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The formulations of mortars were defined according to rheology and flow table measurements, then showing suitable workability.
This may be attributed to achievement of suitable workability of concrete which in turn causes more in compaction levels and improves compressive strength.
Portland cement was replaced up to 50 wt.% RM, adjusting the relative amount of water (34 38 wt.%) in order to get mortars with suitable workability as defined by rheometry and flow table measurements.
The chloride ion penetrability, water permeability and measured corrosion current were significantly reduced by replacing (CEM I) with either (CEM III/A) or (CEM III/A + FA) cements specially for large reinforced concrete cover having optimum cement content and minimum w/b ratio with suitable workability.
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Increase in the amount of crushed glass in stabilized SP by cement leads to rise in amount of the γdry, soil strength parameters c and ϕ, relative density, unconfined compressive strength and can also cause decrease in the amount of wopt, which shows these parameters for construction works are suitable for detecting workability.
Laboratory trials showed that this red granite dust rendered it suitable in terms of workability, stiffness and strength compared to normal aggregate and Portland cement concretes.
Utilizing pozzolanic materials (fly ash, slag, glass and etc). in suitable quantities improved the workability of concrete and lead to sufficient compaction (especially for SCC), hence more compressive strength and density.
The resulting reduction of the mix workability was avoided by suitable addition procedures of superplasticizers.
Mixtures with 15 wt% pumice was shown to have similar properties to the reference mixture without fly ash, but had increased SP demand and low workability retention, making them more suitable for precast applications compared to ready-mix concrete.
Overall, the results indicate that glass fiber reinforced ceramic concretes can be produced with workability and mechanical properties that are suitable for application in building elements.
This was useful to guide instrumental analysis; identify the products that were considered, at the time, to have suitable properties for upholstery (in terms of availability, workability, cost, performance and appearance); and suggest any differences that might have existed in product availability and use in Australia as opposed to other countries.
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CEO of Professional Science Editing for Scientists @ prosciediting.com