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An experimental study on corrosion resistance of concrete with ground granulate blast-furnace slag

机译:粒状高炉矿渣混凝土抗腐蚀性能的试验研究

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This paper presents experimental test results on corrosion resistance of concrete containing ground granulate blast-fumace slag (GGBS) and ASTM Type I or ASTM Type V cement. To investigate the problem, a series of tests were performed. First, rapid chloride permeability tests were executed in accordance with ASTM C 1202 to determine the qualitative terms of chloride-ion penetrability. Second, accelerated chloride-ion diffusion tests were done to calculate diffusion coefficients of chloride-ions permeated through concrete specimens. Third, accelerated steel corrosion tests were earned out by using the repeated wetting and drying technique. Fourth, half-cell potential tests were implemented in accordance with ASTM C 876 to evaluate the probability of steel corrosion. Finally, the surface area of corrosion on embedded steel in concrete specimens was measured to confirm half-cell test results. Test results showed that the coefficient of permeability of Type I cement concrete was lower than that of Type V cement concrete. All the concrete mixed with GGBS exhibited lower diffusion coefficient, compared to GGBS-free concrete. Moreover, the corrosion probability of steel bar in Type V cement concrete was higher than that of steel bar in Type I cement concrete. Based on the test results, it is suggested that much stronger corrosion resistance can be achieved, if higher volume of GGBS is added in Type I cement rather than Type V cement.
机译:本文介绍了含有磨碎的高炉渣矿渣(GGBS)和ASTM I型或ASTM V型水泥的混凝土的耐腐蚀性的试验结果。为了调查该问题,进行了一系列测试。首先,根据ASTM C 1202进行快速的氯离子渗透性测试,以确定氯离子渗透性的定性术语。其次,进行了加速的氯离子扩散测试,以计算渗透到混凝土样品中的氯离子扩散系数。第三,通过使用重复的润湿和干燥技术进行了加速的钢腐蚀测试。第四,根据ASTM C 876进行了半电池电位测试,以评估钢腐蚀的可能性。最后,测量混凝土试样中嵌入钢的腐蚀表面积,以确认半电池测试结果。试验结果表明,Ⅰ类水泥混凝土的渗透系数低于Ⅴ类水泥混凝土的渗透系数。与不含GGBS的混凝土相比,所有掺有GGBS的混凝土均表现出较低的扩散系数。此外,V型水泥混凝土中钢筋的腐蚀可能性高于I型水泥混凝土中钢筋的腐蚀可能性。根据测试结果,建议如果在I型水泥中而不是在V型水泥中添加更大体积的GGBS,则可以获得更强的耐腐蚀性。

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