The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete
The development of fly ash and microwave incinerated rice husk ash (MIRHA) blend as the source material for geopolymer concrete was studied through the observation of the hardened specimen strength. Compressive and bonding strength of the specimen indicate the significance of curing temperature in t...
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my.utp.eprints.84002014-04-08T13:56:57Z The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete Kusbiantoro, A. Nuruddin, F Shafiq, N. Qazi, Sobia AI Indexes (General) The development of fly ash and microwave incinerated rice husk ash (MIRHA) blend as the source material for geopolymer concrete was studied through the observation of the hardened specimen strength. Compressive and bonding strength of the specimen indicate the significance of curing temperature in the activation of MIRHA particles. The elevated temperature is presenting a suitable condition for rapid dissolution of silicate monomer and oligomer from MIRHA surfaces, which supports the formation of supersaturated aluminosilicate solution in geopolymer system. It contributes to the refinement of pores structure via the increasing geopolymer gel growth, as observed in the consistent compressive strength development of ambient-cured specimen to the oven-cured specimen. Densification of geopolymer framework appears to be the main contributor to the increasing bonding capacity of geopolymer binder. 2012-11 Article NonPeerReviewed http://www.sciencedirect.com/science/article/pii/S0950061812004564 Kusbiantoro, A. and Nuruddin, F and Shafiq, N. and Qazi, Sobia (2012) The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete. Construction and Building Materials, 36 . pp. 695-703. ISSN 0950-0618 http://eprints.utp.edu.my/8400/ |
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AI Indexes (General) Kusbiantoro, A. Nuruddin, F Shafiq, N. Qazi, Sobia The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
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The development of fly ash and microwave incinerated rice husk ash (MIRHA) blend as the source material for geopolymer concrete was studied through the observation of the hardened specimen strength. Compressive and bonding strength of the specimen indicate the significance of curing temperature in the activation of MIRHA particles. The elevated temperature is presenting a suitable condition for rapid dissolution of silicate monomer and oligomer from MIRHA surfaces, which supports the formation of supersaturated aluminosilicate solution in geopolymer system. It contributes to the refinement of pores structure via the increasing geopolymer gel growth, as observed in the consistent compressive strength development of ambient-cured specimen to the oven-cured specimen. Densification of geopolymer framework appears to be the main contributor to the increasing bonding capacity of geopolymer binder. |
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Article |
author |
Kusbiantoro, A. Nuruddin, F Shafiq, N. Qazi, Sobia |
author_facet |
Kusbiantoro, A. Nuruddin, F Shafiq, N. Qazi, Sobia |
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Kusbiantoro, A. |
title |
The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
title_short |
The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
title_full |
The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
title_fullStr |
The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
title_full_unstemmed |
The effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
title_sort |
effect of microwave incinerated rice husk ash on the compressive and bond strength of fly ash based geopolymer concrete |
publishDate |
2012 |
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http://www.sciencedirect.com/science/article/pii/S0950061812004564 http://eprints.utp.edu.my/8400/ |
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