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Foamed concrete containing rice husk ash as sand replacement: an experimental study on compressive strength

机译:含有米壳灰的泡沫混凝土作为砂替换:抗压强度的实验研究

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This study presents the utilization of rice husk ash (RHA) as sand replacement in foamed concrete. The study focuses on the effect of RHA on the compressive strength of foamed concrete. RHA contains high pozzolanic material that reacts with cementitious to enhance the strength and durability of foamed concrete. RHA also acts as filler causing the foamed concrete to become denser while retaining its unique low density. A total 243 cube specimens was prepared for the compression test. Two sets of mix design were employed at water-cement (W/C) ratio of 0.55, 0.60 and cement-sand ratio of 0.50, 0.33. The results revealed that the presence of RHA as sand replacement resulted in an increase in the compressive strength of foamed concrete. Moreover, 30% to 40% RHA was the optimum content level, contributing to the compressive strength of 18.1MPa to 22.4MPa. The W/C ratio and superplasticiser dosage play small roles in improving workability. In contrast, density governs the compressive strength of foamed concrete.
机译:本研究表明,在泡沫混凝土中的沙子更换稻壳灰(rha)的利用。该研究致力于rha对发泡混凝土抗压强度的影响。 rha含有高火谷甾型材料,与胶凝剂作出反应,以提高发泡混凝土的强度和耐久性。 RHA也充当填料,导致发泡混凝土变得更浓,同时保持其独特的低密度。为压缩试验制备总243个立方体标本。在水水泥(W / C)的比例为0.55,0.60和水泥 - 砂比为0.50,0.33时使用两组混合设计。结果表明,作为砂置更换的RHA存在导致发泡混凝土的抗压强度的增加。此外,30%至40%的RHA是最佳含量水平,有助于18.1MPa至22.4MPa的压缩强度。 W / C比和超塑性剂剂量在提高可加工性方面发挥着小的作用。相比之下,密度控制发泡混凝土的抗压强度。

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