minimization of abrasion value of AAC by solving the multi-objective optimization problems which is generated using the proposed regression models for the dependent parameters. Test results demonstrate that all studied independent parameters have the noteworthy effect on the properties of AAC statistically; however, the most effective independent parameter is SC. The optimum values of the parameters studied were defined as CT of 66 degrees C, ECT of 14.76 h, SC of 5.72% and SM of 1.0 for the defined multi-objective optimization problem. (C) 2016 Elsevier Ltd. All rights reserved.<br />Turkish Scientific and Technical Research Council [MAG-214M035]; Scientific Research Division of Mustafa Kemal University [13700]<br />This research was supported financially by Turkish Scientific and Technical Research Council (MAG-214M035) and Scientific Research Division of Mustafa Kemal University (13700). Authors thank to TUBITAK and Mustafa Kemal University.
- Subjects :
- Wear resistance
Tribology
Fly-ash
Statistical methods
Multi-objective optimization problem
Performance
Resistance
0211 other engineering and technologies
Geopolymers | Coal Ash | Slag Cement
020101 civil engineering
02 engineering and technology
Slag concrete
Pastes
Tensile strength
0201 civil engineering
Engineering
021105 building & construction
Concretes
Bond behavior
Curing
General Materials Science
Composite material
Curing (chemistry)
Multidisciplinary
Bond strength
Civil
Confidence levels
Regression analysis
Abrasion resistance
Corrosion
Split tensile strengths
Compressive strength
Statistical analysis
Construction & Building Technology
Engineering properties
Strength
Curing temperature
Optimization
Materials science
Central composite design
Abrasion (mechanical)
Materials Science
Ultimate tensile strength
Multiobjective optimization
Civil and Structural Engineering
Anchor
Silicates
Building and Construction
Independent parameters
Parameters
Alkali activated
Alkali activated concrete
Abrasion
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....a7616974632d8f7768b900b0ff49607c