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Tribological and corrosion behaviors of fluorocarbon coating reinforced with sodium iron titanate platelets and whiskers

机译:用碳酸钠血小板和晶须增强氟碳涂料的摩擦腐蚀行为

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A series of sodium iron titanate (NFTO)-fluorocarbon composite coatings have been prepared with the liquid-phase blending method. The effects of two types of NFTO, NFTO platelets, and NFTO whiskers, on the tribological and corrosion behaviors of the composite coatings, are systematically studied. The results show that the addition of NFTO can significantly enhance the friction-reducing and wear resistance performances of the fluorocarbon coating. Under dry sliding, the minimum specific wear rate is 1.67 x 10(-4) mm(3)/Nm for the platelet-filled composite coatings and 1.15 x 10(-4) mm(3)/Nm for the whisker-filled composite coatings, respectively, showing a decrease of 83.5 and 88.6% than that of pure coating. Under a simulated seawater environment, the minimum specific wear rate is 5.44 x 10(-5) mm(3)/Nm for the platelet-filled composite coatings and 0.84 x 10(-5) mm(3)/Nm for the whisker-filled composite coatings, respectively, showing a decrease of 90.5 and 98.5% than that of pure coating. The morphologies of worn surfaces, wear debris, and transfer films are analyzed, and the corresponding wear resistance mechanisms are discussed. The electrochemical impedance spectroscopy certifies a remarkably improved corrosion resistance of the composite coatings which have been immersed in 3.5 wt % NaCl solution for 30 days. The composite coating reinforced with 7.5 wt % platelets shows the highest resistance of 256.3 x 10(6) omega center dot cm(2), approximately two orders of magnitude higher than that of pure coating. (c) 2020 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2020, 137, 48936.
机译:通过液相混合方法制备了一系列钛酸钠(NFTO)-FluoroCarbon复合涂层。系统地研究了两种类型的NFTO,NFTO血小板和NFTO晶须的效果。系统地研究了复合涂层的摩擦学和腐蚀行为。结果表明,添加NFTO可以显着提高氟碳涂层的摩擦减小和耐磨性性能。在干燥滑动下,对于粉末填充的复合涂层为1.67×10(-4)mm(3)/ nm,为粉末填充复合材料为1.15×10(-4)mm(3)/ nm分别涂层,分别显示出83.5和88.6%的降低而不是纯涂层的减少。在模拟海水环境下,对于颗粒填充的复合涂层为5.44×10( - 5)mm(3)/ nm,晶须的0.84×10(3)/ nm为0.84×10(3)/ nm分别填充复合涂层,显示比纯涂层的降低90.5%和98.5%。分析破坏表面,磨损碎片和转移膜的形态,并讨论了相应的耐磨机构。电化学阻抗光谱证明复合涂层的显着提高的耐腐蚀性,该涂层已浸入3.5wt%NaCl溶液中30天。用7.5wt%血小板增强的复合涂层显示出最高电阻256.3×10(6)Ω中心点Cm(2),大约比纯涂层高的两个数量级。 (c)2020 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2020,137,48936。

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