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The influence of particle shape and particle size on the workability properties of SCC mortars

机译:颗粒形状和粒度对SCC砂浆可加工性的影响

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Experimental investigations using natural and crushed sands have demonstrated that the packing density of the sands is the decisive factor influencing the workability properties of mortars for self compacting concrete (SCC).The latter have been characterized for a specified mortar formulation on the basis of the quantity of plasticizer necessary for a selected slump flow and on the basis of funnel flow time. Packing density, for its part, is dependent on particle-size distribution (with only the width of distribution playing an influencing role) and on the particle shape of the aggregate. It rises up to a maximum both as distributions become broader and as particle geometries improve. The results show that identical packing densities can be achieved both with broad particle-size distributions and poor particle shapes (crushed sands) and with tight distributions and good particle shapes (natural sands). Given knowledge of the particle-size distribution and particle-shape parameters of a sand, corresponding to the selected test conditions, the correlations obtained could make it possible to provide an initial statement concerning the possible utilization of the sand as a component in an SCC.
机译:使用天然砂和碎砂进行的实验研究表明,砂的填充密度是影响自密实混凝土(SCC)砂浆可加工性的决定性因素,后者已根据数量指定了特定的砂浆配方选定的坍落流和漏斗流动时间所需的增塑剂用量。就其本身而言,堆积密度取决于粒度分布(仅分布宽度起影响作用)和聚集体的颗粒形状。随着分布变宽和粒子几何形状的改善,它会上升到最大值。结果表明,既有宽的粒径分布和较差的颗粒形状(碎砂),又有紧密的分布和良好的颗粒形状(天然砂),可以实现相同的堆积密度。如果知道了与选定的测试条件相对应的沙子的粒度分布和颗粒形状参数,则所获得的相关性就可以提供有关将沙子作为SCC成分的可能用途的初步说明。

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