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PPA-containing layered double hydroxide (LDH) films for corrosion protection of a magnesium alloy

机译:用于耐氧化镁保护的含PPA的层状双氢氧化物(LDH)膜

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摘要

In this study, Mg alloys coated with four kinds of MgAl-layered double hydroxide (LDH)-based films with and without PPA were fabricated. PPA, as a small-molecule corrosion inhibitor, can be introduced into the LDH interlayer by virtue of in situ growth and anion exchange methods. Comparisons of the anti-corrosion performance of the LDH films were conducted by means of EIS, potentiodynamic polarization and endurance measurements. The introduction of PPA into LDH films provides more effective corrosion protection on a Mg alloy due to the blocking effect of the LDH film and the corrosion inhibition of PPA. Moreover, the different PPA introduction methods show significant differences in surface morphology, impedance behaviour and durability. Herein, the MgAl-PPA LDH film, which is obtained by introducing PPA in the in situ growth process, displays an excellent anti-corrosion ability due to its stable film structure. Although PPA-containing LDH films obtained via the anion-exchange method initially present a relatively good anti-corrosion performance, their susceptible film structure displays their low durability.
机译:在该研究中,制造涂有四种MgAl层双氢氧化物(LDH)的Mg合金,基于具有和不具有PPA的基于PPA的薄膜。作为小分子腐蚀抑制剂的PPA可以通过原位生长和阴离子交换方法引入LDH中间层。通过EIS,电位显微偏振和耐久性测量进行LDH膜的抗腐蚀性能的比较。由于LDH膜的阻断效果和PPA的腐蚀抑制,PPA引入LDH膜的PPA为Mg合金提供更有效的腐蚀保护。此外,不同的PPA引入方法显示出表面形态,阻抗行为和耐久性的显着差异。这里,通过在原位生长过程中引入PPA而获得的MgAL-PPA LDH膜,由于其稳定的薄膜结构而显示出优异的抗腐蚀能力。尽管通过阴离子交换方法获得的含PPA的LDH膜最初呈现相对良好的防腐蚀性能,但它们的敏感膜结构显示它们的低耐久性。

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