Research on Mechanical Properties of Geopolymer Concrete under early Stage Curing System

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Abstract:

Mechanical properties of geopolymer concrete under early stage curing system were studied. The results showed that at the early stage of curing time, compressive strength was improved significantly with the increasing of curing temperature and curing time. The compressive strength decreased and was close to that of standard curing condition at the age of 28d as the curing age increased. In addition, prolonging the storage time at room temperature before the step of high temperature curing could increase the long-term strength.

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492-496

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April 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yunsheng Zhang,Wei Sun,Jianfang Sha,Zhijian Liu.Preparation, Property and Mechanism of Fly Ash Based Geopolymer Concrete[J].China Concrete and Cement Products: 2003,2:13~15.

Google Scholar

[2] Hongling Wang,Haihong Li,Zhizhong Feng,Nong Tian,Fengyuan Yan.Study of Geopolymer Based on Kaolinite with Different Activation [J].Journal of Materials Science&Engineering2004,22(4):550~553.

Google Scholar

[3] Qing wang,Lei Liu,Changpeng Wu,Zhitong Sui.Study on the Mechanical Properties of Slag-based Inorganic Geopolymer.Journal of Shenyang Jianzhu University (Natural Science):2007,1:73~76.

Google Scholar

[4] Djwantoro Hardjito, Steenie E. Wallah.Fly Ash-Based Geopolymer Concrete, Construction Material for Sustainable Development. Concrete World: Engineering &Materials, American Concrete Institute, India Chapter, Mumbai, India, December 9-12, (2004).

Google Scholar

[5] Djwantoro Hardjito, Steenie E. Wallah.On the development of fly ash-based geopolymer concrete. ACI Materials Journal, 2004, 11-12: 467~472.

Google Scholar

[6] Gang Wang,Hongwen Ma,Yufeng Ren,Wuwei Feng,Qiuxia Ding.Preparation of Mineral Polymer Based on Flyash: An Experimental Study.IM&P:2004,5:24~27.

Google Scholar