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A study on compressive strength and corrosion behaviour of reinforcing steel in chloride contaminated fly ash based geopolymer concrete

机译:氯化物污染粉煤灰基地缘聚合物混凝土抗压强度抗压强度及腐蚀行为研究

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This paper investigates the effect of alkali concentration on compressive strength and corrosion behaviour of reinforcing steel in chloride contaminated geopolymer concrete (GPC) mixes. In this work, fly ash based GPC mixes were prepared with different concentrations of NaOH solution i.e. 8 M and 10 M. Chloride was admixed to GPC mixes at the time of preparation in the form of sodium chloride. Sodium chloride concentrations used were 0%, 1.5% and 3% by mass of geopolymer solids content. Cube specimens and prismatic reinforced concrete specimens were prepared from GPC mixes for determining 7-days compressive strength and corrosion parameters respectively. Potential measurement and corrosion current density by linear polarization resistance (LPR) measurement were carried out on prismatic reinforced concrete specimens at different testing ages. From the results, it is observed that the compressive strength of GPC specimens increased with increase in molarity of NaOH solution. The potential values of steel reinforcement in chloride contaminated GPC specimens were more negative than -270 mV (SCE) for both molarity of NaOH solution, indicating greater probability of occurrence of steel reinforcement corrosion. Further, the corrosion current density of steel reinforcement increased with increase in admixed sodium chloride concentration for both concentrations of NaOH solution. There was an increase in corrosion current density with increase in molarity of NaOH solution i.e. from 8 M to 10 M at all testing ages till 180 days.
机译:本文研究了碱浓度对氯化物污染的地质聚合物混凝土(GPC)混合中钢筋抗压强度和耐腐蚀行为的影响。在这项工作中,用不同浓度的NaOH溶液制备粉煤灰基GPC混合物,即在氯化钠的形式时将氯化物混合至GPC混合物。使用的氯化钠浓度为0%,1.5%和3质量%的地质聚合物固体含量。使用GPC混合物制备立方体标本和棱柱形钢筋混凝土试样,用于分别用于测定7天的抗压强度和腐蚀参数。通过线性偏振电阻(LPR)测量的电位测量和腐蚀电流密度在不同测试年龄的棱柱钢筋混凝土样本上进行。从结果中,观察到GPC样品的抗压强度随NaOH溶液的摩尔性增加而增加。氯化物污染的GPC标本中钢筋增强的潜在值比NaOH溶液的摩擦力更为负于-270mV(SCE),表明钢筋腐蚀发生的概率更大。此外,钢筋的腐蚀电流密度随着NaOH溶液浓度的混合氯化钠浓度的增加而增加。腐蚀电流密度增加,NaOH溶液的摩尔性增加,即在8米至10米处,所有测试年龄至180天。

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