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      Physical and mechanical properties of C class fly ash based lightweight geopolymer mortar produced with expanded vermiculite aggregate

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          Abstract

          Abstract: This study presents the physical and the mechanical properties of C class fly ash (FA) based lightweight geopolymer mortars produced with expanded vermiculite (EV) aggregate. The FA was activated with NaOH containing 12%, 14% and 16% sodium by weight. The volumetric ratios of EV/FA in the samples were chosen as 2,4 and 6 in the study. The liquid/solid ratio 0.23, 0.26 and 0.29. Lightweight geopolymer mortar (LGM) samples were produced by mixing FA, EV, NaOH and water in a mixer. The samples placed in molds were exposed to activation temperature of 100°C for 24 hours in the oven. The samples taken out of the oven were demolded and kept in air curing for 28 days at 20°C±2°C room temperature. After curing, unit weight, apparent porosity, water absorption ratio, ultrasonic pulse velocity (UPV), flexural strength and compressive strength tests were performed on the samples. In addition, the thermal conductivity coefficients of the samples were determined. As a result of the experiment, a compressive strength varying between 0.59 MPa and 3.81 MPa was obtained in lightweight geopolymers samples with a unit weight between 906 kg/m3 and 1477 kg/m3. Expanded vermiculite showed a good performance on thermal conductivity of LGMs and a decrease in thermal conductivity up to the 0.094 W/mK was observed.

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          Most cited references80

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          Geopolymers: Inorganic polymeric new materials

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            Alkali-activated materials

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                Author and article information

                Journal
                rconst
                Revista de la construcción
                Revista de la Construcción
                Escuela de Construcción Civil, Pontificia Universidad Católica de Chile (Santiago, , Chile )
                0718-915X
                2022
                : 21
                : 1
                : 21-35
                Affiliations
                [2] Yozgat orgnameYozgat Bozok University Turkey fuat.koksal@ 123456bozok.edu.tr
                [1] Yozgat orgnameYozgat Bozok University Turkey mehmet.kaya@ 123456bozok.edu.tr
                Article
                S0718-915X2022000100021 S0718-915X(22)02100100021
                10.7764/rdlc.21.1.21
                f0e375b1-2a42-472b-89cc-0b3583b8b080

                This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

                History
                : 14 August 2021
                : 12 December 2021
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 81, Pages: 15
                Product

                SciELO Chile


                thermal conductivity,compressive strength,flexural strength,vermiculite,fly ash,geopolymer

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