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首页> 外文期刊>American Journal of Materials Synthesis and Processing >Prediction of Strength Properties of Concrete Containing Calcined Black Cotton Soil Using Response Surface Methodology
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Prediction of Strength Properties of Concrete Containing Calcined Black Cotton Soil Using Response Surface Methodology

机译:响应面法测定钙黑棉土混凝土强度特性的预测

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This research predicts the strength properties of concrete containing Calcined Black Cotton Soil (CBCS) using response surface methodology. Cement production requires large amount of energy and emits greenhouse gases that have negative impact on the environment. Utilization of CBCS as cement replacement in concrete will reduce these negative impact. Experimental plan was designed using response surface method in Design Expert software to predict compressive strength, density and water absorption of concrete containing CBCS. The CBCS was varied from 5 to 20% while the curing period was varied and 7 to 28 days. Face-centered central composite design method of response surface was used. The design consists of two design factors at three levels (coded as -1, 0, +1) each. The factors are the curing period, and the CBCS contents. The results showed that CBCS is a pozzolana. CBCS increases durability of concrete by decreasing its water absorption. All the response surface models developed for the water absorption, density and compressive strength showed very good relationship between the predictors and the responses with coefficients of determination, R~(2) > 0.94 and p-values < 0.05.
机译:该研究预测了使用响应表面方法的含有煅烧黑棉土(CBCS)的混凝土的强度特性。水泥生产需要大量的能量,并发出对环境产生负面影响的温室气体。用CBC的利用作为混凝土中的水泥更换将减少这些负面影响。使用设计专家软件中的响应面方法设计了实验计划,以预测含CBC的混凝土的抗压强度,密度和吸水。 CBCS在5%至20%之间变化,而固化期变化,7至28天。使用圆形响应表面的中心复合设计方法。该设计包括两个设计因子,每个设计因子(编码为-1,0,+1)。这些因素是固化期,CBCS内容物。结果表明,CBCS是Pozzolana。 CBCS通过降低其吸水性来增加混凝土的耐久性。为吸水率,密度和抗压强度开发的所有响应表面模型显示出预测器之间的良好关系和测定系数的响应,R〜(2)> 0.94和P值<0.05。

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