The Effect of Caspian Sea Water on Corrosion Resistance and Compressive Strength of Reinforced Concrete Containing Different SiO2 Pozzolan

S. B. Kutenayi, Seyed Rahim Kiahosseini, M. Talebpour
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引用次数: 6

Abstract

Many parameters are influenced by the diffusion of chloride on concrete in marine environments and these can affect concrete quality. In this study, the effect of water to cement ratio of 0.35, 0.40 and 0.45 on corrosion resistance and compressive strength of reinforced concrete was evaluated. Moreover, different percentages of micro silica (SiO2) including 5, 7.5 and 10% were utilized, in order to investigate the effect of pozzolanic materials on the corrosion of steel in concrete. Then cubic samples reinforced with steel bar spacing of 2.5, 5 and 7 cm from the cube surface were made and put in Caspian sea water for 5 months. During this period, corrosion potential of steel was measured by a calomel half cell (SCE). In order to finalize the evaluation of the mechanical strength of the samples, concrete pressure test was conducted and the result showed that after 40, 44 and 59 days for the bars with depth of 2.5, 5 and 7 cm, respectively and the samples prepared with water-cement ratio of 0.35, the corrosion potential was -350V versus SCE, while the compressive strength was approximately 450 kg/cm2. This result showed longer life span of this sample in comparison with other water-cement ratios. By adding micro silica to the samples up to 7.5%, the time for obtaining a corrosion potential of -350V, bars with depth of 2.5, 5 and 7 cm, was 43, 50 and 86 days, respectively, and the compressive strength of this sample was approximately 480 kg/cm2. Consequently, it is arguable that in order to achieve longer life span of corrosion and suitable compressive strength, the optimum ratio of water to cement should be 0.35 and the percentage of pozzolan SiO2 should be 7.5%.
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里海海水对含不同SiO2硅酸盐的钢筋混凝土耐蚀性和抗压强度的影响
海洋环境中氯化物在混凝土上的扩散会影响混凝土的许多参数,从而影响混凝土的质量。本研究评价了0.35、0.40和0.45水灰比对钢筋混凝土耐蚀性和抗压强度的影响。此外,为了研究微二氧化硅(SiO2)对混凝土中钢材腐蚀的影响,研究了微二氧化硅(SiO2)的掺量分别为5%、7.5%和10%。然后制作离立方体表面间距分别为2.5、5和7cm的钢筋增强立方体样品,放入里海水中5个月。在此期间,用甘汞半电池(SCE)测量了钢的腐蚀电位。为了完成对试件力学强度的评价,进行了混凝土压力试验,结果表明:当试件深度分别为2.5、5和7 cm,水灰比为0.35时,试件经过40、44和59天后,腐蚀电位相对于SCE为-350V,抗压强度约为450 kg/cm2。结果表明,与其他水灰比相比,该样品的寿命更长。通过在样品中添加7.5%的微二氧化硅,获得深度为2.5、5和7 cm的-350V腐蚀电位的时间分别为43、50和86天,该样品的抗压强度约为480 kg/cm2。因此,为了获得较长的腐蚀寿命和适当的抗压强度,最佳水灰比为0.35,火山灰SiO2含量为7.5%。
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