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Simultaneous effect of nano and micro silica on corrosion behaviour of reinforcement in concrete containing cement strength grade of C-525

机译:纳米和微二氧化硅同时效应C-525混凝土强度等级混凝土腐蚀行为

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The present study investigated the changes in the effect of additive nano-silica replacing micro-silica to reduce corrosion rate of steel in the concrete made of C-525 cement in a corrosive environment, and also the optimum combination of these additives in reinforced concrete for the production of reinforced concrete with high resistance to corrosion of the reinforcement. To this end, 7 series of cylindrical corrosion samples were prepared, which comprised a base design and 6 designs of various combinations of micro and nano silica, weighing a constant 11% in total of the weight of cement used in each sample. Samples were placed in a 3.5% salt-water solution and underwent various electrochemical tests, including corrosion potential (OCP), linear polarization (LPR), impedance spectroscopy (EIS), and Tafel polarization test. The results obtained suggested combined use of 1.6% nano and 9.4% micro-silica for achieving the most appropriate cost considering the increased useful life of concrete structures and the optimum reduction in rate of corrosion of concrete.
机译:本研究研究了添加剂纳米二氧化硅替代微二氧化硅效果的变化,以降低腐蚀性环境中C-525水泥制成的混凝土中钢的腐蚀速率,以及这些添加剂在钢筋混凝土中的最佳组合钢筋混凝土生产高耐腐蚀性耐腐蚀。为此,制备了7系列圆柱形腐蚀样品,其包括基础设计和6个微型和纳米二氧化硅组合的6个设计,总称重每种样品中使用的水泥的重量恒定11%。将样品置于3.5%的盐水溶液中并进行各种电化学测试,包括腐蚀电位(OCP),线性偏振(LPR),阻抗光谱(EIS)和TAFEL偏振测试。得到的结果建议结合1.6%纳米和9.4%的微二氧化硅,以实现最合适的成本,考虑混凝土结构的使用寿命和混凝土腐蚀速率的最佳降低。

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