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Fillers to improve passing ability of concrete

机译:填料以提高混凝土的通过能力

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Concrete possessing high-passing ability needs to be flowable and cohesive. Hence, passing ability cannot be improved by solely adding superplasticizer, which increases both flowability and segregation of concrete simultaneously. Decreasing the maximum size of aggregates so that concrete segregates at lower cohesiveness is a possible but undesirable way as it narrows the aggregates' grading and decrease dimensional stability of concrete. With the same maximum size of aggregates, passing ability can be improved by raising the concurrent flowability-segregation envelope of concrete. In this paper, fly ash and silica fume (cementitious fillers) and limestone (inert filler) were selected to replace cement partially and subsequently the passing ability of concrete was studied. From the results, it was evident that when either type of fillers were used, the passing ability and maximum limits of flowability and segregation achieved simultaneously increase. It is because these fillers are finer than cement that provides better filling effect to increase packing density and excess water leading to better flowability. Concurrently, the cohesiveness of concrete also increases as the content of fine particles increases. These allow concrete to hold the coarse aggregates more firmly when passing through narrow gaps, after which the concrete will keep flowing rapidly.
机译:具有高通过能力的混凝土需要是可流动的和粘结的。因此,仅通过添加高效减水剂不能改善通过能力,这同时增加了混凝土的流动性和偏析性。减小集料的最大尺寸以使混凝土以较低的内聚力凝集是一种可能但不理想的方法,因为它会缩小集料的等级并降低混凝土的尺寸稳定性。在最大骨料尺寸相同的情况下,通过提高混凝土的同时流动性-隔离性包络线可以提高通过能力。本文选择粉煤灰和硅灰(胶凝填料)和石灰石(惰性填料)部分替代水泥,然后研究混凝土的通过能力。从结果可以明显看出,当使用任何一种填料时,通过能力以及流动性和离析的最大极限同时增加。这是因为这些填料比水泥细,可提供更好的填充效果,以增加堆积密度和过量的水,从而提高流动性。同时,随着细颗粒含量的增加,混凝土的内聚性也增加。当穿过狭窄的缝隙时,这些可以使混凝土更牢固地保持粗骨料,之后混凝土将保持快速流动。

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