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Effect of Microstructure on Layered Double Hydroxides Film Growth on Mg-2Zn-xMn Alloy

机译:微观结构对Mg-2ZN-XMN合金层分层双氢氧化物膜生长的影响

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摘要

The poor corrosion resistance of magnesium (Mg) alloys significantly restricts their wide applications. The preparation of a layered double hydroxides (LDHs) film can provide effective corrosion protection for Mg alloys. Nevertheless, research on the effect of the Mg alloy microstructure on LDHs film growth is paid less attention, which was studied in detail in this work. Herein, a Mg-2Zn-xMn alloy with different Mn contents was produced, and an LDHs film was then synthesized on their surfaces. The addition of Mn causes a different microstructure in the Mg-2Zn-xMn alloy, which is gradually refined with increasing Mn content, further affecting the surface morphology, surface chemistry, and corrosion protection of the LDHs film. When the Mn content is 1 wt.% (x = 1), the LDHs film presents the best corrosion protection, with the lowest corrosion current density. No obvious corrosion product could be observed by the naked eyes on the surface. By contrast, severe corrosion occurs on the Mg-2Zn-0Mn alloy (x = 0). Finally, the LDHs film growth mechanism was proposed.
机译:镁(Mg)合金的耐腐蚀性差显着限制了它们广泛的应用。层状双氢氧化物(LDHS)膜的制备可为Mg合金提供有效的腐蚀保护。然而,对Mg合金微观结构对LDHS薄膜生长的影响的研究较少,在这项工作中详细研究了这一点。在此,制备具有不同Mn含量的Mg-2ZN-XMN合金,然后在其表面上合成LDHS膜。添加MN的添加导致Mg-2zN-XMN合金中的微观结构不同,其随着Mn含量的增加而逐渐精制,进一步影响LDHS膜的表面形态,表面化学和腐蚀保护。当Mn含量为1wt时。%(x = 1),LDHS薄膜具有最佳腐蚀保护,具有最低腐蚀电流密度。没有明显的腐蚀产品可以通过表面上的肉眼观察。相比之下,Mg-2ZN-0MN合金(x = 0)上发生严重的腐蚀。最后,提出了LDHS膜生长机制。

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