Correlations between the Impedance and Compressive Strength of Hardened Cement According to the Aggregate Type

Hojin Kim, Jinju Kim, Sungyu Park, Je Hyun Bae
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Abstract

: To date, methods used to assess the interfacial transition zone (ITZ), which represents the boundary between the aggregate and paste inside concretes, have primarily relied on destructive tests, and non-destructive tests has received little attention until recently. This study assessed the interfaces of concretes with lightweight aggregates based on electrochemical impedance spectroscopy (EIS) for high-strength concretes and examined the possibility of estimating the compressive strength of concretes through non-destructive testing using EIS. The experimental results revealed that the impedance of the hardened cement increased with increasing compressive strength and aggregate density. In particular, when the results of impedance measurement were displayed as a Nyquist plot, the intercept of the x-axis depicting the effective conductivity was proportional to the compressive strength. Furthermore, an equivalent circuit was selected to interpret the correlation between cement aggregates and impedance. Consequently, the compressive strength was found to increase with the value of the resistances of the electrolyte filled in continuous pores in the cement aggregate. And, the pores formed in the ITZ affect this value. The resistance at the ITZ for different aggregates was also obtained, and it was found that the resistance was consistent with the results predicted by SEM images of the ITZ and correlated with the strength of the concretes. The proposed method can be used as a way to easily determine the strength of cement according to differences in aggregate.
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根据骨料类型确定硬化水泥的阻抗和抗压强度之间的相关性
:迄今为止,用于评估界面过渡区(ITZ)(ITZ 代表混凝土内部骨料和浆料之间的边界)的方法主要依赖于破坏性试验,而非破坏性试验直到最近才受到重视。本研究基于高强度混凝土的电化学阻抗谱(EIS)评估了轻质骨料混凝土的界面,并研究了利用 EIS 通过非破坏性测试估算混凝土抗压强度的可能性。实验结果表明,硬化水泥的阻抗随抗压强度和骨料密度的增加而增加。特别是,当阻抗测量结果显示为奈奎斯特图时,表示有效电导率的 x 轴截距与抗压强度成正比。此外,还选择了等效电路来解释水泥骨料与阻抗之间的相关性。结果发现,抗压强度随着水泥骨料中连续孔隙中电解质电阻值的增加而增加。而 ITZ 中形成的孔隙会影响该值。此外,还获得了不同骨料在 ITZ 处的电阻值,发现电阻值与 ITZ 的 SEM 图像预测结果一致,并与混凝土强度相关。所提出的方法可用于根据骨料的不同轻松确定水泥的强度。
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