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Optimization of chemical admixture for concrete on mortar performance tests using mixture experiments

机译:使用混合料试验优化混凝土中化学外加剂的砂浆性能

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The ready mixed concrete industry has been developing rapidly as a result of technological improvements, especially for skyscrapers and high rise structures. Concrete design is a hard and expensive job, moreover it takes too much time. Concrete must conform to some special conditions such as durability and strength during its life cycle. The selection of an appropriate chemical admixture is a very important criterion to achieve the desired specifications for concrete. In this study, the effects of admixture components and admixture dosage on the response variables were examined using mixture experiments. Mixture experiments were conducted on mortar for the optimization of the chemical admixture for concrete. They were performed on a much smaller scale in the laboratory. Computer-generated D-optimal design was used to obtain mixture data due to the additional constraints on some of the component proportions. Mixture data was modeled employing second-degree Scheffe polynomials. A graphical approach based on trace plots was suggested for examining the effect of the admixture dosage. For the simultaneous optimization of multiple responses, a desirability function approach was used and the optimum component proportions were determined in each dosage level. The target was to reach an optimum point by obtaining maximum compressive strength and maximum water reduction for concrete with minimum cost of the admixture. The cost calculation was made for the optimum component proportions and, according to the objective, the most appropriate component combination was chosen. The results were validated by confirmation experiments and prediction intervals for mortar, and by further experiments for concrete.
机译:由于技术进步,预拌混凝土行业发展迅速,尤其是摩天大楼和高层建筑。混凝土设计是一项艰巨而昂贵的工作,而且需要太多时间。混凝土必须在其生命周期内符合某些特殊条件,例如耐久性和强度。选择合适的化学外加剂是实现混凝土所需规格的非常重要的标准。在这项研究中,使用混合物实验检查了混合物成分和混合物剂量对响应变量的影响。在砂浆上进行了混合物实验,以优化混凝土的化学外加剂。它们是在实验室以较小的规模进行的。由于某些成分比例的其他限制,使用计算机生成的D最佳设计来获得混合物数据。混合物数据采用二阶Scheffe多项式建模。建议使用基于痕量图的图形方法来检查混合物剂量的影响。为了同时优化多种反应,使用了期望函数方法,并确定了每个剂量水平的最佳组分比例。目标是通过以最低的混合料成本获得混凝土的最大抗压强度和最大减水量来达到最佳点。成本计算是针对最佳组件比例进行的,并根据目标选择了最合适的组件组合。通过砂浆的确认实验和预测间隔以及混凝土的进一步实验来验证结果。

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