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The results showed that, the resistance to sulfate attack of mortars made with quaternary binders was better than that of mortars based on ordinary Portland cement.
The development of repair mortars based on inorganic binders for stone restoration receives a lot of attention as a compatible solution.
The present study aims to evaluate the behaviour of mortars based on lime, with the addition of metakaolin and sepiolite, seeking their application as renders on adobe walls.
Indeed, if masonry containing sulphate salts is restored by using mortars based on hydraulic binders the risk of failure is high.
In the present work, magnesium alumina phosphate cement mortars based on dead burnt magnesia and phosphates were prepared with the additions of alumina and extenders to study the effect of alumina on the water stability of MPCs.
An alkali quality coefficient combining the amounts of main compositions of source materials and sodium oxide (Na2O) in sodium silicate is proposed to assess the properties of alkali activated mortars, based on the hydration mechanism of alkali-activated pastes.
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This paper presents an experimental study on the development of an eco-repair mortar based on dune sand and microfibers plant.
A creep model of CA mortar based on the thermodynamic theory is established, and the correlation coefficients between fitting results of model and experimental results are all greater than 0.98.
The mortar based on SiO2 aerogel particles shows a density of ∼1.2 g/cm3, a compressive strength and flexural tensile strength of ∼2.15 MPa and ∼0.45 MPa, a thermal conductivity of ∼0.1524 W/m·K at the aerogel content of 60 vol.%.
The results of a ring test performed to determine restrained shrinkage indicated that at the same age, the cracking potential of expansive mortar based on the stress/strength ratio remained lower than that of normal mortar, which confirmed that the generation of compressive stress at an early age reduced the restrained stress and restrained cracking.
The production and characterization of a cement and mortar based on the alkaline activation of a high content (≥70%) of natural volcanic pozzolan (NP) and the synergic effect of the addition of granulated blast furnace slag (GBFS) up to 30% were performed.
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