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Effects of Steel Slag Substitution in Geopolymer Concrete on Compressive Strength and Corrosion Rate of Steel Reinforcement in Seawater and an Acid Rain Environment

机译:矿质聚合物中钢渣替代对海水和酸雨环境中钢筋抗压强度和腐蚀速率的影响

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The effect of steel slag substitution as coarse aggregate on compressive strength in fly ash based-geopolymer concrete was studied. The compressive strength was evaluated by measuring the maximum acceptable load using compression testing equipment. Compressive strength depends on several factors, such as time and temperature of curing and the mixing proportion. The compressive strength of geopolymer concrete with steel slag substitution was higher compared to geopolymer concrete with gravel aggregate. The optimum compressive strength was found on the third day of curing at a temperature of 60oC for both the geopolymer concrete with steel slag substitution and normal geopolymer concrete. Reinforcement corrosion was evaluated by measuring the corrosion current density using a linear polarization potentiostatic scan. The corrosion rate of reinforcing steel in geopolymer concrete with steel slag substitution was found to be higher compared to normal geopolymer concrete without steel slag in seawater medium, whereas in an acid rain environment, steel slag substitution increased corrosion resistance. The corrosion rate of geopolymer concrete with steel slag substitution was found to be lower compared to normal geopolymer concrete. The corrosion rate was found to be very high at an early stage and decreased with time.
机译:研究了钢渣替代粗骨料对粉煤灰基地质聚合物混凝土抗压强度的影响。通过使用压缩测试设备测量最大可接受载荷来评估抗压强度。抗压强度取决于几个因素,例如固化的时间和温度以及混合比例。用钢渣代替的土聚合物混凝土的抗压强度比用砾石骨料的土聚合物混凝土高。在用钢渣替代的土聚合物混凝土和普通土聚合物混凝土中,在温度为60oC的固化的第三天,都发现了最佳的抗压强度。通过使用线性极化恒电位扫描测量腐蚀电流密度来评估增强腐蚀。发现在海水介质中,用钢渣替代的地聚合物中钢筋的腐蚀速率要比没有钢渣的普通土聚合物混凝土高,而在酸雨环境中,用钢渣替代可以提高抗腐蚀性。与普通的地质聚合物混凝土相比,发现用钢渣替代的地质聚合物混凝土的腐蚀速率较低。发现腐蚀速率在早期是非常高的并且随时间降低。

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