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Expansive properties of the mixture C4AS̄H12 - 2CS̄ I. An hypothesis on the expansion mechanism

✍ Scribed by V. Alunno Rossetti; G. Chiocchio; A.E. Paolini


Publisher
Elsevier Science
Year
1982
Tongue
English
Weight
414 KB
Volume
12
Category
Article
ISSN
0008-8846

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✦ Synopsis


Hydration and expansion of uniaxially unrestrained compacts of C4ASH12 -2CS mixture have been studied at 20°C in different contact solutions. The highest reaction rates and final expansions were observed in the saturated lime solution. A mechanism of expansion, based on the concurrence of the increase in volume of solids, crystallization pressure, water adsorption and zeta potential variations of ettringite crystals has been proposed to account for the different expansions.

L'idratazione e l'espansione di pasticche della miscela C4ASH --2CS sono state studiate a 20°C in diverse soluzioni di conta~o e in condizioni di libera espansione uniassiale. Le piu' alte velocita di reazione e le maggiori espansioni finali sono state osservate quando l'idratazione avveniva in soluzione satura di calce, Le diverse espansioni finali sono state spiegate mediante un meccanismo di espansione basato sull'aumento in volume dei solidi, sulla pressione di cristallizzazione, sull'adsorbimento di acqua e sulle variazioni di potenziale zeta dei cristalli di ettringite.


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Expansive properties of the mixture C4AS
✍ V. Alunno Rossetti; G. Chiocchio; A.E. Paolini 📂 Article 📅 1983 🏛 Elsevier Science 🌐 English ⚖ 594 KB

The effects of temperature and restraint upon the hydration and the expansion of C4A~HI2-20~ mixture compacts in different contact solutions have been investigated. Temperatures above 20°C do apparently hinder the formation of am impervious felt-like layer of ettringite around the C4A~HI2 particles,

Expansive properties of the mixture C4AS
✍ V. Alunno Rossetti; G. Chiocchio; A.E. Paolini 📂 Article 📅 1982 🏛 Elsevier Science 🌐 English ⚖ 505 KB

The effects of solid lime, initial porosity and liquidsolid ratio on the reaction of ettringite formation and on the expansion of uniaxially unrestrained compacts of C4A~HI2-2C~ mixture have been studied at 20°C.A reaction and an expansion mechanism are proposed, based on the effect of the solid lim