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Effects of Mineralizer Addition on the Formation of Tricalcium Silicate in Portland Cement
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J. Korean Ceram. Soc.. 1994;31(12):1417

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Tobermorite/jennite- and tobermorite/calcium hydroxide-based models for the structure of C-S-H: applicability to hardened pastes of tricalcium silicate, β-dicalcium silicate, Portland cement, and blends of Portland cement with blast-furnace slag, metakaolin, or silica fume
Cement and Concrete Research. 2004;34(9):1733-1777   Crossref logo
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Investigations on the aging of hydrated tricalcium silicate and portland cement pastes
Cement and Concrete Research. 1995;25(5):919-923   Crossref logo
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Revisiting the microstructure of hydrated tricalcium silicate––a comparison to Portland cement
Cement and Concrete Composites. 2004;26(8):947-956   Crossref logo
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Polymorphism of tricalcium silicate, the major compound of Portland cement clinker
Cement and Concrete Research. 2006;36(1):39-53   Crossref logo
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Effect of some liquefying agents on properties and hydration of portland cement and tricalcium silicate pastes
Cement and Concrete Research. 1980;10(3):321-331   Crossref logo
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Microstructure of tricalcium silicate and Portland cement systems at middle periods of hydration-development of Hadley grains
Cement and Concrete Research. 2007;37(1):13-20   Crossref logo
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Calcium and silicon concentrations in solution during the early hydration of portland cement and tricalcium silicate
Cement and Concrete Research. 1981;11(5-6):675-687   Crossref logo
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Investigations on the structure of fully hydrated portland cement and tricalcium silicate pastes. II. Total porosity and pore size distribution
Cement and Concrete Research. 1986;16(6):893-901   Crossref logo
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Polymorphism of tricalcium silicate, the major compound of Portland cement clinker
Cement and Concrete Research. 2006;36(1):54-64   Crossref logo
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The early hydration of tricalcium silicate and β-dicalcium silicate in neat portland cement pastes
Journal of Applied Chemistry. 2007;16(5):162-165   Crossref logo
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