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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Studies of impedance models and water transport behaviours of epoxy coating at hydrostatic pressure of seawater
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Studies of impedance models and water transport behaviours of epoxy coating at hydrostatic pressure of seawater

机译:海水静水压力下环氧涂层的阻抗模型和输水特性研究

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In simulated deep-sea environment, the evolution of impedance models and water transport behaviours of epoxy coating on 907A steel surface were studied by electrochemical impedance spectroscopy (EIS). By the fitting analysis of EIS, three equivalent electrical circuits (EEC) were proposed to the epoxy coating/907A steel system at 25 atm hydrostatic pressure for different immersion stages: good barrier property of the coating (Circuit A), active corrosion period at the beginning (Circuit B), and finally emergency of diffusion impedance (Circuit C). The evolution of coating capacitance indicated that water transport followed the Fickian diffusion behaviour during the initial stage at 25 atm hydrostatic pressure and at atmospheric pressure. High pressure accelerated diffusion rates of seawater into epoxy coatings, this shortened the period of water uptake of the coating that reached saturation. The similar chemical structures of epoxy coatings at two kinds of hydrostatic pressure were found from the Fourier transform infrared spectroscopy (FT-IR) - attenuated total reflection (ATR) measurements. High pressure of seawater accelerated the coating physical failure, and chemical structures of the coating did not change during the experiment.
机译:在模拟的深海环境中,通过电化学阻抗谱(EIS)研究了907A钢表面环氧涂层的阻抗模型的演化和水的传输行为。通过对EIS的拟合分析,在25atm的静水压力下,针对不同的浸入阶段,对环氧涂料/ 907A钢体系提出了三个等效电路(EEC):涂料的良好阻隔性能(电路A),涂层的有效腐蚀期开始(电路B),最后紧急扩散阻抗(电路C)。涂层电容的演变表明,在初始状态下,在25个大气压的静水压力和大气压下,水的运输遵循Fickian扩散行为。高压加速了海水在环氧涂料中的扩散速度,从而缩短了达到饱和状态的涂料的吸水时间。从傅立叶变换红外光谱(FT-IR)-衰减全反射(ATR)测量中发现了两种静水压力下环氧涂料的相似化学结构。海水的高压加速了涂层的物理破坏,并且在实验过程中涂层的化学结构没有改变。

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