Developing High-Strength Geopolymer using Least Activator and Pressure-Applied Casting: Techno-Enviro-Economic Performance
Author:
Affiliation:
1. Department of Architectural Engineering and Design, Faculty of Civil Engineering, University of Engineering and Technology, Lahore, Pakistan.
2. Sitzler Pty Ltd., 100 Pruen Road, Berrimah NT 0828, Australia.
Publisher
Japan Concrete Institute
Link
https://www.jstage.jst.go.jp/article/jact/22/6/22_327/_pdf
Reference74 articles.
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2. 2) Ahmad, M. and Rashid, K., (2022). “Novel approach to synthesize clay-based geopolymer brick: Optimizing molding pressure and precursors’ proportioning.” Construction and Building Materials, 322, 126472.
3. 3) Ahmad, M., Hameed, R., Shahzad, S. and Ghous Sohail, M., (2023). “Performance evaluation of loadbearing compressed fully recycled aggregate concrete bricks.” Structures, 55, 1235-1249.
4. 4) Ahmad, M., Rashid, K., Hameed, R., Ul Haq, E., Farooq, H. and Ju, M., (2022). “Physico-mechanical performance of fly ash based geopolymer brick: Influence of pressure − temperature − time.” Journal of Building Engineering, 50, 104161.
5. 5) Ahmad, M., Rashid, K., Tariq, Z. and Ju, M., (2021). “Utilization of a novel artificial intelligence technique (ANFIS) to predict the compressive strength of fly ash-based geopolymer.” Construction and Building Materials, 301, 124251.
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