Experimental Study on Concrete Structural Elements Using Calcined Clay and Basalt Aggregate

Sudhan S.
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Abstract

The term ‘Sustainable’ environmentally means “green”. The deteriorating environment is driving the worldwide focus on sustainable development. It is to be noted that the largest impact on nature and environment is by the construction industry. Previously, the concern on environment formed a small part of construction development. We know that cement is the main constituent of concrete. Production of large quantity of cement results in increasing CO2 emissions and the consequence being Greenhouse Effect .The purpose of this paper is to investigate the feasibility of using basalt aggregates in concrete mixes. Concrete is the most important engineering material and the addition or replacement of some of the materials may change the properties of the concrete. In recent years a lot of research been carried out in order to obtain more durable and long term performance of concrete structures in the dynamic environment. An experimental program is set up to test the effect of basalt aggregate content and its combinations with calcined clay with variation of percentages in concrete mixes. Different aggregate percentage combinations were used in this study for basalt and calcined clay respectively. The laboratory investigation included measurement of compressive strength, tensile strength and flexural strength. In addition the source aggregate properties were considered in this study: specific gravity and absorption for coarse aggregates and fine aggregate. The result of this investigation indicates a general improvement in mix properties with the introduction of basalt aggregates in the mix.
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煅烧粘土与玄武岩骨料混凝土结构构件试验研究
“可持续”一词在环境上的意思是“绿色”。日益恶化的环境促使全世界关注可持续发展。值得注意的是,对自然和环境影响最大的是建筑业。在此之前,对环境的关注只占建筑发展的一小部分。我们知道水泥是混凝土的主要成分。大量生产水泥会增加二氧化碳的排放,造成温室效应。本文的目的是探讨玄武岩骨料在混凝土配合料中的可行性。混凝土是最重要的工程材料,添加或更换某些材料可能会改变混凝土的性能。为了使混凝土结构在动力环境下具有更持久的性能,近年来进行了大量的研究。建立了玄武岩骨料掺量及其与煅烧粘土配比随混凝土掺量百分比变化的影响试验程序。在本研究中,玄武岩和煅烧粘土分别采用不同的骨料百分比组合。实验室调查包括测量抗压强度、抗拉强度和抗折强度。此外,本研究还考虑了粗集料和细集料的源集料性能:比重和吸收率。研究结果表明,在混合料中加入玄武岩集料后,混合料的性能得到了普遍改善。
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