In this research water-repellent renders, prepared by mixing hydrophobic compounds with pozzolana-lime mortars, were studied in order to evaluate their suitability for restoration applications. Water repellent admixtures, such as powdered siloxane-based products and metal soaps (zinc and calcium stearates), were mixed with a pozzolana-lime binder similar to historical binders with hydraulic properties. The chemical-physical and structural properties, the effectiveness and the durability of the water-repellent mortars in different environmental conditions were studied. The influence of the water repellent admixtures on the chemical and physical properties was evaluated by FT-IR analyses, by testing the mechanical properties and the behaviour in presence of water. The durability of the water-repellent mortars was evaluated after the exposure to artificial weathering (UV-light and water) and to immersion/drying cycles in saturated sodium sulphate solution. The nature of the waterrepellent admixtures influenced both the hydration reactions and the chemical-physical properties of the mortars resulting in different resistance to the weathering and to salt crystallization.

WATER-REPELLENT POZZOLANA-LIME MORTARS FOR THE MAINTENANCE AND PROTECTION OF ARCHITECTURAL SURFACES

FALCHI, LAURA;ZENDRI, Elisabetta;IZZO, Francesca Caterina;BALLIANA, Eleonora;
2017-01-01

Abstract

In this research water-repellent renders, prepared by mixing hydrophobic compounds with pozzolana-lime mortars, were studied in order to evaluate their suitability for restoration applications. Water repellent admixtures, such as powdered siloxane-based products and metal soaps (zinc and calcium stearates), were mixed with a pozzolana-lime binder similar to historical binders with hydraulic properties. The chemical-physical and structural properties, the effectiveness and the durability of the water-repellent mortars in different environmental conditions were studied. The influence of the water repellent admixtures on the chemical and physical properties was evaluated by FT-IR analyses, by testing the mechanical properties and the behaviour in presence of water. The durability of the water-repellent mortars was evaluated after the exposure to artificial weathering (UV-light and water) and to immersion/drying cycles in saturated sodium sulphate solution. The nature of the waterrepellent admixtures influenced both the hydration reactions and the chemical-physical properties of the mortars resulting in different resistance to the weathering and to salt crystallization.
2017
Improvements in Conservation and Rehabilitation-Integrated Methodologies
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10278/3689432
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