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Effect of High-Volume Ceramic Waste Powder as Partial Cement Replacement on Fresh and Compressive Strength of Self-Compacting Concrete

机译:大量陶瓷废粉替代部分水泥对自密实混凝土的新鲜和抗压强度的影响

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摘要

Numerous regulations have been imposed worldwide by governments and environmental organizations in order to reduce the negative environmental impact resulting from large numbers of solid waste landfills. Recycling of industrial by-products is a step toward sustainable waste management. By utilizing ceramic waste powder (CWP) as a partial cement replacement, the construction industry can play a significant role in energy conservation and limit future generations of CO2. This paper examines the feasibility of producing self-compacting concrete (SCC) mixtures yielding acceptable fresh and hardened concrete characteristics with the inclusion of high-volume CWP as partial replacement of cement. The fresh properties of the new SCC are evaluated through various tests (i.e.,slump flow, J-ring, column segregation, V-funnel, and L-box). The investigations show a slight reduction in the slump flow but with an enhancement of the other fresh properties. In addition, the use of CWP slightly reduces compressive strength. It is shown that it is possible to produce SCC with acceptable properties incorporating high-volume CWP.
机译:全球政府和环保组织已制定了许多法规,以减少大量固体垃圾填埋场对环境的负面影响。工业副产品的回收是迈向可持续废物管理的一步。通过利用陶瓷废粉(CWP)作为水泥的部分替代品,建筑行业可以在节能方面发挥重要作用,并限制未来的二氧化碳排放量。本文探讨了生产自密实混凝土(SCC)混合物并产生可接受的新鲜和硬化混凝土特性的可行性,其中包括使用大体积CWP作为水泥的部分替代品。通过各种测试(即坍落度,J形环,色谱柱分离,V型漏斗和L型箱)评估了新SCC的新鲜特性。研究表明,坍落度略有降低,但其他新鲜特性有所提高。另外,使用CWP会稍微降低抗压强度。结果表明,结合大量CWP可以生产出具有可接受性能的SCC。

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