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首页> 外文期刊>International Journal of Concrete Structures and Materials >Correlation Between Bulk and Surface Resistivity of Concrete
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Correlation Between Bulk and Surface Resistivity of Concrete

机译:混凝土的体积电阻率与表面电阻率的相关性

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Abstract Electrical resistivity is an important physical property of portland cement concrete which is directly related to chloride induced corrosion process. This study examined the electrical surface resistivity (SR) and bulk electrical resistivity (BR) of concrete cylinders for various binary and ternary based high-performance concrete (HPC) mixtures from 7 to 161?days. Two different types of instruments were utilized for this investigation and they were 4 point Wenner probe meter for SR and Merlin conductivity tester for bulk resistivity measurements. Chronological development of electrical resistivity as well as correlation between two types of resistivity on several days was established for all concrete mixtures. The ratio of experimental surface resistance to bulk resistance and corresponding resistivity was computed and compared with theoretical values. Results depicted that bulk and SR are well correlated for different groups of HPC mixtures and these mixtures have attained higher range of electrical resistivity for both types of measurements. In addition, this study presents distribution of surface and bulk resistivity in different permeability classes as proposed by Florida Department of Transportation (FDOT) specification from 7 to 161?days. Furthermore, electrical resistivity data for several HPC mixtures and testing procedure provide multiple promising options for long lasting bridge decks against chloride induced corrosion due to its ease of implementation, repeatability, non-destructive nature, and low cost.
机译:摘要电阻率是硅酸盐水泥混凝土的重要物理性能,与氯化物引起的腐蚀过程直接相关。这项研究研究了从7到161天的各种二元和三元高性能混凝土(HPC)混合物的混凝土圆柱体的表面电阻率(SR)和整体电阻率(BR)。两种不同类型的仪器用于此研究,它们是用于SR的4点Wenner探针计和用于体积电阻率测量的Merlin电导率测试仪。建立了所有混凝土混合物几天的电阻率时序发展以及两种类型的电阻率之间的相关性。计算了实验表面电阻与体电阻的比值以及相应的电阻率,并将其与理论值进行了比较。结果表明,对于不同组的HPC混合物,体积和SR具有良好的相关性,并且对于两种类型的测量,这些混合物均具有较高的电阻率范围。此外,这项研究还提出了佛罗里达交通运输部(FDOT)规范提出的7至161天的不同渗透率等级下的表面电阻率和体积电阻率分布。此外,由于几种HPC混合物和测试程序的电阻率数据易于实施,可重复性,非破坏性且成本低廉,因此可为持久耐用的桥面板提供多种有希望的选择,以防止氯离子引起的腐蚀。

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