Utilization of response surface methodology in optimization of locally sourced aggregates

E. Ogunjiofor, Femi Ogundeji Ayodele
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引用次数: 3

Abstract

This research investigated the optimization of locally sourced aggregate, mixed with variable cement ratios to determine its optimum compressive strength. Samples of standard sizes of local fine and coarse aggregate were obtained at the popular excavation sites. The concrete materials were weighed, batched, mixed, cast and cured using four different mix proportions of 1:2:4, 1.2:2:4, 1.4:2:4 and 1.6:2:4 of cement, fine and coarse aggregate at constant water/cement ratio of 0.5. A total of 48 concrete cubes of 150mmx150mmx150mm were produced, cured for 7, 14, 21 and 28 days and tested. Mathematical model equation relating the compressive strength of the local stone with variability of cement was developed using Response Surface Methodology (RSM). The significance and suitability of the equation was confirmed using the analysis of variance (ANOVA). The ANOVA for the quadratic and Surface Cubic model shows that the adjusted R2 of 0.9808 and F-value of 227.76 in compressive strength of the concrete is confidently accounted for by the independent variable. This demonstrates that the equation's predictions of compressive strength for various concrete structures are accurate. Therefore, utilization of local aggregate is advised for the construction of most of the dominant low-rise residential buildings in Anambra and other neighbouring States.
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响应面法在局部聚合体优化中的应用
本研究调查了本地采购骨料的优化,与可变水泥比混合,以确定其最佳抗压强度。在受欢迎的挖掘地点获得了当地细、粗骨料的标准尺寸样品。采用水泥、细骨料和粗骨料1:2:4、1.2:2:4、1.4:2:4和1.6:2:4的不同配合比,水灰比恒定为0.5,对混凝土材料进行称重、配料、搅拌、浇筑和养护。共生产了48个150mmx150mmx150mm的混凝土立方体,分别进行了7、14、21、28天的养护和试验。采用响应面法建立了局部岩石抗压强度与水泥变异性之间的数学模型方程。利用方差分析(ANOVA)证实了方程的显著性和适宜性。二次模型和曲面立方模型的方差分析表明,混凝土抗压强度调整后的R2为0.9808,f值为227.76,可以由自变量来解释。这表明该方程对各种混凝土结构抗压强度的预测是准确的。因此,建议在阿南布拉和其他邻国建造大多数主要的低层住宅建筑时使用当地骨料。
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