将恒定浓度的丙烯酸聚合物与不同用量的粉煤灰混合对大骨料透水混凝土的渗透性和强度的影响

Hermie M. Del Pilar, Carlo B. Caballero, Mike Edson T. Milano, Nikko San C. Quimio
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引用次数: 0

摘要

雨水径流不仅给居民区带来洪水和污染物迁移等环境问题,也给下水道系统不完善或不完善的低高架道路带来了环境问题。土壤是一种天然的多孔材料,其透水性会随着地面人行道的修建而被阻断,因此透水混凝土成为解决雨水径流问题的重要选择。在这项研究中,在配制混凝土拌合物时使用了重量百分比恒定为 15%的丙烯酸聚合物(AcP)水溶液,从而提高了 PC 的强度。另一种添加剂是粉煤灰 (FA),以 5%、10%、15% 和 20% 的比例部分取代 I 类水泥,从而提高 PC 的强度。对物理(孔隙率和渗透性)和机械(压缩和弯曲强度)性能进行了研究,并使用统计工具单向方差分析(ANOVA)对结果进行了分析。20% 的替代物获得了最高的抗压强度(9.89 兆帕),而 15% 的替代物获得了最高的抗折强度(3.57 兆帕)。在渗透性方面,对照组混合物(0% 粉煤灰)的性能最高,为 4.76 厘米/秒。透水混凝土的良好结果证明,在水泥中掺入丙烯酸聚合物和粉煤灰是一种有用的成分,可进一步提高其机械性能,并提高其用于缓解洪水和污染物迁移的可接受性。
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Effect of Blending Constant Concentration of Acrylic Polymer with Varying Amount of Fly Ash to the Permeability and Strength of Large Aggregate Pervious Concrete
Storm water runoff brings environmental problems like flooding and pollutant transport, not only to the residential areas but also in low elevated roads with poor to bad sewage system. Soil is a naturally porous material, and its permeable property is blocked as surface pavements are constructed, making pervious concrete an important alternative in addressing the problem caused by storm water runoff. In this study, a constant weight percentage of 15% acrylic polymer (AcP) solution on water is used for the preparation of concrete mix, resulted to an increase in strength of the PC. Another additive which is the Fly ash (FA) was used to enhance the strength of the PC partially replacing the Type I cement at 5%, 10%, 15%, and 20%. Physical (porosity and permeability) and mechanical (compression and flexural strength) properties were investigated, and the statistical tool One-Way Analysis of Variance (ANOVA) was used to analyze the results. The 20% replacement obtained the highest compressive strength at 9.89MPa, while the 15% replacement acquired the highest flexural strength at 3.57 MPa. In terms of permeability, the control mix (0% Fly ash) has the highest performance at 4.76 cm/s. The favorable result in pervious concrete proved that the use of Acrylic Polymer and fly ash blend to the cement were a useful component to further improve its mechanical properties, and acceptability of its use for flood and contaminant transport mitigation.
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