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Modelling the electrical resistivity of concrete with varied water and chloride contents

机译:用不同水和氯化物含量建模混凝土电阻率

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The electrical resistivity of concrete is an important property in the assessment of reinforcement corrosion in concrete and an essential parameter in the design and operation of cathodic protection for reinforced-concrete (RC) structures. Water and chloride contents in concrete are highly variable in RC structures in real-world hostile environments, meaning that characterisation of their coupled effects on concrete electrical resistivity is important. The currently available models are investigated in this paper. As all the current models are purely empirical, an improvement with a semi-empirical model is proposed. The improvement highlights the intrinsic linkage between concrete electrical resistivity and water content and the pore size distribution of concrete. The proposed model was tested using two sets of experimental data and was also compared with other two empirical models.
机译:混凝土的电阻率是在混凝土中评估加固腐蚀的重要特性,以及用于加固 - 混凝土(RC)结构的阴极保护的设计和运行中的基本参数。混凝土中的水和氯化物含量在现实世界敌对环境中的RC结构中具有高度变化,这意味着它们对混凝土电阻率的耦合效果的表征是重要的。本文调查了目前可用的型号。随着所有当前模型纯度经验,提出了利用半经验模型的改进。改善突出了混凝土电阻率和水含量与混凝土孔径分布的内在联动。使用两组实验数据测试所提出的模型,也与其他两个经验模型进行了测试。

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