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Flexural Strength and Compressive Strength Relations of Spent Foundry Sand Concrete

机译:废砂混凝土的抗弯强度和抗压强度关系

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摘要

This research work was on the evaluation of the flexural strength and compressive strength relationship of spent foundry sand (SFS) concrete. The relationship was established using a concrete mixture of 1:1.71:2.56, a cement content of 404 kg/m(2), and a water-cement ratio (w/c) of 0.52. This was used to cast beams of dimensions 150 x 150 x 500 mm (6 x 6 x 20 in.) cured for 90 days in a water curing tank under laboratory conditions. The SFS was used to replace fine aggregate (FA) 0 to 40% by wt. The evaluations on the statistical characteristics of the flexural strength data results showed that the addition of SFS to concrete improved the hydration process. This was reflected in the strength development of the concrete and the strong correlation and level of significance observed with the variables (mixture and age). The values of the modulus of rupture (MOR) obtained are in the range of 4.6 to 6.6 MPa; this was at the optimum replacement of 10%. At this level, the value of the flexural strength was approximately 29% of the compressive strength. The two models chosen that represented the flexural strength and compressive strength relations are the square root and 2/3 models. The relative predictive error (RPE) for each is 0.1 and 0.2, respectively.
机译:这项研究工作是在评估废铸造砂(SFS)混凝土的抗弯强度和抗压强度之间的关系。使用1:1.71:2.56的混凝土混合物,404 kg / m(2)的水泥含量和0.52的水灰比(w / c)建立关系。它用于浇铸尺寸为150 x 150 x 500毫米(6 x 6 x 20英寸)的梁,并在实验室条件下的水固化箱中固化90天。 SFS用于代替0至40 wt%的细骨料(FA)。对抗弯强度数据结果统计特性的评估表明,在混凝土中添加SFS可以改善水合过程。这体现在混凝土的强度发展以及与变量(混合物和年龄)的密切相关性和显着性水平上。所获得的断裂模量(MOR)的值在4.6至6.6MPa的范围内。最佳替换率为10%。在此水平下,抗弯强度的值约为抗压强度的29%。选择的两个表示抗弯强度和抗压强度关系的模型是平方根和2/3模型。每种的相对预测误差(RPE)分别为0.1和0.2。

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