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Cost effective optimal mix proportioning of high strength self compacting concrete using response surface methodology

机译:使用响应面法的高强度自密实混凝土经济高效的最佳配合比

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Optimization of the concrete mixture design is a process of search for a mixture for which the sum of the cost of the ingredients is the lowest, yet satisfying the required performance of concrete. In this study, a statistical model was carried out to model a cost effective optimal mix proportioning of high strength self-compacting concrete (HSSCC) using the Response Surface Methodology (RSM). The effect of five key mixture parameters such as water-binder ratio, cement content, fine aggregate percentage, fly ash content and superplasticizer content on the properties and performance of HSSCC like compressive strength, passing ability, segregation resistance and manufacturing cost were investigated. To demonstrate the responses of model in quadratic manner Central Composite Design (CCD) was chosen. The statistical model showed the adjusted correlation coefficient R2adj values were 92.55%, 93.49%, 92.33%, and 100% for each performance which establish the adequacy of the model. The optimum combination was determined to be 439.4 kg/m(3) cement content, 35.5% W/B ratio, 50.0% fine aggregate, 49.85 kg/m(3) fly ash, and 7.76 kg/m(3) superplasticizer within the interest region using desirability function. Finally, it is concluded that multiobjective optimization method based on desirability function of the proposed response model offers an efficient approach regarding the HSSCC mixture optimization.
机译:混凝土混合物设计的优化是寻找一种混合物的过程,其成分成本之和最低,但仍能满足混凝土的性能要求。在这项研究中,使用响应表面方法(RSM)进行了统计模型,以建模具有成本效益的高强度自密实混凝土(HSSCC)最佳配合比。研究了水灰比,水泥含量,细骨料百分比,粉煤灰含量和高效减水剂五个关键混合参数对HSSCC性能和性能的影响,如抗压强度,通过能力,抗偏析性和制造成本。为了二次验证模型的响应,选择了中央复合设计(CCD)。统计模型显示,每种性能的调整后相关系数R2adj值分别为92.55%,93.49%,92.33%和100%,这确定了模型的适当性。确定最佳组合为水泥含量为439.4 kg / m(3),W / B比为35.5%,细骨料为50.0%,粉煤灰49.85 kg / m(3)和7.76 kg / m(3)高效减水剂。使用期望函数的兴趣区域。最后得出结论,基于所提出的响应模型的期望函数的多目标优化方法为HSSCC混合优化提供了一种有效的方法。

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