EXPERIMENTAL INVESTIGATION ON THE PERFORMANCE EVALUATION OF CONCRETE BINARY BLENDED WITH FLY ASH AND GGBS

Rajasekhar Cheruvu, B. Kameswara Rao
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Abstract

It is vital for the sustainability of industry to reduce these emissions while still meeting the ever-increasing demand for infrastructure worldwide. This challenge drew the focus of academics, area experts, and researchers to objectivize their work to investigate alternatives to the cement industry. The present study aims to determine how to reduce the amount of cement by using GGBS and fly ash The study adopted the binder ratios of 0.3,0.4, and 0.5 for both Fly ash and GGBS and compared them with conventional concrete (OPC). Further, the RCPT test examines the durability of the resistance to chloride penetration across different durations, such as 28,56 and 90 days. Also, the sorpitivity test is performed for the above binder ratios to determine the susceptibility of the concrete. The results suggest that the binder ratios adopted for the study have shown better results compared to conventional concrete if the supplementary cementitious materials are restricted to specific percentages.
对掺有粉煤灰和石灰石的二元混凝土性能评估的实验研究
在满足全球不断增长的基础设施需求的同时,减少这些排放对工业的可持续发展至关重要。这一挑战吸引了学者、领域专家和研究人员的关注,使他们能够客观地研究水泥工业的替代品。本研究旨在确定如何通过使用 GGBS 和粉煤灰来减少水泥用量。研究采用粉煤灰和 GGBS 的粘合剂比率 0.3、0.4 和 0.5,并与传统混凝土(OPC)进行比较。此外,RCPT 试验还检验了在 28 天、56 天和 90 天等不同期限内抗氯化物渗透的耐久性。此外,还对上述粘合剂比率进行了吸水率测试,以确定混凝土的敏感性。结果表明,如果将辅助胶凝材料的比例限制在特定范围内,研究中采用的粘合剂比例与传统混凝土相比显示出更好的效果。
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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