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Weibull statistical analysis of splitting tensile strength of concretes containing class F fly ash, microano-SiO_2

机译:含F级粉煤灰,微米/纳米SiO_2的混凝土劈拉强度的Weibull统计分析。

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摘要

Despite the importance of the Weibull modulus in reliability analysis of brittle materials, the majority of the studies are focused on plain concrete; the data being especially scarce for nano-SiO_2-concrete. Therefore, this paper investigates the concrete tensile strength up to quaternary designs containing fly ash, micro- and/or nano-SiO_2. Splitting failures were carried out at 3, 7, 28, 56 and 90-days. Quadratic class goodness-of-fit tests of composite hypothesis were applied to investigate the accuracy of the two- (We2) and three-parameter (We3) Weibull models. The estimated Weibull parameters were obtained using maximum likelihood (MLE) and other nonlinear methodologies. This practice enables to overcome divergences in some datasets associated with the solely use of MLE-We3. Results showed that the We3 represented the model with the best fit (71%) in comparison to the We2 (25%). However, differences through time in the mean Weibull moduli were not significant based on ANOVA analyses.
机译:尽管威布尔模量在脆性材料的可靠性分析中很重要,但大多数研究集中在普通混凝土上。纳米SiO_2混凝土的数据特别少。因此,本文研究了直到粉煤灰,微米和/或纳米SiO_2的四级设计的混凝土抗拉强度。在3、7、28、56和90天进行拆分失败。应用复合假设的二次类拟合优度检验来研究两参数(We2)和三参数(We3)Weibull模型的准确性。估计的威布尔参数是使用最大似然(MLE)和其他非线性方法获得的。这种做法可以克服与仅使用MLE-We3有关的某些数据集中的差异。结果表明,与We2(25%)相比,We3代表了最佳拟合模型(71%)。然而,基于方差分析,平均Weibull模量随时间的变化并不显着。

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