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Studies of impedance models and water transport behaviors of polypropylene coated metals in NaCl solution

机译:NaCl溶液中聚丙烯涂层金属的阻抗模型和输水行为的研究

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Using electrochemical impedance spectroscopy (EIS) technique, the water uptake process and the evolution of impedance models of polypropylene coated mild steels and LY12 A1 alloys immersed in 3.5% (weight fraction) NaCl solution were studied. The equivalent electrical circuit (EEC) fitting results suggested that there was one single semi-circle in the impedance spectra of immersed samples in the initial period of immersion, which was corresponded to one time constant. Along with the immersion time, the number of time constant in EEC for metal/coating electrode system increased. The diffusion process towards solution of corrosion products forming on the metal/coating interface might be restrained due to the influence of coating barrier, resulting in the initiation of diffusion component in EEC. This diffusion did not act as a Warburg behavior, leading to a deviation of dispersive number, n, from 0.5. The studies revealed that the water transport in polypropylene clear varnish followed the Fickian diffusion during the initial time of exposure to the solution. After a certain time of immersion, the water uptake reached a saturation value. According to the variation of coating capacitance with time, the water diffusion coefficient was deduced. The experimental results indicated that the water diffusion coefficients in polypropylene coatings were independent of substrate materials used and coating thickness. Relative dielectric constant of dry coatings (epsilon(d)) and water volume fraction of the coatings at saturation (phiinfinity) were also calculated. The similar results were found in time dependence of coating capacitance calculated from the impedance imaginary component at a fixed high frequency and that obtained from the fitting result by EEC, which indicated that the coating capacitance from the impedance imaginary component was reliable to evaluate barrier performance of coatings against water. (C) 2003 Elsevier B.V. All rights reserved.
机译:使用电化学阻抗谱(EIS)技术,研究了浸有3.5%(重量分数)NaCl溶液的聚丙烯涂层低碳钢和LY12 A1合金的吸水过程和阻抗模型的演变。等效电路(EEC)拟合结果表明,在浸入初期,浸入样品的阻抗谱中只有一个半圆,相当于一个时间常数。随着浸没时间的增加,金属/涂层电极系统的EEC时间常数增加。由于涂层阻挡层的影响,可能会抑制金属/涂层界面上形成的腐蚀产物向溶液的扩散过程,从而导致EEC中扩散组分的引发。该扩散不作为Warburg行为,导致分散数n从0.5偏离。研究表明,聚丙烯透明清漆中的水传输在暴露于溶液的最初时间遵循Fickian扩散。浸泡一定时间后,吸水率达到饱和值。根据涂层电容随时间的变化,推导了水的扩散系数。实验结果表明,聚丙烯涂料中的水扩散系数与所用基材和涂料厚度无关。还计算了干涂层的相对介电常数(epsilon(d))和饱和时涂层的水体积分数(phiinfinity)。从阻抗虚数分量在固定的高频下计算得到的涂层电容与EEC拟合结果得出的涂层电容在时间上的依赖关系中也发现了类似的结果,这表明从阻抗虚数分量得出的涂层电容对于评估绝缘层的阻隔性能是可靠的。防水涂料。 (C)2003 Elsevier B.V.保留所有权利。

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