To read this content please select one of the options below:

Effect of the elevated temperature on the mechanical properties of geopolymer concrete using fly ash and ground granulated blast slag

Bheem Pratap (Department of Civil Engineering, National Institute of Technology Jamshedpur, Jamshedpur, India)
Pramod Kumar (Department of Civil Engineering, National Institute of Technology Jamshedpur, Jamshedpur, India)

Journal of Structural Fire Engineering

ISSN: 2040-2317

Article publication date: 5 December 2023

53

Abstract

Purpose

To investigate the mechanical properties of geopolymer concrete at elevated temperatures.

Design/methodology/approach

The investigation involved studying the influence of partially replacing fly ash with ground granulated blast furnace slag (GGBS) at different proportions (5%, 10%, 15%, 20% and 25%) on the composition of the geopolymer. This approach aimed to examine how the addition of GGBS impacts the properties of the geopolymer material. The chemical NaOH was purchased from the local supplier of Jamshedpur. The alkali solution was prepared with a concentration of 12 M NaOH to produce the concrete. After several trials, the alkaline-to-binder ratio was determined to be 0.43.

Findings

The compressive strength values at 28 days for specimens FG1, FG2, FG3, FG4 and FG5 are 35.42 MPa, 41.26 MPa, 44.79 MPa, 50.51 MPa and 46.33 MPa, respectively. The flexural strength values at 28 days for specimens FG1, FG2, FG3, FG4 and FG5 are 5.31 MPa, 5.64 MPa, 6.12 MPa, 7.15 MPa and 6.48 MPa, respectively. The split tensile strength values at 28 days for specimens FG1, FG2, FG3, FG4 and FG5 are 2.82 MPa, 2.95 MPa, 3.14 MPa, 3.52 MPa and 3.31 MPa, respectively.

Originality/value

This approach allows for the examination of how the addition of GGBS affects the properties of the geopolymer material. Four different temperature levels were chosen for analysis: 100 °C, 300 °C, 500 °C and 700 °C. By subjecting the geopolymer samples to these elevated temperatures, the study aimed to observe any changes in their mechanical.

Keywords

Acknowledgements

The authors are thankful to Anasuya Sahu for her unconditional support. She helped them in review, editing and adding some important previous studies.

Citation

Pratap, B. and Kumar, P. (2023), "Effect of the elevated temperature on the mechanical properties of geopolymer concrete using fly ash and ground granulated blast slag", Journal of Structural Fire Engineering, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/JSFE-06-2023-0028

Publisher

:

Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

Related articles