The purpose of the study is to evaluate the effect of a tartaric acid-based set retarding admixture on rheological, elastic and physical performances of sustainable mortars manufactured with calcium sulfoaluminate, anhydrite and Supplementary Cementitious Materials replacing totally OPC. Experimental results indicated that the tartaric acid acts as superplasticizer and it is effective to extend the pot-life of mortars up to about 2 h. On the other hand, the set-retarding admixture provides a strong retardation of binder hydration resulting in a reduction of initial expansion and compressive strength at early ages. However, this retarding effect disappears at long ages.

(2018). Use of tartaric acid for the production of sustainable Portland-free CSA-based mortars [journal article - articolo]. In CONSTRUCTION AND BUILDING MATERIALS. Retrieved from http://hdl.handle.net/10446/131132

Use of tartaric acid for the production of sustainable Portland-free CSA-based mortars

Coppola, L.;Coffetti, D.;Crotti, E.
2018-01-01

Abstract

The purpose of the study is to evaluate the effect of a tartaric acid-based set retarding admixture on rheological, elastic and physical performances of sustainable mortars manufactured with calcium sulfoaluminate, anhydrite and Supplementary Cementitious Materials replacing totally OPC. Experimental results indicated that the tartaric acid acts as superplasticizer and it is effective to extend the pot-life of mortars up to about 2 h. On the other hand, the set-retarding admixture provides a strong retardation of binder hydration resulting in a reduction of initial expansion and compressive strength at early ages. However, this retarding effect disappears at long ages.
articolo
2018
Coppola, Luigi; Coffetti, Denny; Crotti, Elena
(2018). Use of tartaric acid for the production of sustainable Portland-free CSA-based mortars [journal article - articolo]. In CONSTRUCTION AND BUILDING MATERIALS. Retrieved from http://hdl.handle.net/10446/131132
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Descrizione: link to the formal publication via its DOI 10.1016/j.conbuildmat.2018.03.137
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