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When the content of CFBFA was 50%, the yield stress and plastic viscosity of the paste system were increased by 76% and 169%, respectively, however the fluidity of the paste system was lowered.
The interface between filler and hydration products can have a significant effect on the mechanical properties of the cement paste system.
Crystalline and amorphous CSH were formed in the hydration of the slag cement paste system from dry granulation, and were measured by XRD and FTIR.
However, the maximum incorporation of Mg in calcite and co-precipitation behaviour of magnesium calcite and nesquehonite in a paste system are different from those in a solution system.
The test results showed that the rheological properties of the paste system exhibited Bingham fluid characteristics when the replacement level of cement by CFBFA (d50 = 56 μm) was less than 50%.
When the content of ultrafine CFBFA was 50%, the yield stress and plastic viscosity of paste system were reduced by 45% and 54%, respectively, and the fluidity of system was improved.
Similar(52)
The rheometer was then used to evaluate the rheology of a variety of cement paste systems, including stiff steel fiber-reinforced cement pastes.
It was found that thermal deformation dominates early-age stress development in low w/cm and low slag cement paste systems.
It reports the response of self-consolidating paste systems (SCPs) containing Acacia Nilotica Gum (AG) in powdered form in ratios of 0.33%, 0.66% and 1% by weight of cement.
In this paper, rheological measurements and conventional Vicat setting time studies are conducted to verify that these powder additions do indeed reduce setting times in paste systems based on both ASTM Class C and ASTM Class F fly ashes.
This study reports the response of self-compacting paste systems with the addition of a mixture containing three micro-organisms namely lactic acid bacteria, photosynthetic bacteria and yeast all present in a suitable liquid medium.
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