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Improving the flexural toughness behavior of R.C beams using micro/nano silica and steel fibers

机译:使用微/纳米二氧化硅和钢纤维提高R.C光束的抗锐韧性行为

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Experimental investigation has been conducted to study the effect of using Micro/Nano Silica in presence of steel fibers on improving the static response of reinforced concrete beams. Twenty-one mixtures were prepared with micro silica (MS), Nano silica (NS) and steel fibers (SFs) at different percentages. Cement was replaced by 10% and 15% of Micro silica and 1%, 2% and 3% of Nano silica in the presence of steel fibers at different volume fractions 0%, 1%, and 2%. 258 concrete samples, (126 cubes, 63 cylinders, 63 prisms, and six R.C beams), were investigated experimentally in two stages. The first stage was to investigate the mechanical properties of the prepared mixtures. The second stage was to study the static behavior of R.C beams, using the designed concrete mixtures, under a four-point flexural test. The results showed that replacing cement by (10% MS and 1% NS) produces the optimum mix with a significant improvement in the mechanical properties and the response of R.C beams under static loads. In addition, incorporating steel fibers at different volume fractions have a considerable effect on the flexural toughness of concrete mixes.
机译:已经进行了实验研究,以研究使用微/纳米二氧化硅在钢纤维存在下改善钢筋混凝土梁的静电响应的影响。用微二氧化硅(MS),纳米二氧化硅(NS)和钢纤维(SFS)以不同百分比制备二十一种混合物。在不同体积分数0%,1%和2%的钢纤维存在下,水泥在钢纤维存在下替代10%和15%的微二氧化硅和1%,2%和3%的纳米二氧化硅。在两级实验研究了258个混凝土样品,(126立方体,63个圆柱形,63个棱镜,63个棱镜和六个R.C梁)。第一阶段是研究制备的混合物的机械性能。第二阶段是研究R.C光束的静态行为,在四点弯曲试验下使用设计的混凝土混合物。结果表明,通过(10%MS和1%NS)替换水泥产生最佳混合,其具有显着改善的机械性能和R.C梁在静载下的响应。此外,在不同体积级分开钢纤维对混凝土混合物的抗弯韧性具有相当大的影响。

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