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首页> 外文期刊>RSC Advances >A new environmentally-friendly route to in situ form a high-corrosion-resistant nesquehonite film on pure magnesium
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A new environmentally-friendly route to in situ form a high-corrosion-resistant nesquehonite film on pure magnesium

机译:一种新的环境友好路线,在纯镁上形成高耐腐蚀的Nesquehonite薄膜

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摘要

Magnesium-based materials are promising lightweight structural materials due to their excellent properties. However, their extensive application has been severely limited due to their high corrosion susceptibility. The inadequate corrosion resistance of Mg is mainly attributed to the porous and unprotective native surface film formed on Mg in aggressive environments. Here, we demonstrated a new environment-friendly route for the growth of a continuous nesquehonite (MgCO _(3) ·3H _(2) O) protective film on the surface of pure Mg metal at a relatively low temperature via an in situ reaction of the Mg surface with gaseous phase CO _(2) in humid environments. The protective film consists solely of highly crystalline MgCO _(3) ·3H _(2) O that is compact and has an umbrella-like structure. Electrochemical tests showed that compared to the untreated Mg substrate, the protective film can effectively improve the corrosion resistance of the substrate by nearly two orders of magnitude. Additionally, a possible formation mechanism of the nesquehonite film on the pure Mg was proposed and the effect of the carbonation time on the film was investigated. This environmentally-friendly surface treatment method is promising for use in the protection of magnesium-based materials.
机译:基于镁的材料由于其优异的性能而具有轻质的结构材料。然而,由于其高腐蚀性易感性,它们的广泛应用受到严重限制。 MG的耐腐蚀性不足主要归因于在侵蚀性环境中形成的多孔和未保护的天然表面膜。在这里,我们证明了一种新的环保途径,用于通过原位反应在纯Mg金属表面上的连续NesqueHonite(MgCO _(3)·3H _(2)O)保护膜的生长。在潮湿环境中具有气相CO_(2)的Mg表面。保护膜仅包括紧凑的高度结晶MgCO _(3)·3H _(2)℃,具有伞状结构。电化学试验表明,与未处理的Mg衬底相比,保护膜可以通过近两个数量级有效地提高基板的耐腐蚀性。另外,提出了纯Mg上的Nesquehonite膜的可能形成机制,研究了碳酸化时间对薄膜的影响。这种环保的表面处理方法是有希望用于保护基于镁的材料。

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