粉煤灰(CBA)对混凝土力学性能和耐久性的影响

R. Khan, A. Ganesh
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引用次数: 46

摘要

本文将为混凝土技术领域开发具有良好强度和耐久性以及经济和生态优势的混凝土做出贡献。研究发现,随着煤底灰分掺量的增加,标准稠度、初凝时间和终凝时间增加,混凝土和易性降低。底灰混凝土的龄期强度低于对照,但随着龄期的增加,由于火山灰反应,其强度有较好的提高。观察到最佳剂量为10%的磨底灰(GBA),与56天的对照混合物相比,强度增加了约14%。另外,用GBA替代20%的效果与对照混凝土相当。与原始底灰(OBA)相比,GBA混凝土表现出更强的抗酸侵蚀能力。将M7与30%的GBA混合显示出最高的抗酸能力。随着底灰掺量的增加,混凝土的吸水能力增大,同时随着龄期的增加,对所有掺合物的吸水能力减小。研究还发现,在最佳用量下,即用GBA替代10%的水泥时,它也是经济的,而且二氧化碳排放量也更少,这意味着与控制混合物相比,它也是环保的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of coal bottom ash (CBA) on mechanical and durability characteristics of concrete
The present paper would contribute to the efforts being made in the field of concrete technology towards development of concretes possessing good strength and durability properties along with economic and ecological advantage. In the present study it was found that with increase in amount of coal bottom ash, standard consistency, initial and final setting time increase at the same time workability of concrete decreases. Early age strength is less for bottom ash concrete compare to control mix, but as the age increases they show good improvement in strength due to pozzalanic reaction. Optimum dosage is observed to be 10% Grinded Bottom Ash (GBA) which shows about 14 % more strength compared to control mix at 56 days. Also 20% replacement by GBA gives results comparable to control concrete. GBA concrete shows more resistance to acid attack compared to Original Bottom Ash (OBA). Mix M7 with 30 % replacement by GBA shows highest resistance to acid attack. With the increase in amount of bottom ash water absorption capacity of concrete increases, also as the age increases for all the mix water absorption capacity decreases. It was also found that at optimum dosage i.e at 10% replacement of cement with GBA it is also economical and also less amount of CO2 is emitted that mean it is also environmental friendly compared to control mix.
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