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The ultra fine silica fume particles enter the relatively coarse cement inter-particle space.
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The loosening effect is expected to be maximized if a mix (1) incorporates finer sand or (2) uses coarser cement, showing a lower percentage passing on a 45 μm-sieve.
Coarse aggregate is considered as the main ingredient to produce Portland cement concrete.
Results showed that the hydration heat generated from cement with higher fineness was larger and faster compared to coarser cements in early ages.
The water content, coarse aggregate, cement and the water to cement ratio remained constant.
This research focus on proportioning the coarse aggregate, cement content, and the void content in order to correlate the cement paste thickness to the key properties of pervious concrete.
Both fine and coarse Portland cement fractions have undesirable strength contribution.
This research suggests that coarse residual cement grains may have acted in a manner similar to aggregates by absorbing stress and thereby reducing the formation of shrinkage cracks.
Thermal conductivity of coarse aggregate, cement mortar as well as concrete were measured by means of a guarded hot plate apparatus and/or a transient plane source.
Using coarse particle cement (CPC) was beneficial in delaying a decrease of the fluidity of fresh mortar and enhancing strength due to a higher packing density than ordinary Portland cement (OPC).
The coarse aggregate, cement and GGBFS were initially dry mixed for a few minutes.
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