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Gluth, Gregor J.G. (author), Ke, Xinyuan (author), Vollpracht, Anya (author), Weiler, Lia (author), Bernal, Susan A. (author), Cyr, Martin (author), Dombrowski-Daube, Katja (author), Geddes, Dan (author), Nedeljković, Marija (author)
The current ability to predict the carbonation resistance of alkali-activated materials (AAMs) is incomplete, partly because of widely varying AAM chemistries and variable testing conditions. To identify general correlations between mix design parameters and the carbonation rate of AAMs, RILEM TC 281-CCC Working Group 6 compiled and analysed...
book chapter 2023
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Gluth, Gregor J.G. (author), Ke, Xinyuan (author), Vollpracht, Anya (author), Bernal, Susan A. (author), Cizer, Özlem (author), Cyr, Martin (author), Dombrowski-Daube, Katja (author), Geddes, Dan (author), Nedeljković, Marija (author)
The current understanding of the carbonation of alkali-activated concretes is hampered inter alia by the wide range of binder chemistries used. To overcome some of the limitations of individual studies and to identify general correlations between their mix design parameters and carbonation resistance, the RILEM TC 281-CCC working group 6...
book chapter 2023
document
Li, Z. (author), Zhang, Shizhe (author), Liang, X. (author), Kostiuchenko, A. (author), Ye, G. (author)
Alkali activated concrete (AAC) has not received broader industry acceptance, one reason of which lies in the uncertainties in the durability against shrinkage and potential cracking. Many studies reported that AAC exhibit larger autogenous shrinkage than OPC concrete. However, it is unable to deduce that AAC should show higher cracking...
book chapter 2021