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Use of Electrical Test Method on Determination Aging Factor of Concrete Incorporating Supplementary Cementitious Materials

机译:电气试验方法对混凝土掺入辅助材料的测定老化因子的使用

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One of the biggest benefits of using supplementary cementitious materials (SCMs) in concrete is the large reduction in the concrete chloride ion diffusion coefficient with age. The formation factor calculated from electrical resistivity measurements is proportional to the concrete effective chloride diffusion coefficient. Traditionally, the aging factor used in service life modeling has been determined from examination of the apparent diffusion coefficient calculated from concrete bulk diffusion experiments, lumping chloride binding and with diffusion. This study proposes to use the formation factor determined from electrical resistivity tests to quantify the concrete aging parameter for service life modeling. To determine the effect of cement chemical composition, four types of cement were tested including type MI low alkali cement, type IL cement, type V cement and type I/II high alkali cement. Silica fume, slag cement, Class F fly ash, and metakaolin were used as supplementary cementitious materials (SCMs) in binary and ternary blends with different replacement ratios to evaluate the effect of SCMs on the concrete electrical properties with age. The electrical properties were determined at 28, 56, 91, 182 and 365 days. A discussion about the advantages and disadvantages of this method over traditional methods to quantify aging are presented.
机译:使用混凝土中使用补充水泥材料(SCM)的最大益处之一是随着年龄的增长的混凝土氯离子扩散系数的大大减少。根据电阻率测量计算的形成系数与混凝土有效的氯化物扩散系数成比例。传统上,已经确定了使用寿命模型的衰老因子从基于混凝土散装扩散实验,氯化物结合和扩散计算的表观扩散系数的检查确定。本研究提出使用从电阻率测试确定的形成系数来量化用于使用寿命建模的混凝土老化参数。为了确定水泥化学成分的作用,测试了四种类型的水泥,包括Mi低碱水泥,型IL水泥,V型水泥,型I / II型高碱水泥。二氧化硅烟气,炉渣水泥,F型粉煤灰和甲状腺素用作二元和三元共混物中的补充水泥材料(SCM),具有不同的更换比率,以评估SCM对具有年龄的混凝土电性能的影响。在28,56,91,182和365天确定电性能。介绍了这种方法对量化老化的传统方法的优点和缺点。

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