Corrosion resistance of mild steel immersed in simulated concrete pore solution in the presence of sodium potassium tartrate

A. Nilavan, Little Arockiaraj, Anucia Arputha, Jeevitha Velankanni, Rajendran Jeyalakshmi, Arockiam Roslin, Pushpa Murugesh, V. Velkannan, Gurmeet Singh, A. Al-Hashem, S. Rajendran, Arjunan Krishnaveni
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Abstract

The corrosion resistance of mild steel in simulated concrete pore solution (SCPS) in the absence and presence of sodium potassium tartrate (SPT) has been investigated by polarization technique and AC impedance spectra. The present study leads to the following conclusions. Polarization study reveals that sodium potassium tartrate system functions as anodic type of inhibitor. AC impedance spectra reveal that a shielding film is formed on the metal surface. When mild steel is used as rebar, sodium potassium tartrate may be mixed with concrete. Thus the mild steel will be protected from corrosion. The protective film consists of ferrous tartrate complex formed on metal surface. In the presence of sodium potassium tartrate the linear polarisation resistance increases from 226 Ohmcm2 to 455 Ohmcm2 , corrosion current decreases from 1.901x10-4A/cm2 to1.096 x10-4A/cm2 , charge transfer resistance (Rt) increases from 49 Ohmcm2 to 77 Ohmcm2 , impedance increases from 1.807 to 2.084, phase angle increases from 33.92° to 35.31° and double layer capacitance (Cdl) value decreases from 1.040x10-7 F/cm2 to 0.662 x10-7 F/cm2 . Corrosion potential shifts from -973 mV/SCE to -867 mV/SCE .This confirms that the inhibitor system functions as anodic type of inhibitor controlling anodic reaction predominantly. This formulation may find application in concrete technology. This may be used in the construction of bridges and concrete structures
酒石酸钠钾存在下低碳钢浸泡在模拟混凝土孔隙溶液中的耐蚀性
采用极化技术和交流阻抗谱研究了酒石酸钠钾(SPT)存在和不存在时低碳钢在模拟混凝土孔隙溶液(SCPS)中的耐蚀性。本研究得出以下结论。极化研究表明酒石酸钠钾体系起阳极型缓蚀剂的作用。交流阻抗谱显示在金属表面形成一层屏蔽膜。当低碳钢用作钢筋时,酒石酸钠钾可与混凝土混合。这样低碳钢就不会受到腐蚀。该保护膜由酒石酸亚铁络合物形成于金属表面。在酒石酸钠钾存在下,线性极化电阻从226 Ohmcm2增加到455 Ohmcm2,腐蚀电流从1.901x10-4A/cm2减少到1.096 x10-4A/cm2,电荷转移电阻(Rt)从49 Ohmcm2增加到77 Ohmcm2,阻抗从1.807增加到2.084,相角从33.92°增加到35.31°,双层电容(Cdl)值从1.040x10-7 F/cm2减少到0.662 x10-7 F/cm2。腐蚀电位从-973 mV/SCE变化到-867 mV/SCE,证实缓蚀剂体系作为阳极型缓蚀剂主要控制阳极反应。该配方可应用于混凝土技术。这可用于建造桥梁和混凝土结构
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来源期刊
Zastita materijala
Zastita materijala Materials Science-General Materials Science
CiteScore
0.80
自引率
0.00%
发文量
26
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