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Design of self-compacting high-performance concrete: Study of mortar phase

机译:自密实高性能混凝土设计:砂浆相研究

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The design of self-compacting high-performance concrete (SCHPC) materials, to be applied in marine environments, demands for an adequate selection and combination of constituent materials. In the current study, a ternary mixture of white Portland cement + limestone filler + metakaolin was selected to produce a white SCHPC. Design of experiments approach was employed to investigate the effect of design variables, and their coupled effects, on the relevant mortar properties. Statistical models were developed to predict the fresh state properties, maximum temperature rise (under semi-adiabatic conditions), initial and final setting times and shrinkage deformation of mortars. Metakaolin to cement weight ratio was found to exhibit the highest effect (a negative effect) on workability and on initial/final setting time, which is explained by the high reactivity of metakaolin. The fine aggregate content had the highest effect on both the maximum temperature rise and shrinkage of mortars. Finally, the derived statistical models and a numerical optimization technique allowed finding the best combination of constituent materials to reduce the risk of cracking during the first days, which ensures a more impermeable concrete in the final structure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:用于海洋环境的自密实高性能混凝土(SCHPC)材料的设计要求对组成材料进行适当的选择和组合。在当前的研究中,选择了白色波特兰水泥+石灰石填料+偏高岭土的三元混合物来生产白色SCHPC。实验设计方法被用来研究设计变量及其耦合效应对相关砂浆性能的影响。开发了统计模型来预测新鲜状态特性,最大温度升高(在半绝热条件下),初始和最终凝固时间以及砂浆的收缩变形。发现偏高岭土与水泥的重量比对可加工性和初始/最终凝固时间表现出最高的作用(负作用),这可以通过偏高岭土的高反应性来解释。细骨料含量对最大温度升高和砂浆的收缩均具有最大的影响。最后,导出的统计模型和数值优化技术允许找到组成材料的最佳组合,以减少前几天开裂的风险,从而确保了最终结构中混凝土的不渗透性。 (C)2018 Elsevier Ltd.保留所有权利。

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