掺加改性粉煤灰和矿渣粉的水泥砂浆替代水泥的力学性能和耐久性研究

A. Shubbar, D. Al-Jumeily, A. Aljaaf, Mohammed Alyafei, M. Sadique, J. Mustafina
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引用次数: 18

摘要

水泥生产过程中会产生大量的二氧化碳。由于环境和具体的技术要求,鼓励利用来自各种工业过程的替代废料作为水泥的部分替代品。这一战略将有可能降低水泥成本,节约能源,减少废物量。因此,本研究的目的是研究改性粉煤灰(MFA)和磨碎的高炉矿渣(GGBS)替代水泥达到80%总替代量对水泥砂浆力学性能和耐久性的影响。测定了所有三元混合物的正常稠度、初凝和终凝时间、抗压强度和电阻率,并与对照粘结剂进行了比较。测试了3、7、14、28天养护龄期的抗压强度和电阻率。试验结果表明,随着GGBS和MFA含量的增加,三元混合物的正常稠度增加,初凝时间和终凝时间较对照混合物缩短。结果还表明,与对照砂浆相比,所有三元共混砂浆的早期和后期抗压强度都较低。与对照混合物相比,T40、T60和T80三元混合物的抗压强度在28天内分别降低了约16%、29%和37%。在各个龄期,三元共混物的表面电阻率均高于对照混合物。在水泥砂浆和混凝土生产中使用GGBS和MFA可以显著帮助减少水泥工业的二氧化碳排放,降低水泥的总体成本。
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Investigating the Mechanical and Durability Performance of Cement Mortar Incorporated Modified Fly Ash and Ground Granulated Blast Furnace Slag as Cement Replacement Materials
The process of cement manufacturing produces a huge amount of carbon dioxide (CO2). The utilization of alternative waste materials from various industrial processes as a partial substitution to cement is encouraged due to environmental and specific technical requirements. This strategy will have the potential to reduce cost of cement, conserve energy, and reduce waste volumes. Therefore, the aim of this research is to investigate effect of the replacement of cement with modified fly ash (MFA) and ground granulated blast furnace slag (GGBS) to reach 80% total replacement on mechanical and durability performance of cement mortar. Normal consistency, the initial and final setting times, compressive strength and electrical resistivity of all the ternary mixtures were determined and compared with the control binder. Compressive strength and electrical resistivity were tested at various curing ages of 3, 7, 14, and 28 days. Test results revealed that the normal consistency of the ternary mixtures increased with increasing the GGBS and MFA content, while the initial and final setting time decreased compared to that of control mixture. The results also showed that the compressive strength of all the ternary blends mortars were lower at early and later ages in comparison with control mortar. The reductions in the compressive strengths of the ternary mixtures T40, T60 and T80 compared to the control mixture were approximately 16%, 29% and 37%, respectively at 28 days. The surface electrical resistivity of ternary blends mixtures was higher than the control mixture at all curing ages. The use of GGBS and MFA in the production of cement mortar and concrete can significantly help in reducing the CO2 emissions of the cement industry and reduce the overall cost of cement.
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