Influence of component fineness on hydration and strength development in ternary slag-limestone cements

Q2 Engineering RILEM Technical Letters Pub Date : 2019-11-05 DOI:10.21809/rilemtechlett.2019.89
S. Adu-Amankwah, S. López, L. Black
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引用次数: 11

Abstract

The quest for sustainable alternatives to Portland cement has led to the exploration of a range of materials or their combinations, often with the aim of exploiting synergies in reactions or particle packing to maximize performance. Simultaneous optimization of both presents a viable option to increase the efficiency of cementitious materials. The objective of this study was to evaluate the effect of varying the fineness of the constituents in ternary blends of CEM I – granulated ground blast furnace slag (GGBS) - limestone on hydration kinetics and strength development. Eight (8) ternary cement mixes were tested at 0.5 water/binder (w/b) ratio. Hydration was followed by isothermal conduction calorimetry and setting time. In addition, X-ray powder diffraction, thermogravimetric analysis and compressive strength development up to 180 days of curing were assessed. The efficiency associated with changing the fineness of each component was evaluated in terms of the net heat of reaction and compressive strength. The results show that fine CEM I is critical for hydration at early age, and this is reflected in the compressive strength accordingly. The benefits associated with finer GGBS and similarly limestone depend on the fineness of the other constituents in the blend. Optimization of these should consider the inter-dependencies in terms of kinetics and microstructure development.
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组分细度对三元矿渣-石灰石水泥水化及强度发展的影响
对波特兰水泥可持续替代品的探索导致了对一系列材料或其组合的探索,通常目的是利用反应或颗粒填充的协同作用来最大限度地提高性能。同时对两者进行优化为提高胶凝材料的效率提供了一种可行的选择。本研究的目的是评估CEM I–矿渣颗粒(GGBS)-石灰石三元混合物中成分细度的变化对水化动力学和强度发展的影响。八(8)种三元水泥混合物在0.5水/粘结剂(w/b)比下进行了测试。水合之后用等温传导量热法和凝固时间进行。此外,还评估了固化180天内的X射线粉末衍射、热重分析和抗压强度发展。根据净反应热和抗压强度来评估与改变每种成分的细度相关的效率。结果表明,细的CEM I对早期的水化至关重要,这相应地反映在抗压强度中。与更细的GGBS和类似石灰石相关的益处取决于混合物中其他成分的细度。这些优化应考虑动力学和微观结构发展方面的相互依赖性。
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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来源期刊
RILEM Technical Letters
RILEM Technical Letters Materials Science-Materials Science (all)
CiteScore
5.00
自引率
0.00%
发文量
13
审稿时长
10 weeks
期刊最新文献
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