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Improved Corrosion Protection of Acrylic Waterborne Coating by Doping with Microencapsulated Corrosion Inhibitors

机译:通过用微囊化的腐蚀抑制剂掺杂改善丙烯酸水性涂层的腐蚀保护

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Herein, a waterborne acrylic coating doped with pH sensitive colophony microcapsules containing corrosion inhibitors was studied on carbon steel plates. The changes in the physical properties of the coatings were studied. The microcapsule coating specimens maintained more noble Ecorr values compared to the control in deionized water and simulated concrete pore solutions with ?513 and ?531 mVSCE, respectively. Additionally, the microcapsule polarization results for both pH 12.6 and 6.2 electrolyte solutions showed lower icorr values of 1.20 × 10?6 and 3.24 × 10?6 A·cm?2, respectively, compared to the control sample (1.15 × 10?5 and 4.21 × 10?5 A·cm?2). Therefore, the microcapsule coating provided more protection from chloride attack on the substrate as well as the deleterious effects of low pH on carbon steel. The electrochemical impedance spectroscopy analysis corroborated the DC polarization results, showing increased corrosion resistance for the microcapsule coated specimens compared to the control. Moreover, the Rpore and Rct are much higher than the control, indicating the protection of the inhibitors. The Ceff,dl also shows lower values for the microcapsule coating than the control, showing a more protective and less doped double layer.
机译:在此,在碳钢板上研究了掺杂有含有腐蚀抑制剂的pH敏感的肠耳微胶囊的水性丙烯酸涂层。研究了涂层物理性质的变化。与去离子水和模拟混凝土孔隙溶液的控制相比,微胶囊涂层标本分别与α513和α531mVsce的控制相比,保持更高的Ecorr值。另外,与对照样品相比,pH 12.6和6.2电解质溶液的微胶囊偏振溶液分别显示出1.20×10·6和3.24×10?6a·cm 2的较低ICorr值。(1.15×10?5 4.21×10?5 a·cm?2)。因此,微胶囊涂层提供了更多的保护免受对基材上的氯化物侵蚀以及低pH对碳钢的有害影响。电化学阻抗光谱分析证实了与对照相比微胶囊涂层标本的耐腐蚀性增加的耐腐蚀性。此外,RPORE和RCT远高于对照,表明抑制剂的保护。 CEFF,DL还显示微胶囊涂层的较低值,而不是对照,显示更具有更高的保护性和更少的掺杂双层。

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