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Effect of Geopolymer Coating on Mild Steel

机译:地质聚合物涂层对低碳钢的影响

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This paper presents the results of a study on the effect of geopolymer coating on mild steel. Geopolymer is synthesis of a fly ash and alkaline activators which are sodium hydroxide solution (NaOH) and sodium silicate solution (Na_2SiO_3). Fly ash is one of residue produced during the combustion of coal in coal power plant. In this study, fly ash class F based geopolymer was used as a source material. The alkaline activators then were mixed with fly ash to produce the geopolymer paste which acts as a coating material. The mixture was placed in molds and reinforcement bar were embedded in geopolymer paste. After that, the corrosion behavior of reinforcement bars for all samples were observed by using Open Circuit Potential (OCP) testing. Referring the pourbaix diagram regarding OCP testing, samples are in passivity region. Besides that, mild steel also were coated with geopolymer paste for adhesion test. Elcometer 108 was used for adhesion strength test. Morphology analysis also been used to determine the microstructure of fly ash and geopolymer paste. Phase analysis was used for the analysis phase between fly ash, geopolymer paste and mild steel coated with geopolymer paste. From OCP test, pourbaix diagram shows that samples is placed in the passivity region, iron (III) oxide (Fe_2O_3) which is in stable phase and iron (II, III) oxide same results as in phase analysis. The minimum potential value for OCP is 0.015 V and the maximum potential value is 0.133 V. For adhesion strength, day 14 got the highest results compared day 7 and day 3 which the results are 2.0 Mpa, 1.9 Mpa and 1.5 Mpa respectively. It is because from day 3 until day 14, the structure of geopolymer paste becomes more compact, denser and better crystallization as shown in morphological analysis.
机译:本文介绍了岩土聚合物涂层对低碳钢作用的研究结果。地质聚合物是合成粉煤灰和碱性活化剂,其是氢氧化钠溶液(NaOH)和硅酸钠溶液(Na_2SiO_3)。飞灰是煤电站煤中燃烧期间生产的残留物之一。在这项研究中,将粉煤灰类F基质的地质聚合物用作源材料。然后将碱性活化剂与粉煤灰混合,以制备充当涂料的地质聚合物浆料。将混合物置于模具中,嵌入盖聚合物浆料中。之后,通过使用开放电路电位(OCP)测试来观察所有样品的增强杆的腐蚀行为。参考关于OCP测试的POPBAIX图,样本位于被动区域中。此外,低碳钢还涂有粘附试验的地质聚合物浆料。 Elcometer 108用于粘合强度试验。形态学分析也用于确定粉煤灰和地缘聚合物浆料的微观结构。相相分析用于粉煤灰,地缘聚合物浆料和涂有地缘聚合物浆料的轻度钢之间的分析阶段。从OCP测试,Pourbaix图表明,样品被置于被稳定的相和铁(II,III)氧化物相同的结果中的氧化铁(III)氧化铁(Fe_2O_3)中。 OCP的最小电位值为0.015 V,最大电位值为0.133 V.对于粘合强度,第14天得到最高结果,而结果分别为2.0MPa,1.9MPa和1.5MPa。这是因为从第3天到第14天,地质聚合物浆料的结构变得更紧凑,更密集,更好的结晶,如形态分析所示。

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