Performance of blended ash geopolymer concrete at elevated temperatures
This study involved laboratory investigation of the performance of blended ash geopolymer concrete at elevated temperatures. Geopolymer concrete composite was prepared using blended ash, pulverized fuel ash, and palm oil fuel ash, obtained from agro-industrial waste along with alkaline activators. T...
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my.utm.587962022-04-07T06:45:36Z http://eprints.utm.my/id/eprint/58796/ Performance of blended ash geopolymer concrete at elevated temperatures Hussin, Mohd. Warid Bhutta, Muhammad Aamer Rafique Mohd. Azreen, Mohd. Azreen Ramadhansyah, Putra Jaya Mirza, Jahangir TH Building construction This study involved laboratory investigation of the performance of blended ash geopolymer concrete at elevated temperatures. Geopolymer concrete composite was prepared using blended ash, pulverized fuel ash, and palm oil fuel ash, obtained from agro-industrial waste along with alkaline activators. The samples were heated up to 800 °C to evaluate mass loss, strength, and microstructural changes due to thermal impact. Ordinary Portland cement (OPC) concrete was prepared as control concrete. The deterioration of concrete at elevated temperatures was examined by X-ray diffraction, fourier transformed infrared spectrometer, thermogravimetry analyser and field emission scanning electron microscope. A comparison between the performance of geopolymer and OPC concretes—the former exhibited better performance at elevated temperature. Kluwer Academic Publishers 2015 Article PeerReviewed Hussin, Mohd. Warid and Bhutta, Muhammad Aamer Rafique and Mohd. Azreen, Mohd. Azreen and Ramadhansyah, Putra Jaya and Mirza, Jahangir (2015) Performance of blended ash geopolymer concrete at elevated temperatures. Materials And Structures, 48 (3). pp. 709-720. ISSN 1359-5997 http://dx.doi.org/10.1617/s11527-014-0251-5 DOI:10.1617/s11527-014-0251-5 |
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This study involved laboratory investigation of the performance of blended ash geopolymer concrete at elevated temperatures. Geopolymer concrete composite was prepared using blended ash, pulverized fuel ash, and palm oil fuel ash, obtained from agro-industrial waste along with alkaline activators. The samples were heated up to 800 °C to evaluate mass loss, strength, and microstructural changes due to thermal impact. Ordinary Portland cement (OPC) concrete was prepared as control concrete. The deterioration of concrete at elevated temperatures was examined by X-ray diffraction, fourier transformed infrared spectrometer, thermogravimetry analyser and field emission scanning electron microscope. A comparison between the performance of geopolymer and OPC concretes—the former exhibited better performance at elevated temperature. |
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Article |
author |
Hussin, Mohd. Warid Bhutta, Muhammad Aamer Rafique Mohd. Azreen, Mohd. Azreen Ramadhansyah, Putra Jaya Mirza, Jahangir |
author_facet |
Hussin, Mohd. Warid Bhutta, Muhammad Aamer Rafique Mohd. Azreen, Mohd. Azreen Ramadhansyah, Putra Jaya Mirza, Jahangir |
author_sort |
Hussin, Mohd. Warid |
title |
Performance of blended ash geopolymer concrete at elevated temperatures |
title_short |
Performance of blended ash geopolymer concrete at elevated temperatures |
title_full |
Performance of blended ash geopolymer concrete at elevated temperatures |
title_fullStr |
Performance of blended ash geopolymer concrete at elevated temperatures |
title_full_unstemmed |
Performance of blended ash geopolymer concrete at elevated temperatures |
title_sort |
performance of blended ash geopolymer concrete at elevated temperatures |
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Kluwer Academic Publishers |
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2015 |
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http://eprints.utm.my/id/eprint/58796/ http://dx.doi.org/10.1617/s11527-014-0251-5 |
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