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Simple methods to estimate the influence of limestone fillers on reaction and property evolution in cementitious materials

机译:估算石灰石填料对胶凝材料反应和性能演变影响的简单方法

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摘要

A commercial interest in sustainable cementing materials is driving efforts to reduce the use of cement in concrete. Limestone fillers are a promising direction towards achieving such cement use reductions. In spite of increasing filler use, little information is available to rapidly estimate the influences of limestone fillers, and more importantly filler fineness on reaction and property development. This work develops simple models to predict the effect of particle size classified limestone on hydration reactions and com?pressive strength development. The method builds on a relativistic basis, such that enhancements and alterations in reactions and properties are described in relation to a given control (pure cement) mixture. The prediction method considers aspects such as: (1) accelerations in reactions, (2) changes in inter-par?ticle spacing as linked to the limestone filler's fineness and (3) a porosity increase with increasing cement replacement. The predictive power of the approach is demonstrated for a variety of mixtures composed using three ASTM C150 compliant cements and forwards a basis for developing mixture proportioning strategies, such that apriori estimations of the mixture response (reaction rate and mechanical properties) can be used to optimize binder proportioning and thus strategize new methods to limit cement use in concrete construction applications.
机译:商业上对可持续水泥材料的兴趣正在推动减少水泥中水泥用量的努力。石灰石填料是实现减少水泥用量的有希望的方向。尽管增加了填料的使用,但是几乎没有信息可用于快速估计石灰石填料的影响,更重要的是填料细度对反应和性能发展的影响。这项工作开发了简单的模型来预测粒度分级的石灰石对水合反应和抗压强度发展的影响。该方法建立在相对论的基础上,从而描述了相对于给定的对照(纯水泥)混合物的反应和特性的增强和改变。该预测方法考虑了以下方面:(1)反应加速;(2)与石灰石填料细度有关的颗粒间间距变化;以及(3)随着水泥替代量的增加孔隙率增加。该方法的预测能力已针对使用三种符合ASTM C150的水泥组成的各种混合物进行了证明,并为制定混合物配比策略提供了依据,从而可以使用对混合物响应(反应速率和机械性能)的先验估计来优化粘合剂的配比,从而制定策略来限制水泥在混凝土建筑应用中的使用。

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