The Effect of RHA as a Supplementary Cementitious Material on the Performance of PCM Aggregate Concrete

Bo Liu, Sheliang Wang, Wurong Jia, Honghao Ying, Zhe Lu, Zhilong Hong
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Abstract

The thermal insulated cement matrix further enhances the thermal insulation of PCM aggregate concrete, consequently reducing energy consumption. In this paper, 0–15% rice husk ash (RHA) was used as a replacement for cement. The effect of the substitution amount of RHA on the workability, mechanical properties, thermal properties, and pore structure of concrete was investigated. The results showed that the density of concrete decreased after replacing cement with RHA. The workability of concrete decreased with the increase in RHA content. The filling effect and pozzolanic effect of RHA resulted in an initial increase and subsequent decrease in the mechanical properties of the concrete. After the cement was replaced by 10% RHA, the concrete exhibited the highest compressive strength and splitting tensile strength. The high porosity of RHA reduced the thermal conductivity of concrete by 12.29%. The temperature response indicated that the temperature difference between 15% RHA concrete and the reference concrete can reach up to 1.2 °C, potentially reducing the energy demand. The NMR results showed that the total pore volume was minimal with a 10% RHA admixture. The capillary pore volume increased slightly with the increase in RHA substitution due to the presence of numerous micron-sized pores within the RHA. The micropore and macropore volumes exhibited a decreasing and then increasing trend.
作为补充胶凝材料的 RHA 对 PCM 骨料混凝土性能的影响
隔热水泥基质进一步增强了 PCM 骨料混凝土的隔热性,从而降低了能耗。本文使用 0-15% 的稻壳灰(RHA)替代水泥。研究了 RHA 替代量对混凝土工作性、力学性能、热性能和孔隙结构的影响。结果表明,用 RHA 替代水泥后,混凝土的密度降低。混凝土的工作性随着 RHA 含量的增加而降低。RHA 的填充效应和水青石效应导致混凝土的力学性能先上升后下降。用 10% 的 RHA 取代水泥后,混凝土的抗压强度和劈裂拉伸强度最高。RHA 的高孔隙率使混凝土的导热率降低了 12.29%。温度响应表明,15% RHA 混凝土与基准混凝土之间的温差可达 1.2 °C,从而降低了能源需求。核磁共振结果表明,掺入 10% RHA 后,总孔隙体积最小。随着 RHA 替代量的增加,毛细孔体积略有增加,这是因为 RHA 中存在大量微米级孔隙。微孔和大孔体积呈现先减小后增大的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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