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The influence of filler characteristics on the workability of self-compacting concrete

机译:填料特性对自密实混凝土工作性的影响

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摘要

Self-compacting concrete (SCC) is considered more and more as the “concrete of the future”. Its high workability not only improves the labour conditions and the speed of working, also the uniformity and quality of the end product is increased. To reach this high workability, the amount of coarse aggregates has to be reduced and replaced by fine material. Since cement is quite expensive and a too high amount of cement causes a strong hydration reaction, with possible problems of shrinkage cracks, fillers (i.e. mineral additions) are added.This paper presents the results of an investigation on the suitability of different fillers to be used for SCC. An experimental test program has been executed with 12 different SCC mixtures, each mix with another type of filler. The other mix parameters (water-to-cement ratio, fine and coarse aggregates content) were the same for all mixes. The different mixes were investigated with respect to workability (slump-flow, V-funnel and U-test), compressive strength, shrinkage and freeze-thaw resistance. These properties were sometimes very different if only another type of filler was used.Each filler has been characterised with different tests: water demand (beta_p), Blaine, activity index, particle size distribution (by means of laser diffraction) as well as the roundness, sphericality and surface structure of the filler particles which were observed through a scanning electron microscope (SEM).An effort has been made to link the measured properties of the SCC mixtures with the characterising parameters of the fillers. It was found that the microscopic filler particle properties (roundness, sphericality and surface structure) play a determining role.
机译:自密实混凝土(SCC)被越来越多地视为“未来的混凝土”。其高可加工性不仅改善了劳动条件和工作速度,而且提高了最终产品的均匀性和质量。为了达到如此高的可加工性,必须减少粗骨料的数量并用细料代替。由于水泥价格昂贵,水泥用量过多会引起强烈的水化反应,并可能产生收缩裂缝,因此需要添加填料(即矿物添加剂)。本文介绍了不同填料的适用性研究结果。用于SCC。已对12种不同的SCC混合物执行了实验测试程序,每种混合物均与另一种类型的填料混合。所有混合料的其他混合料参数(水灰比,细骨料和粗骨料含量)均相同。研究了不同混合物的可加工性(坍落度,V形漏斗和U形试验),抗压强度,收缩率和抗冻融性。如果仅使用另一种类型的填料,这些性能有时会非常不同。每种填料的特性均经过不同的测试:需水量(β_p),布莱恩(Blaine),活性指数,粒度分布(通过激光衍射)以及圆度通过扫描电子显微镜(SEM)观察到的填料颗粒的球形度和表面结构。已努力将SCC混合物的测量性能与填料的表征参数联系起来。发现微观填料颗粒的性质(圆度,球形度和表面结构)起决定性作用。

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