Sorptivity and rapid chloride ion penetration of self-compacting concrete using fly ash and copper slag

Sambangi Arunchaitanya, Subhashish Dey
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引用次数: 2

Abstract

This paper represents experimental work on the mechanical and durability parameters of self-compacting concrete (SCC) with copper slag (CS) and fly ash (FA). In the first phase of the experiment, certain SCC mixes are prepared with six percentages of FA replacing the cement ranging from 5% to 30%. In the second phase, copper slag replaces fine aggregate at an interval of 20% to 100% by taking the optimum percentage value of FA. The performance of SCC mixes containing FA and copper slag is measured with fresh properties, compressive, split tensile and flexural strengths. SCC durability metrics, such as resistance against chloride and voids in the concrete matrix, is measured with rapid chloride ion penetration test (RCPT) and sorptivity techniques. The microstructure of the SCC is analyzed by using SEM and various phases available in the concrete matrix identified with XRD analysis. It is found that when replacing cement with 20% of FA and replacing fine aggregate with 40% of copper slag in SCC, higher mechanical strengths will be delivered. Resistance of chloride and voids in the concrete matrix reaches the optimum value at 40%; and with the increase of dosage, the quality of SCC will be improved. Therefore, it is recommended that copper slag be used as a sustainable material for replacement of fine aggregate.

粉煤灰和铜渣自密实混凝土对氯离子的吸附和快速渗透
本文对铜渣和粉煤灰自密实混凝土的力学性能和耐久性参数进行了试验研究。在实验的第一阶段,用6%的FA代替5%至30%的水泥配制某些SCC混合物。在第二阶段,铜渣以最佳FA百分比值替代细骨料,间隔为20% ~ 100%。对含FA和铜渣的SCC混合料的新鲜性能、抗压强度、劈裂抗拉强度和抗弯强度进行了测试。SCC耐久性指标,如抗氯化物和混凝土基体中的空隙,是通过快速氯离子渗透测试(RCPT)和吸附技术来测量的。采用扫描电子显微镜分析了SCC的微观结构,并用XRD分析了混凝土基体中存在的各种相。研究发现,在细砂混凝土中,用20%的FA代替水泥,用40%的铜渣代替细骨料,可获得更高的力学强度。混凝土基体中氯离子和空隙的阻力在40%时达到最佳值;随着用量的增加,SCC的质量也会得到改善。因此,建议将铜渣作为替代细骨料的可持续材料。
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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