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Cooperative and synergistic corrosion inhibition of AA 7075-T6 by praseodymium and CaSO4

机译:镨和CASO4的AA 7075-T6的合作和协同腐蚀抑制

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In a primer coating system used in aerospace applications to protect aluminum alloy substrate, praseodymium is added as corrosion inhibitors while CaSO4 is primarily added as filler materials. The interaction of Pr and CaSO4 is unknown. The goal of this study is to characterize any cooperative or synergistic inhibition between these two. Cooperative inhibition can be defined when one inhibitor enhances inhibiting effect of the other that already has inhibiting ability. Synergistic inhibition can be defined when one inhibitor activates the inhibiting effect of the other that originally does not inhibit. Optical profilometry, electrochemical techniques and X-ray photoelectron spectroscopy were used to characterize corrosion results. The results showed that several pit parameters will affirm the inhibition effect. Electrochemical results cannot always detect modest corrosion inhibitors. Cooperative inhibition was detected in pH 5 while synergistic inhibition was observed in pH 8. Synergistic inhibition occurs because SO42- helps with gelation of Pr to passivate the surface.
机译:在用于保护铝合金基质的航空航天应用中使用的底漆涂层系统中,添加镨作为腐蚀抑制剂,同时CasO4主要添加为填充材料。 Pr和Caso4的相互作用是未知的。本研究的目标是在这两者之间表征任何合作或协同抑制。当一个抑制剂增强已经具有抑制能力的抑制作用时,可以定义合作抑制。当一个抑制剂激活最初不抑制的另一个抑制作用时,可以定义协同抑制。光学轮廓测定,电化学技术和X射线光电子能谱用于表征腐蚀结果。结果表明,几个坑参数将确认抑制效果。电化学效果不能总是检测适度的腐蚀抑制剂。在pH5中检测到合作抑制,同时在pH8中观察到协同抑制8.发生协同抑制,因为SO42-有助于PR的凝胶化钝化表面。

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