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Influence of silica fume on mechanical and durability of pervious concrete

机译:二氧化硅烟污对渗透混凝土机械和耐久性的影响

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Anecdotal evidence has suggested that silica fume is beneficial for improving pervious concrete strength and durability. To determine how silica fume influences a variety of pervious concrete properties and durability the research presented herein studied the performance of paste and ultimately two types of pervious concrete. Since paste properties control pervious concrete workability, compaction, and ultimately performance, rheological properties of a series of paste mixtures with proportions and admixture dosages representative of field-placed pervious concrete were used to provide baseline behavior. Paste samples were continuously mixed and tested over time with the amount of silica fume replacing Portland cement up to 10%. The impact of silica fume on pervious concrete was first investigated on samples produced with a fixed compaction energy, as common in the field, using smooth river gravel aggregate. For pervious concrete produced with fixed compaction energy, changes in workability were reflected in void content which significantly impacted performance. Since void content and density changes significantly impacted performance, lastly samples were produced at a fixed void content using both smooth river gravel but also rougher limestone coarse aggregate. In fixed void content pervious concrete the compaction energy was varied to achieve a fixed void content of 20% for all samples. Results show around 5% silica fume produced the best performance of increased workability, strength and durability. (C) 2020 Published by Elsevier Ltd.
机译:轶事证据表明,二氧化硅烟污有利于改善透水的耐用性和耐用性。为了确定二氧化硅烟雾如何影响各种可透过的具体性质和耐久性,本文提出的研究研究了粘贴的性能,最终两种类型的渗透混凝土。由于粘贴性能控制可透过的具体的可加工性,压实和最终性能,使用一系列糊状混合物的流变性质,其具有比例和混合物剂量代表的野外放置的渗透混凝土的剂量来提供基线行为。糊状样品随时间持续混合并测试,用硅粉量取代薄层水泥的量高达10%。首先研究了使用光滑的河砾石骨料在现场用固定压实能量产生的样品上进行渗透混凝土的影响。对于用固定压实能量产生的渗透混凝土,可加工性的变化反映在空隙含量中,这显着影响了性能。由于空隙含量和密度变化显着影响性能显着,因此使用光滑的河砾石在固定的空隙含量下产生了样品,但也具有粗糙的石灰石粗骨料。在固定的空隙含量透水混凝土中,压实能量变化以实现所有样品的固定空隙含量为20%。结果显示约5%的二氧化硅烟雾生产的可加工性,强度和耐用性的最佳性能。 (c)2020由elestvier有限公司发布

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