首页> 外文会议>Corrosion conference and expo 2009 >UNDERSTANDING THE EFFECT OF REBAR PRESENCE AND/OR MULTILAYERED CONCRETE RESISTIVITY ON THE APPARENT SURFACE RESISTIVITY MEASURED VIA THE FOUR-POINT WENNER METHOD
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UNDERSTANDING THE EFFECT OF REBAR PRESENCE AND/OR MULTILAYERED CONCRETE RESISTIVITY ON THE APPARENT SURFACE RESISTIVITY MEASURED VIA THE FOUR-POINT WENNER METHOD

机译:通过四点温纳法理解钢筋的存在和/或多层混凝土的电阻率对表观表面电阻率的影响

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Results from laboratory specimens and finite element modeling are being used to better understand the apparent surface resistivity values obtained from field measurements. Concrete specimens were prepared with no rebar and also specimens with two different rebar arrangements. Most of the specimens were moist cured for 60 days, and then transferred to lab environment for the following 60 days; thereafter, exposure was outdoor cyclic ponding with sea water. The last two exposures are expected to produce multi-layered concrete resistivity close to the surface. An analytical method was used to study multi-layered resistivity close to concrete surface. Finite element methods were used to assess rebar presence, multi-layered resistivity close to the surface, and the combined effect of these two parameters. It was found that the finite geometry also affects the resistivity measurements.
机译:用于实验室标本和有限元建模的结果用于更好地理解从场测量获得的表观表面电阻率值。制备混凝土标本,没有螺纹钢,也是具有两种不同钢筋安排的标本。大多数标本湿润60天,然后转移到实验室环境下进行了以下60天;此后,暴露是户外循环池与海水。最后两种曝光预计将产生靠近表面的多层混凝土电阻率。使用分析方法研究靠近混凝土表面的多层电阻率。有限元方法用于评估靠近表面的钢筋存在,多层电阻率,以及这两个参数的组合效果。发现有限几何形状也会影响电阻率测量。

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