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Fresh-state Properties of Self-compacting Mortar and Concrete with Combined Use of Limestone Filler and Fly Ash

机译:石灰石填料与粉煤灰混合使用的自密实砂浆和混凝土的新鲜状态特性

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AbstractThis paper presents the results of a study on the behaviour of self-compacting concrete (SCC) in the fresh and hardened states, produced with binary and ternary mixes of fly ash (FA) and limestone filler (LF), using the method proposed by Nepomuceno. His method determines the SCC composition parameters in the mortar phase (self-compacting mortar - SCM) easily and efficiently, whilst guaranteeing the SCC properties in both the fresh and hardened states.For this, 11 SCMs were studied: one with cement (C) only; three with FA at 30%, 60% and 70% C substitution; three with LF at 30%, 60% and 70% C substitution; four with FA + LF in combinations of 10-20%, 20-10%, 20-40% and 40-20% C substitution. Once the composition of these mortars was defined, 18 SCC mixes were produced: 14 binary SCC mixes were produced with the seven binary mortar mixes, and four ternary SCC mixes were produced with the four ternary mortar mixes. In addition to the methodology proposed by Nepomuceno, the combined use of FA and LF in ternary mixtures was tested. The results confirmed that the method could yield SCC with adequate properties in both the fresh and hardened states. It was also possible to determine the SCC composition parameters in the mortar phase (self-compacting mortar - SCM) that will guarantee the SCC properties in both the fresh and hardened states, as confirmed through the optimized behaviour of the SCC in the fresh state and the promising results in the hardened state (compressive strength). The potential demonstrated by the joint use of LF and FA through the synergetic interaction of both additions is emphasized.
机译:摘要本文介绍了使用粉煤灰(FA)和石灰石填料(LF)的二元和三元混合物生产的自密实混凝土(SCC)在新鲜和硬化状态下的性能研究结果, Nepomuceno。他的方法可以轻松,有效地确定砂浆相(自密实砂浆-SCM)中的SCC组成参数,同时确保在新鲜和硬化状态下的SCC性能。为此,研究了11种SCM:其中一种是水泥(C)只要;三个FA分别以30%,60%和70%的C取代;三个用LF取代30%,60%和70%的C;四个具有FA + LF的组合,分别具有10-20%,20-10%,20-40%和40-20%的C取代。一旦确定了这些砂浆的成分,便生产了18种SCC混合物:用7种二元砂浆混合物生产了14种二元SCC混合物,并用这四种三元砂浆混合物生产了4种三元SCC混合物。除了Nepomuceno提出的方法外,还测试了三元混合物中FA和LF的组合使用。结果证实,该方法可以在新鲜状态和硬化状态下产生具有足够性能的SCC。还可以确定砂浆相(自密实砂浆-SCM)中的SCC组成参数,以确保在新鲜状态和硬化状态下的SCC特性,这通过SCC在新鲜状态和最佳状态下的优化行为得到了证实。在硬化状态(抗压强度)方面有希望的结果。强调了通过两种添加剂的协同作用联合使用LF和FA所显示的潜力。

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