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Corrosion protection with zinc-rich epoxy paint coatings embedded with various amounts of highly dispersed polypyrrole-deposited alumina monohydrate particles

机译:嵌入各种数量的高度分散的聚吡咯沉积的一水合氧化铝颗粒的富锌环氧涂料涂层的腐蚀防护

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摘要

Active anodic zinc content below 90 wt.% does not support sufficient electrical contacts but higher contents cause high porosity of traditional liquid zinc-rich paints (ZRPs). To resolve this problem, our proposal is the application of highly dispersed polypyrrole (PPy) coated alumina inhibitor particles (PCAIPs) in zinc-rich paint compositions. Using these nano-size inhibitor particles at concentrations from 4.55 to 0.85 wt.%, hybrid paints were formulated with zinc contents ranging from 60 to 85 wt.% at the same time. Submicron morphology and nano-scale structure, spectroscopy characteristics and electrochemical properties of the PCAIPs were studied by transmission electron microscopy (TEM) and rheology, Fourier-transform infrared spectroscopy (FT-IR) and cyclic voltammetry (CV) in first part of the work. In the second part, electrolytic corrosion resistivity of two sets of paint coatings were salt-spray chamber and immersion tested with 5 wt.% aqueous solution of sodium chloride. Active corrosion prevention ability of the salt-spray tested coatings was evaluated in compliance with ISO recommendations. Dielectric properties of the coatings during the immersion tests were monitored by electrochemical impedance spectroscopy (EIS). Corrosion tested area of the coatings was investigated by glow-discharge optical emission spectroscopy (GD-OES) to disclose infiltration of corrosive analytes and oxygen enrichment in the cross-section of the primers in comparison with their pristine states. Morphology of the zinc pigments was examined by scanning electron microscopy (SEM), and quality of steel specimens and the interfacial binder residues by X-ray photoelectron spectroscopy (XPS) as well as FT-Raman and Mössbauer spectroscopy. The results of both types of corrosion tests evidenced efficient utilisation of sacrificial anodic current for galvanic protection and improved barrier profile of the hybrid coatings, along with the PCAIP inhibited moderate self-corrosion of zinc. As a result of well balanced active/passive function, the hybrid coating containing zinc at 80 wt.% and PCAIPs at 1.75 wt.% embedding PPy at 0.056 wt.% indicated the most advanced corrosion prevention. Galvanic function of the hybrid paints is interpreted on the basis of size-range effect and spatial distribution of the alumina supported PPy inhibitor particles and basic electrical percolation model considerations.
机译:低于90重量%的活性阳极锌含量不能支持足够的电接触,但是较高的含量会导致传统的液态富锌涂料(ZRP)的高孔隙率。为了解决这个问题,我们的建议是在富锌涂料组合物中应用高度分散的聚吡咯(PPy)涂层氧化铝抑制剂颗粒(PCAIP)。使用浓度为4.55至0.85 wt。%的这些纳米级抑制剂颗粒,可同时配制锌含量为60至85 wt。%的混合涂料。在工作的第一部分中,通过透射电子显微镜(TEM)和流变学,傅立叶变换红外光谱(FT-IR)和循环伏安法(CV)研究了PCAIP的亚微米形态和纳米级结构,光谱特征和电化学性能。 。在第二部分中,将两组油漆涂料的耐电解腐蚀性能进行盐雾室测试,并用5 wt%的氯化钠水溶液进行浸没测试。盐雾测试涂层的主动防腐蚀能力根据ISO推荐标准进行了评估。通过电化学阻抗谱(EIS)监测浸没测试过程中涂层的介电性能。通过辉光放电光发射光谱法(GD-OES)研究了涂层的腐蚀测试面积,以揭示与原始状态相比底漆横截面中腐蚀性分析物的渗透和氧富集。锌颜料的形态通过扫描电子显微镜(SEM)进行了检查,钢样品的质量和界面粘合剂残留物的质量通过X射线光电子能谱(XPS)以及FT-拉曼光谱和Mössbauer光谱进行了检查。两种腐蚀测试的结果均表明,有效利用牺牲阳极电流进行电流保护,并改善了杂化涂层的阻隔性能,同时PCAIP抑制了锌的中等自腐蚀。由于主动/被动功能的平衡,含有80%(重量)的锌和1.75%(重量)的PCAIPs嵌入0.056%(重量)的PPy的混合涂层显示出最先进的防腐性能。杂化涂料的电功能是基于氧化铝负载的PPy抑制剂颗粒的尺寸范围效应和空间分布以及基本的电渗流模型考虑因素来解释的。

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